CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Human In Vitro

  • Acetaminophen decreases intracellular glutathione levels and modulates cytokine production in human alveolar macrophages and type II pneumocytes in vitro.

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    Abstract Title:

    Acetaminophen decreases intracellular glutathione levels and modulates cytokine production in human alveolar macrophages and type II pneumocytes in vitro.

    Abstract Source:

    Int J Biochem Cell Biol. 2005 Aug ;37(8):1727-37. Epub 2005 Apr 26. PMID: 15878691

    Abstract Author(s):

    Svetlana Dimova, Peter H M Hoet, David Dinsdale, Benoit Nemery

    Article Affiliation:

    Svetlana Dimova

    Abstract:

    Recent epidemiological observations suggest that acetaminophen (paracetamol) may contribute to asthma morbidity. Impaired endogenous antioxidant defences may have a role in the pathogenesis of a number of inflammatory pulmonary diseases, including asthma. We studied the effect of acetaminophen on the intracellular level of reduced glutathione (GSH) with and without inhibitors of cytochrome P450 or prostaglandin H synthetase, and TNF-alpha, IL-6 and IL-8 protein production in human alveolar macrophages and type II pneumocytes in vitro. Following a 20 h incubation with acetaminophen, cytotoxicity was apparent from>or = 5 and>or = 10 mM in macrophages and type II pneumocytes, respectively. A time- and concentration-dependent decrease of intracellular GSH occurred after acetaminophen (0.05-1 mM) exposure (1-4 h) in pulmonary macrophages (up to 53%) and type II pneumocytes (up to 34%). Diethyldithiocarbamic acid, potassium ethyl xanthate, and indomethacin decreased significantly acetaminophen-induced GSH depletion in the two cell types tested, suggesting the involvement of cytochrome P450 (mainly CYP2E1) and/or prostaglandin H synthetase. In macrophages, acetaminophen decreased the secretion of TNF-alpha (at 4 and 24 h, concentration-related) and IL-6 (at 24 h, at 0.1 mM), and did not affect significantly IL-8 production. These in vitro observations demonstrate that clinically relevant concentrations of acetaminophen decreased: (i) intracellular GSH in human pulmonary macrophages and type II pneumocytes and (ii) the secretion of TNF-alpha and possibly IL-6 by human pulmonary macrophages. These findings provide experimental plausibility to the challenging observations that frequent use of APAP may be a risk factor for asthma morbidity.

  • Aluminum hydroxide adjuvant induces macrophage differentiation towards a specialized antigen-presenting cell type.

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    Abstract Title:

    Aluminum hydroxide adjuvant induces macrophage differentiation towards a specialized antigen-presenting cell type.

    Abstract Source:

    Vaccine. 2004 Aug 13 ;22(23-24):3127-35. PMID: 15297065

    Abstract Author(s):

    Anne-Cécile Rimaniol, Gabriel Gras, François Verdier, Francis Capel, Vladimir B Grigoriev, Fabrice Porcheray, Elisabeth Sauzeat, Jean-Guy Fournier, Pascal Clayette, Claire-Anne Siegrist, Dominique Dormont

    Article Affiliation:

    Anne-Cécile Rimaniol

    Abstract:

    Aluminum hydroxide (AlOOH) has been used for many years as a vaccine adjuvant, but little is known about its mechanism of action. We investigated in this study the in vitro effect of aluminum hydroxide adjuvant on isolated macrophages. We showed that AlOOH-stimulated macrophages contain large and persistent intracellular crystalline inclusions, a characteristic property of muscle infiltrated macrophages described in animal models of vaccine injection, as well as in the recently described macrophagic myofasciitis (MMF) histological reaction in humans. AlOOH-loaded macrophages exhibited phenotypical and functional modifications, as they expressed the classical markers of myeloid dendritic cells (HLA-DR(high)/CD86(high)/CD83(+)/CD1a(-)/CD14(-)) and displayed potent ability to induce MHC-II-restricted antigen specific memory responses, but kept a macrophage morphology. This suggests a key role of macrophages, in the reaction to AlOOH-adjuvanted vaccines and these mature antigen-presenting macrophages may therefore be of particular importance in the establishment of memory responses and in vaccination mechanisms leading to long-lasting protection.

  • Aluminum in Neurological and Neurodegenerative Disease. 📎

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    Abstract Title:

    Aluminum in Neurological and Neurodegenerative Disease.

    Abstract Source:

    Mol Neurobiol. 2019 Jan 31. Epub 2019 Jan 31. PMID: 30706368

    Abstract Author(s):

    Donald R C McLachlan, Catherine Bergeron, Peter N Alexandrov, William J Walsh, Aileen I Pogue, Maire E Percy, Theodore P A Kruck, Zhide Fang, Nathan M Sharfman, Vivian Jaber, Yuhai Zhao, Wenhong Li, Walter J Lukiw

    Article Affiliation:

    Donald R C McLachlan

    Abstract:

    With continuing cooperation from 18 domestic and international brain banks over the last 36 years, we have analyzed the aluminum content of the temporal lobe neocortex of 511 high-quality human female brain samples from 16 diverse neurological and neurodegenerative disorders, including 2 groups of age-matched controls. Temporal lobes (Brodmann areas A20-A22) were selected for analysis because of their availability and their central role in massive information-processing operations including efferent-signal integration, cognition, and memory formation. We used the analytical technique of (i) Zeeman-type electrothermal atomic absorption spectrophotometry (ETAAS) combined with (ii) preliminary analysis from the advanced photon source (APS) hard X-ray beam (7 GeV) fluorescence raster-scanning (XRFR) spectroscopy device (undulator beam line 2-ID-E) at the Argonne National Laboratory, US Department of Energy, University of Chicago IL, USA. Neurological diseases examined were Alzheimer's disease (AD; N = 186), ataxia Friedreich's type (AFT; N = 6), amyotrophic lateral sclerosis (ALS; N = 16), autism spectrum disorder (ASD; N = 26), dialysis dementia syndrome (DDS; N = 27), Down's syndrome (DS; trisomy, 21; N = 24), Huntington's chorea (HC; N = 15),multiple infarct dementia (MID; N = 19), multiple sclerosis (MS; N = 23), Parkinson's disease (PD; N = 27), and prion disease (PrD; N = 11) that included bovine spongiform encephalopathy (BSE;"mad cow disease"), Creutzfeldt-Jakob disease (CJD) and Gerstmann-Straussler-Sheinker syndrome (GSS), progressive multifocal leukoencephalopathy (PML; N = 11), progressive supranuclear palsy (PSP; N = 24), schizophrenia (SCZ; N = 21), a young control group (YCG; N = 22; mean age, 10.2 ± 6.1 year), and an aged control group (ACG; N = 53; mean age, 71.4 ± 9.3 year). Using ETAAS, all measurements were performed in triplicate on each tissue sample. Among these 17 common neurological conditions, we found a statistically significant trend for aluminum to be increased only in AD, DS, and DDS compared to age- and gender-matched brains from the same anatomical region. This is the largest study of aluminum concentrationin the brains of human neurological and neurodegenerative disease ever undertaken. The results continue to suggest that aluminum's association with AD, DDS, and DS brain tissues may contribute to the neuropathology of those neurological diseases but appear not to be a significant factor in other common disorders of the human brain and/or CNS.

  • BCG stimulated dendritic cells induce an interleukin-10 producing T-cell population with no T helper 1 or T helper 2 bias in vitro. 📎

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    Abstract Title:

    BCG stimulated dendritic cells induce an interleukin-10 producing T-cell population with no T helper 1 or T helper 2 bias in vitro.

    Abstract Source:

    Immunology. 2007 Jun ;121(2):276-82. Epub 2007 Mar 20. PMID: 17371543

    Abstract Author(s):

    Jeppe Madura Larsen, Christine Stabell Benn, Yvonne Fillie, Desiree van der Kleij, Peter Aaby, Maria Yazdanbakhsh

    Article Affiliation:

    Jeppe Madura Larsen

    Abstract:

    Mycobacterium bovis bacillus Calmette-Guérin (BCG) vaccine has been associated with beneficial effects on overall childhood mortality in low-income countries; this cannot be explained merely by the prevention of tuberculosis (TB) deaths. The beneficial effects of BCG vaccine could be the result of either strengthening of pro-inflammatorymechanisms, helping neonates to fight infections, or the induction of an immune-regulatory network restricting overt inflammation and intense pathology. We aimed to study the effect of live BCG on the ability of dendritic cells (DCs) to polarize T-cell responses. Monocyte-derived DCs were matured in the presence or absence of BCG. The DC phenotype was assessed by CD83 expression, interleukin-12 (IL-12) and IL-10 production, as well as for the ability to polarize T-cell responses. Following stimulation with CD40 ligand, DCs matured in the presence of BCG showed enhanced IL-10 and diminished IL-12 production. These DCs primed naive T cells to develop into IL-10-producing T cells, with no T helper 1 or T helper 2 bias. These results suggest that BCG vaccination might result in the development of IL-10-producing DCs as well as IL-10-producing T cells that could contribute to restricting overt inflammation in infants exposed to pathogens and thus lead to lower infant mortality.

  • Breastmilk is a novel source of stem cells with multilineage differentiation potential📎

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    Abstract Title:

    Breastmilk is a novel source of stem cells with multilineage differentiation potential.

    Abstract Source:

    Stem Cells. 2012 Oct ;30(10):2164-74. PMID: 22865647

    Abstract Author(s):

    Foteini Hassiotou, Adriana Beltran, Ellen Chetwynd, Alison M Stuebe, Alecia-Jane Twigger, Philipp Metzger, Naomi Trengove, Ching Tat Lai, Luis Filgueira, Pilar Blancafort, Peter E Hartmann

    Article Affiliation:
    Abstract:

    The mammary gland undergoes significant remodeling during pregnancy and lactation, which is fuelled by controlled mammary stem cell (MaSC) proliferation. The scarcity of human lactating breast tissue specimens and the low numbers and quiescent state of MaSCs in the resting breast have hindered understanding of both normal MaSC dynamics and the molecular determinants that drive their aberrant self-renewal in breast cancer. Here, we demonstrate that human breastmilk contains stem cells (hBSCs) with multilineage properties. Breastmilk cells from different donors displayed variable expression of pluripotency genes normally found in human embryonic stem cells (hESCs). These genes included the transcription factors (TFs) OCT4, SOX2, NANOG, known to constitute the core self-renewal circuitry of hESCs. When cultured in the presence of mouse embryonic feeder fibroblasts, a population of hBSCs exhibited an encapsulated ESC-like colony morphology and phenotype and could be passaged in secondary and tertiary clonogenic cultures. While self-renewal TFs were found silenced in the normal resting epithelium, they were dramatically upregulated in breastmilk cells cultured in 3D spheroid conditions. Furthermore, hBSCs differentiated in vitro into cell lineages from all three germ layers. These findings provide evidence that breastmilk represents a novel and noninvasive source of patient-specific stem cells with multilineage potential and establish a method for expansion of these cells in culture. They also highlight the potential of these cells to be used as novel models to understand adult stem cell plasticity and breast cancer, with potential use in bioengineering and tissue regeneration. STEM Cells2012;30:2164-2174.

  • Characteristics and viral propagation properties of a new human diploid cell line, Walvax-2, and its suitability as a candidate cell substrate for vaccine production. 📎

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    Abstract Title:

    Characteristics and viral propagation properties of a new human diploid cell line, Walvax-2, and its suitability as a candidate cell substrate for vaccine production.

    Abstract Source:

    Hum Vaccin Immunother. 2015 ;11(4):998-1009. PMID: 25803132

    Abstract Author(s):

    Bo Ma, Li-Fang He, Yi-Li Zhang, Min Chen, Li-Li Wang, Hong-Wei Yang, Ting Yan, Meng-Xiang Sun, Cong-Yi Zheng

    Article Affiliation:

    Bo Ma

    Abstract:

    Human diploid cell strains (HDCSs), possessing identical chromosome sets known to be free of all known adventitious agents, are of great use in developing human vaccines. However it is extremely difficult to obtain qualified HDCSs that can satisfy the requirements for the mass production of vaccines. We have developed a new HDCS, Walvax-2, which we derived from the lung tissue of a 3-month-old fetus. We established primary, master and working cell banks successfully from reconstituted frozen cells. Observations during the concurrent propagation of Walvax-2 and MRC-5 cells revealed differences in terms of growth rate, cell viability and viral sensitivities. Specifically, Walvax-2 cells replicated more rapidly than MRC-5 cells, with Walvax-2 cells attaining the same degree of confluence in 48 hours as was reached by MRC-5 cells in 72 hours. Moreover, Walvax-2 cells attained 58 passages of cell doublings whereas MRC-5 reached 48 passages during this period. We also assessed the susceptibility of these cells to rabies, hepatitis A, and Varicella viruses. Analysis of virus titers showed the Walvax-2 cells to be equal or superior to MRC-5 cells for cultivating these viruses. Furthermore, in order to characterize the Walvax-2 cell banks, a series of tests including cell identification, chromosomal characterization, tumorigenicity, as well as tests for the presence of microbial agents, exogenous viruses, and retroviruses, were conducted according to standard international protocols. In conclusion, results from this study show that Walvax-2 cell banks are a promising cell substrate and could potentially be used for the manufacturing of HDCVs.

  • Competition of iron and aluminum for transferrin: the molecular basis for aluminum deposition in iron-overloaded dialysis patients?

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    Abstract Title:

    Competition of iron and aluminum for transferrin: the molecular basis for aluminum deposition in iron-overloaded dialysis patients?

    Abstract Source:

    Exp Nephrol. 1997 May-Jun;5(3):239-45. PMID: 9208284

    Abstract Author(s):

    G F Van Landeghem, P C D'Haese, L V Lamberts, M E De Broe

    Article Affiliation:

    G F Van Landeghem

    Abstract:

    In the recent literature an inverse relationship between iron status and serum aluminum levels has repeatedly been reported in dialysis patients. To check whether this observation is, at least in part, due to an interference of iron with the protein binding of aluminum, we studied the effect of the latter element on both the number of free binding sites on transferrin (Tf) and on the affinity of the protein for aluminum. For the purpose of this, a recently developed HPLC-ETAAS hybrid method was used, allowing protein-binding studies at clinical relevant metal concentrations and under contamination-free conditions. After we incubated apo-Tf with iron and aluminum which were added in amounts equivalent to the calculated number of metal-binding sites on the protein (i.e., 2 mol metal/mol Tf), we found that Tf can be saturated for 100% with iron. However, for aluminum only a 23% aluminum-Tf saturation was observed. In Tf solutions with iron saturations ranging between 0 and 60% as well as in the serum of 15 subjects with iron-Tf saturations varying between 12 and 48%, a significant (p<0.001) negative correlation between the degree of iron-Tf saturation and the percentage of aluminum (added in amounts equivalent to the number of the remaining binding sites on Tf) bound to Tf was noted (y = -0.26x + 24.5, r = -0.87 in serum). It is concluded that the iron-Tf saturation influences the Tf binding of aluminum not only by occupying binding sites otherwise available for aluminum, but also by lowering the affinity of Tf for aluminum. The effects of iron on serum aluminum levels and bone aluminum deposition are discussed.

  • Effect of aluminium on iron uptake and transferrin-receptor expression by human erythroleukaemia K562 cells. 📎

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    Abstract Title:

    Effect of aluminium on iron uptake and transferrin-receptor expression by human erythroleukaemia K562 cells.

    Abstract Source:

    Biochem J. 1990 Dec 1 ;272(2):377-82. PMID: 2268267

    Abstract Author(s):

    S J McGregor, M L Naves, R Oria, J K Vass, J H Brock

    Article Affiliation:

    S J McGregor

    Abstract:

    Incubation of human erythroleukaemia K562 cells with Al-transferrin inhibited iron uptake from 59Fe-transferrin by about 80%. The inhibition was greater than that produced by a similar quantity of Fe-transferrin. Preincubation of cells for 6 h with either Al-transferrin or Fe-transferrin diminished the number of surface transferrin receptors by about 40% compared with cells preincubated with apo-transferrin. Al-transferrin did not compete significantly with Fe-transferrin for transferrin receptors and, when cells were preincubated for 15 min instead of 6 h, the inhibitory effect of Al-transferrin on receptor expression was lost. Both forms of transferrin also decreased the level of transferrin receptor mRNA by about 50%, suggesting a common regulatory mechanism. Aluminium citrate had no effect on iron uptake or transferrin-receptor expression. AlCl3 also had no effect on transferrin-receptor expression, but at high concentration it caused an increase in iron uptake by an unknown, possibly non-specific, mechanism. Neither Al-transferrin nor AlCl3 caused a significant change in cell proliferation. It is proposed that aluminium, when bound to transferrin, inhibits iron uptake partly by down-regulating transferrin-receptor expression and partly by interfering with intracellular release of iron from transferrin.

  • Effects of long-term low-dose formaldehyde exposure on global genomic hypomethylation in 16HBE cells.

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    Abstract Title:

    Effects of long-term low-dose formaldehyde exposure on global genomic hypomethylation in 16HBE cells.

    Abstract Source:

    Toxicol Lett. 2011 Sep 10 ;205(3):235-40. Epub 2011 Jul 1. PMID: 21745553

    Abstract Author(s):

    Qingcheng Liu, Linqing Yang, Chunmei Gong, Gonghua Tao, Haiyan Huang, Jianjun Liu, Huimin Zhang, Desheng Wu, Bo Xia, Gonghua Hu, Kunpeng Wang, Zhixiong Zhuang

    Article Affiliation:

    Qingcheng Liu

    Abstract:

    Formaldehyde (FA), a volatile organic compound, is a ubiquitous air pollutant that is classified as 'Carcinogenic to humans (Group 1)' by IARC (2006). As a well-recognized human carcinogen, its carcinogenic mechanisms are still poorly understood. Previous studies have emphasized on genetic changes. However, little is known about the epigenetic mechanisms of FA exposure. In this study, We not only characterized the epigenomic response to long-term low-dose FA exposure in 16HBE cells, but also examined the expression of DNA methyltransferases (DNMTs) and the methyl-CpG-binding protein DNA-binding domain protein 2 (MBD2). Each week the 16HBE cells were treated with 10μM FA for 24 h (h). After 24 weeks (W) of exposure to FA, the level of genomic DNA methylation gradually decreased in a time-related manner. Moreover, our results showed that FA exposure down-regulated the expression of DNMT3a and DNMT3b at both mRNA and protein level, and up-regulated the levels of DNMT1 and MBD2 at both mRNA and protein level. Our study indicated that long-term FA exposure could disrupt genomic DNA methylation, which may be one of the possible underlying carcinogenic mechanisms of FA.

  • Enhancement of in vitro interleukin-2 production in normal subjects following a single spinal manipulative treatment📎

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    Abstract Title:

    Enhancement of in vitro interleukin-2 production in normal subjects following a single spinal manipulative treatment.

    Abstract Source:

    Chiropr Osteopat. 2008 ;16:5. Epub 2008 May 28. PMID: 18507834

    Abstract Author(s):

    Julita A Teodorczyk-Injeyan, H Stephen Injeyan, Marion McGregor, Glen M Harris, Richard Ruegg

    Article Affiliation:

    Division of Graduate Education and Research, Canadian Memorial Chiropractic College, Canada. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    BACKGROUND:Increasing evidence supports somato-visceral effects of manual therapies. We have previously demonstrated that a single spinal manipulative treatment (SMT) accompanied by audible release has an inhibitory effect on the production of proinflammatory cytokines in asymptomatic subjects. The purpose of this study is to report on SMT-related changes in the production of the immunoregulatory cytokine interleukin 2 (IL-2) and to investigate whether such changes might differ with respect to the treatment approach related to the presence or absence of an audible release (joint cavitation).

    METHODS:Of 76 asymptomatic subjects, 29 received SMT with cavitation (SMT-C), 23 were treated with SMT without cavitation (SMT-NC) and 24 comprised the venipuncture control (VC) group. The SMT-C and SMT-NC subjects received a single, similar force high velocity low amplitude manipulation, in the upper thoracic spine. However, in SMT-NC subjects, positioning and line of drive were not conducive to cavitation. Blood and serum samples were obtained before and then at 20 and 120 min post-intervention. The production of IL-2 in peripheral blood mononuclear cell cultures was induced by activation for 48 hr with Staphylococcal protein A (SPA) and, in parallel preparations, with the combination of phorbol ester (TPA) and calcium ionophore. The levels of IL-2 in culture supernatants and serum were assessed by specific immunoassays.

    RESULTS:Compared with VC and their respective baselines, SPA-induced secretion of IL-2 increased significantly in cultures established from both SMT-C and SMT-NC subjects at 20 min post-intervention. At 2 hr post-treatment, significant elevation of IL-2 synthesis was still apparent in preparations from SMT-treated groups though it became somewhat attenuated in SMT-NC subjects. Conversely, IL-2 synthesis induced by TPA and calcium ionophore was unaltered by either type of SMT and was comparable to that in VC group at all time points. No significant alterations in serum-associated IL-2 levels were observed in any of the study groups.

    CONCLUSION:The present study demonstrates that, the in vitro T lymphocyte response to a conventional mitogen (SPA), as measured by IL-2 synthesis, can become enhanced following SMT. Furthermore, within a period of time following the manipulative intervention, this effect may be independent of joint cavitation. Thus the results of this study suggest that, under certain physiological conditions, SMT might influence IL-2-regulated biological responses.

  • Filtering blue light reduces light-induced oxidative stress, senescence and accumulation of extracellular matrix proteins in human retinal pigment epithelium cells. 📎

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    Abstract Title:

    Filtering blue light reduces light-induced oxidative stress, senescence and accumulation of extracellular matrix proteins in human retinal pigment epithelium cells.

    Abstract Source:

    Clin Exp Ophthalmol. 2012 Jan-Feb;40(1):e87-97. Epub 2011 Aug 18. PMID: 21668780

    Abstract Author(s):

    Marcus Kernt, Axel Walch, Aljoscha S Neubauer, Christoph Hirneiss, Christos Haritoglou, Michael W Ulbig, Anselm Kampik

    Article Affiliation:

    Marcus Kernt

    Abstract:

    BACKGROUND:Cumulative light exposure is significantly associated with ageing and the progression of age-related macular degeneration. To prevent the retina from blue-light damage in pseudophakia, blue light-absorbing intraocular lenses have been developed. This study compares the possible protective effects of a blue light-absorbing intraocular lens to an untinted ultraviolet-absorbing intraocular lens with regard to light-induced oxidative stress and senescence of human retinal pigment epithelium.

    METHODS:As primary human retinal pigment epithelium cells were exposed to white light, either an ultraviolet- and blue light-absorbing intraocular lens or ultraviolet-absorbing intraocular lens was placed in the light beam. After 60 min of irradiation, cells were investigated by electron microscopy for viability, induction of intracellular reactive oxygen species, and senescence-associatedβ-galactosidase activity. Expression and secretion of matrix metalloproteinases 1 and 3 and their mRNA were determined by real-time polymerase chain reaction (PCR) and enzyme-linked immunosorbent assay.

    RESULTS:Light exposure induced structural damage, decreased retinal pigment epithelium cell viability, and increased reactive oxygen species, senescence-associatedβ-galactosidase activity and matrix metalloproteinases 1 and 3 expression and secretion. Although both types of intraocular lens significantly reduced these effects, the protective effects of the ultraviolet- and blue light-absorbing intraocular lens were significantly stronger than those of the ultraviolet-absorbing intraocular lens.

    CONCLUSIONS:The ultraviolet- and blue light-absorbing intraocular lens demonstrated significantly better protection against light-induced oxidative stress, senescence and structural damage than the ultraviolet-absorbing intraocular lens. These in vitro findings support the hypothesis that the ultraviolet- and blue light-absorbing intraocular lens may prevent retinal damage in clinical use.

  • High-Throughput Screening and Identification of Potent Broad-Spectrum Inhibitors of Coronaviruses📎

    Abstract Title:

    High-Throughput Screening and Identification of Potent Broad-Spectrum Inhibitors of Coronaviruses.

    Abstract Source:

    J Virol. 2019 Jun 15 ;93(12). Epub 2019 May 29. PMID: 30918074

    Abstract Author(s):

    Liang Shen, Junwei Niu, Chunhua Wang, Baoying Huang, Wenling Wang, Na Zhu, Yao Deng, Huijuan Wang, Fei Ye, Shan Cen, Wenjie Tan

    Article Affiliation:

    Liang Shen

    Abstract:

    Coronaviruses (CoVs) act as cross-species viruses and have the potential to spread rapidly into new host species and cause epidemic diseases. Despite the severe public health threat of severe acute respiratory syndrome coronavirus and Middle East respiratory syndrome CoV (MERS-CoV), there are currently no drugs available for their treatment; therefore, broad-spectrum inhibitors of emerging and endemic CoVs are urgently needed. To search for effective inhibitory agents, we performed high-throughput screening (HTS) of a 2,000-compound library of approved drugs and pharmacologically active compounds using the established genetically engineered human CoV OC43 (HCoV-OC43) strain expressingluciferase (rOC43-ns2Del-Rluc) and validated the inhibitors using multiple genetically distinct CoVsWe screened 56 hits from the HTS data and validated 36 compoundsusing wild-type HCoV-OC43. Furthermore, we identified seven compounds (lycorine, emetine, monensin sodium, mycophenolate mofetil, mycophenolic acid, phenazopyridine, and pyrvinium pamoate) as broad-spectrum inhibitors according to their strong inhibition of replication by four CoVsat low-micromolar concentrations. Additionally, we found that emetine blocked MERS-CoV entry according to pseudovirus entry assays and that lycorine protected BALB/c mice against HCoV-OC43-induced lethality by decreasing viral load in the central nervous system. This represents the first demonstration ofreal-time bioluminescence imaging to monitor the effect of lycorine on the spread and distribution of HCoV-OC43 in a mouse model. These results offer critical information supporting the development of an effective therapeutic strategy against CoV infection.Currently, there is no approved therapy to treat coronavirus infection; therefore, broad-spectrum inhibitors of emerging and endemic CoVs are needed. Based on our high-throughput screening assay using a compound library, we identified seven compounds with broad-spectrum efficacy against the replication of four CoVsAdditionally, one compound (lycorine) was found to protect BALB/c mice against HCoV-OC43-induced lethality by decreasing viral load in the central nervous system. This inhibitor might offer promising therapeutic possibilities for combatting novel CoV infections in the future.

  • High-Throughput Screening and Identification of Potent Broad-Spectrum Inhibitors of Coronaviruses📎

    Abstract Title:

    High-Throughput Screening and Identification of Potent Broad-Spectrum Inhibitors of Coronaviruses.

    Abstract Source:

    J Virol. 2019 Jun 15 ;93(12). Epub 2019 May 29. PMID: 30918074

    Abstract Author(s):

    Liang Shen, Junwei Niu, Chunhua Wang, Baoying Huang, Wenling Wang, Na Zhu, Yao Deng, Huijuan Wang, Fei Ye, Shan Cen, Wenjie Tan

    Article Affiliation:

    Liang Shen

    Abstract:

    Coronaviruses (CoVs) act as cross-species viruses and have the potential to spread rapidly into new host species and cause epidemic diseases. Despite the severe public health threat of severe acute respiratory syndrome coronavirus and Middle East respiratory syndrome CoV (MERS-CoV), there are currently no drugs available for their treatment; therefore, broad-spectrum inhibitors of emerging and endemic CoVs are urgently needed. To search for effective inhibitory agents, we performed high-throughput screening (HTS) of a 2,000-compound library of approved drugs and pharmacologically active compounds using the established genetically engineered human CoV OC43 (HCoV-OC43) strain expressingluciferase (rOC43-ns2Del-Rluc) and validated the inhibitors using multiple genetically distinct CoVsWe screened 56 hits from the HTS data and validated 36 compoundsusing wild-type HCoV-OC43. Furthermore, we identified seven compounds (lycorine, emetine, monensin sodium, mycophenolate mofetil, mycophenolic acid, phenazopyridine, and pyrvinium pamoate) as broad-spectrum inhibitors according to their strong inhibition of replication by four CoVsat low-micromolar concentrations. Additionally, we found that emetine blocked MERS-CoV entry according to pseudovirus entry assays and that lycorine protected BALB/c mice against HCoV-OC43-induced lethality by decreasing viral load in the central nervous system. This represents the first demonstration ofreal-time bioluminescence imaging to monitor the effect of lycorine on the spread and distribution of HCoV-OC43 in a mouse model. These results offer critical information supporting the development of an effective therapeutic strategy against CoV infection.Currently, there is no approved therapy to treat coronavirus infection; therefore, broad-spectrum inhibitors of emerging and endemic CoVs are needed. Based on our high-throughput screening assay using a compound library, we identified seven compounds with broad-spectrum efficacy against the replication of four CoVsAdditionally, one compound (lycorine) was found to protect BALB/c mice against HCoV-OC43-induced lethality by decreasing viral load in the central nervous system. This inhibitor might offer promising therapeutic possibilities for combatting novel CoV infections in the future.

  • Human In Vitro

  • Identification of nestin-positive putative mammary stem cells in human breastmilk.

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    Abstract Title:

    Identification of nestin-positive putative mammary stem cells in human breastmilk.

    Abstract Source:

    Cell Tissue Res. 2007 Jul ;329(1):129-36. Epub 2007 Apr 18. PMID: 17440749

    Abstract Author(s):

    Mark D Cregan, Yiping Fan, Amber Appelbee, Mark L Brown, Borut Klopcic, John Koppen, Leon R Mitoulas, Kristin M E Piper, Mahesh A Choolani, Yap-Seng Chong, Peter E Hartmann

    Article Affiliation:

    School of Biomedical, Biomolecular and Chemical Sciences, Faculty of Life and Physical Sciences, M310, The University of Western Australia, 35 Stirling Highway, Crawley, WA 6009, Australia. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    Stem cells in mammary tissue have been well characterised by using the mammary stem cell marker, cytokeratin (CK) 5 and the mature epithelial markers CK14, CK18 and CK19. As these markers have never been reported in cells from breastmilk, the aim of this study has been to determine whether mammary stem cells are present in expressed human breastmilk. Cultured cells from human breastmilk were studied by using immunofluorescent labelling and reverse transcription/polymerase chain reaction (RT-PCR). We found a heterogeneous population of cells with differential expression of CK5, CK14, CK18 and CK19. Further, by using the multipotent stem cell marker, nestin, we identified cells in culture that were positive only for nestin or double-positive for CK5/nestin, whereas no co-staining was observed for CK14, CK18 and CK19 with nestin. When cells isolated from breastmilk were analysed by using RT-PCR prior to culture, only nestin and CK18 were detected, thereby indicating that breastmilk contained differentiated epithelial and putative stem cells. Furthermore, fluorescence-activated cell-sorting analysis demonstrated, in breastmilk, a small side-population of cells that excluded Hoechst 33342 (a key property of multipotent stem cells). When stained for nestin, the cells in the side-population were positive, whereas those not in the side-population were negative. The presence of nestin-positive putative mammary stem cells suggests that human breastmilk is a readily available and non-invasive source of putative mammary stem cells that may be useful for research into both mammary gland biology and more general stem cell biology.

  • Infection of human B lymphocytes with MMR vaccine induces IgE class switching.

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    Abstract Title:

    Infection of human B lymphocytes with MMR vaccine induces IgE class switching.

    Abstract Source:

    Clin Immunol. 2001 Sep ;100(3):355-61. PMID: 11513549

    Abstract Author(s):

    F Imani, K E Kehoe

    Article Affiliation:

    F Imani

    Abstract:

    Circulating immunoglobulin E (IgE) is one of the characteristics of human allergic diseases including allergic asthma. We recently showed that infection of human B cells with rhinovirus or measles virus could lead to the initial steps of IgE class switching. Since many viral vaccines are live viruses, we speculated that live virus vaccines may also induce IgE class switching in human B cells. To examine this possibility, we selected the commonly used live attenuated measles mumps rubella (MMR) vaccine. Here, we show that infection of a human IgM(+) B cell line with MMR resulted in the expression of germline epsilon transcript. In addition, infection of freshly prepared human PBLs with this vaccine resulted in the expression of mature IgE mRNA transcript. Our data suggest that a potential side effect of vaccination with live attenuated viruses may be an increase in the expression of IgE.

  • Investigation of the cytotoxicity of aluminum oxide nanoparticles and nanowires and their localization in L929 fibroblasts and RAW264 macrophages.

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    Abstract Title:

    Investigation of the cytotoxicity of aluminum oxide nanoparticles and nanowires and their localization in L929 fibroblasts and RAW264 macrophages.

    Abstract Source:

    J Biomed Mater Res B Appl Biomater. 2016 Feb ;104(2):241-52. Epub 2015 Feb 26. PMID: 25715832

    Abstract Author(s):

    Masanori Hashimoto, Jun-Ichi Sasaki, Satoshi Imazato

    Article Affiliation:

    Masanori Hashimoto

    Abstract:

    The biological responses of aluminum oxide (Al2 O3 ) nanoparticles (NPs) and nanowires (NWs) in cultured fibroblasts (L929) and macrophages (RAW264) were evaluated from their cytotoxicities and micromorphologic properties. Cultured cells were exposed to Al2 O3 NPs (13 nm diameter) and Al2 O3 NWs (2-6× 200-400 nm). Cytotoxicity and genotoxicity were examined by immunostaining with fluorescence microscopy, and nanomaterial localization was studied by using scanning electron microscopy and transmission electron microscopy. The NPs were cytotoxic and genotoxic, whereas the NWs were not. The scanning electron microscopy images showed that the NPs aggregate more on the cell surface than do the NWs. The transmission electron microscopy images showed that the NPs were internalized into the vesicle and nuclei, for both cell types. In contrast, numerous solid NWs were observed as large aggregatesin vesicles, but not in nuclei. Nuclear damage was confirmed by measuring cell viability and by immunostaining for NPs. The chemical changes induced by the NPs in the vesicles or cells may cause cell damage because of their large surface area per volume. The extent of NW entrapment was not sufficient to lower the viability of either cell type.

  • Modulation of transferrin synthesis, transferrin receptor expression, iNOS expression and NO production in mouse macrophages by cytokines, either alone or in combination.

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    Abstract Title:

    Modulation of transferrin synthesis, transferrin receptor expression, iNOS expression and NO production in mouse macrophages by cytokines, either alone or in combination.

    Abstract Source:

    Anticancer Res. 2000 Sep-Oct;20(5A):3331-8. PMID: 11062761

    Abstract Author(s):

    S Y Ryu, K S Jeong, B N Kang, S J Park, W K Yoon, S H Kim, T H Kim

    Article Affiliation:

    S Y Ryu

    Abstract:

    Iron, an essential element for all living organisms, is central importance in a number of crucial metabolic pathways, including the regulation of immune function. Iron delivery to cells is accomplished by the complexing of iron to transferrin (Tf), a monomeric iron-binding protein in the plasma, followed by specific binding of Tf to cell-surface receptors, endocytosis of the receptor-ligand complexes and ultimately, release of iron from endosomal vesicles to the cytoplasm. The purpose of this study was to evaluate the effect of cytokines, alone and in combination, on the factors that can affect the iron delivery in thioglycollate-elicited macrophages. In this study, IFN gamma induced a marked increase in Tf synthesis by macrophages, while IL-1, IL-6 and TNF alpha produced a more modest increase. Combinations of these cytokines were shown to be less effective in promoting macrophage Tf synthesis than the cytokines by themselves. IFN gamma alone and in combination with other cytokines was effective in inducing nitrite (NO) production and inducible nitric oxide synthetase (iNOS) expression in macrophages, while IL-1, TNF alpha and IL-6 individually, as well as in various combinations, were not. While all tested cytokines individually and in combination inhibited the expression of the transferrin receptor (TfR) on macrophages, IFN gamma alone and in combination with other cytokines most strongly repressed the TfR expression. TfR localization in macrophages after IFN gamma stimulation showed that TfR fluorescence was most intense in the perinuclear region after 6 hours and scattered diffusely throughout the cytoplasm after 24 hours. This data suggests that IFN gamma may enhance iron uptake during the early phase of macrophage activation, and in later phases, down-regulate TfR expression by inducing NO, thus contributing to intracellular oxidative stress reduction.

  • Natural Bis-Benzylisoquinoline Alkaloids-Tetrandrine, Fangchinoline, and Cepharanthine, Inhibit Human Coronavirus OC43 Infection of MRC-5 Human Lung Cells📎

    Abstract Title:

    Natural Bis-Benzylisoquinoline Alkaloids-Tetrandrine, Fangchinoline, and Cepharanthine, Inhibit Human Coronavirus OC43 Infection of MRC-5 Human Lung Cells.

    Abstract Source:

    Biomolecules. 2019 Nov 4 ;9(11). Epub 2019 Nov 4. PMID: 31690059

    Abstract Author(s):

    Dong Eon Kim, Jung Sun Min, Min Seong Jang, Jun Young Lee, Young Sup Shin, Jong Hwan Song, Hyoung Rae Kim, Seungtaek Kim, Young-Hee Jin, Sunoh Kwon

    Article Affiliation:

    Dong Eon Kim

    Abstract:

    and other related species ofare the major sources of the bis-benzylisoquinoline alkaloids tetrandrine (TET), fangchinoline (FAN), and cepharanthine (CEP). Although the pharmacological properties of these compounds include anticancer and anti-inflammatory activities, the antiviral effects of these compounds against human coronavirus (HCoV) remain unclear. Hence, the aims of the current study were to assess the antiviral activities of TET, FAN, and CEP and to elucidate the underlying mechanisms in HCoV-OC43-infected MRC-5 human lung cells. These compounds significantly inhibited virus-induced cell death at the early stage of virus infection. TET, FAN, and CEP treatment dramatically suppressed the replication of HCoV-OC43 as well as inhibited viral S and N protein expression. The virus-induced host response was reduced by compound treatment as compared with the vehicle control. Taken together, these findings demonstrate that TET, FAN, and CEP are potential natural antiviral agents for the prevention and treatment of HCoV-OC43 infection.

  • Natural Bis-Benzylisoquinoline Alkaloids-Tetrandrine, Fangchinoline, and Cepharanthine, Inhibit Human Coronavirus OC43 Infection of MRC-5 Human Lung Cells📎

    Abstract Title:

    Natural Bis-Benzylisoquinoline Alkaloids-Tetrandrine, Fangchinoline, and Cepharanthine, Inhibit Human Coronavirus OC43 Infection of MRC-5 Human Lung Cells.

    Abstract Source:

    Biomolecules. 2019 Nov 4 ;9(11). Epub 2019 Nov 4. PMID: 31690059

    Abstract Author(s):

    Dong Eon Kim, Jung Sun Min, Min Seong Jang, Jun Young Lee, Young Sup Shin, Jong Hwan Song, Hyoung Rae Kim, Seungtaek Kim, Young-Hee Jin, Sunoh Kwon

    Article Affiliation:

    Dong Eon Kim

    Abstract:

    and other related species ofare the major sources of the bis-benzylisoquinoline alkaloids tetrandrine (TET), fangchinoline (FAN), and cepharanthine (CEP). Although the pharmacological properties of these compounds include anticancer and anti-inflammatory activities, the antiviral effects of these compounds against human coronavirus (HCoV) remain unclear. Hence, the aims of the current study were to assess the antiviral activities of TET, FAN, and CEP and to elucidate the underlying mechanisms in HCoV-OC43-infected MRC-5 human lung cells. These compounds significantly inhibited virus-induced cell death at the early stage of virus infection. TET, FAN, and CEP treatment dramatically suppressed the replication of HCoV-OC43 as well as inhibited viral S and N protein expression. The virus-induced host response was reduced by compound treatment as compared with the vehicle control. Taken together, these findings demonstrate that TET, FAN, and CEP are potential natural antiviral agents for the prevention and treatment of HCoV-OC43 infection.

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