CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Anti-Apoptotic

  • Intermittent fasting is neuroprotective in focal cerebral ischemia by minimizing autophagic flux disturbance and inhibiting apoptosis. 📎

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    Abstract Title:

    Intermittent fasting is neuroprotective in focal cerebral ischemia by minimizing autophagic flux disturbance and inhibiting apoptosis.

    Abstract Source:

    Exp Ther Med. 2016 Nov ;12(5):3021-3028. Epub 2016 Oct 31. PMID: 27882110

    Abstract Author(s):

    Ji Heun Jeong, Kwang Sik Yu, Dong Ho Bak, Je Hun Lee, Nam Seob Lee, Young Gil Jeong, Dong Kwan Kim, Jwa-Jin Kim, Seung-Yun Han

    Article Affiliation:

    Ji Heun Jeong

    Abstract:

    Previous studies have demonstrated that autophagy induced by caloric restriction (CR) is neuroprotective against cerebral ischemia. However, it has not been determined whether intermittent fasting (IF), a variation of CR, can exert autophagy-related neuroprotection against cerebral ischemia. Therefore, the neuroprotective effect of IF was evaluated over the course of two weeks in a rat model of focal cerebral ischemia, which was induced by middle cerebral artery occlusion and reperfusion (MCAO/R). Specifically, the role of autophagy modulation as a potential underlying mechanism for this phenomenon was investigated. It was demonstrated that IF reduced infarct volume and brain edema, improved neurobehavioral deficits, and rescued neuronal loss after MCAO/R. Furthermore, neuronal apoptosis was decreased by IF in the rat cortex. An increase in the number of autophagosomes (APs) was demonstrated in the cortices of IF-treated rats, using immunofluorescence staining and transmission electron microscopy. Using immunoblots, an IF-induced increase was detected in microtubule-associated protein 1 light chain 3 (LC3)-II, Rab7, and cathepsin D protein levels, which corroborated previous morphological studies. Notably, IF reduced the accumulation of APs and p62, demonstrating that IF attenuated the MCAO/R-induced disturbance of autophagic flux in neurons. The findings of the present study suggest that IF-induced neuroprotection in focal cerebral ischemia is due, at least in part, to the minimization of autophagic flux disturbance and inhibition of apoptosis.

  • Ketogenic Diet in Alzheimer's Disease. 📎

    Abstract Title:

    Ketogenic Diet in Alzheimer's Disease.

    Abstract Source:

    Int J Mol Sci. 2019 Aug 9 ;20(16). Epub 2019 Aug 9. PMID: 31405021

    Abstract Author(s):

    Marta Rusek, Ryszard Pluta, Marzena Ułamek-Kozioł, Stanisław J Czuczwar

    Article Affiliation:

    Marta Rusek

    Abstract:

    At present, the prevalence of Alzheimer's disease, a devastating neurodegenerative disorder, is increasing. Although the mechanism of the underlying pathology is not fully uncovered, in the last years, there has been significant progress in its understanding. This includes: Progressive deposition of amyloidβ-peptides in amyloid plaques and hyperphosphorylated tau protein in intracellular as neurofibrillary tangles; neuronal loss; and impaired glucose metabolism. Due to a lack of effective prevention and treatment strategy, emerging evidence suggests that dietary and metabolic interventions could potentially target these issues. The ketogenic diet is a very high-fat, low-carbohydrate diet, which has a fasting-like effect bringing the body into a state of ketosis. The presence of ketone bodies has a neuroprotective impact on aging brain cells. Moreover, their production may enhance mitochondrialfunction, reduce the expression of inflammatory and apoptotic mediators. Thus, it has gained interest as a potential therapy for neurodegenerative disorders like Alzheimer's disease. This review aims to examine the role of the ketogenic diet in Alzheimer's disease progression and to outline specificaspects of the nutritional profile providing a rationale for the implementation of dietary interventions as a therapeutic strategy for Alzheimer's disease.

  • Lig-8, a highly bioactive lignophenol derivative from bamboo lignin, exhibits multifaceted neuroprotective activity. 📎

    Abstract Title:

    Lig-8, a highly bioactive lignophenol derivative from bamboo lignin, exhibits multifaceted neuroprotective activity.

    Abstract Source:

    CNS Drug Rev. 2007 Fall;13(3):296-307. PMID: 17894646

    Abstract Author(s):

    Yasushi Ito, Yukihiro Akao, Masamitsu Shimazawa, Norio Seki, Yoshinori Nozawa, Hideaki Hara

    Abstract:

    Lignin is a durable aromatic network polymer that is second only to cellulose in natural abundance. Lig-8, a lignophenol derivative from bamboo lignin, is a highly potent neuroprotectant. It protects human neuroblastoma cells (SH-SY5Y) from hydrogen peroxide (H2O2)-induced apoptosis by preventing caspase-3 activation via either caspase-8 or caspase-9. It exerts this antiapoptotic effect by protecting mitochondrial membrane permeability from damage by H2O2 or the peripheral benzodiazepine receptor ligand PK11195. Lig-8 has been also shown to scavenge the reactive oxygen or nitrogen species in vitro. Furthermore, lig-8 suppresses apoptosis induced by oxygen-glucose deprivation, tunicamycin (endoplasmic reticulum [ER]-stress inducer), or proteasome inhibitor in pheochromocytoma cells. In addition, in vivo, lig-8 reduced intravitreal N-methyl-D-aspartate-induced retinal damage (decreases in retinal ganglion cells and inner plexiform layer thickness) in mice. Lig-8 prevents neuronal damage partly by inhibiting excessive endoplasmic reticulum stress. In this article, we review the protective effects of lig-8 against apoptosis induced by various stimuli. Apoptosis is an active, energy-dependent process through which living cells initiate their own death. It can be induced by a variety of physiological and pharmacological stimuli. Apoptotic cell death is associated with neurodegenerative disorders such as Alzheimer, Parkinson, or Huntington disease as well as glaucoma. We believe that the elucidation of the mechanism of antiapoptotic action of lig-8 may help in finding new approaches to the treatment of neurodegenerative disorders.

  • Light-Emitting Diode (LED) therapy improves occipital cortex damage by decreasing apoptosis and increasing BDNF-expressing cells in methanol-induced toxicity in rats.

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    Abstract Title:

    Light-Emitting Diode (LED) therapy improves occipital cortex damage by decreasing apoptosis and increasing BDNF-expressing cells in methanol-induced toxicity in rats.

    Abstract Source:

    Biomed Pharmacother. 2017 May ;89:1320-1330. Epub 2017 Mar 18. PMID: 28320099

    Abstract Author(s):

    Amir Ghanbari, Majid Ghareghani, Kazem Zibara, Hamdallah Delaviz, Elham Ebadi, Mohammad Hossein Jahantab

    Article Affiliation:

    Amir Ghanbari

    Abstract:

    Methanol-induced retinal toxicity, frequently associated with elevated free radicals and cell edema, is characterized by progressive retinal ganglion cell (RGC) death and vision loss. Previous studies investigated the effect of photomodulation on RGCs, but not the visual cortex. In this study, the effect of 670nm Light-Emitting Diode (LED) therapy on RGCs and visual cortex recovery was investigated in a seven-day methanol-induced retinal toxicity protocol in rats. Methanol administration showed a reduction in the number of RGCs, loss of neurons (neuronal nuclear antigen, NeuN+), activation of glial fibrillary acidic protein (GFAP+) expressing cells, suppression of brain-derived neurotrophic factor (BDNF+) positive cells, increase in apoptosis (caspase 3+) and enhancement of nitric oxide (NO) release in serum and brain. On the other hand, LED therapy significantly reduced RGC death, in comparison to the methanol group. In addition, the number of BDNF positive cells was significantly higher in the visual cortex of LED-treated group, in comparison to methanol-intoxicated and control groups. Moreover, LED therapy caused a significant decrease in cell death (caspase 3+ cells) and a significant reduction in the NO levels, both in serum and brain tissue, in comparison to methanol-intoxicated rats. Overall, LED therapy demonstrated a number of beneficial effects in decreasing oxidative stress and in functional recovery of RGCs and visual cortex. Our data suggest that LED therapy could be a potential condidate as a non-invasive approach for treatment of retinal damage, which needs further clinicl studies.

  • Moderate-intensity exercise training ameliorates the diabetes-suppressed spermatogenesis and improves sperm parameters: Insole and simultaneous with insulin.

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    Abstract Title:

    Moderate-intensity exercise training ameliorates the diabetes-suppressed spermatogenesis and improves sperm parameters: Insole and simultaneous with insulin.

    Abstract Source:

    Andrologia. 2019 Dec ;51(11):e13457. Epub 2019 Oct 23. PMID: 31642094

    Abstract Author(s):

    Zahra Samadian, Asghar Tofighi, Mazdak Razi, Javad Tolouei Azar, Firouz Ghaderi Pakdel

    Article Affiliation:

    Zahra Samadian

    Abstract:

    The current study was conducted to investigate the ameliorative effect of moderate-intensity exercise training insole and simultaneous with insulin on diabetes (DM)-induced pathogenesis at the testicular tissue and sperm level. For this purpose, 36 mature male Wistar rats were divided into six groups, including sedentary control (Con), exercise training (EX), sedentary experimental DM-induced (SDM), exercise training + DM-induced (DM + EX), insulin-treated sedentary DM-induced (DM + INS) and exercise training and insulin-treated DM-induced (DM + INS + EX) groups. Following DM induction, the 6-week exercise training intervention (30 min of moderate-intensity running on a treadmill, once daily [5 days/week]) was considered in EX groups. The tubular differentiation (TDI) and spermiogenesis (SPI) indices, testicular total antioxidant capacity (TAC), superoxide dismutase (SOD) and glutathione peroxidase (GPX) contents, serum testosterone and insulin levels, the apoptosis ratio and sperm parameterswere assessed. The exercise in sole (EX) and simultaneous forms with INS (DM + INS + EX group) ameliorated the DM-suppressed spermatogenesis and spermiogenesis indices, up-regulated the serum testosterone and insulin levels, enhanced testicular SOD content, inhibited the apoptosis and improved almost all sperm parameters. In conclusion, exercise training, when simultaneously considered with insulin, fairly boosts the insulin-induced impacts, including the up-regulated testicular endocrine and antioxidant status, spermatogenesis and sperm quality.

  • Neferine attenuates the protein level and toxicity of mutant huntingtin in PC-12 cells via induction of autophagy. 📎

    Abstract Title:

    Neferine attenuates the protein level and toxicity of mutant huntingtin in PC-12 cells via induction of autophagy.

    Abstract Source:

    Molecules. 2015 ;20(3):3496-514. Epub 2015 Feb 18. PMID: 25699594

    Abstract Author(s):

    Vincent Kam Wai Wong, An Guo Wu, Jing Rong Wang, Liang Liu, Betty Yuen-Kwan Law

    Article Affiliation:

    Vincent Kam Wai Wong

    Abstract:

    Mutant huntingtin aggregation is highly associated with the pathogenesis of Huntington's disease, an adult-onset autosomal dominant disorder, which leads to a loss of motor control and decline in cognitive function. Recent literature has revealed the protective role of autophagy in neurodegenerative diseases through degradation of mutant toxic proteins, including huntingtin or a-synuclein. Through the GFP-LC3 autophagy detection platform, we have identified  neferine,  isolated  from  the  lotus  seed  embryo  of Nelumbo nucifera, which is able to induce autophagy through an AMPK-mTOR-dependent pathway. Furthermore, by overexpressing huntingtin with 74 CAG repeats (EGFP-HTT 74) in PC-12 cells, neferine reduces both the protein level and toxicity of mutant huntingtin through an autophagy-related gene 7 (Atg7)-dependent mechanism. With the variety of novel active compounds present in medicinal herbs, our current study suggests the possible protective mechanism of an autophagy inducer isolated from Chinese herbal medicine, whichis crucial for its further development into a potential therapeutic agent for neurodegenerative disorders in the future.

  • Neuroprotective Effects of Endurance Exercise against High Fat Diet-Induced Hippocampal Neuroinflammation.

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    Abstract Title:

    Neuroprotective Effects of Endurance Exercise against High Fat Diet-Induced Hippocampal Neuroinflammation.

    Abstract Source:

    J Neuroendocrinol. 2016 Mar 16. Epub 2016 Mar 16. PMID: 26991447

    Abstract Author(s):

    Eun-Bum Kang, Jung-Hoon Koo, Yong-Chul Jang, Chun-Ho Yang, Youngil Lee, Ludmilar M Cosio-Lima, Joon-Yong Cho

    Article Affiliation:

    Eun-Bum Kang

    Abstract:

    Obesity contributes to systemic inflammation, associated with various pathogenesis of neurodegenerative diseases. Growing evidence has demonstrated that endurance exercise (EE) mitigate obesity-induced brain inflammation. However, exercise-mediated anti-inflammatory mechanisms remain largely unknown. We investigated how treadmill exercise (TE) reverses obesity-induced brain inflammation, mainly focusing on toll-like receptor-4 (TLR-4)-dependent neuroinflammation in the obese rat brain following 20 weeks of high fat diet (HFD). TE in HFD-fed rats resulted in a significant lowering in HOMA-IR, AUC for glucose and abdominal visceral fat and improved working memory ability in a passive avoidance task relative to sedentary in HFD-fed rats with the exception of body weight. More importantly, TE revoked the increase in HFD-induced proinflammatory cytokines (TNFα and IL-1β) and COX-2, which parallels with reduction in TLR-4 and its downstream proteins, MyD88 and TRAF6 and phosphorylation of TAK-1, IkBα and NF-κB. Moreover, TE reduced an indicator of microglia activation, IBA-1 as well as decreased GFAP, an indicator of gliosis formed by activated astrocytes in the cerebral cortex and the hippocampal dentate gyrus (DG), compared to HFD-fed sedentary rats. Finally, EE upregulated the expression of anti-apoptotic protein, Bcl-2 and suppressed the expression of pro-apoptotic protein, Bax in the hippocampus compared to HFD-fed sedentary rats. Taken together, these data suggest that TE may exert neuroprotective effects by mitigating the production of proinflammatory cytokines by inhibiting the TLR4 signaling pathways. This study suggest that the unique combination of TE's beneficial effects on the restoration of blood profile and anti-inflammatory and anti-apoptotic effects on cognitive function should inspire further investigation of its therapeutic potential for metabolic disorder and neurodegenerative diseases. This article is protected by copyright. All rights reserved.

  • Photobiomodulation therapy reduces apoptotic factors and increases glutathione levels in a neuropathic pain model.

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    Abstract Title:

    Photobiomodulation therapy reduces apoptotic factors and increases glutathione levels in a neuropathic pain model.

    Abstract Source:

    Lasers Med Sci. 2016 Dec ;31(9):1863-1869. Epub 2016 Sep 17. PMID: 27640000

    Abstract Author(s):

    Atousa Janzadeh, Farinaz Nasirinezhad, Masoume Masoumipoor, Seyed Behnameldin Jameie, Parisa Hayat

    Article Affiliation:

    Atousa Janzadeh

    Abstract:

    Neuropathic pain (NP) is caused by damage to the nervous system due to reactive oxygen spices (ROS) increase, antioxidants reduction, ATP production imbalance, and induction of apoptosis. In this investigation, we applied low-level laser 660 nm (photobiomodulation therapy) as a new strategy to modulate pain. In order to study the effects of photobiomodulation therapy (660 nm) on NP, chronic constriction injury (CCI) model was selected. Low-level laser of 660 nm was used for 2 weeks. Thermal and mechanical hyperalgesia were measuredbefore and after surgery on days 7 and 14, respectively. Paw withdrawal thresholds were also evaluated. Expression of p2x3, Bax, and bcl2 protein was measured by western blotting. The amount of glutathione (GSH) was measured in the spinal cord by continuous spectrophotometric rate determination method. The results are presented as mean ± SD. Statistical analysis of data was carried out using SPSS 21. CCI decreased the pain threshold, 2-week photobiomodulation therapy significantly increased mechanical and thermal threshold, decreased P2X3 expression (p < 0.001), and increased bcl2 expression (p < 0.01), but it was not effective on the Bax expression. We speculated that although photobiomodulation therapy increased ROS generation, it increased antioxidants such as GSH. Increase in bcl2 is another mitochondrial protection mechanism for cell survival and that pain relief and decrease in P2X3expression confirm it.

  • Polyphenol supplementation alters intramuscular apoptotic signaling following acute resistance exercise📎

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    Abstract Title:

    Polyphenol supplementation alters intramuscular apoptotic signaling following acute resistance exercise.

    Abstract Source:

    Physiol Rep. 2018 Jan ;6(2). PMID: 29380956

    Abstract Author(s):

    Jeremy R Townsend, Jeffrey R Stout, Adam R Jajtner, David D Church, Kyle S Beyer, Joshua J Riffe, Tyler W D Muddle, Kelli L Herrlinger, David H Fukuda, Jay R Hoffman

    Article Affiliation:

    Jeremy R Townsend

    Abstract:

    The purpose of this study was to examine the effects of 28-days of supplementation with an aqueous proprietary polyphenol blend (PPB) sourced from Camellia sinensis on intramuscular apoptotic signaling following an acute lower-body resistance exercise protocol and subsequent recovery. Untrained males (n = 38, 21.8 Â± 2.7 years, 173.4 Â± 7.9 cm, 77.6 Â± 14.6 kg) were randomized to PPB (n = 14), placebo (PL; n = 14) or control (CON; n = 10). Participants completed a lower-body resistance exercise protocol comprised of the squat, leg press, and leg extension exercises. Skeletal muscle microbiopsies were obtained from the vastus lateralis preexercise (PRE), 1-h (1HR), 5-h (5HR), and 48-h (48HR) post-resistance exercise. Apoptotic signaling pathways were quantified using multiplex signaling assay kits to quantify total proteins (Caspase 3, 8, 9) and markers of phosphorylation status (JNK, FADD, p53, BAD, Bcl-2). Changes in markers of muscle damage and intramuscular signaling were analyzed via separate repeated measures analysis of variance (ANOVA). Change in Bcl-2 phosphorylation at 1H was significantly greater in PL compared to CON (P = 0.001). BAD phosphorylation was significantly elevated at 5H in PL compared to PPB (P = 0.015) and CON (P = 0.006). The change in JNK phosphorylation was significantly greater in PPB (P = 0.009), and PL (P = 0.017) compared to CON at 1H, while the change for PL was elevated compared to CON at 5H (P = 0.002). A main effectwas observed (P < 0.05) at 1H, 5H, and 48H for p53 and Caspase 8, with Caspase 3 and Caspase 9 elevated at 48H. These data indicate that chronic supplementation with PPB alters apoptotic signaling in skeletal muscle following acute muscle-damaging resistance exercise.

  • Polyphenol supplementation alters intramuscular apoptotic signaling following acute resistance exercise📎

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    Abstract Title:

    Polyphenol supplementation alters intramuscular apoptotic signaling following acute resistance exercise.

    Abstract Source:

    Physiol Rep. 2018 Jan ;6(2). PMID: 29380956

    Abstract Author(s):

    Jeremy R Townsend, Jeffrey R Stout, Adam R Jajtner, David D Church, Kyle S Beyer, Joshua J Riffe, Tyler W D Muddle, Kelli L Herrlinger, David H Fukuda, Jay R Hoffman

    Article Affiliation:

    Jeremy R Townsend

    Abstract:

    The purpose of this study was to examine the effects of 28-days of supplementation with an aqueous proprietary polyphenol blend (PPB) sourced from Camellia sinensis on intramuscular apoptotic signaling following an acute lower-body resistance exercise protocol and subsequent recovery. Untrained males (n = 38, 21.8 Â± 2.7 years, 173.4 Â± 7.9 cm, 77.6 Â± 14.6 kg) were randomized to PPB (n = 14), placebo (PL; n = 14) or control (CON; n = 10). Participants completed a lower-body resistance exercise protocol comprised of the squat, leg press, and leg extension exercises. Skeletal muscle microbiopsies were obtained from the vastus lateralis preexercise (PRE), 1-h (1HR), 5-h (5HR), and 48-h (48HR) post-resistance exercise. Apoptotic signaling pathways were quantified using multiplex signaling assay kits to quantify total proteins (Caspase 3, 8, 9) and markers of phosphorylation status (JNK, FADD, p53, BAD, Bcl-2). Changes in markers of muscle damage and intramuscular signaling were analyzed via separate repeated measures analysis of variance (ANOVA). Change in Bcl-2 phosphorylation at 1H was significantly greater in PL compared to CON (P = 0.001). BAD phosphorylation was significantly elevated at 5H in PL compared to PPB (P = 0.015) and CON (P = 0.006). The change in JNK phosphorylation was significantly greater in PPB (P = 0.009), and PL (P = 0.017) compared to CON at 1H, while the change for PL was elevated compared to CON at 5H (P = 0.002). A main effectwas observed (P < 0.05) at 1H, 5H, and 48H for p53 and Caspase 8, with Caspase 3 and Caspase 9 elevated at 48H. These data indicate that chronic supplementation with PPB alters apoptotic signaling in skeletal muscle following acute muscle-damaging resistance exercise.

  • Prevents DEHP-Induced Mitochondrial Dysfunction and Apoptosis in PC12 Cells📎

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    Abstract Title:

    Prevents DEHP-Induced Mitochondrial Dysfunction and Apoptosis in PC12 Cells.

    Abstract Source:

    Int J Mol Sci. 2020 Mar 20 ;21(6). Epub 2020 Mar 20. PMID: 32244920

    Abstract Author(s):

    Ines Amara, Maria Scuto, Agata Zappalà, Maria Laura Ontario, Antonio Petralia, Salwa Abid-Essefi, Luigi Maiolino, Anna Signorile, Angela Trovato Salinaro, Vittorio Calabrese

    Article Affiliation:

    Ines Amara

    Abstract:

    (HE) is a medicinal plant known to possess anticarcinogenic, antibiotic, and antioxidant activities. It has been shown to have a protective effect against ischemia-injury-induced neuronal cell death in rats. As an extending study, here we examined in pheochromocytoma 12 (PC12) cells, whether HE could exert a protective effect against oxidative stress and apoptosis induced by di(2-ethylhexyl)phthalate (DEHP), a plasticizer known to cause neurotoxicity. We demonstrated that pretreatment with HE significantly attenuated DEHP induced cell death. This protective effect may be attributed to its ability to reduce intracellular reactive oxygen species levels, preserving the activity of respiratory complexes and stabilizing the mitochondrial membrane potential. Additionally, HE pretreatment significantly modulated Nrf2 and Nrf2-dependent vitagenes expression, preventing the increase of pro-apoptotic and the decrease of anti-apoptotic markers. Collectively, our data provide evidence of new preventive nutritional strategy using HE against DEHP-induced apoptosis in PC12 cells.

  • Remission effect of vitamin C on isoflurane-induced apoptosis and its mechanism.

    Abstract Title:

    Remission effect of vitamin C on isoflurane-induced apoptosis and its mechanism.

    Abstract Source:

    J Biol Regul Homeost Agents. 2016 Oct-Dec;30(4):961-969. PMID: 28078842

    Abstract Author(s):

    J Hu, B F Gao, H Q Li, Z Z Zhang, Y L Lei, G Q Sun, D M Guo

    Article Affiliation:

    J Hu

    Abstract:

    This study aims to discuss the remission effect of vitamin C on isoflurane-induced apoptosis of rats and its possible mechanism of action, to provide a theoretical basis for postoperative cognitive impairment. Reactive oxygen species (ROS) detection, adenosine triphosphate (ATP) test, MTT method and Morris water maze were applied for detection tests. For data statistics, double factor analysis of variance (ANOVA) and post hoc Bonferroni test were adopted. It was found that vitamin C could slow down the isoflurane-induced accumulation of ROS in H4-APP cells; moreover, it could relieve the activation of caspase-3 and increase cell survival rate to inhibit the occurrence of apoptosis, indicating that ROS was the source of cell toxicity. On the other hand, vitamin C could protect the cells with its antioxidant effect. It was proved that vitamin C could remit isoflurane-induced apoptosis and relieve the decline in learning and memory ability of rats.

  • Subthreshold Concentrations of Melatonin and Galantamine Improves Pathological AD-Hallmarks in Hippocampal Organotypic Cultures.

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    Abstract Title:

    Subthreshold Concentrations of Melatonin and Galantamine Improves Pathological AD-Hallmarks in Hippocampal Organotypic Cultures.

    Abstract Source:

    Mol Neurobiol. 2015 Jun 17. Epub 2015 Jun 17. PMID: 26081146

    Abstract Author(s):

    I Buendia, E Parada, E Navarro, R León, P Negredo, J Egea, M G López

    Article Affiliation:

    I Buendia

    Abstract:

    Melatonin is a neurohormone whose levels are significantly reduced or absent in Alzheimer's disease (AD) patients. In these patients, acetylcholinesterase inhibitors (AChEI) are the major drug class used for their treatment; however, they present unwanted cholinergic side effects and have provided limited efficacy in clinic. Because combination therapy is being extensively used to treat different pathological diseases such as cancer or acquired immune deficiency syndrome, we posed this study to evaluate if melatonin in combination with an AChEI, galantamine, could provide beneficial properties in a novel in vitro model of AD. Thus, we subjected organotypic hippocampal cultures (OHCs) to subtoxic concentrations ofβ-amyloid (0.5 Î¼M βA) plus okadaic acid (1 nM OA), for 4 days. This treatment increased by 95 % cell death, which was mainly apoptotic as shown by positive TUNEL staining. In addition, the combination of βA/OA increased Thioflavin S aggregates, hyperphosphorylation of Tau, oxidative stress (increased DCFDA fluorescence), and neuroinflammation (increased IL-1β and TNFα). Under these experimental conditions, melatonin (1-1000 nM) and galantamine (10-1000 nM), co-incubated with the toxic stimuli, caused a concentration-dependent neuroprotection; maximal neuroprotective effect was achieved at 1 Î¼M of melatonin and galantamine. Most effective was the finding that combination of sub-effective concentrations of melatonin (1 nM) and galantamine (10 nM) provided a synergic anti-apoptotic effect and reduction of most of the AD-related pathological hallmarks observed in the βA/OA model. Therefore, we suggest that supplementation of melatonin in combination with lower doses of AChEIs could be an interesting strategy for AD patients.

  • The Potential of Flavonoids for the Treatment of Neurodegenerative Diseases. 📎

    Abstract Title:

    The Potential of Flavonoids for the Treatment of Neurodegenerative Diseases.

    Abstract Source:

    Int J Mol Sci. 2019 Jun 22 ;20(12). Epub 2019 Jun 22. PMID: 31234550

    Abstract Author(s):

    Pamela Maher

    Article Affiliation:

    Pamela Maher

    Abstract:

    Neurodegenerative diseases, including Alzheimer's disease (AD), Parkinson's disease (PD), Huntington's disease (HD), and amyotrophic lateral sclerosis (ALS), currently affect more than 6 million people in the United States. Unfortunately, there are no treatments that slow or prevent disease development and progression. Regardless of the underlying cause of the disorder, age is the strongest risk factor for developing these maladies, suggesting that changes that occur in the aging brain put it at increased risk for neurodegenerative disease development. Moreover, since there are a number of different changes that occur in the aging brain, it is unlikely that targeting a single change is going to be effective for disease treatment. Thus, compounds that have multiple biological activities that can impact the various age-associated changes in the brain that contribute to neurodegenerative disease development and progression are needed. The plant-derived flavonoids have a wide range of activities that could make them particularly effective for blocking the age-associated toxicity pathways associated with neurodegenerative diseases. In this review, the evidence for beneficial effects of multiple flavonoids in models of AD, PD, HD, and ALS is presented and common mechanisms of action are identified. Overall, the preclinical data strongly support further investigation of specific flavonoids for the treatment of neurodegenerative diseases.

  • The Protective Effect of Brown-, Gray-, and Blue-Tinted Lenses against Blue LED Light-Induced Cell Death in A2E-Laden Human Retinal Pigment Epithelial Cells.

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    Abstract Title:

    The Protective Effect of Brown-, Gray-, and Blue-Tinted Lenses against Blue LED Light-Induced Cell Death in A2E-Laden Human Retinal Pigment Epithelial Cells.

    Abstract Source:

    Ophthalmic Res. 2017 ;57(2):118-124. Epub 2016 Nov 24. PMID: 27880954

    Abstract Author(s):

    Sang-Il Park, Young Pyo Jang

    Article Affiliation:

    Sang-Il Park

    Abstract:

    A2E-laden ARPE-19 cells were exposed to a blue light to induce cytotoxicity, in order to investigate the protective effects of various tinted ophthalmic lenses against photo-induced cytotoxicity in human retinal pigment epithelial (RPE) cells laden with A2E, known to be among the etiologies of age-related macular degeneration (AMD). Different-colored tinted lenses with varying levels of tint and different filtering characteristics, such as polarized, blue-cut, and photochromatic lenses, were placed over the cells, and the protective efficacies thereof were evaluated by lactate dehydrogenase assay. When tinted lenses were placed over ARPE-19 cells, there were different reductions in cytotoxicity according to the colors and tint levels. The level of protection afforded by brown-tinted lenses was 6.9, 36.1, and 49% with a tint level of 15, 50, and 80%, respectively. For gray-tinted lenses, the protective effect was 16.3, 35, and 43.4% for the corresponding degree of tint, respectively. In the case of blue-tinted lenses, a protective effect of 20% was observed with 80% tinted lenses, but 15 and 50% tinted lenses provided no significant protection. In addition, photochromic lenses showed a protective effect but blue-cut lenses and polarized lenses provided no significant protection. Tinted lenses significantly reduced cytotoxicity in RPE cells irradiated with blue light. The protection was more efficient in lenses with a brown or gray tint than in blue-tinted lenses. Tinted glasses may provide significant protection against potential blue-light-induced photochemical and photo-oxidative damage in RPE cells.

  • The Unexpected Uses of Urso- and Tauroursodeoxycholic Acid in the Treatment of Non-liver Diseases. 📎

    Abstract Title:

    The Unexpected Uses of Urso- and Tauroursodeoxycholic Acid in the Treatment of Non-liver Diseases.

    Abstract Source:

    Glob Adv Health Med. 2014 May ;3(3):58-69. PMID: 24891994

    Abstract Author(s):

    Sheila Vang, Katie Longley, Clifford J Steer, Walter C Low

    Article Affiliation:

    Sheila Vang

    Abstract:

    v is the taurine conjugate of ursodeoxycholic acid (UDCA), a US Food and Drug Administration-approved hydrophilic bile acid for the treatment of certain cholestatic liver diseases. There is a growing body of research on the mechanism(s) of TUDCA and its potential therapeutic effect on a wide variety of non-liver diseases. Both UDCA and TUDCA are potent inhibitors of apoptosis, in part by interfering with the upstream mitochondrial pathway of cell death, inhibiting oxygen-radical production, reducing endoplasmic reticulum (ER) stress, and stabilizing the unfolded protein response (UPR). Several studies have demonstrated that TUDCA serves as an anti-apoptotic agent for a number of neurodegenerative diseases, including amyotrophic lateral sclerosis, Alzheimer's disease, Parkinson's disease, and Huntington's disease. In addition, TUDCA plays an important role in protecting against cell death in certain retinal disorders, such as retinitis pigmentosa. It has been shown to reduce ER stress associated with elevated glucose levels in diabetes by inhibiting caspase activation, up-regulating the UPR, and inhibiting reactive oxygen species. Obesity, stroke, acute myocardial infarction, spinal cord injury, and a long list of acute and chronic non-liver diseases associated with apoptosis are all potential therapeutic targets for T/UDCA. A growing number of pre-clinical and clinical studies underscore the potential benefit of this simple, naturally occurring bile acid, which has been used in Chinese medicine for more than 3000 years.

  • Treadmill exercise ameliorates symptoms of Alzheimer disease through suppressing microglial activation-induced apoptosis in rats📎

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    Abstract Title:

    Treadmill exercise ameliorates symptoms of Alzheimer disease through suppressing microglial activation-induced apoptosis in rats.

    Abstract Source:

    J Exerc Rehabil. 2016 Dec ;12(6):526-534. Epub 2016 Dec 31. PMID: 28119873

    Abstract Author(s):

    Seung-Soo Baek, Sang-Hoon Kim

    Article Affiliation:

    Seung-Soo Baek

    Abstract:

    Alzheimer disease (AD) is a most common form of dementia and eventually causes impairments of learning ability and memory function. In the present study, we investigated the effects of treadmill exercise on the symptoms of AD focusing on the microglial activation-induced apoptosis. AD was made by bilateral intracerebroventricular injection of streptozotocin. The rats in the exercise groups were made to run on a treadmill once a day for 30 min during 4 weeks. The distance and latency in the Morris water maze task and the latency in the step-down avoidance task were increased in the AD rats, in contrast, treadmill exercise shortened these parameters. The numbers of terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling-positive and caspase-3-positive cells in the hippocampal dentate gyrus were decreased in the AD rats, in contrast, treadmill exercise suppressed these numbers. Expressions of glial fibrillary acidic protein (GFAP) and cluster of differentiation molecule 11B (CD11b) in the hippocampal dentate gyrus were increased in the AD rats, in contrast, treadmill exercise suppressed GFAP and CD11b expressions. Bax expression was increased and Bcl-2 expression was decreased in the hippocampus of AD rats, in contrast, treadmill exercise decreased Bax expression and increased Bcl-2 expression. The present results demonstrated that treadmill exercise ameliorated AD-induced impairments of spatial learning ability and short-term memory through suppressing apoptosis. The antiapoptotic effect of treadmill exercise might be ascribed to the inhibitory effect of treadmill exercise on microglial activation.

  • Vitamin C and Vitamin E Protected B95-8 and Balb/c-3T3 Cells from Apoptosis Induced by Intermittent 50Hz ELF-EMF Radiation. 📎

    Abstract Title:

    Vitamin C and Vitamin E Protected B95-8 and Balb/c-3T3 Cells from Apoptosis Induced by Intermittent 50Hz ELF-EMF Radiation.

    Abstract Source:

    Iran J Public Health. 2017 Jan ;46(1):23-34. PMID: 28451526

    Abstract Author(s):

    Zhen Ding, Jintao Li, Fan Li, Mohammadreza Mohammadzad Mephryar, Shuicai Wu, Chen Zhang, Yi Zeng

    Article Affiliation:

    Zhen Ding

    Abstract:

    BACKGROUND:The extremely low-frequency electromagnetic field (ELF-EMF), mainly emitted by electric transmission lines and household electronic appliances, is becoming a worldwide health risk. It is imperative to investigate the biological impacts of ELF-EMF and to identify products that are resistant to the radiation from 50 Hz ELF-EMF. In this study, we investigated the biological impacts of apoptosis caused by 50 Hz Power line ELF-EMF and the protective effects of Vit C and Vit E.

    METHODS:We conducted this study in Beijing, China in 2013. B95-8 and Balb/c-3T3 cells were divided into a sham group, an expo group and 3 expo groups in which the cells were preincubated with various concentrations of Vit C and Vit E. Then, all of the cells were exposed to 50 Hz Power line ELF-EMF and examined for apoptosis. The cells were collected for apoptosis detection after exposure.

    RESULTS:The percent of cells that undergoing apoptosis and preincubated with various concentrations of Vit C and Vit E were significantly lower than in the Expo group.

    CONCLUSION:Vit C and Vit E exert significant protective effects from 50 Hz ELF-EMF radiation. The optimal protective concentrations of Vit C and Vit E are 10μmol/L and 25 μmol/L, respectively. The protective effect of vitamins was more apparent for Balb/c-3T3 cells than B95-8 cells.

  • Vitamin C attenuates negative effects of vitrification on sperm parameters, chromatin quality, apoptosis and acrosome reaction in neat and prepared normozoospermic samples. 📎

    Abstract Title:

    Vitamin C attenuates negative effects of vitrification on sperm parameters, chromatin quality, apoptosis and acrosome reaction in neat and prepared normozoospermic samples.

    Abstract Source:

    Taiwan J Obstet Gynecol. 2018 Apr ;57(2):200-204. PMID: 29673661

    Abstract Author(s):

    Esmat Mangoli, Ali Reza Talebi, Morteza Anvari, Fatemeh Taheri, Mahboobeh Vatanparast, Tahereh Rahiminia, Akram Hosseini

    Article Affiliation:

    Esmat Mangoli

    Abstract:

    OBJECTIVE:Aim of this study was to evaluate the effects of vitamin C on sperm parameters, sperm chromatin quality and apoptosis resulted of vitrification in neat semen and prepared spermatozoa of normozoospermic samples.

    MATERIAL AND METHODS:Forty semen samples from normozoospermic men were included in this prospective study. Each sample was divided into five groups. Group I: control or fresh semen, group II: semen prepared by swim-up method and then vitrified, group III: neat semen was vitrified, group IV: vitamin C (600 Î¼M) was added to prepared spermatozoa and then vitrified and group V: vitamin C (600 Î¼M) was added to neat semen and then vitrified. After warming, sperm analysis was done accordingly. For evaluating the sperm chromatin/DNA integrity status and acrosome reaction, we used toluidine blue (TB), acridine orange (AO), terminal transferase mediated deoxyuridine triphosphate biotin end labeling (TUNEL) and double staining tests.

    RESULTS:All of the sperm parameters (count, motility, morphology and viability) had significant differences (P < 0.05) between different groups, especially in group IV. Data showed sperm chromatin damages and acrosome reaction abnormality increased resulted of vitrification, but, in the groups that added vitamin C (IV, V) rate of damages was decreased and this was notable in the group IV.

    CONCLUSION:Vitamin C can attenuate the detrimental effects of vitrification on sperm parameters, chromatin quality and rate of apoptosis in both neat semen and prepared spermatozoa of normozoospermic samples.