CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Emodin

  • Aloe-emodin-mediated photodynamic therapy induces autophagy and apoptosis in human osteosarcoma cell line MG‑63 through the ROS/JNK signaling pathway. 📎

    facebook Share on Facebook
    Abstract Title:

    Aloe-emodin-mediated photodynamic therapy induces autophagy and apoptosis in human osteosarcoma cell line MG‑63 through the ROS/JNK signaling pathway.

    Abstract Source:

    Oncol Rep. 2016 Mar 24. Epub 2016 Mar 24. PMID: 27035222

    Abstract Author(s):

    Pinghua Tu, Qiu Huang, Yunsheng Ou, Xing Du, Kaiting Li, Yong Tao, Hang Yin

    Article Affiliation:

    Pinghua Tu

    Abstract:

    The present study was carried out to investigate the effect and mechanisms of aloe‑emodin (AE)-mediated photodynamic therapy (AE-PDT) on the human osteosarcoma cell line MG-63. After treatment with AE-PDT, the human osteosarcoma cell line MG-63 was tested for levels of viability, autophagy, reactive oxygen species (ROS) and apoptosis and changes in cell morphology with the CellCounting Kit-8 (CCK‑8), monodansylcadaverine (MDC) and Hoechst staining and transmission electron microscopy. The expression of proteins including LC-3, cleaved caspase-3, Beclin-1, Bcl-2, p-JNK, t-JNK and β-actin was examined with western blotting. AE-PDT significantly inhibited the viability of the MG-63 cells in an AE-concentration- and PDT energy density-dependent manner. Autophagy and apoptosis of MG-63 cells was substantially promoted in the AE-PDT group compared to the control group, the AE alone group and the light emitting diode (LED) alone group. Inhibition of autophagy by 3-methyladenine (3-MA) (5 mM) and chloroquine (CQ) (15 µM) significantly promoted the apoptosis rate and improved the sensitivity of the MG-63 cells to AE-PDT. AE-PDT was found to induce the expression of ROS and p-JNK. ROS scavenger, N-acetyl-L-cysteine (NAC, 5 mM), was able to hinder the autophagy,apoptosis and phosphorylation of JNK, and JNK inhibitor (SP600125, 10 µM) significantly inhibited the autophagy and apoptosis, and attenuated the sensitivity of MG63 cells to AE-PDT. In conclusion, AE-PDT induced the autophagy and apoptosis of human osteosarcoma cell line MG-63 through the activation of the ROS-JNK signaling pathway. Autophagy may play a protective role during the early stage following treatment of AE-PDT.

  • Aloe-emodin-mediated photodynamic therapy induces autophagy and apoptosis in human osteosarcoma cell line MG‑63 through the ROS/JNK signaling pathway. 📎

    facebook Share on Facebook
    Abstract Title:

    Aloe-emodin-mediated photodynamic therapy induces autophagy and apoptosis in human osteosarcoma cell line MG‑63 through the ROS/JNK signaling pathway.

    Abstract Source:

    Oncol Rep. 2016 Mar 24. Epub 2016 Mar 24. PMID: 27035222

    Abstract Author(s):

    Pinghua Tu, Qiu Huang, Yunsheng Ou, Xing Du, Kaiting Li, Yong Tao, Hang Yin

    Article Affiliation:

    Pinghua Tu

    Abstract:

    The present study was carried out to investigate the effect and mechanisms of aloe‑emodin (AE)-mediated photodynamic therapy (AE-PDT) on the human osteosarcoma cell line MG-63. After treatment with AE-PDT, the human osteosarcoma cell line MG-63 was tested for levels of viability, autophagy, reactive oxygen species (ROS) and apoptosis and changes in cell morphology with the CellCounting Kit-8 (CCK‑8), monodansylcadaverine (MDC) and Hoechst staining and transmission electron microscopy. The expression of proteins including LC-3, cleaved caspase-3, Beclin-1, Bcl-2, p-JNK, t-JNK and β-actin was examined with western blotting. AE-PDT significantly inhibited the viability of the MG-63 cells in an AE-concentration- and PDT energy density-dependent manner. Autophagy and apoptosis of MG-63 cells was substantially promoted in the AE-PDT group compared to the control group, the AE alone group and the light emitting diode (LED) alone group. Inhibition of autophagy by 3-methyladenine (3-MA) (5 mM) and chloroquine (CQ) (15 µM) significantly promoted the apoptosis rate and improved the sensitivity of the MG-63 cells to AE-PDT. AE-PDT was found to induce the expression of ROS and p-JNK. ROS scavenger, N-acetyl-L-cysteine (NAC, 5 mM), was able to hinder the autophagy,apoptosis and phosphorylation of JNK, and JNK inhibitor (SP600125, 10 µM) significantly inhibited the autophagy and apoptosis, and attenuated the sensitivity of MG63 cells to AE-PDT. In conclusion, AE-PDT induced the autophagy and apoptosis of human osteosarcoma cell line MG-63 through the activation of the ROS-JNK signaling pathway. Autophagy may play a protective role during the early stage following treatment of AE-PDT.

  • Anti-SARS coronavirus 3C-like protease effects of Isatis indigotica root and plant-derived phenolic compounds.

    Abstract Title:

    Anti-SARS coronavirus 3C-like protease effects of Isatis indigotica root and plant-derived phenolic compounds.

    Abstract Source:

    Antiviral Res. 2005 Oct ;68(1):36-42. PMID: 16115693

    Abstract Author(s):

    Cheng-Wen Lin, Fuu-Jen Tsai, Chang-Hai Tsai, Chien-Chen Lai, Lei Wan, Tin-Yun Ho, Chang-Chi Hsieh, Pei-Dawn Lee Chao

    Article Affiliation:

    Cheng-Wen Lin

    Abstract:

    The 3C-like protease (3CLpro) of SARS-coronavirus mediates the proteolytic processing of replicase polypeptides 1a and 1ab into functional proteins, becoming an important target for the drug development. In this study, Isatis indigotica root extract, five major compounds of I. indigotica root, and seven plant-derived phenolic compounds were tested for anti-SARS-CoV 3CLpro effects using cell-free and cell-based cleavage assays. Cleavage assays with the 3CLpro demonstrated that IC50 values were in micromolar ranges for I. indigotica root extract, indigo, sinigrin, aloe emodin and hesperetin. Sinigrin (IC50: 217 microM) was more efficient in blocking the cleavage processing of the 3CLpro than indigo (IC50: 752 microM) and beta-sitosterol (IC50: 1210 microM) in the cell-based assay. Only two phenolic compounds aloe emodin and hesperetin dose-dependently inhibited cleavage activity of the 3CLpro, in which the IC50 was 366 microM for aloe emodin and 8.3 microM for hesperetin in the cell-based assay.

  • Anti-SARS coronavirus 3C-like protease effects of Isatis indigotica root and plant-derived phenolic compounds.

    Abstract Title:

    Anti-SARS coronavirus 3C-like protease effects of Isatis indigotica root and plant-derived phenolic compounds.

    Abstract Source:

    Antiviral Res. 2005 Oct ;68(1):36-42. PMID: 16115693

    Abstract Author(s):

    Cheng-Wen Lin, Fuu-Jen Tsai, Chang-Hai Tsai, Chien-Chen Lai, Lei Wan, Tin-Yun Ho, Chang-Chi Hsieh, Pei-Dawn Lee Chao

    Article Affiliation:

    Cheng-Wen Lin

    Abstract:

    The 3C-like protease (3CLpro) of SARS-coronavirus mediates the proteolytic processing of replicase polypeptides 1a and 1ab into functional proteins, becoming an important target for the drug development. In this study, Isatis indigotica root extract, five major compounds of I. indigotica root, and seven plant-derived phenolic compounds were tested for anti-SARS-CoV 3CLpro effects using cell-free and cell-based cleavage assays. Cleavage assays with the 3CLpro demonstrated that IC50 values were in micromolar ranges for I. indigotica root extract, indigo, sinigrin, aloe emodin and hesperetin. Sinigrin (IC50: 217 microM) was more efficient in blocking the cleavage processing of the 3CLpro than indigo (IC50: 752 microM) and beta-sitosterol (IC50: 1210 microM) in the cell-based assay. Only two phenolic compounds aloe emodin and hesperetin dose-dependently inhibited cleavage activity of the 3CLpro, in which the IC50 was 366 microM for aloe emodin and 8.3 microM for hesperetin in the cell-based assay.

  • Emodin blocks the SARS coronavirus spike protein and angiotensin-converting enzyme 2 interaction📎

    Abstract Title:

    Emodin blocks the SARS coronavirus spike protein and angiotensin-converting enzyme 2 interaction.

    Abstract Source:

    Antiviral Res. 2007 May;74(2):92-101. Epub 2006 May 15. PMID: 16730806

    Abstract Author(s):

    Tin-Yun Ho, Shih-Lu Wu, Jaw-Chyun Chen, Chia-Cheng Li, Chien-Yun Hsiang

    Abstract:

    Severe acute respiratory syndrome (SARS) is an emerging infectious disease caused by a novel coronavirus (SARS-CoV). SARS-CoV spike (S) protein, a type I membrane-bound protein, is essential for the viral attachment to the host cell receptor angiotensin-converting enzyme 2 (ACE2). By screening 312 controlled Chinese medicinal herbs supervised by Committee on Chinese Medicine and Pharmacy at Taiwan, we identified that three widely used Chinese medicinal herbs of the family Polygonaceae inhibited the interaction of SARS-CoV S protein and ACE2. The IC(50) values for Radix et Rhizoma Rhei (the root tubers of Rheum officinale Baill.), Radix Polygoni multiflori (the root tubers of Polygonum multiflorum Thunb.), and Caulis Polygoni multiflori (the vines of P. multiflorum Thunb.) ranged from 1 to 10. Emodin, an anthraquinone compound derived from genus Rheum and Polygonum, significantly blocked the S protein and ACE2 interaction in a dose-dependent manner. It also inhibited the infectivity of S protein-pseudotyped retrovirus to Vero E6 cells. These findings suggested that emodin may be considered as a potential lead therapeutic agent in the treatment of SARS.

  • Emodin inhibits current through SARS-associated coronavirus 3a protein📎

    Abstract Title:

    Emodin inhibits current through SARS-associated coronavirus 3a protein.

    Abstract Source:

    Antiviral Res. 2011 Apr ;90(1):64-9. Epub 2011 Feb 26. PMID: 21356245

    Abstract Author(s):

    Silvia Schwarz, Kai Wang, Wenjing Yu, Bing Sun, Wolfgang Schwarz

    Article Affiliation:

    Silvia Schwarz

    Abstract:

    The open-reading-frame 3a of SARS coronavirus (SARS-CoV) had been demonstrated previously to form a cation-selective channel that may become expressed in the infected cell and is then involved in virus release. Drugs that inhibit the ion channel formed by the 3a protein can be expected to inhibit virus release, and would be a source for the development of novel therapeutic agents. Here we demonstrate that emodin can inhibit the 3a ion channel of coronavirus SARS-CoV and HCoV-OC43 as well as virus release from HCoV-OC43 with a K1/2 value of about 20μM. We suggest that viral ion channels, in general, may be a good target for the development of antiviral agents.

  • Exploring a novel target treatment on breast cancer: aloe-emodin mediated photodynamic therapy induced cell apoptosis and inhibited cell metastasis.

    facebook Share on Facebook
    Abstract Title:

    Exploring a novel target treatment on breast cancer: aloe-emodin mediated photodynamic therapy induced cell apoptosis and inhibited cell metastasis.

    Abstract Source:

    Anticancer Agents Med Chem. 2015 Aug 20. Epub 2015 Aug 20. PMID: 26295333

    Abstract Author(s):

    Qing Chena, Si Tiana, Jing Zhub, Kai-Ting Lia, Ting-He Yuc, Le-Hua Yub, Ding-Qun Bai

    Article Affiliation:

    Qing Chena

    Abstract:

    Photodynamic therapy (PDT), as a clinical cancer therapy, is a mild therapy, which involves application of photosensitizers (PSs) which located in target cells and then be irradiated by corresponding wawelength. The activation of PSs generates radical oxygenspecies ( ROS) to exert a selective cytotoxic activity for the target cells. Aloeemodin (AE) has been found to be a anti-tumor agent in many studies, and it also demonstrated to be a photosensitizer in recent years. In order to study the mechanism of aloe-emodin as a photosensitizer. In the present study, we investigated the mechanisms of photo-cytotoxicity induced by aloe-emodin in breast cancer MCF-7 cells. Analysis of cell proliferation evidenced that there was a dramatically depression after photodynamic treatment with aseries of aloe-emodin concentration and light doses showed. We observed changes apoptosis and demonstrated that the mechanisms of apoptosis were involved of mitochondrial and endoplasmic reticulum death pathway. The capacity of adhesion, migration and invasion of breast cells were measured usingWST8 and transwell assay and demonstrated that AE-PDT significantly inhibited adhesion, migration and invasion of MCF-7cells. The expression of MMP2, MMP9, VEGF and Nrf2 demonstrated that the metastasis was related to oxidative stress. Analysis of changes in cytoskeleton components (F-actin) evidenced cytoskeleton disorganization after treatment with AE-PDT. Taken together, the present results indicated that PDT with aloe emodin effectively suppressed cancer development in MCF-7cells, suggesting the potential of AE as one new photosensitizer in PDT can provide a new modility for treating cancer.

  • Exploring a novel target treatment on breast cancer: aloe-emodin mediated photodynamic therapy induced cell apoptosis and inhibited cell metastasis.

    facebook Share on Facebook
    Abstract Title:

    Exploring a novel target treatment on breast cancer: aloe-emodin mediated photodynamic therapy induced cell apoptosis and inhibited cell metastasis.

    Abstract Source:

    Anticancer Agents Med Chem. 2015 Aug 20. Epub 2015 Aug 20. PMID: 26295333

    Abstract Author(s):

    Qing Chena, Si Tiana, Jing Zhub, Kai-Ting Lia, Ting-He Yuc, Le-Hua Yub, Ding-Qun Bai

    Article Affiliation:

    Qing Chena

    Abstract:

    Photodynamic therapy (PDT), as a clinical cancer therapy, is a mild therapy, which involves application of photosensitizers (PSs) which located in target cells and then be irradiated by corresponding wawelength. The activation of PSs generates radical oxygenspecies ( ROS) to exert a selective cytotoxic activity for the target cells. Aloeemodin (AE) has been found to be a anti-tumor agent in many studies, and it also demonstrated to be a photosensitizer in recent years. In order to study the mechanism of aloe-emodin as a photosensitizer. In the present study, we investigated the mechanisms of photo-cytotoxicity induced by aloe-emodin in breast cancer MCF-7 cells. Analysis of cell proliferation evidenced that there was a dramatically depression after photodynamic treatment with aseries of aloe-emodin concentration and light doses showed. We observed changes apoptosis and demonstrated that the mechanisms of apoptosis were involved of mitochondrial and endoplasmic reticulum death pathway. The capacity of adhesion, migration and invasion of breast cells were measured usingWST8 and transwell assay and demonstrated that AE-PDT significantly inhibited adhesion, migration and invasion of MCF-7cells. The expression of MMP2, MMP9, VEGF and Nrf2 demonstrated that the metastasis was related to oxidative stress. Analysis of changes in cytoskeleton components (F-actin) evidenced cytoskeleton disorganization after treatment with AE-PDT. Taken together, the present results indicated that PDT with aloe emodin effectively suppressed cancer development in MCF-7cells, suggesting the potential of AE as one new photosensitizer in PDT can provide a new modility for treating cancer.

  • Potential interventions for novel coronavirus in China: A systematic review📎

    Abstract Title:

    Potential interventions for novel coronavirus in China: A systematic review.

    Abstract Source:

    J Med Virol. 2020 05 ;92(5):479-490. Epub 2020 Mar 3. PMID: 32052466

    Abstract Author(s):

    Lei Zhang, Yunhui Liu

    Article Affiliation:

    Lei Zhang

    Abstract:

    An outbreak of a novel coronavirus (COVID-19 or 2019-CoV) infection has posed significant threats to international health and the economy. In the absence of treatment for this virus, there is an urgent need to find alternative methods to control the spread of disease. Here, we have conducted an online search for all treatment options related to coronavirus infections as well as some RNA-virus infection and we have found that general treatments, coronavirus-specific treatments, and antiviral treatments should be useful in fighting COVID-19. We suggest that the nutritional status of each infected patient should be evaluated before the administration of general treatments and the current children's RNA-virus vaccines including influenza vaccine should be immunized for uninfected people and health care workers. In addition, convalescent plasma should be given to COVID-19 patients if it is available. In conclusion, we suggest that all the potential interventions be implemented to control the emerging COVID-19 if the infection is uncontrollable.

We use cookies on our website. Some of them are essential for the operation of the site, while others help us to improve this site and the user experience (tracking cookies). You can decide for yourself whether you want to allow cookies or not. Please note that if you reject them, you may not be able to use all the functionalities of the site.