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3篇 您的检索式:作者名="Neha Gogia"
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1Exploring the efficacy of natural products in alleviating Alzheimer’s disease显示文摘Alzheimer's disease (hereafter AD) is a progressive neurodegenerative disorder that affects the central nervous system. There are multiple factors that cause AD, viz., accumulation of extracellular Amyloid-beta 42 plaques, intracellular hyper-phosphorylated Tau tangles, generation of reactive oxygen species due to mitochondrial dysfunction and genetic mutations. The plaques and tau tangles trigger aberrant signaling, which eventually cause cell death of the neurons. As a result, there is shrinkage of brain, cogrdtive defects, behavioral and psychological problems. To date, there is no direct cure for AD. Thus, scientists have been testing various strategies like screening for the small inhibitor molecule library or natural products that may block or prevent onset of AD. Historically, natural products have been used in many cultures for the treatment of various diseases. The research on natural products have gained importance as the active compounds extracted from them have medicinal values with reduced side effects, and they are bioavailable. The natural products may target the proteins or members of signaling pathways that get altered in specific diseases. Many natural products are being tested in various animal model systems for their role as a potential therapeutic target for AD, and to address questions about how these natural products can rescue AD or other neurodegenerative disorders. Some of these products are in clinical trials and results are promising because of their neuroprotective, anti-inflammatory, antioxidant, anti-amyloidogenic, anticholinesterase activities and easy availability. This review summarizes the use of animal model systems to identify natural products, which may serve as potential therapeutic targets for AD.Prajakta Deshpande Neha Gogia Amit Singh 2019Neural Regeneration Research2019,14,8:4
2Evaluating role of bone marrow-derived stem cells in dry age-related macular degeneration using multifocal electroretinogram and fundus autofluorescence imaging显示文摘AIM:To evaluate the role of bone marrow-derived stem cells in the treatment of advanced dry age-related macular degeneration(AMD) using multifocal electroretinogram(mf-ERG) and fundus autofluorescence imaging.METHODS:Thirty patients(60 eyes) with bilateral central geographic atrophy(GA) were recruited.Worse eye of each patient received autologous bone marrow-derived hematopoietic stem cells(BM-HSCs)(group 1) and the fellow eye with better visual acuity served as control(group 2).The effect of stem cell therapy was determined in terms of visual acuity,amplitude and implicit time in mf-ERG and size of GA on fundus autofluorescence imaging.These tests were performed at presentation and first,third and sixth month follow up.Adverse events(if any) were also monitored.RESULTS:At 6 mo follow-up there was no statistically significant improvement in median log MAR best corrected visual acuity(BCVA) in either group.Mf-ERG revealed significant improvement in amplitude and implicit time in the intervention group.A significant decrease was also noted in greatest linear dimension(GLD) of GA in the eyes receiving stem cells [6.78±2.60 mm at baseline to 6.56±2.59 mm at 6 mo(P=0.021)].However,no such improvement was noted in the control group.CONCLUSION:Electrophysiological and anatomical improvement in the intervention group sheds light on the therapeutic role of BM-HSCs.Further studies are required to determine the stage of disease at which the maximal benefit can be achieved and to standardize the dose and frequency of stem cell injection.Atul Kumar Neha Midha Sujata Mohanty Annu Chohan Tulika Seth Varun Gogia Shikha Gupta 2017International Journal of Ophthalmology(English edition)2017,10,10:1
3Hippo signaling:bridging the gap between cancer and neurodegenerative disorders显示文摘During development,regulation of organ size requires a balance between cell proliferation,growth and cell death.Dysregulation of these fundamental processes can cause a variety of diseases.Excessive cell proliferation results in cancer whereas excessive cell death results in neurodegenerative disorders.Many signaling pathways known-to-date have a role in growth regulation.Among them,evolutionarily conserved Hippo signaling pathway is unique as it controls both cell proliferation and cell death by a variety of mechanisms during organ sculpture and development.Neurodegeneration,a complex process of progressive death of neuronal population,results in fatal disorders with no available cure to date.During normal development,cell death is required for sculpting of an organ.However,aberrant cell death in neuronal cell population can result in neurodegenerative disorders.Hippo pathway has gathered major attention for its role in growth regulation and cancer,however,other functions like its role in neurodegeneration are also emerging rapidly.This review highlights the role of Hippo signaling in cell death and neurodegenerative diseases and provide the information on the chemical inhibitors employed to block Hippo pathway.Understanding Hippo mediated cell death mechanisms will aid in development of reliable and effective therapeutic strategies in future.Neha Gogia Anuradha Venkatakrishnan Chimata Prajakta Deshpande Aditi Singh Amit Singh 2021Neural Regeneration Research2021,16,4:1
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