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Embryonic Stem Cells-loaded Gelatin Microcryogels Slow Progression of Chronic Kidney Disease 被引量:5
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作者 xiao-dong geng Wei Zheng +5 位作者 Cong-Mei Wu Shu-Qiang Wang Quan Hong Guang-Yan Cai Xiang-Mei Chen Di Wu 《Chinese Medical Journal》 SCIE CAS CSCD 2016年第4期392-398,共7页
Background: Chronic kidney disease (CKD) has become a public health problem.New interventions to slow or prevent disease progression are urgently needed.In this setting, cell therapies associated with regenerative ... Background: Chronic kidney disease (CKD) has become a public health problem.New interventions to slow or prevent disease progression are urgently needed.In this setting, cell therapies associated with regenerative effects are attracting increasing interest.We evaluated the effect of embryonic stem cells (ESCs) on the progression of CKD.Methods: Adult male Sprague-Dawley rats were subjected to 5/6 nephrectomy.We used pedicled greater omentum flaps packing ESC-loaded gelatin microcryogets (GMs) on the 5/6 nephrectomized kidney.The viability of ESCs within the GMs was detected using in vio two-photon fluorescence confocal imaging.Rats were sacrificed after 12 weeks.Renal injury was evaluated using serum creatinine, urea nitrogen, 24 h protein, renal pathology, and tubular injury score results.Structural damage was evaluated by periodic acid-Schiff and Masson trichrome staining.Results: In vitro, ESCs could be automatically loaded into the GMs.Uniform cell distribution, good cell attachment, and viability were achieved from day 1 to 7 in vitro.After 12 weeks, in the pedicled greater omentum flaps packing ESC-loaded GMs on 5/6 nephrectomized rats group, the plasma urea nitrogen levels were 26% lower than in the right nephrectomy group, glomerulosclerosis index was 62% lower and tubular injury index was 40% lower than in the 5/6 nephrectomized rats group without GMs.Conclusions: In a rat model of established CKD, we demonstrated that the pedicled greater omentum flaps packing ESC-loaded GMs on the 5/6 nephrectomized kidney have a long-lasting therapeutic rescue function, as shown by the decreased progression of CKD and reduced glomerular injury. 展开更多
关键词 Chronic Renal Insufficiency Embryonic Stem Cells Gelatin Microcryogels Regenerative Medicine
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New Mutation of Coenzyme Q10 Monooxygenase 6 Causing Podocyte Injury in a Focal Segmental Glomerulosclerosis Patient 被引量:2
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作者 Cheng-Cheng Song Quan Hong +8 位作者 xiao-dong geng Xu Wang Shu-Qiang Wang Shao-Yuan Cui Man-Di Guo Ou Li Guang-Yan Cai Xiang-Mei Chen Di Wu 《Chinese Medical Journal》 SCIE CAS CSCD 2018年第22期2666-2675,共10页
Background:Focal segmental glomerulosclerosis (FSGS)is a kidney disease that is commonly associated with proteinuria and the progressive loss of renal function,which is characterized by podocyte injury and the depleti... Background:Focal segmental glomerulosclerosis (FSGS)is a kidney disease that is commonly associated with proteinuria and the progressive loss of renal function,which is characterized by podocyte injury and the depletion and collapse of glomerular capillary segments.The pathogenesis of FSGS has not been completely elucidated;however,recent advances in molecular genetics have provided increasing evidence that podocyte structural and functional disruption is central to FSGS pathogenesis.Here,we identified a patient with FSGS and aimed to characterize the pathogenic gene and verify its mechanism. Methods:Using next-generation sequencing and Sanger sequencing,we screened the causative gene that was linked to FSGS in this study.The patient's total blood RNA was extracted to validate the messenger RNA (mRNA)expression of coenzyme Q10 monooxygenase 6(COQ6)and validated it by immunohistochemistry.COQ6 knockdown in podocytes was performed in vitro with small interfering RNA, and then,F-actin was determined using immunofluorescence staining.Cell apoptosis was evaluated by flow cytometry,the expression of active caspase-3was determined by Western blot,and mitochondrial function was detected by MitoSOX. Results:Using whole-exome sequencing and Sanger sequencing,we screened a new causative gene,COQ6,NM_182480:exonl:c.G41A: p.W14X.The mRNA expression of COQ6 in the proband showed decreased.Moreover,the expression of COQ6,which was validated by immunohistochemistry,also had the same change in the proband.Finally,we focused on the COQ6 gene to clarify the mechanism of podocyte injury.Flow cytometry showed significantly increased in apoptotic podocytes,and Western blotting showed increases in active caspase-3in si-COQ6 podocytes.Meanwhile,reactive oxygen species (ROS)levels were increased and F-actin immunofluorescence was irregularly distributed in the si-COQ6 group. Conclusions:This study reported a possible mechanism for FSGS and suggested that a new mutation in COQ6,which could cause respiratory chain defect,increase the generation of ROS,destroy the podocyte cytoskeleton,and induce apoptosis.It provides basic theoretical basis for the screening of FSGS in the future. 展开更多
关键词 Apoptosis COENZYME Q10 MONOOXYGENASE 6 Mutation Focal SEGMENTAL GLOMERULOSCLEROSIS PODOCYTE
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Clinical Analysis of a Hypokalemic Salt-losing Tubulopathy Case 被引量:1
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作者 Wei Zheng Quan Hong +4 位作者 Xue-Guang Zhang xiao-dong geng Guang-Yan Cai Xiang-Mei Chen Di Wu 《Chinese Medical Journal》 SCIE CAS CSCD 2016年第5期601-603,共3页
Hypokalemia is among the most common electrolyte disorders in clinical practice and severe condition is life-threatening and has received extensive attention in clinical practice. Genetic diagnosis remains the gold st... Hypokalemia is among the most common electrolyte disorders in clinical practice and severe condition is life-threatening and has received extensive attention in clinical practice. Genetic diagnosis remains the gold standard for the diagnosis and identification of hereditary renal tubular diseases. Below is the report of genotyping and diagnosis of a case of secondary Gitelman syndrome (GS) based on next-generation sequencing. 展开更多
关键词 DIAGNOSIS Gene Screening HYPOKALEMIA
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