自体iPS来源的RPE移植后眼炎症反应的机理和干预研究

批准号:
81530028
项目类别:
重点项目
资助金额:
274.0 万元
负责人:
刘奕志
依托单位:
学科分类:
H1303.巩膜、葡萄膜、眼免疫
结题年份:
2020
批准年份:
2015
项目状态:
已结题
项目参与者:
钟秀风、陈军、杨静、刘嘉璇、周恬、周灵丽、谈旭华、何嫦
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中文摘要
自体诱导多能干细胞来源的视网膜色素上皮细胞(iPS-RPE)是治疗视网膜病变的新希望,然而其移植后大多死亡并导致炎症。虽然我们前期研究发现了iPS-RPE移植后长期悬浮于视网膜下腔,整合素-局部黏着斑激酶(FAK)信号通路下调,线粒体裂解增加并发生程序化炎性坏死,促进损伤相关模式分子(DAMPs)释放,加剧炎症反应及组织损伤,然而iPS-RPE细胞程序化炎性坏死的具体调控机理及对其他细胞的影响尚不清楚。由此,本课题拟开展如下研究:(1)iPS-RPE细胞线粒体裂解诱导的程序化炎性坏死的调控机理;(2)iPS-RPE细胞坏死释放的DAMPs对其他细胞的损伤及整合素-FAK信号的保护机制;(3)自体血清层粘蛋白膜载体及基因靶向调控抑制iPS-RPE细胞程序化炎性坏死的干预研究。本课题可望阐明自体iPS-RPE移植后眼炎症反应的机理,为细胞移植治疗眼病提供新思路和新手段。
英文摘要
Autologous transplantation of induced pluripotent stem cells (iPS) derived retinal pigment epithelia (RPE) is currently the most promising therapy for RPE-related retinal diseases. However, maintaining the long term survival of transplanted cells remains the major challenge for successful RPE transplantation. Cell death and ocular inflammation are commonly associated with RPE cell therapy. However, the mechanisms of the death of iPS-RPE and the related ocular inflammation remain largely unknown. We found previously that the long-time suspended iPS-RPE failed to attach to the basement membrane and resulted in pyroptosis that is associated with increased mitochondrial fission and down-regulation of Integrin-FAK signaling. Moreover, we found that pyroptic cells released numerous damage-associated molecular patterns (DAMPs) that consequently exacerbated ocular inflammation. We hypothesize that the initial death of a fraction of transplanted cells triggers ocular inflammation, which in turn results in inflammatory attack to the transplanted cells and subsequent death of the transplanted cells. Therefore, stopping the vicious circle of inflammation and cell death would be an essential strategy for the long-term survival of transplanted cells. To test this hypothesis, we aim to identify the mechanisms of transplant-induced iPS-RPE pyroptosis and its relationship to ocular inflammation. The specific aims include: (i) exploring the role of mitochondrial fission in iPS-RPE pyroptosis; (ii) evaluating the detrimental effects of DAMPs as well as the protective effects of integrin/FAK signaling activation on pyroptic iPS-RPE; and (iii) assessing the suppressive effects of autologous serum derived laminin vector and gene therapy on iPS-RPE pyroptosis. Successful completion of this project would provide new insight into the mechanisms of ocular inflammation induced by iPS-RPE transplantation and inflammatory cell death. In addition, the outcome of this study may lead to a new therapeutic strategy using iPS-RPE transplantation to treat retinal diseases.
视网膜退行性疾病具有不可逆性致盲,以RPE死亡为主要特征,目前尚无有效治疗方法。自体iPS来源的RPE细胞移植替代治疗为该类疾病带来新希望。然而,RPE细胞体内移植后,如何减少炎性坏死,提高存活率,并长期发挥作用?目前仍是一项挑战性课题。本项目首先获得大量iPS-RPE细胞,解决细胞来源问题,借助iPS分化3D视网膜体系,我们优化出两条iPS-RPE来源途径:从2D分离培养原代RPE和3D视网膜富集RPE球,可以获得大量高纯度的iPS-RPE并具有功能性,同时建立了单细胞测序平台,系统地分析了iPS分化来源视网膜细胞转录组图谱。其次,我们还探讨了RPE在氧化应激环境中的各种死亡模式,以及阐明NLRP12/NLRP3/NLRP6在眼内炎症中的作用机理。最后,通过构建新型生物膜辅助提高iPS-RPE体内移植存活率,新型生物膜具有良好细胞相容性,免疫原性低,受体组织结构相符以及可以维持RPE极性等。本项目获得的iPS-RPE制备方法和iPS-RPE细胞生物膜片,有望进行GMP级别制备并应用于临床。
期刊论文列表
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会议论文列表
专利列表
Efficient assembly of nanopore reads via highly accurate and intact error correction.
通过高精度和完整的纠错,高效组装纳米孔读数。
DOI:10.1038/s41467-020-20236-7
发表时间:2021-01-04
期刊:Nature communications
影响因子:16.6
作者:Chen Y;Nie F;Xie SQ;Zheng YF;Dai Q;Bray T;Wang YX;Xing JF;Huang ZJ;Wang DP;He LJ;Luo F;Wang JX;Liu YZ;Xiao CL
通讯作者:Xiao CL
DOI:10.1016/j.jaci.2017.03.043
发表时间:2017
期刊:Journal of Allergy and Clinical Immunology
影响因子:--
作者:Hua Xia;Yuan Xiaoyong;Li Yonghao;Chen Hui;Yuan Jin;Tanumiharjo Silvia;Bian Fang;Su Lishi;Hong Yanhua;Liu Yizhi;Chi Wei
通讯作者:Chi Wei
Glutathione depletion induces ferroptosis, autophagy, and premature cell senescence in retinal pigment epithelial cells.
谷胱甘肽耗竭会导致视网膜色素上皮细胞铁死亡、自噬和细胞过早衰老
DOI:10.1038/s41419-018-0794-4
发表时间:2018-07-09
期刊:Cell death & disease
影响因子:9
作者:Sun Y;Zheng Y;Wang C;Liu Y
通讯作者:Liu Y
Alpha-1 Antitrypsin Attenuates M1 Microglia-Mediated Neuroinflammation in Retinal Degeneration.
Alpha-1 抗胰蛋白酶可减轻视网膜变性中 M1 小胶质细胞介导的神经炎症
DOI:10.3389/fimmu.2018.01202
发表时间:2018
期刊:Frontiers in immunology
影响因子:7.3
作者:Zhou T;Huang Z;Zhu X;Sun X;Liu Y;Cheng B;Li M;Liu Y;He C;Liu X
通讯作者:Liu X
Pharmacological Targeting of BET Bromodomains Inhibits Lens Fibrosis via Downregulation of MYC Expression
BET Bromodomains 的药理学靶向通过下调 MYC 表达抑制晶状体纤维化
DOI:10.1167/iovs.19-27596
发表时间:2019
期刊:Investigative Ophthalmology & Visual Science
影响因子:4.4
作者:Wang Xiaoran;Wang Bowen;Zhao Na;Wang Chenjie;Huang Mi;Chen Baoxin;Chen Jieping;Sun Yan;Xiong Lang;Huang Shan;Liu Yizhi
通讯作者:Liu Yizhi
应用bFGF建立新型核性白内障大鼠模型的探索性研究
- 批准号:81270981
- 项目类别:面上项目
- 资助金额:70.0万元
- 批准年份:2012
- 负责人:刘奕志
- 依托单位:
串珠纤维有序降解对维持晶状体透明性重要作用的研究
- 批准号:30973277
- 项目类别:面上项目
- 资助金额:30.0万元
- 批准年份:2009
- 负责人:刘奕志
- 依托单位:
建立晶状体再生系统的实验研究
- 批准号:30070802
- 项目类别:面上项目
- 资助金额:16.0万元
- 批准年份:2000
- 负责人:刘奕志
- 依托单位:
国内基金
海外基金
