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Enhancement of endogenous midbrain neurogenesis by microneurotrophin BNN-20 after neural progenitor grafting in a mouse model of nigral degeneration
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作者 Theodora Mourtzi Nasia Antoniou +10 位作者 Christina Dimitriou Panagiotis Gkaravelas Georgia Athanasopoulou Panagiota Nti Kostantzo Olga Stathi Efthymia Theodorou Maria Anesti Rebecca Matsas Fevronia Angelatou Georgia Kouroupi Ilias Kazanis 《Neural Regeneration Research》 SCIE CAS CSCD 2024年第6期1318-1324,共7页
We have previously shown the neuroprotective and pro-neurogenic activity of microneurotrophin BNN-20 in the substantia nigra of the“weaver”mouse,a model of progressive nigrostriatal degeneration.Here,we extended our... We have previously shown the neuroprotective and pro-neurogenic activity of microneurotrophin BNN-20 in the substantia nigra of the“weaver”mouse,a model of progressive nigrostriatal degeneration.Here,we extended our investigation in two clinically-relevant ways.First,we assessed the effects of BNN-20 on human induced pluripotent stem cell-derived neural progenitor cells and neurons derived from healthy and parkinsonian donors.Second,we assessed if BNN-20 can boost the outcome of mouse neural progenitor cell intranigral transplantations in weaver mice,at late stages of degeneration.We found that BNN-20 has limited direct effects on cultured human induced pluripotent stem cell-derived neural progenitor cells,marginally enhancing their differentiation towards neurons and partially reversing the pathological phenotype of dopaminergic neurons generated from parkinsonian donors.In agreement,we found no effects of BNN-20 on the mouse neural progenitor cells grafted in the substantia nigra of weaver mice.However,the graft strongly induced an endogenous neurogenic response throughout the midbrain,which was significantly enhanced by the administration of microneurotrophin BNN-20.Our results provide straightforward evidence of the existence of an endogenous midbrain neurogenic system that can be specifically strengthened by BNN-20.Interestingly,the lack of major similar activity on cultured human induced pluripotent stem cell-derived neural progenitors and their progeny reveals the in vivo specificity of the aforementioned pro-neurogenic effect. 展开更多
关键词 adult neurogenesis BNN-20 brain-derived neurotrophic factor cell replacement induced pluripotent stem cells(ipscs) neurotrophic factors Parkinson's disease substantia
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iPSCs定向分化的内耳毛细胞与支持细胞间相互作用的研究 被引量:6
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作者 王翠翠 陈建玲 +6 位作者 唐子华 邱世伟 张翠 李亮 郭维维 杨仕明 王金福 《中华耳科学杂志》 CSCD 北大核心 2017年第4期489-497,共9页
目的利用诱导多能性干细胞定向分化的内耳毛细胞和支持细胞探究这两种体外诱导分化细胞之间的相互作用。方法首先,利用细胞单层贴壁两步诱导法将三株i PS细胞(野生株、MYO7A缺陷株、MYO7A校正株)向内耳祖细胞及内耳毛细胞诱导分化,探究i... 目的利用诱导多能性干细胞定向分化的内耳毛细胞和支持细胞探究这两种体外诱导分化细胞之间的相互作用。方法首先,利用细胞单层贴壁两步诱导法将三株i PS细胞(野生株、MYO7A缺陷株、MYO7A校正株)向内耳祖细胞及内耳毛细胞诱导分化,探究i PSCs定向分化内耳毛细胞的过程中是否有支持细胞的产生;其次,通过细胞免疫化学的方法探究体外分化的内耳毛细胞和支持细胞间的相互作用;最后,将表达绿色荧光蛋白(EGFP)的上皮样内耳祖细胞以圆窗膜穿刺的方法移植到白化荣昌猪的内耳中观察分析移植细胞在体内的迁移、分化以及在体内形成的联系。结果三株i PS细胞诱导分化为内耳毛细胞的过程中均有一部分细胞分化为支持细胞;对分化细胞进行E-cadherin、N-cadherin和ZO-1的免疫荧光检测结果显示,E-cadherin、N-cadherin和ZO-1在支持细胞-支持细胞连接和支持细胞-毛细胞连接间都有表达;移植4周后,耳蜗免疫组织化学结果显示,三株不同来源的移植细胞均有少量细胞成功迁移到了毛细胞受损部位—柯底氏器,并表达毛细胞标志性蛋白MYO7A。移植细胞之间以及移植细胞与宿主细胞之间有E-cadherin、N-cadherin和ZO-1的表达。结论 i PSCs诱导分化的内耳毛细胞和支持细胞在体内、外均能形成钙粘连接和紧密连接。这些研究结果对毛细胞取代法治疗耳聋策略的完善与发展有一定的科学意义。 展开更多
关键词 耳聋 诱导多能性干细胞(ipscs) 毛细胞 支持细胞 细胞间连接
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iPSCs在家畜育种中的作用研究进展 被引量:1
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作者 徐彦文 周婧萱 师科荣 《中国畜牧杂志》 CAS 北大核心 2022年第4期119-125,共7页
胚胎干细胞(Embryonic Stem Cells,ESCs)是一种具有多向分化潜能的多能性干细胞。大动物具有繁殖率低、世代间隔长等缺陷,利用ESCs进行扩繁、育种具有绝佳优势。但经过40年的探索,几乎所有大动物的ESCs尚未建立。2006年Yamanaka提出诱... 胚胎干细胞(Embryonic Stem Cells,ESCs)是一种具有多向分化潜能的多能性干细胞。大动物具有繁殖率低、世代间隔长等缺陷,利用ESCs进行扩繁、育种具有绝佳优势。但经过40年的探索,几乎所有大动物的ESCs尚未建立。2006年Yamanaka提出诱导多能干细胞(Induced Pluripotent Stem Cells,iPSCs)制备方法,为大动物干细胞制备打开一扇新大门。获得iPSCs可以成功避开ESCs建系困难、胚胎来源有限、移植后发生免疫排斥等一系列严重限制干细胞育种应用的问题,在大动物育种中有非常重要和深远的应用前景。本文综述了iPSCs在大动物育种中的研究进展,深入探讨了iPSCs作为干细胞在大动物育种中的潜在应用价值,并展望其应用前景。 展开更多
关键词 诱导多能干细胞(ipscs) 胚胎干细胞(ESCs) 干细胞育种 大动物育种
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三七总皂苷对大鼠海马CA1区突触传递的作用及机制 被引量:6
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作者 周燕 田磊 +1 位作者 徐林 莫宁 《中草药》 CAS CSCD 北大核心 2007年第7期1032-1036,共5页
目的 研究三七总皂苷(Panax notoginseng saponins,PNS)对大鼠海马脑片CA1区锥体神经元兴奋性和抑制性突触传递的作用。方法 断头法分离3~4周雄性Wistar大鼠海马半脑,用切片机切出400pm厚度的海马脑片,对CA1区锥体细胞采用“盲法... 目的 研究三七总皂苷(Panax notoginseng saponins,PNS)对大鼠海马脑片CA1区锥体神经元兴奋性和抑制性突触传递的作用。方法 断头法分离3~4周雄性Wistar大鼠海马半脑,用切片机切出400pm厚度的海马脑片,对CA1区锥体细胞采用“盲法”全细胞膜片钳技术记录,分别检测和分析PNS(0.05~0.4g/L)对刺激CA1传入纤维引出的兴奋性突触后电流(EPSCs)和抑制性突触后电流(IPSCs)的影响,继而以脉冲间隔为50ms的配对刺激代替单刺激,通过EPSC2/EPSC1(P2/P1)值的变化观察PNS对双脉冲易化(paired-pulse facilitation,PPF)的影响。结果 0.1~0.4g/LPNS显著抑制EPSCs(P〈0.05),且PNS在抑制P1、P2的同时明显升高P2/P1值(P〈0.05),加强了双脉冲易化,但PNS对IPSCs无显著影响(P〉0.05)。结论 PNS显著减小大鼠海马CA1区锥体神经元的EPSCs而不影响IPSCs,说明PNS不是通过强化抑制性中间神经元的功能间接地抑制兴奋性神经元,而是对兴奋性突触传递直接产生抑制;PNS明显升高P2/P1值,说明PNS是通过突触前机制抑制CA1区兴奋性突触传递。 展开更多
关键词 三七总皂苷 海马CA1区 突触前抑制 兴奋性突触后电流(EPSCs) 抑制性突触后电流(ipscs)
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畜禽遗传资源保护方法的研究进展 被引量:11
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作者 康晔 叶绍辉 +3 位作者 赵倩君 浦亚斌 关伟军 马月辉 《中国畜牧兽医》 CAS 北大核心 2013年第11期208-212,共5页
畜禽遗传资源作为生物多样性的重要组成部分,正面临着严峻的考验,对其开展保护工作是一项迫在眉睫更是必须持之以恒的任务。作者对目前畜禽遗传资源保护的主要方法和技术,包括活体保护及利用冷冻技术、基因文库技术、体细胞克隆技术和... 畜禽遗传资源作为生物多样性的重要组成部分,正面临着严峻的考验,对其开展保护工作是一项迫在眉睫更是必须持之以恒的任务。作者对目前畜禽遗传资源保护的主要方法和技术,包括活体保护及利用冷冻技术、基因文库技术、体细胞克隆技术和分子遗传标记等技术保护,特别是对近年新发展起来的诱导多功能干细胞(induced pluripotent stem cells,iPSCs)技术在畜禽遗传资源保护方面的应用作了概述,以期进一步对畜禽遗传资源保护奠定基础。 展开更多
关键词 畜禽遗传资源 保护 诱导多功能干细胞(ipscs)
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绵羊iPS细胞诱导及转录组学分析
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作者 张译元 郭延华 +4 位作者 王聪慧 唐红 南海艳 王立民 周平 《新疆农业科学》 CAS CSCD 北大核心 2018年第11期2142-2149,共8页
【目的】建立绵羊(Ovis aries)诱导性多能干细胞系,为绵羊转基因育种、应用绵羊诱导性多能干细胞奠定基础。【方法】利用电转将OCT4、SOX2、KLF4、l-Myc、Lin28转染至绵羊成纤维细胞中并诱导培养至有光滑隆起、边缘整齐的细胞克隆,形态... 【目的】建立绵羊(Ovis aries)诱导性多能干细胞系,为绵羊转基因育种、应用绵羊诱导性多能干细胞奠定基础。【方法】利用电转将OCT4、SOX2、KLF4、l-Myc、Lin28转染至绵羊成纤维细胞中并诱导培养至有光滑隆起、边缘整齐的细胞克隆,形态学、碱性磷酸酶(AP)染色、免疫荧光染色以及实时荧光定量PCR检测克隆细胞的生物学特性;利用高通量测序技术对诱导0、10、20、30 d的阳性细胞的差异表达基因进行筛选。【结果】克隆细胞中SOX2、OCT4、SSEA-1蛋白免疫荧光染色均呈阳性; OCT4、SOX2、Nanog基因表达量均极显著高于成纤维细胞;0和30 d转录组测序表明,被注释到GO数据库的差异表达基因有9 465个,其中,上调基因6 987个,下调基因2 478个;KEGG分析共有5 773个基因注释到259个通路中,其中,P53信号通路显著富集,且其在干细胞增殖方面起着非常重要的作用。【结论】初步成功建立了绵羊诱导性多能干细胞。 展开更多
关键词 绵羊 诱导性多能干细胞(ipscs) 重编程 转录组测序
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Stem cell technologies in human health: Boon or bane?
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作者 Madhavi Tripathi Sangeeta Singh 《Journal of Biosciences and Medicines》 2015年第11期16-24,共9页
The stem cells of an organism only possess extraordinary capacity to change into different cell types during the early life and growth of an organism. When these stem cells divide into different new cells, these eithe... The stem cells of an organism only possess extraordinary capacity to change into different cell types during the early life and growth of an organism. When these stem cells divide into different new cells, these either remain as stem cells or develop to become other cells with specialized function. For this reason, stem cells offer direct relevance to human health, as theoretically, using stem cell technology, different organs are expected to be regenerated. To this, the Human Embryonic Stem Cells (HESCs) are natural pluripotent cell, but ethical issues covering many countries have put research work on a bit back-foot. However, the Induced Pluripotent Stem Cells (iPSCs) technology has completely revitalized the world to use this technology universally and it therefore seems that more research on this technology will surely be of enormous help in public health. In addition, application of the stem cell technology in personalized-medicine has been started recently. In this concern, the stem cell banking facilities have provided new avenues for preserving the cord blood of the new-borne child and treat them in future by using her/his own preserved stem cells. However, like all new technologies, the output from stem cell research requires to be evaluated more closely. Furthermore, with proper guidelines on ethical issues and extended research following these strategies, the stem cell technology is expected to not only be of huge benefit to human health, but also the benefit can be extended to the survival of endangered animals as well. 展开更多
关键词 HUMAN Embryonic STEM CELLS (HESCs) Induced PLURIPOTENT STEM CELLS (ipscs) HUMAN Health Personalized Medicine
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Tumorigenicity risk of iPSCs in vivo:nip it in the bud
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作者 Chaoliang Zhong Miao Liu +1 位作者 Xinghua Pan Haiying Zhu 《Precision Clinical Medicine》 2022年第1期23-33,共11页
In 2006,Takahashi and Yamanaka first created induced pluripotent stem cells from mouse fibroblasts via the retroviral introduction of genes encoding the transcription factors Oct3/4,Sox2,Klf44,and c-Myc.Since then,the... In 2006,Takahashi and Yamanaka first created induced pluripotent stem cells from mouse fibroblasts via the retroviral introduction of genes encoding the transcription factors Oct3/4,Sox2,Klf44,and c-Myc.Since then,the future clinical application of somatic cell reprogramming technology has become an attractive research topic in the field of regenerative medicine.Of note,considerable interest has been placed in circumventing ethical issues linked to embryonic stem cell research.However,tumorigenicity,immunogenicity,and heterogeneity may hamper attempts to deploy this technology therapeutically.This review highlights the progress aimed at reducing induced pluripotent stem cells tumorigenicity risk and howto assess the safety of induced pluripotent stem cells cell therapy products. 展开更多
关键词 induced pluripotent stem cells(ipscs) tumorigenicity regenerative medicine reprogramming transcription factors chemical-induced reprogramming drug-inducible suicide system
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干细胞诱导分化为生殖细胞的研究进展 被引量:5
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作者 王欣欣 吴军卫 +4 位作者 郭瑞霞 马珊珊 孟楠 杨波 关方霞 《中华生殖与避孕杂志》 CAS CSCD 北大核心 2017年第2期146-150,共5页
干细胞具有多系谱分化的可塑性,是再生医学的研究热点。通过各种调控、诱导手段从干细胞获得生殖细胞,为生殖细胞发生与发育障碍导致的不孕不育患者带来希望。本文将探讨从各种干细胞[胚胎干细胞(embryonic stem cells,ESCs)、诱导多能... 干细胞具有多系谱分化的可塑性,是再生医学的研究热点。通过各种调控、诱导手段从干细胞获得生殖细胞,为生殖细胞发生与发育障碍导致的不孕不育患者带来希望。本文将探讨从各种干细胞[胚胎干细胞(embryonic stem cells,ESCs)、诱导多能干细胞(induced pluripotent stem cells,i PSCs)、原始生殖细胞(primordial germ cells,PGCs)、精原干细胞(spermatogonial stem cells,SSCs)和卵巢干细胞(ovarian stem cells,OSCs)]获得生殖系细胞的研究进展并提出其临床应用前景与挑战。 展开更多
关键词 胚胎干细胞(ESCs) 诱导多能干细胞(ipscs) 原始生殖细胞(PGCs) 精原干细胞(SSCs) 卵巢干细胞(OSCs)
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三种干细胞向雌性生殖细胞诱导的可行性探讨 被引量:1
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作者 周桦 何志旭 +3 位作者 范安然 周从容 赵淑云 黄官友 《生殖与避孕》 CAS CSCD 北大核心 2015年第11期800-805,820,共7页
雌性生殖细胞缺乏所致的不孕症目前尚无根本的治疗方法,干细胞的研究为这类患者带来了希望。随着胚胎干细胞(ESCs)/诱导性多能干细胞(iPSCs)建系技术的日趋成熟,体外诱导ESCs/iPSCs生成雌性生殖细胞的研究也取得了一定进展,目前已经有... 雌性生殖细胞缺乏所致的不孕症目前尚无根本的治疗方法,干细胞的研究为这类患者带来了希望。随着胚胎干细胞(ESCs)/诱导性多能干细胞(iPSCs)建系技术的日趋成熟,体外诱导ESCs/iPSCs生成雌性生殖细胞的研究也取得了一定进展,目前已经有卵母细胞样细胞的形成,但所生成细胞的生殖生物学功能还有待进一步证实。近年来雌性生殖干细胞的发现及对其进一步的了解使获取更接近生理状态的卵子成为可能。本文对近年几种干细胞及其在生殖领域的研究进行综述,以探讨其临床应用的可行性。 展开更多
关键词 雌性生殖细胞 胚胎干细胞(ESCs) 诱导性多能干细胞(ipscs) 雌性生殖干细胞 分化
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外周血细胞重编程为诱导性多潜能干细胞的研究进展 被引量:2
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作者 李施施 刘忠 严庆丰 《中国细胞生物学学报》 CAS CSCD 2011年第8期930-935,共6页
诱导性多潜能干细胞(iPSCs)是指分化细胞中导入特定转录因子后逆转恢复到类似胚胎干细胞的具有自我更新、多向分化等潜能的一类细胞。诱导疾病特异性iPSCs是疾病机理、再生医学等领域的研究热点。目前,人iPSCs供体细胞主要来源于皮肤成... 诱导性多潜能干细胞(iPSCs)是指分化细胞中导入特定转录因子后逆转恢复到类似胚胎干细胞的具有自我更新、多向分化等潜能的一类细胞。诱导疾病特异性iPSCs是疾病机理、再生医学等领域的研究热点。目前,人iPSCs供体细胞主要来源于皮肤成纤维细胞,需要组织活检、体外增殖等繁琐过程。利用外周血细胞(peripheral blood cells)成功诱导iPSCs,具有取材方便、诱导快速等优点,将极大地促进iPSCs研究。该文在介绍iPSCs诱导方法的基础上,重点阐述了从小鼠B细胞、T细胞,人脐带血细胞,到人外周血细胞重编程为iPSCs的研究进展,分析了该技术的特点和可能存在的问题,并进行了前景展望。 展开更多
关键词 诱导性多潜能干细胞(ipscs) 外周血细胞 成纤维细胞 重编程 转录因子
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载体介导无遗传物质整合的诱导性多能干细胞的生成 被引量:1
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作者 栗楠 郭红梅 +6 位作者 王明玉 令文慧 邱小燕 李跃民 刘旭蕾 邓雅楠 肖雄 《中国细胞生物学学报》 CAS CSCD 2017年第11期1486-1496,共11页
诱导性多能干细胞(induced pluripotent stem cells,i PSCs)因其具有类似胚胎干细胞(embryonic stem cells,ESCs)的"自我更新"和分化潜能而成为生物学和医学等领域的研究热点之一。但是,目前i PSCs的生成主要以逆转录病毒或... 诱导性多能干细胞(induced pluripotent stem cells,i PSCs)因其具有类似胚胎干细胞(embryonic stem cells,ESCs)的"自我更新"和分化潜能而成为生物学和医学等领域的研究热点之一。但是,目前i PSCs的生成主要以逆转录病毒或慢病毒为载体,而病毒载体和外源性重编程因子在受体细胞基因组中的整合,使得i PSCs存在致瘤性的安全隐患。同时,采用无载体介导的方法如重组蛋白、小分子物质的重编程效率较低。为此,目前已成功开发一些载体和方法可以介导无外源性遗传物质整合的i PSCs的生成。该文就整合后可删除的基因表达载体(Cre/lox P重组系统、piggy Bac转座子/转座酶系统)和非整合基因表达载体(ori P/EBNA1附加型载体、微环DNA载体)在i PSCs生成上的应用研究作一综述,以期为i PSCs的临床安全应用提供理论和技术参考。 展开更多
关键词 诱导性多能干细胞(ipscs) CRE/LOXP重组系统 piggyBac转座系统 oriP/EBNA1附加型载体 微环DNA载体
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Quantitative proteomics revealed extensive microenvironmental changes after stem cell transplantation in ischemic stroke 被引量:2
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作者 Yao Chen Fahuan Song +11 位作者 Mengjiao Tu Shuang Wu Xiao He Hao Liu Caiyun Xu Kai Zhang Yuankai Zhu Rui Zhou Chentao Jin Ping Wang Hong Zhang Mei Tian 《Frontiers of Medicine》 SCIE CSCD 2022年第3期429-441,共13页
The local microenvironment is essential to stem cell-based therapy for ischemic stroke,and spatiotemporal changes of the microenvironment in the pathological process provide vital clues for understanding the therapeut... The local microenvironment is essential to stem cell-based therapy for ischemic stroke,and spatiotemporal changes of the microenvironment in the pathological process provide vital clues for understanding the therapeutic mechanisms.However,relevant studies on microenvironmental changes were mainly confined in the acute phase of stroke,and long-term changes remain unclear.This study aimed to investigate the microenvironmental changes in the subacute and chronic phases of ischemic stroke after stem cell transplantation.Herein,induced pluripotent stem cells(iPSCs)and neural stem cells(NSCs)were transplanted into the ischemic brain established by middle cerebral artery occlusion surgery.Positron emission tomography imaging and neurological tests were applied to evaluate the metabolic and neurofunctional alterations of rats transplanted with stem cells.Quantitative proteomics was employed to investigate the protein expression profiles in iPSCs-transplanted brain in the subacute and chronic phases of stroke.Compared with NSCs-transplanted rats,significantly increased glucose metabolism and neurofunctional scores were observed in iPSCs-transplanted rats.Subsequent proteomic data of iPSCs-transplanted rats identified a total of 39 differentially expressed proteins in the subacute and chronic phases,which are involved in various ischemic stroke-related biological processes,including neuronal survival,axonal remodeling,antioxidative stress,and mitochondrial function restoration.Taken together,our study indicated that iPSCs have a positive therapeutic effect in ischemic stroke and emphasized the wide-ranging microenvironmental changes in the subacute and chronic phases. 展开更多
关键词 ischemic stroke MICROENVIRONMENT induced pluripotent stem cells(ipscs) positron emission tomography(PET) quantitative proteomics
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Induced pluripotency and direct reprogramming:a new window for treatment of neurodegenerative diseases 被引量:1
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作者 Rui Li Ye Bai +2 位作者 Tongtong Liu Xiaoqun Wang Qian Wu 《Protein & Cell》 SCIE CSCD 2013年第6期415-424,共10页
Human embryonic stem cells(hESCs)are pluripotent cells that have the ability of unlimited self-renewal and can be differentiated into different cell lineages,includ-ing neural stem(NS)cells.Diverse regulatory signalin... Human embryonic stem cells(hESCs)are pluripotent cells that have the ability of unlimited self-renewal and can be differentiated into different cell lineages,includ-ing neural stem(NS)cells.Diverse regulatory signaling pathways of neural stem cells differentiation have been discovered,and this will be of great benefit to uncover the mechanisms of neuronal differentiation in vivo and in vitro.However,the limitations of hESCs resource along with the religious and ethical concerns impede the pro-gress of ESCs application.Therefore,the induced pluri-potent stem cells(iPSCs)via somatic cell reprogramming have opened up another new territory for regenerative medicine.iPSCs now can be derived from a number of lin-eages of cells,and are able to differentiate into certain cell types,including neurons.Patient-specifi c iPSCs are being used in human neurodegenerative disease modeling and drug screening.Furthermore,with the development of somatic direct reprogramming or lineage reprogramming technique,a more effective approach for regenerative medicine could become a complement for iPSCs. 展开更多
关键词 human embryonic stem cells(hESCs) neu-ronal differentiation induced pluripotent stem cells(ipscs) somatic direct reprogramming lineage reprogramming regen-erative medicine
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Application of Induced Pluripotent Stem Cells Derived from Human Periodontal Ligament Cells in Bone Regeneration
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作者 HE Tianrong YAN Qi +2 位作者 WU Xinyu SHI Bin LIN Yi 《Wuhan University Journal of Natural Sciences》 CAS CSCD 2020年第5期404-410,共7页
The purpose of this study was to primarily culture human periodontal ligament cells(hPDLCs)and to reprogram hPDLCs with exogenous genes via a lentivirus-mediated transfection system.Then induced pluripotent stem cells... The purpose of this study was to primarily culture human periodontal ligament cells(hPDLCs)and to reprogram hPDLCs with exogenous genes via a lentivirus-mediated transfection system.Then induced pluripotent stem cells derived from h PDLCs(hPDLC-iPSCs)were identified.Alizarin red staining was used to observe the formation of mineralized nodules and real-time Polymerase Chain Reaction(PCR)was used to detect the expression of osteogenic genes.For the in vivo experiment,nude mouse skull defect models were established and cell sheets were made to repair the bone defect.The reprogrammed cells were positive for alkaline phosphatase(ALP)staining and embryonic stem cells(ESCs)-specific proteins,and could form teratomas.After osteogenic induction,alizarin red staining showed that the number of mineralized nodules in the h PDLC-i PSCs group was more and the osteogenic related factors ALP,osteocalcin(OCN),Col-I and Runx2 were also expressed higher in hPDLC-iPSCs.The hPDLC-iPSC cell sheets were all successfully made.Histological analysis showed that the h PDLC-i PSC cell sheet got new bone formation.These results demonstrated that hPDLC-iPSCs were successfully generated from human periodontal ligament fibroblasts and hPDLC-iPSC cell sheets provided new options for bone tissue engineering. 展开更多
关键词 induced pluripotent stem cells(ipscs) OSTEOGENESIS cell sheet bone defect periodontal tissue regeneration
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