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在医学上,神经系统对神经损伤的自我修复能力往往有限。因此,探索有效修复损伤神经的方法已经成为近年来的研究热点。研究发现脂肪干细胞对各类损伤神经都有一定的修复作用,可作为修复神经损伤的种子细胞。脂肪干细胞不仅具有干细胞的特性而且还具有自身的优点;首先它属于成体细胞,来源于中胚层,具有多种分化的潜能;其次免疫原性较低,易于取材;另外脂肪干细胞移植后的风险较低,因此被认为是修复神经损伤的优秀种子细胞。就脂肪干细胞的特性及脂肪干细胞在神经创伤修复方面的研究进展和存在的问题进行综述。 相似文献
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周围神经损伤的修复是临床外科中的一个难题。尽管周围神经系统在损伤后具有内在的自我修复能力,但一般很难达到完全功能恢复,特别是近端的损伤或者大段的神经缺损。近年来,基于干细胞的细胞治疗为周围神经再生带来了曙光。大量研究表明干细胞可促进周围神经损伤的再生,然而其作用机制还不明确。为此,本文将对脂肪干细胞在周围神经损伤修复中作用包括向雪旺细胞分化、神经营养、血管形成、神经元保护、靶器官保护和免疫调节等作用进行归纳,并进一步探讨其潜在的作用机制。 相似文献
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成体干细胞包括多能诱导干细胞、胚胎干细胞、脐带血干细胞、脂肪干细胞等,其中脂肪干细胞因其取材方便,无伦理限制,且能诱导成多胚层细胞而成为最有应用前景的成体干细胞之一。脂肪干细胞可以诱导分化为脂肪细胞、骨细胞、软骨细胞、肌细胞和神经元,在特定的条件下,可以构建皮肤,骨和软骨组织工程,是多种组织工程的理想种子细胞,有非常重要的研究和应用价值。本文综述了ADSC的分离培养、诱导分化,并着重对脂肪干细胞在组织工程临床应用方面的最新发展进行了阐述,以期为深入研究脂肪干细胞提供理论基础。 相似文献
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心肌梗死的发病率日益增加,但目前标准疗法的效果不尽如人意。因此,人们不断探索新的治疗手段。近年来,干细胞被认为是再生和修复心肌的重要来源之一,已有多种类型的干细胞被证明具有向心肌分化的能力。目前,全球范围内已有数千名心梗患者接受自体干细胞治疗,但结果喜忧参半。本文将就当前干细胞在心肌再生和修复的研究进展进行综述并提出尚待解决的重要问题。 相似文献
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脂肪干细胞(adipose-derived stem cells,ADSCs)是一类从脂肪分离出来的具有自我更新及多向分化潜能的成体干细胞,ADSCs具有高度的可塑性,可分化成多种类型的细胞。与其他干细胞相比,ADSCs具有来源充足,取材方便,供体易接受等独特优势,已成为基础医学及临床治疗的研究热点。ADSCs诱导分化和移植可有效治疗多种组织损伤性疾病,改善或修复器官功能,近年来ADSCs作为细胞疗法及组织工程的新型种子细胞在泌尿系统疾病治疗中取得了重大进展。本文重点讨论ADSCs的生物学特性及其在泌尿系统疾病中的应用前景。 相似文献
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微环境在促进干细胞分化过程中起着重要的作用,研究心肌样微环境介导脂肪干细胞向心肌细胞分化有重要意义.将脂肪干细胞与心肌细胞直接或通过细胞培养小室间接共培养,检测脂肪干细胞的分化情况.对于直接共培养体系,采用绿色荧光蛋白CFSE对脂肪干细胞进行标记,然后与心肌细胞以1∶5混合后进行直接共培养,2周后,通过流式细胞仪分选分化的脂肪干细胞,并检测其分化情况.检测方法包括:扫描电镜和透射电镜观察细胞的超微结构;免疫细胞化学检测心肌特异性肌球蛋白重链(MHC)、肌钙蛋白(TnⅠ)和连接蛋白(Cx43);Western blot定量分析;RT-PCR检测心脏特异性转录因子mRNA的表达.结果表明,分化的脂肪干细胞呈现心肌样超微结构,并表达心肌特异性蛋白和转录因子,并且直接共培养体系中分化的脂肪干细胞其表达率明显高于间接共培养体系中的表达率.因此,在心肌样微环境中,除了可溶性细胞因子对分化起作用以外,心肌细胞产生的机械牵拉对脂肪干细胞向心肌细胞分化也起着重要的作用. 相似文献
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下肢缺血性疾病是临床常见的严重危害中老年人健康的疾病之一。目前,临床针对下肢缺血性疾病的治疗方法多样,但远期疗效欠佳,对于肢体严重缺血的患者往往需要进行截肢处理。脂肪干细胞(adipose-derived stemcells, ADSCs)作为再生医学用于治疗下肢缺血的种子细胞具有广阔的应用前景。本文将对ADSCs 治疗下肢缺血的研究进展进行综述。 相似文献
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Xiao-Yu Zhu Xiang-Zhong Zhang Lei Xu Qian Ding 《Biochemical and biophysical research communications》2009,379(4):1084-1090
The delivery of adipose-derived stem cells (ADSCs) for promoting tissue repair has become a potential new therapy, while hepatocyte growth factor (HGF) is an important growth factor with angiogenic, antifibrotic, and anti-inflammatory benefits. Therefore, transplantation of ADSCs into acute myocardial infarction (AMI) may improve cardiac function through angiogenesis and anti-fibrosis, and that hHGF may enhance these effects. ADSCs were isolated from human subcutaneous adipose tissue. Lentivirus vector encoding human HGF (lenti-hHGF) was constructed and infected into ADSCs. Results indicated that transplantation of ADSCs led to improvement of left ventricular function, explained partly through their ability to differentiate into endothelial cells, resulting in increased blood flow and decreased fibrosis. Furthermore, hHGF enhanced these effects. This suggests that ADSCs combined with HGF gene transfer may be a useful strategy for the treatment of patients with ischemic heart disease. 相似文献
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The prognosis of patients with myocardial infarction (MI) and resultant chronic heart failure remains extremely poor despite advances in optimal medical therapy and interventional procedures. Animal experiments and clinical trials using adult stem cell therapy following MI have shown a global improvement of myocardial function. Bone marrow-derived mesenchymal stem cells (MSCs) hold promise for cardiac repair following MI, due to their multilineage, self-renewal and proliferation potential. In addition, MSCs can be easily isolated, expanded in culture, and have immunoprivileged properties to the host tissue. Experimental studies and clinical trials have revealed that MSCs not only differentiate into cardiomyocytes and vascular cells, but also secrete amounts of growth factors and cytokines which may mediate endogenous regeneration via activation of resident cardiac stem cells and other stem cells, as well as induce neovascularization, anti-inflammation, anti-apoptosis, anti-remodelling and cardiac contractility in a paracrine manner. It has also been postulated that the anti-arrhythmic and cardiac nerve sprouting potential of MSCs may contribute to their beneficial effects in cardiac repair. Most molecular and cellular mechanisms involved in the MSC-based therapy after MI are still unclear at present. This article reviews the potential repair mechanisms of MSCs in the setting of MI. 相似文献
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罗颂明郭霞珍刘晓燕 《现代生物医学进展》2012,12(17):3224-3227
目的:探索气温突变对高血压大鼠心梗发病及心肌损害的影响。方法:给予肾动脉半结扎大鼠一次维生素D370 U/kg体重腹腔注射,22℃环境下饲以高脂饲料。10周后随机分为S、J和D三组,S组予以30分钟内升温至40℃处理,J组予以30分钟内降温至4℃的处理,D组为对照组。结果:S组大鼠急性心梗发病率为59.09%,J组大鼠发病率为26.32%,D组发病率为28.57%,S组大鼠以及J组大鼠血清肌钙蛋白、肌酸激酶、谷草转氨酶、肌酸激酶同工酶、乳酸脱氢酶含量(P<0.05)均明显高于D组大鼠,S组与D组大鼠肌钙蛋白等含量(P>0.1)无显著差异。结论:气温骤升、骤降均能加重造成心肌损害,但夏季气温骤升所造成的急性心梗发病率高于气温的骤降。 相似文献
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Yu Xia Kai Zhu Hao Lai Meidong Lang Yan Xiao Sheng Lian Changfa Guo Chunsheng Wang 《Experimental biology and medicine (Maywood, N.J.)》2015,240(5):593-600
Mesenchymal stem cell (MSC) transplantation by intramyocardial injection has been proposed as a promising therapy strategy for cardiac repair after myocardium infarction. However, low retention and survival of grafted MSCs hinder its further application. In this study, copolymer with N-isopropylacrylamide/acrylic acid/2-hydroxylethyl methacrylate-poly(ɛ-caprolactone) ratio of 88:9.6:2.4 was bioconjugated with type I collagen to construct a novel injectable thermosensitive hydrogel. The injectable and biocompatible hydrogel-mediated MSC transplantation could enhance the grafted cell survival in the myocardium, which contributed to the increased neovascularization, decreased interstitial fibrosis, and ultimately improved heart function to a significantly greater degree than regular MSC transplantation. We suggest that this novel hydrogel has the potential for future stem cell transplantation. 相似文献
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Qiang‐li Wang Hai‐jie Wang Zhi‐hua Li Yong‐li Wang Xue‐ping Wu Yu‐zhen Tan 《Journal of cellular and molecular medicine》2017,21(9):1751-1766
Cardiac patch is considered a promising strategy for enhancing stem cell therapy of myocardial infarction (MI). However, the underlying mechanisms for cardiac patch repairing infarcted myocardium remain unclear. In this study, we investigated the mechanisms of PCL/gelatin patch loaded with MSCs on activating endogenous cardiac repair. PCL/gelatin patch was fabricated by electrospun. The patch enhanced the survival of the seeded MSCs and their HIF‐1α, Tβ4, VEGF and SDF‐1 expression and decreased CXCL14 expression in hypoxic and serum‐deprived conditions. In murine MI models, the survival and distribution of the engrafted MSCs and the activation of the epicardium were examined, respectively. At 4 weeks after transplantation of the cell patch, the cardiac functions were significantly improved. The engrafted MSCs migrated across the epicardium and into the myocardium. Tendency of HIF‐1α, Tβ4, VEGF, SDF‐1 and CXCL14 expression in the infarcted myocardium was similar with expression in vitro. The epicardium was activated and epicardial‐derived cells (EPDCs) migrated into deep tissue. The EPDCs differentiated into endothelial cells and smooth muscle cells, and some of EPDCs showed to have differentiated into cardiomyocytes. Density of blood and lymphatic capillaries increased significantly. More c‐kit+ cells were recruited into the infarcted myocardium after transplantation of the cell patch. The results suggest that epicardial transplantation of the cell patch promotes repair of the infarcted myocardium and improves cardiac functions by enhancing the survival of the transplanted cells, accelerating locality paracrine, and then activating the epicardium and recruiting endogenous c‐kit+ cells. Epicardial transplantation of the cell patch may be applied as a novel effective MI therapy. 相似文献
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心肌顿抑也称缺血后心肌功能障碍,为持续数小时、数天、甚至数周的心肌细胞可逆性损伤。可见于急性冠脉综合症早期再灌注、心脏移植、心脏瓣膜置换等心脏外科大手术术后,应激性心肌病、心脏骤停、心肺复苏、主动脉狭窄、高血压性心脏病、房颤转复。心肌梗死后发生心肌顿抑是导致心梗死亡、心衰再住院的重要病因,但目前其发病机制尚不明确。有关心肌顿抑的研究已经由器官细胞水平,深入到分子基因水平。具体而言,心肌顿抑的发病机制包括:缺血再灌注导致的心肌细胞直接损伤、心肌细胞兴奋收缩脱偶联、线粒体及内质网损伤、血管内皮细胞功能障碍及微循环痉挛、能量代谢障碍、氧自由基损伤、钙超载理论、炎性介质释放理论、心肌顿抑的基因组学机制等。目前,广为接受的是氧自由基理论和钙超载理论。前者认为心肌梗死时,心肌组织氧自由基产生增多,清除障碍,导致心肌细胞结构受伤和功能障碍;后者认为心肌梗死时,心肌细胞酸中毒,细胞膜通透性增加,钙内流增多,同时,钙库重吸收钙障碍,导致钙超载,引起心肌细胞破坏、肌钙蛋白溶解,导致心功能障碍。阐明心肌顿抑发病机制,指导心梗治疗,有助于完善救治策略,改善预后。 相似文献
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目的:探讨心肌坏死标志物联合检测在急性心肌梗死早期诊断及鉴别中的意义。方法:选取2010年12月至2013年5月我院收治的90例患者,45例确诊急性心肌梗死患者为观察组,其余45例非急性心肌梗死患者为对照组。分别采集两组患者静脉血4 m L用于检验。采用免疫抑制法测定患者血清中肌酸激酶(CK)和肌酸激酶同工酶(CK-MB)含量,采用电化学发光法检测肌钙蛋白I(c Tn I)和肌红蛋白(MYO)含量。观察并比较不同时间点两组患者血清中CK、CK-MB、c TnⅠ及MYO含量的变化情况。结果:与对照组比较,观察组的血清CK、CK-MB、c TnⅠ及MYO的含量明显升高,其中CK及MYO升高最为显著,差异具有统计学意义(P0.05)。CK、CK-MB在发病3~6 h后快速升高,24 h达高峰;c TnⅠ前24 h与CK-MB同步,但维持时间较长;MYO在发病后1~2 h发生异常,12 h达峰值(P0.05)。结论:心肌坏死标志物联合检测可提高急性心肌梗死的检出率,有助于疾病的及时发现、诊断和治疗。 相似文献
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目的:探讨法舒地尔对单纯急性心肌梗死模型大鼠心肌形态学、心肌酶学及血液流变学变化的影响。方法:将40只Wistar大鼠分为空白组、假手术组、治疗组和模型组。治疗组给予法舒地尔0.01 m L/g,股静脉注射,其余各组给予生理盐水。治疗结束后检测各组大鼠心肌形态学、心肌酶学及血液流变学各指标。结果:与其余各组相比,治疗组大鼠各指标均显著改善,空白组与假手术组各指标水平无显著差异(P0.05),治疗组具体表现为:CK、LDH、ASH水平明显降低(P0.05);PAR、PAG水平均明显改善,与模型组相比明显降低;HCT、ESR水平明显降低(P0.05);MIS水平明显下降(P0.05)。结论:法舒地尔能够明显改善单纯急性心肌梗死模型大鼠的心肌形态学、心肌酶学及血液流变学各指标,对临床有指导意义。 相似文献