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1.
目的研究静脉移植骨髓间充质干细胞(MSCs)对脑缺血再灌注模型大鼠神经功能及凋亡相关蛋白caspase-3的影响。方法体外培养及扩增MSCs后,用绿色荧光染料羟基荧光素二醋酸盐琥珀酰亚胺脂(CFSE)标记,通过静脉途径移植给大脑中动脉缺血2 h再灌注的SD大鼠,按不同时间点取材,荧光显微镜观察BMSCs在脑内的分布,免疫组织化学染色及RT-PCR检测大鼠脑内caspase-3蛋白表达情况。结果移植组在移植后第6天神经功能明显好于对照组(P〈0.05)。移植组移植后3、12、24、48、72 h caspase 3免疫组化阳性目标面密度分别为(1.34±0.31)%、(3.98±0.67)%、(5.58±0.92)%、(4.65±0.69)%、(3.51±0.63)%,对照组分别为(2.09±0.19)%、(5.23±0.30)%、(6.89±0.57)%、(5.93±0.56)%、(4.39±0.57)%,移植组和对照组比较均(P〈0.05)。6h及7 d移植组caspase 3阳性目标面密度分别为(2.81±0.35)%、(1.64±0.29)%,与对照组(3.92±0.44)%,(2.29±0.21)%比较差异显著(P〈0.01)。移植组相应时间点caspase-3的表达明显低于对照组(P〈0.05,P〈0.01);移植组大鼠缺血侧皮层的caspase-3 mRNA相对量明显低于对照组(P〈0.01)。结论经静脉注射骨髓间充质干细胞可明显改善神经功能。其可能通过下调caspase-3表达方式对脑缺血再灌注损伤起保护作用。  相似文献   

2.
目的探讨人参皂苷Rg1对脑缺血再灌注大鼠脑组织半胱氨酸天冬氨酸酶3(Caspase-3)表达的影响。方法将大鼠随机分为假手术组、模型组、人参皂苷Rg110、20、40mg/kg组、尼莫地平组,每组10只。采用线栓法栓塞大脑中动脉2h制作大鼠脑缺血再灌注模型;观察再灌注22h后神经功能缺损评分;应用免疫组化、免疫印迹法检测大脑皮层缺血半暗带Caspase-3的表达。结果(1)假手术组、模型组、人参皂苷Rg110、20、40mg/kg组和尼莫地平组神经功能缺损评分分别为0、2.8±0.9、2.1±0.9、1.5±0.7、1.3±1.1、1.5±0.7,差异有统计学意义(P0.05)。人参皂苷Rg120、40mg/kg组与模型组比较,差异有统计学意义(P0.05);人参皂苷Rg110mg/kg组与尼莫地平组比较,差异有统计学意义(P0.05);人参皂苷Rg120、40mg/kg组与尼莫地平组比较,差异均无统计学意义(P0.05)。(2)免疫组化和免疫印迹结果显示各组大鼠皮层缺血半暗带均有Caspase-3的表达,其中假手术组仅有少量表达,模型组表达最多。与模型组比较,人参皂苷Rg1各剂量组及尼莫地平组Caspase-3表达量减少,差异有统计学意义(P0.05);与尼莫地平组比较,人参皂苷Rg110mg/kg组的Caspase-3表达量显著增高,40mg/kg组显著降低(P0.05),而20mg/kg组则差异无统计学意义(P0.05)。结论人参皂苷Rg1防治脑缺血再灌注的机制与抑制脑组织Caspase-3表达有关,且以高剂量效果较好。  相似文献   

3.
目的:研究骨髓间充质干细胞(MSC)对大鼠脑缺血再灌注损伤的治疗机制。方法:20只Wistar大鼠随机分为对照组和MSC治疗组。应用GFP阳性MSC,再灌注1d后经尾静脉注射MSC(1×106),对照组则注射PBS。采用线栓法建立脑缺血再灌注模型。术后每天由双盲于试验组的研究人员应用爬杆计分法评定大鼠神经功能。缺血2h再灌注8d取脑组织,用免疫组织化学方法检测脑组织中bFGF的表达。结果:MSC治疗组大鼠的神经功能缺损评分明显低于手术组和对照组(P<0.05)。MSC治疗组缺血侧缺血周边区脑组织中观察到GFP阳性与bFGF免疫组化染色阳性细胞。结论:经尾静脉给予的MSC可促进脑缺血再灌注大鼠的运动功能恢复;bFGF表达升高,可能是MSC脑保护作用机制之一。  相似文献   

4.
目的观察Ucf—101对大鼠脑缺血再灌注后神经元caspase-3蛋白表达及细胞凋亡的影响,研究其对缺血性脑损伤是否具有保护作用。方法将36只雄性WiStar大鼠随机分为3组:假手术组、缺血组及Ucf—101组,采用线栓法建立大鼠右侧大脑中动脉闭塞(middle cerebral artery occlusion,MCAO)2h再灌注模型,于再灌注后6h和24h断头取脑,采用TTC法测梗死体积,TUNEL法原位标记DNA片段,检测TUNEL阳性细胞的变化,免疫组化法观察脑皮质神经元caspase-3的表达。结果脑缺血再灌注后不同时间点(6h、24h),Ucf-101组与缺血组相比梗死体积明显缩小,有显著性差异(P〈0.05);假手术组未见梗死现象。缺血组TUNEL阳性细胞数较假手术组明显增多(P〈0.05),脑皮质caspase-3的表达较假手术组亦显著增强(P〈0.05),给予Ucf-101处理后,TUNEL阳性细胞数较缺血组明显减少(P〈0.05),caspase-3的表达较缺血组亦明显减弱(P〈0.05)。结论Ucf-101能有效地抑制脑缺血再灌注损伤,下调脑皮质神经元Caspase-3蛋白的表达,抑制神经元的凋亡,发挥神经保护作用。  相似文献   

5.
目的 观察骨髓间充质干细胞(MSCs)对移植肾缺血再灌注损伤(IRI)模型修复的保护作用,及其作用机制的思路。方法 (1)采用密度梯度离心法结合贴壁分离法分离培养纯化SD大鼠骨髓MSCs,观察其形态,流式细胞仪检测细胞表面标记,检测骨髓MSCs向成骨和成脂细胞分化的潜能;(2)成年雌性SD大鼠28只,随机分组:正常对照组(control group,n=6),假手术对照组(sham-operated group,n=6),移植肾IRI组(vehicle-treated I/R group,n=8),经尾静脉输注间充质干细胞(MSCs)移植肾IRI组(MSCs-treated via tail vein I/R group,n=8)。检测肾功能指标血尿素氮(BUN)和肌酐(Cr)水平变化,评定肾小管的凋亡指数和增殖指数,测定肾组织起氧化物歧化酶(SOD)、谷胱甘肽过氧化物酶(GSH-Px)活性及微量丙二醛(MDA)水平,以及对肾脏病理学变化进行观察。结果 (1)分离培养的骨髓MSCs纯度高、生物学特征稳定;(2)移植肾IRI组肾功能指标(BUN36.9±4.8,Scr279.9±22.6)、氧化应激指标明显升高,组织形态学出现肾间质水肿明显,肾小管上皮细胞空泡样变性,近曲小管管壁肿胀,管腔变小。而经尾静脉输注MSCs移植肾IRI组大鼠肾功能指标(BUN22.6±7.8,Scr223.6±26.7)和氧化应激指标得到明显改善(P〈0.05),组织形态学肾小管上皮细胞细胞核固缩、碎裂和溶解等细胞坏死和变性征象明显减轻,肾小管上皮细胞增殖指数(PI)高于IRI组,肾小管上皮细胞凋亡指数(AI)低于IRI组,两组间差异有统计学意义(P〈0.05)。结论 骨髓MSCs输注能促进肾脏IRI损伤后肾脏细胞增殖,抑制肾脏细胞凋亡,降低血清Creatinine和BUN,在一定程度上促进IRI后肾功能的恢复,通过抑制氧自由基的生成减轻肾组织的损伤程度,改善肾功能。  相似文献   

6.
骨髓间充质干细胞移植对心衰大鼠心肌结构和功能的影响   总被引:11,自引:0,他引:11  
研究骨髓间充质干细胞(MSC)移植对心力衰竭(简称心衰)大鼠心肌结构和功能的影响以及在病损心肌体内分化为心肌细胞的情况。将96只Wistar大鼠,用阿霉素成功诱导了54只心衰模型,随机分成3组,移植组为左室前壁注射MSC,对照组注射培养基,心衰组不给予任何干预措施。由彩色超声心动图(TTE)监测左室心功能参数。8周检测完成后取出心脏标本,做冰冻切片脏染色观察病损心肌结构的变化及免疫荧光检查植入MSC心肌肌球蛋白重链(MHC)及心肌特有的连接蛋白(Cx43)表达情况。结果表明植入的MSC存活并表达了MHC及Cx43,其周围宿主心肌细胞肿胀明显减轻。在移植MSC2周后,心功能开始改善,至8周时,心功改善能更明显。由此得出结论:MSC在病损心肌体内不仅能存活、分化为心肌细胞,使病损心肌组织病变减轻。而且可显著改善心衰大鼠的心功能。  相似文献   

7.
目的观察同种异体骨髓间充质干细胞(MSCs)移植对放射性空肠的修复作用。方法全骨髓贴壁体外培养大鼠MSCs并进行DAPI标记。对大鼠行5 Gy X线全腹部照射,每隔72 h照射1次,共5次,制备放射性空肠损伤动物模型。取40只大鼠,随机分成正常对照组、模型及MSCs治疗组及DAP标记组。激光共聚焦显微镜下观察DAPI标记的MSCs在空肠组织中富集情况。病理学观察MSCs对放射性空肠损伤的修复作用。结果正常大鼠空肠黏膜结构清楚,隐窝深遂,腺体丰富,模型组7 d黏膜上皮细胞坏死脱落,隐窝几乎完全破坏,治疗组7 d黏膜坏死组织较少,黏膜增厚,30 d治疗组核分裂相增加,较模型组增加明显。结论成功建立放射性空肠损伤动物模型,MSCs可以促进空肠再生与修复。  相似文献   

8.
目的探讨大鼠骨髓间充质干细胞(MSCs)在缺氧环境下凋亡相关蛋白和mRNA的表达。方法将接种的P3细胞置于94%N2、1%O2和5%CO2缺氧箱中37℃孵育,分别于0.5h、1h、2h、4h、6h、8h和12h取出分别应用Annexin V/PI双染法进行流式细胞仪(FCM)分析MSCs凋亡率(Apoptotic Rate,AR),并同步用免疫细胞化学、western blotting和Rt-PCR等方法检测Bax/Bcl-2,Fas/FasL和Caspase-3蛋白和mRNA的表达。结果1.缺氧前,免疫细胞化学法未检测到Bcl-2、Bax、Fas、FasL和Caspase-3蛋白表达,缺氧0.5h后均可较强表达;2.各缺氧时间点Bcl-2、Bax、Fas、FasL、Caspase-3蛋白和mRNA表达较缺氧前均显著性增高(P均〈0.05);随缺氧时间延伸,Bcl-2蛋白和mRNA表达不显著增加(P〉0.05),而Bax、Fas、FasL、Caspase-3蛋白和mRNA表达均显著增加(P均〈0.05),但缺氧6-12h时间点之间表达均没有统计学意义(P均〉0.05);3.AR和Bcl-2/Bax蛋白(r1=0.417,P=0.043)及mRNA(r2=-0.435,P=0.040)呈显著负相关,而和Fas(r1=0.639,P=0.025;r2=0.711,P=0.018)、Fas-L(r1=0.581,P=0.022;r2=0.605,P=0.037)、Caspase-3(r1=0.704,P=O.014;r2=0.657,P=0.026)蛋白及mRNA均呈显著正相关。结论在缺氧促进MSCs凋亡的过程中,Bcl-2蛋白和mRNA可能起着保护作用,而Bax、Fas-L、Fas、Caspase-3蛋白和mRNA可能在MsCs凋亡的进程中起着促进作用。  相似文献   

9.
目的:观察骨髓间充质干细胞(BMSC)移植对脑梗死大鼠神经功能恢复的影响,并对其相关机制进行探讨。方法:90只大鼠随机分为3组:假手术组、对照组、BMSC移植组,每组30只。对照组和BMSC移植组建立大鼠大脑中动脉阻塞(MCAO)模型,假手术组只需要分离大鼠颈部组织,而不造MCAO模型。BMSC移植组在MCAO模型术后1天经尾静脉注射1 mL/3×10~6 BMSC,对照组注射同剂量的生理盐水,于MCAO术后1 d、3 d、7 d、14 d、21 d、28 d、35 d、42 d、49 d分别对各组大鼠进行神经功能评分(mNSS),术后2个月对BMSC移植组及对照组大鼠脑组织进行免疫组化染色,检测MAP2、TUJ1、Ⅷ因子、GFAP的表达情况。结果:在治疗后的第7天至第35天,BMSC移植组mNSS均显著低于对照组(P0.05)。术后2个月,BMSC移植组MAP2、TUJ1、Ⅷ因子表达量显著高于对照组,而GFAP表达量显著低于于BMSC对照组(P0.01)。结论:BMSC移植可以促进脑梗死神经功能的恢复。  相似文献   

10.
目的:应用实时荧光PCR检测大鼠脑缺血/再灌注损伤组织中的Caspase-3基因表达变化,并比较了相对定量与绝对定量分析方法的技术优劣.方法:相对定量实验中,以β-actin基因作为内参,采用Delta-delta Ct法计算目的基因表达变化.而在绝对定量实验中,构建了含Caspase-3基因的重组质粒,以该重组质粒作...  相似文献   

11.
Bone tissue engineering(BTE) is now a promising re-search issue to improve the drawbacks from traditional bone grafting procedure such as limited donor sources and possible complications. Stem cells are one of the major factors in BTE due to the capability of self re-newal and multi-lineage differentiation. Unlike embry-onic stem cells, which are more controversial in ethical problem, adult mesenchymal stem cells are considered to be a more appropriate cell source for BTE. Bone marrow mesenchymal stem cells(BMSCs) are the ear-liest-discovered and well-known stem cell source using in BTE. However, the low stem cell yield requiring long expansion time in vitro, pain and possible morbidities during bone marrow aspiration and poor proliferation and osteogenic ability at old age impede its' clinical ap-plication. Afterwards, a new stem cell source coming from adipose tissue, so-called adipose-derived stemcells(ASCs), is found to be more suitable in clinical ap-plication because of high stem cells yield from lipoaspi-rates, faster cell proliferation and less discomfort and morbidities during harvesting procedure. However, the osteogenic capacity of ASCs is now still debated be-cause most papers described the inferior osteogenesis of ASCs than BMSCs. A better understanding of the osteogenic differences between ASCs and BMSCs is crucial for future selection of cells in clinical application for BTE. In this review, we describe the commonality and difference between BMSCs and ASCs by cell yield, cell surface markers and multiple-differentiation poten-tial. Then we compare the osteogenic capacity in vitro and bone regeneration ability in vivo between BMSCs and ASCs based on the literatures which utilized both BMSCs and ASCs simultaneously in their articles. The outcome indicated both BMSCs and ASCs exhibited the osteogenic ability to a certain extent both in-vitro and in-vivo. However, most in-vitro study papers verified the inferior osteogenesis of ASCs; conversely, in-vivo research reviews revealed more controversies in this issue. We expect the new researchers can have a quick understanding of the progress in this filed and design a more comprehensive research based on this review.  相似文献   

12.
Osteoporosis is a severe skeletal disorder. Patients have a low bone mineral density and bone structural deterioration. Mounting lines of evidence suggest that inappropriate apoptosis of osteoblasts/osteocytes leads to maladaptive bone remodelling in osteoporosis. It has been suggested that transplantation of stem cells, including mesenchymal stem cells, may alter the trajectory of bone remoulding and mitigate osteoporosis in animal models. However, stem cells needed to be carefully stored and characterized before usage. In addition, there is great batch‐to‐batch variation in stem cell production. Here, we fabricated therapeutic polymer microparticles from the secretome and membranes of mesenchymal stem cells (MSCs). These synthetic MSCs contain growth factors secreted by MSCs. In addition, these particles display MSC surface molecules. In vitro, co‐culture with synthetic MSCs increases the viability of osteoblast cells. In a rat model of ovariectomy‐induced osteoporosis, injection of synthetic MSCs mitigated osteoporosis by reducing cell apoptosis and systemic inflammation, but increasing osteoblast numbers. Synthetic MSC offers a promising therapy to manage osteoporosis.  相似文献   

13.
目的 探讨移植途径对骨髓间充质干细胞(MSCs)归巢及促进肝切除大鼠肝再生的影响.方法 建立肝切除大鼠模型,随机分为3 组,即肝切除对照组、尾静脉移植组和门静脉移植组.移植组分别经尾静脉和门静脉注射DAPI 标记的MSCs 约1.5×106/ 只,分别于第3 天和第9 天后采血清检测肝功能,第9 天处死大鼠取肝脏标本,并通过荧光显微镜观察两种移植途径对MSCs 向肝脏迁移的影响.结果 门静脉移植组(18.1 ± 3.4)个细胞/100 倍视野到肝脏归巢及定植的 MSCs 多于尾静脉移植组(7.6 ± 2.0)个细胞/100 倍视野,差异有统计学意义(P 〈 0.01).术后第9 天各组大鼠肝功能均有好转,丙氨酸氨基转移酶(ALT)及天冬氨酸氨基转移酶(AST)3 组之间对比差异无统计学意义(F = 2.822,1.046,P = 0.057,0.365,P 〉 0.05);但两移植组与单纯肝切除组比较血浆白蛋白(ALB)均有明显升高,差异具有统计学意义(F = 6.259,P = 0.006);尾静脉移植组与门静脉移植组两移植组之间相比,差异无统计学意义(P 〉 0.05).结论 移植途径对 MSCs 归巢、定植到肝脏有一定影响,门静脉途径优于外周静脉,MSCs 移植对肝大部切除大鼠肝功能恢复具有促进作用.  相似文献   

14.
目的:探讨骨髓间充质干细胞(MSCs)移植对大鼠低氧性肺动脉高压(HPH)的影响。方法:体外分离、培养、鉴定SD大鼠骨髓MSCs、绿色荧光蛋白腺病毒标记MSCs细胞。将健康雄性SD大鼠随机分为4组:正常对照组(NC组)8只、低氧性肺动脉高压组(HPH组)8只,低氧性肺动脉高压同时骨髓间充质干细胞移植组(MSCs组)24只,低氧性肺动脉高压同时携带血管内皮生长因子(VEGF)的MSCs移植组(VEGF+MSCs组)24只。采用常压间歇低氧法建立大鼠肺动脉高压模型,干细胞转染并行干细胞移植。观察大鼠平均肺动脉压力(mPAP),计算右心室肥厚指数(RVHI),显微镜下观察各组大鼠肺小动脉形态结构改变,并在荧光显微镜下观察干细胞移植7d,14d,28d时腺病毒转染荧光标记的MSCs在肺小动脉分布及表现。结果:NC组28d时mPAP(mmHg)为15.5±1.5,而HPH组、MSCs组及MSCs+VEGF组分另q为26.1±1.9、21.6±2.7及20.1±2.9,均明显高于NC组(P〈0.01),但MSCs组及MSCs+VEGF组较HPH组明显下降(P〈0.01),MSCs组与MSCs+VEGF组无明显差别。NC组28d时RVHI为0.28±0.02,而HPH组、MSCs组及MSCs+VEGF组RVHI分别为0.43±0.07、0.34±0.03及0.35±0.01,均明显高于NC组(P〈0.01),但MSCs组及MSCs+VEGF组较HPH组明显下降(P〈0.05),MSCs组与MSCs+VEGF组无明显差别。HPH组28d时,肺小动脉管壁明显增厚,管腔明显狭窄、闭塞,内皮细胞不完整,而MSCs组血管壁较HPH组变薄,管腔通畅,内皮细胞完整性改善,MSC8组及MSCs+VEGF组的表现改变不明显。结论:骨髓间充质干细胞移植可改善肺小动脉血管重塑,从而部分逆转HPH的进程;而将VEGF与MSCs联合移植并未提高单纯MSCs移植的作用。  相似文献   

15.
This study was performed to determine if a combination of previously undifferentiated bone marrow-derived mesenchymal stem cells (BMMSCs) and exogenous bone morphogenetic protein-2 (BMP-2) delivered via heparin-conjugated PLGA nanoparticles (HCPNs) would extensively regenerate bone in vivo. In vitro testing found that the HCPNs were able to release BMP-2 over a 2-week period. Human BMMSCs cultured in medium containing BMP-2-loaded HCPNs for 2 weeks differentiated toward osteogenic cells expressing alkaline phosphatase (ALP), osteopontin (OPN) and osteocalcin (OCN) mRNA, while cells without BMP-2 expressed only ALP. In vivo testing found that undifferentiated BMMSCs with BMP-2-loaded HCPNs induce far more extensive bone formation than either implantation of BMP-2-loaded HCPNs or osteogenically differentiated BMMSCs. This study demonstrates the feasibility of extensive in vivo bone regeneration by transplantation of undifferentiated BMMSCs and BMP-2 delivery via HCPNs. Sung Eun Kim and Oju Jeon equally contributed to this work  相似文献   

16.
户小伟  劳山 《蛇志》2012,24(2):108-110
目的研究Wnt/β-catenin通路激活剂氯化锂(LiCl)对兔骨髓间充质干细胞(bone marrowmesen-chymal stem cells,BMSCs)增殖的影响。方法体外纯化培养兔BMSCs,流式细胞仪检测细胞表面抗体,以不同浓度的LiCl作用兔骨髓间充质干细胞24h后,采用Cell Counting Kit-8(CCK-8)检测各组细胞的增殖活性。结果低浓度LiCl促进兔BMSCs增殖,高浓度LiCl抑制兔BMSCs增殖。结论低浓度LiCl抑制GSK3β,模拟激活Wnt/β-catenin信号途径,从而促进细胞增殖,而高浓度LiCl增加了对细胞的毒性而抑制其增殖。  相似文献   

17.
Previous studies demonstrated that mitochondrial fission arguments the stemness of bone marrow-derived mesenchymal stem cells (BMSCs). Because mitophagy is critical in removing damaged or surplus mitochondrial fragments and maintaining mitochondrial integrity, the present study was undertaken to test the hypothesis that mitophagy is involved in mitochondrial fission-enhanced stemness of BMSCs. Primary cultures of rat BMSCs were treated with tyrphostin A9 (TA9, a potent inducer of mitochondrial fission) to increase mitochondrial fission, which was accompanied by enhanced mitophagy as defined by increased co-staining of MitoTracker Green for mitochondria and LysoTracker Deep Red for lysosomes, as well as the increased co-localization of autophagy markers (LC3B, P62) and mitochondrial marker (Tom20). A mitochondrial uncoupler, carbonyl cyanide 4-(trifluoromethoxy) phenylhydrazone (FCCP) was used to promote mitophagy, which was confirmed by an increased co-localization of mitochondrial and lysosome biomarkers. The argumentation of mitophagy was associated with enhanced stemness of BMSCs as defined by increased expression of stemness markers Oct4 and Sox2, and enhanced induction of BMSCs to adipocytes or osteocytes. Conversely, transfection of BMSCs with siRNA targeting mitophagy-essential genes Pink1/Prkn led to diminished stemness of the stem cells, as defined by depressed stemness markers. Importantly, concomitant promotion of mitochondrial fission and inhibition of mitophagy suppressed the stemness of BMSCs. These results thus demonstrate that mitophagy is critically involved in mitochondrial fission promotion of the stemness of BMSCs.  相似文献   

18.
The effect of dysfunctional mitochondria in several cell pathologies has been reported in renal diseases, including diabetic nephropathy and acute kidney injury. Previous studies have reported that mitochondrial transplantation provided surprising results in myocardial and liver ischemia, as well as in Parkinson's disease. We aimed to investigate the beneficial effects of isolated mitochondria transplantation from mesenchymal stem cells (MSCs) in vivo, to mitigate renal damage that arises from doxorubicin‐mediated nephrotoxicity and its action mechanism. In this study, a kidney model of doxorubicin‐mediated nephrotoxicity was used and isolated mitochondria from MSCs were transferred to the renal cortex of rats. The findings showed that the rate of isolated mitochondria from MSCs maintains sufficient membrane integrity, and was associated with a beneficial renal therapeutic effect. Following doxorubicin‐mediated renal injury, isolated mitochondria or vehicle infused into the renal cortex and rats were monitored for five days. This study found that mitochondrial transplantation decreased cellular oxidative stress and promoted regeneration of tubular cells after renal injury (P < .001, P = .009). Moreover, mitochondrial transplantation reduced protein accumulation of tubular cells and reversed renal deficits (P = .01, P < .001). Mitochondrial transplantation increased Bcl‐2 levels, and caspase‐3 levels decreased in injured renal cells (P < .015, P < .001). Our results provide a direct link between mitochondria dysfunction and doxorubicin‐mediated nephrotoxicity and suggest a therapeutic effect of transferring isolated mitochondria obtained from MSCs against renal injury. To our knowledge, this study is the first study in the literature that showed good therapeutic effects of mitochondrial transplantation in a nephrotoxicity model, which is under‐researched.  相似文献   

19.
Osteoporosis is a systemic metabolic bone disease with characteristics of bone loss and microstructural degeneration. The personal and societal costs of osteoporosis are increasing year by year as the ageing of population, posing challenges to public health care. Homing disorders, impaired capability of osteogenic differentiation, senescence of mesenchymal stem cells (MSCs), an imbalanced microenvironment, and disordered immunoregulation play important roles during the pathogenesis of osteoporosis. The MSC transplantation promises to increase osteoblast differentiation and block osteoclast activation, and to rebalance bone formation and resorption. Preclinical investigations on MSC transplantation in the osteoporosis treatment provide evidences of enhancing osteogenic differentiation, increasing bone mineral density, and halting the deterioration of osteoporosis. Meanwhile, the latest techniques, such as gene modification, targeted modification and co‐transplantation, are promising approaches to enhance the therapeutic effect and efficacy of MSCs. In addition, clinical trials of MSC therapy to treat osteoporosis are underway, which will fill the gap of clinical data. Although MSCs tend to be effective to treat osteoporosis, the urgent issues of safety, transplant efficiency and standardization of the manufacturing process have to be settled. Moreover, a comprehensive evaluation of clinical trials, including safety and efficacy, is still needed as an important basis for clinical translation.  相似文献   

20.
Early intervention with bone marrow mesenchymal stem cells to change the form and function of the gut microbiota may help rats regain neurological function after a stroke.  相似文献   

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