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1.
通过Alamarblue、BrdU掺入免疫荧光双标法、流式细胞术检测了抑制性神经递质GABA(γ-aminobutyricacid)对成年小鼠脑室下区(sub ventricular zone,SVZ)来源的神经干细胞(neu—ral stem cell,NSC)增殖的影响。结果表明,成体NSCs被不同浓度的GABA和BICC干预后,GABA组增殖较空白对照组明显增强。BICC组的增殖则减弱;GABA组作用后增殖活跃期的NSCs比例明显高于空白对照组,BICC组增殖活跃期的NSCs比例明显降低沪〈O.05);GABA作用组的处于s—G2期的细胞比例较对照组显著增加(P〈0.05)。该研究表明,GABA能促进成年小鼠SVZ区来源的NSCs进入增殖活跃期从而促进其增殖。  相似文献   

2.
目的研究成年大鼠局灶性脑缺血后海马齿状回(DG)神经发生的情况及其与血管内皮生长因子(VEGF)的关系,探讨脑缺血后神经发生及其调控机制。方法通过大脑中动脉阻断法(MCAO)建立大鼠局灶性脑缺血模型,以5-溴-2-脱氧尿核苷(BrdU)标记增殖的神经前体细胞(NPCs),用免疫组化及免疫荧光双标记法动态检测脑缺血后不同时间DG神经细胞增殖及其分化,同时观察增殖细胞表达VEGF及其受体情况。结果与对照组相比,缺血侧DG的BrdU阳性细胞数在脑缺血后1d开始增加,7d达高峰,28d接近正常水平;BrdU/TuJ1、BrdU/MAP-2阳性双标细胞数在脑缺血后14d开始增加,28d达高峰;BrdU/GFAP阳性双标细胞数则无明显变化;增殖的BrdU阳性细胞同时表达VEGF及其受体FLK-1。结论大鼠局灶性脑缺血可激活DG自体NPCs原位增殖、分化,增殖的细胞同时表达VEGF及其受体可能是脑缺血后神经发生增强的调节机制之一。  相似文献   

3.
IGF-1对缺血性脑损伤大鼠脑内神经发生的影响   总被引:3,自引:0,他引:3  
目的:建立大鼠单侧局灶脑缺血模型,观察胰岛素样生长因子-1(IGF-1)对局灶脑缺血后的鼠脑神经发生及增殖后细胞生存的影响.方法:用健康雄性SD大鼠建立大脑中动脉阻塞(MCAO)模型,随机分成假手术组,缺血对照组和IGF-1治疗组.各组再按不同的治疗时间分为7d、14d、28d、42d组.免疫组化法观察BrdU、PSA-NCAM的变化,免疫双标法观察BrdU/PSA-NCAM、BrdU/MAP2和BrdU/GFAP的共同表达变化.结果:BrdU标记细胞和PSA-NCAM标记细胞计数均在缺血后第7d最多,分别是缺血对照组的4.0倍和1.8倍,是假手术组的9.9倍和5.4倍.BrdU和PSA-NCAM双标细胞在缺血发生后双侧SVZ和DG区可以检测到,于第7d计数最多,之后逐渐降低;而BrdU和MAP2以及BrdU和GFAP双标细胞却从第14d开始逐渐增多,直到第42d.随着BrdU/PSA-NCAM双标阳性表达的逐渐降低,BrdU/MAP2双标阳性表达逐渐增高,呈现此消彼涨的变化.结论:IGF-1侧脑室注射后,在早期(7d内)诱导了缺血性脑损伤后神经细胞的增殖;在中期(7d-14d)诱导了新生细胞的迁移;在后期(14d后)伴随着迁移的进行新生细胞逐渐发生了分化.  相似文献   

4.
目的观察糖尿病易感小鼠及患病小鼠的病情与肠道菌群变化情况,探讨二者之间的联系,为预防与治疗Ⅱ型糖尿病提供实验依据。方法昆明系小鼠50只,随机分为5组:空白对照组(CON组)、病例对照组(DM组)、预防组(Y组)、低剂量治疗组(L组)和高剂量治疗组(H组),每组10只,以链脲佐菌素(STZ)腹腔注射构建Ⅱ型糖尿病小鼠模型,CON组仅每日予以同等剂量生理盐水,Y组造模前灌胃嗜酸乳杆菌。各组每日灌胃相应浓度药物进行治疗,CON组与DM组以等量生理盐水处理。观察至造模后25 d各组的体重、空腹血糖、C肽水平、血脂谱、胰腺组织学和肠道菌群变化情况。结果 (1)灌胃嗜酸乳杆菌活菌制剂后,小鼠血糖降低,小鼠体重恢复至正常,C肽水平有所回升,肠道益生菌的数量有所恢复。但是某些条件致病菌在整个实验里呈递增状态。(2)STZ诱导Ⅱ型糖尿病后,小鼠TG、LDL升高,而TC与HDL变化不明显。灌胃后25 d,各组小鼠升高的TG、LDL均有不同程度的回落。(3)小鼠胰岛病理结构变化:Y组胰岛细胞形态接近CON组,边界较清楚,细胞排列较整齐,胰岛数及岛内细胞数多于L、H组,细胞分布均匀,核大小基本相等,少部分核固缩。结论嗜酸乳杆菌对STZ所致Ⅱ型糖尿病小鼠胰岛结构和功能的损伤具有保护作用;STZ建立Ⅱ型糖尿病模型小鼠肠道菌群发生紊乱,双歧杆菌和乳杆菌的数量减少。肠杆菌、葡萄球菌变化的规律不明显。  相似文献   

5.
目的:观察口服AdipoRon对2型糖尿病小鼠脾脏和胰腺功能的影响,为AdipoRon的临床应用提供基础资料。方法:将40只C57/BL6雄性小鼠随机分为正常对照组(NC,n=10)和造模组(n=30),并分别给予普通饲料和高脂高糖饲料喂养。4周后,造模组小鼠腹腔注射链脲佐菌素(STZ,40 mg/kg)以诱导建立2型糖尿病模型。造模成功后将糖尿病模型小鼠随机分为糖尿病模型组(DM)、高剂量AdipoRon(50 mg/kg)(DM+H)组、低剂量AdipoRon(20 mg/kg)(DM+L)组,每组10只。DM+L组和DM+H组灌胃相应浓度的AdipoRon(使用去离子水溶解AdipoRon),NC组和DM组灌胃等体积去离子水,每日灌胃1次,灌胃10 d。末次干预后禁食12 h,处死小鼠取血液、胰腺和脾脏。HE染色光镜下观察胰腺的病理改变; ELISA法检测小鼠胰腺和脾脏组织中胰岛素受体(INSR)、胰岛素受体底物1(IRS-1)和肿瘤坏死因子-α(TNF-α)蛋白质含量;小鼠脾脏系数; Western blot法检测胰腺组织中pIRS-1蛋白质水平;实时荧光定量PCR检测胰腺组织中insulin mRNA表达。结果:光镜下可见正常组小鼠胰腺组织排列紧密、饱满、胰岛体积大,DM组小鼠胰腺组织排列较为疏散、胰岛体积较小,口服AdipoRon组小鼠胰腺组织基本紧密、饱满、胰岛体积略小。与NC比较,DM组小鼠胰腺和脾脏TNF-α水平明显升高,INSR、IRS-1水平均降低,脾脏系数、胰腺p-IRS-1蛋白质水平和insulin mRNA表达均降低,均具有统计学意义(P<0.05);与DM组比较,口服AdipoRon组小鼠胰腺和脾脏TNF-α水平明显下降,INSR和IRS-1水平均升高,脾脏系数升高,DM+H组胰腺p-IRS-1蛋白质水平和insulin mRNA表达均升高(P<0.05);与DM+L组比较,DM+H组小鼠TNF-α水平明显下降,INSR和IRS-1水平均升高(P<0.05)。结论:口服AdipoRon可通过减弱糖尿病小鼠炎症反应,上调INSR表达、提高p-IRS-1水平,从而对糖尿病小鼠脾脏和胰腺组织有一定的保护作用。  相似文献   

6.
目的建立I型糖尿病NOD小鼠模型,探讨LIGHT在I型糖尿病模型NOD小鼠中的表达及意义。方法监测雌性NOD小鼠血糖、胰岛素水平;NOD小鼠分为4组,即未发病5周龄及11周龄组、发病1 w和2 w组。采用qRT-PCR、Western blot、免疫组化技术分析NOD小鼠胰腺组织LIGHT的mRNA、蛋白表达变化;ELISA法检测血清胰岛素、可溶性LIGHT及Th1细胞因子IFN-γ含量;HE染色检测胰岛炎,对胰岛炎评分,并对血清LIGHT含量与IFN-γ含量及胰岛炎积分进行相关性分析。结果糖尿病发病组NOD小鼠胰腺组织LIGHT基因的mRNA和蛋白表达及血清LIGHT浓度均明显高于未发病的5周龄组(P0.05),血清中Th1细胞因子IFN-γ分泌显著增加。血清LIGHT含量与IFN-γ水平及胰岛炎积分呈明显正相关(r1=0.52,r2=0.87,P0.01)。结论 LIGHT在NOD小鼠胰腺组织中的表达上调,可能影响Th1细胞因子IFN-γ的分泌及胰岛炎程度,血清LIGHT能反映I型糖尿病胰岛炎的严重程度。  相似文献   

7.
为了探讨强制运动对成年大鼠海马齿状回(dentate gyrus,DG)神经发生的影响,强制大鼠在马达驱动的转轮中跑步,用5-溴-2-脱氧尿苷(5-bromo-2-deoxyuridine,BrdU)标记增殖细胞,巢蛋白(neuroepthelial stem cell protein,nestin)标记神经干细胞/前体细胞,然后用免疫细胞化学技术检测大鼠DG中BrdU及nestin阳性细胞。为了解强制运动后DG增殖细胞的功能意义,采用Y-迷宫检测大鼠的学习能力。结果表明,强制运动组DG中BrdU及nestin阳性细胞数均日月显多于对照组(P〈0.05):强制运动对DG神经发生的效应有强度依赖性。Y-迷宫检测结果显示,强制运动能明显改善大鼠的学习能力。结果提示,在转轮中进行强制跑步能促进成年火鼠DG的神经发生,并改善学习能力。  相似文献   

8.
目的:观察西红花水提物对链脲佐菌素(STZ)诱导的糖尿病小鼠血糖、血脂及胰腺组织的影响。方法:采用STZ (60 mg/kg)连续2 d腹腔注射建立糖尿病小鼠模型。将造模成功后的小鼠随机分为3组(n=10):糖尿病模型(DM)组、西红花水提物(SE)组、阳性对照二甲双胍(MH)组。另取10只正常小鼠设为正常对照(NC)组。给药组每天灌胃1次,连续6周,模型组和正常对照组灌胃生理盐水。给药期间每周测定小鼠进食量、饮水量及体重,给药6周后测定空腹血糖(FBG)、口服糖耐量(OGTT)、糖化血清蛋白(GSP)、血清胰岛素(INS)和血脂等指标的变化情况;HE染色观察胰腺组织病理变化。结果:与NC组相比,DM组进食量、饮水量、线下曲线面积、FBG、GSP以及血脂中的总胆固醇(TC)均显著升高,空腹体重、血清胰岛素(INS)及高密度脂蛋白胆固醇(HDL-c)均显著降低;与DM组相比,SE组小鼠饮水量、FBG、线下曲线面积、TC显著降低,HDL-c以及INS显著升高。病理学显示DM组胰岛结构破坏、胰岛细胞数量明显减少、胰岛血管增生、形态不规则等变化,SE能明显修复受损胰腺组织。结论:SE对链脲佐菌素诱导的糖尿病小鼠有一定降血糖、降血脂作用,可以有效改善胰腺病变的情况,提示西红花可能用于糖尿病的防治。  相似文献   

9.
目的观察血液磁极化疗法(简称血磁治疗)对糖尿病(DM)的治疗效果和对胰岛功能的影响。方法制备了四氧嘧啶DM兔模型20只,随机分为两组,即DM模型血磁治疗组及DM模型未治疗组,同时设立正常对照组10只,分别测定治疗前后空腹血糖(FPG)、糖化血红蛋白(HbA1c)、胰岛素(INS)及C-肽(C-P),并于观察期结束后处死动物取胰腺组织常规石蜡包埋切片,行HE及Mallory三色法特殊染色观察3组胰岛形态学变化。结果血磁治疗显著降低DM兔的FPG(P<0.001)。DM治疗组INS及C-P水平较治疗前明显升高(P<0.01),与未治疗组相比差异显著(P<0.05)。胰岛病理改变可见治疗组β细胞数量明显多于DM未治疗组,提示血磁疗法具有促进胰岛修复,改善胰岛功能的作用。结论血磁疗法能够促进DM时受损胰岛组织的修复,改善胰岛β细胞分泌功能,降血糖作用明显。  相似文献   

10.
目的:研究糖尿病视网膜病变患者内皮祖细胞(EPCs)的数量变化,从而探讨内皮祖细胞是否参与了糖尿病微血管病并发症的发生发展。方法:选择与年龄、性别相匹配的患者,共124例,其中健康对照组62例,单纯糖尿病组31例(DM组),糖尿病背景期视网膜病变15例(DM+NPDR组),糖尿病增殖期视网膜病变组16例(DM+PDR组)。采用密度梯度离心法从人外周血分离出单个核细胞,通过流式细胞仪检测内皮祖细胞数量。结果:与健康对照组相比,DM组、DM+NPDR组、DM+PDR组的外周血EPCs的数量明显减少(P0.05)。DM+NPDR组与DM组相比,外周血EPCs数量无统计学差异(P0.05)。DM+PDR组与DM组相比,外周血EPCs数量显著增加(P0.05)。结论:EPCs参与了糖尿病微血管并发症的发生发展,有望在临床治疗中成为潜在的治疗靶点。  相似文献   

11.
Progenitor cells in the dentate gyrus of hippocampus (DG) and the subventricular zone of lateral ventricles (SVZ) generate new neurons throughout the life of mammals. Cerebral ischemia increases this basal progenitor cell proliferation. The present study evaluated the time frame of proliferation, length of survival and the phenotypes of the new cells formed after transient middle cerebral artery occlusion (MCAO) in adult spontaneously hypertensive rats. Compared to sham controls, ischemic rats showed a significantly higher number of newly proliferated cells (as defined by BrdU immunostaining) in both the DG (by fourfold, p < 0.05) and the SVZ (by twofold, p < 0.05). DG showed increased proliferation only in the first week of reperfusion and 49% of the cells formed in this period survived to the end of third week. Whereas, SVZ showed a continuous proliferation up to 3 weeks after MCAO, but the cells formed survived for less than a week. In both DG and SVZ, at the end of the first week of reperfusion, majority of the BrdU-positive (BrdU+) cells were immature neurons (DCX positive). In the DG, 28% of the cells formed in the first week after MCAO mature into neurons (NeuN positive). The ischemic cortex and striatum showed several BrdU+ cells which were ED-1 positive microglia/macrophages. At 1 week of reperfusion, MCAO-induced progenitor cell proliferation in the ipsilateral DG was significantly increased by i.c.v. infusion of IGF-1 (by 127 +/- 14%, p < 0.05) and GDNF (by 91 +/- 5%, p < 0.05), compared to vehicle. In the growth factor treated rats subjected to transient MCAO, several BrdU+ cells formed in the first week survived up to the third week.  相似文献   

12.
Specialized microenvironment, or neurogenic niche, in embryonic and postnatal mouse brain plays critical roles during neurogenesis throughout adulthood. The subventricular zone (SVZ) and the dentate gyrus (DG) of hippocampus in the mouse brain are two major neurogenic niches where neurogenesis is directed by numerous regulatory factors. Now, we report Akhirin (AKH), a stem cell maintenance factor in mouse spinal cord, plays a pivotal regulatory role in the SVZ and in the DG. AKH showed specific distribution during development in embryonic and postnatal neurogenic niches. Loss of AKH led to abnormal development of the ventricular zone and the DG along with reduction of cellular proliferation in both regions. In AKH knockout mice (AKH−/−), quiescent neural stem cells (NSCs) increased, while proliferative NSCs or neural progenitor cells decreased at both neurogenic niches. In vitro NSC culture assay showed increased number of neurospheres and reduced neurogenesis in AKH−/−. These results indicate that AKH, at the neurogenic niche, exerts dynamic regulatory role on NSC self-renewal, proliferation and differentiation during SVZ and hippocampal neurogenesis.  相似文献   

13.
1. A recently recognized complication of uncontrolled diabetes mellitus is the encephalopathy involving, among other regions, the hippocampus. Since estrogens bring neuroprotection in cases of brain injury and degenerative diseases, we have studied if estradiol (E2) administration counteracts some hippocampal abnormalities of streptozotocin (STZ)-diabetic adult mice.2. We first report the ability of E2 to modulate neurogenesis in the dentate gyrus (DG) and subventricular zone (SVZ) of diabetic mice. Using bromodeoxyuridine (BrdU) to label newly generated cells, a strong reduction in cell proliferation was obtained in DG and SVZ of mice sacrificed 20 days after STZ administration. The reduction was completely relieved by 10 days of E2 pellet implantation, which increased 30-fold the circulating E2 levels.3. Diabetic mice also showed abnormal expression of astrocyte markers in hippocampus. Thus, increased number of GFAP+ cells, indicative of astrogliosis, and increased number of apolipoprotein-E (Apo-E)+ astrocytes, a marker of ongoing neuronal dysfunction, was found in stratum radiatum below the CA1 hippocampal subfield of diabetic mice. Both parameters were reverted to normal by the E2 regime that upregulated cell proliferation.4. The studies demonstrated that hippocampal neuropathology of uncontrolled diabetes is a reversible condition and sensitive to estrogen treatment. Studies in animal models may open up new venues for understanding the beneficial role of steroid hormones in diabetic encephalopathy.  相似文献   

14.
In the mammalian brain, adult neurogenesis has been found to occur primarily in the subventricular zone (SVZ) and dentate gyrus of the hippocampus (DG) and to be influenced by both exogenous and endogenous factors. In the present study, we examined the effects of male exposure or social isolation on neurogenesis in adult female prairie voles (Microtus ochrogaster). Newly proliferated cells labeled by a cell proliferation marker, 5-bromo-2'-deoxyuridine (BrdU), were found in the SVZ and DG, as well as in other brain areas, such as the amygdala, hypothalamus, neocortex, and caudate/putamen. Two days of male exposure significantly increased the number of BrdU-labeled cells in the amygdala and hypothalamus in comparison to social isolation. Three weeks later, group differences in BrdU labeling generally persisted in the amygdala, whereas in the hypothalamus, the male-exposed animals had more BrdU-labeled cells than did the female-exposed animals. In the SVZ, 2 days of social isolation increased the number of BrdU-labeled cells compared to female exposure, but this difference was no longer present 3 weeks later. We have also found that the vast majority of the BrdU-labeled cells contained a neuronal marker, indicating neuronal phenotypes. Finally, group differences in the number of cells undergoing apoptosis were subtle and did not seem to account for the observed differences in BrdU labeling. Together, our data indicate that social environment affects neuron proliferation in a stimulus- and site-specific manner in adult female prairie voles.  相似文献   

15.
ATP-binding cassette transporter A7 (ABCA7) is highly expressed in the brain. Recent genome-wide association studies (GWAS) have identified ABCA7 single nucleotide polymorphisms (SNPs) that increase Alzheimer''s disease (AD) risk, however, the mechanisms by which ABCA7 may control AD risk remain to be fully elucidated. Based on previous research suggesting that certain ABC transporters may play a role in the regulation of neurogenesis, we conducted a study of cell proliferation and neurogenic potential using cellular bromodeoxyuridine (BrdU) incorporation and doublecortin (DCX) immunostaining in adult Abca7 deficient mice and wild-type-like (WT) littermates. In the present study counting of BrdU-positive and DCX-positive cells in an established adult neurogenesis site in the dentate gyrus (DG) indicated there were no significant differences when WT and Abca7 deficient mice were compared. We also measured the area occupied by immunohistochemical staining for BrdU and DCX in the DG and the subventricular zone (SVZ) of the same mice and this confirmed that ABCA7 does not play a significant role in the regulation of cell proliferation or neurogenesis in the adult mouse.  相似文献   

16.
Production of new neurons continues throughout life in the subventricular zone (SVZ) and the dentate gyrus (DG) of the hippocampus and is influenced by both endocrine and social factors. In sheep parturition is associated with the establishment of a selective bond with the young based on an olfactory learning. The possibility exists that endocrine changes at parturition together with interactions with the young modulate cell proliferation in the neurogenic zones. In the present study, we first investigated the existence of cell proliferation in sheep. Newly born cells labeled by the cell proliferation marker 5-bromo-2′-deoxyuridine (BrdU) were found in the SVZ, the main olfactory bulb (MOB) and the DG and completely co-localized with Ki-67, another mitotic marker. Forty to 50% of the BrdU-labeled cells contained GFAP suggestive of the presence of neural stem cells. Secondly, parturition with or without interactions with the lamb for 2 days, down-regulated the number of BrdU-labeled cells in the 3 proliferation sites in comparison to no pregnancy. An additional control provided evidence that this effect is specific to early postpartum period: estrus with interactions with males did not affect cell proliferation. Our results provide the first characterization of neural cell proliferation in the SVZ, the DG and unexpectedly in the MOB of adult sheep. We hypothesize that the down-regulation of cell proliferation observed in the early postpartum period could facilitate the olfactory perceptual and memory demands associated with maternal behavior by favouring the survival and integration of neurons born earlier.  相似文献   

17.
The olfactory bulb (OB) periventricular zone is an extension of the forebrain subventricular zone (SVZ) and thus is a source of neuroprogenitor cells and neural stem cells. While considerable information is available on the SVZ-OB neural stem cell (NSC)/neuroprogenitor cell (NPC) niche in rodents, less work has been done on this system in large animals. The newborn piglet is used as a preclinical translational model of neonatal hypoxic-ischemic brain damage, but information about the endogenous sources of NSCs/NPCs in piglet is needed to implement endogenous or autologous cell-based therapies in this model. We characterized NSC/NPC niches in piglet forebrain and OB-SVZ using western blotting, histological, and cell culture methods. Immunoblotting revealed nestin, a NSC/NPC marker, in forebrain-SVZ and OB-SVZ in newborn piglet. Several progenitor or newborn neuron markers, including Dlx2, musashi, doublecortin, and polysialated neural cell adhesion molecule were also detected in OB-SVZ by immunoblotting. Immunohistochemistry confirmed the presence of nestin, musashi, and doublecortin in forebrain-SVZ and OB-SVZ. Bromodeoxyuridine (BrdU) labeling showed that the forebrain-SVZ and OB-SVZ accumulate newly replicated cells. BrdU-positive cells were immunolabeled for astroglial, oligodendroglial, and neuronal markers. A lateral migratory pathway for newly born neuron migration to primary olfactory cortex was revealed by BrdU labeling and co-labeling for doublecortin and class III β tubulin. Isolated and cultured forebrain-SVZ and OB-SVZ cells from newborn piglet had the capacity to generate numerous neurospheres. Single cell clonal analysis of neurospheres revealed the capacity for self-renewal and multipotency. Neurosphere-derived cells differentiated into neurons, astrocytes, and oligodendrocytes and were amenable to permanent genetic tagging with lentivirus encoding green fluorescent protein. We conclude that the piglet OB-SVZ is a reservoir of NSCs and NPCs suitable to use in autologous cell therapy in preclinical models of neonatal/pediatric brain injury.  相似文献   

18.
《Hormones and behavior》2011,59(5):737-746
Production of new neurons continues throughout life in the subventricular zone (SVZ) and the dentate gyrus (DG) of the hippocampus and is influenced by both endocrine and social factors. In sheep parturition is associated with the establishment of a selective bond with the young based on an olfactory learning. The possibility exists that endocrine changes at parturition together with interactions with the young modulate cell proliferation in the neurogenic zones. In the present study, we first investigated the existence of cell proliferation in sheep. Newly born cells labeled by the cell proliferation marker 5-bromo-2′-deoxyuridine (BrdU) were found in the SVZ, the main olfactory bulb (MOB) and the DG and completely co-localized with Ki-67, another mitotic marker. Forty to 50% of the BrdU-labeled cells contained GFAP suggestive of the presence of neural stem cells. Secondly, parturition with or without interactions with the lamb for 2 days, down-regulated the number of BrdU-labeled cells in the 3 proliferation sites in comparison to no pregnancy. An additional control provided evidence that this effect is specific to early postpartum period: estrus with interactions with males did not affect cell proliferation. Our results provide the first characterization of neural cell proliferation in the SVZ, the DG and unexpectedly in the MOB of adult sheep. We hypothesize that the down-regulation of cell proliferation observed in the early postpartum period could facilitate the olfactory perceptual and memory demands associated with maternal behavior by favouring the survival and integration of neurons born earlier.  相似文献   

19.
We investigated the biological role of CC chemokines in the Th1-mediated pathogenesis of spontaneous type I diabetes in nonobese diabetic (NOD) mice. Whereas an elevated ratio of macrophage inflammatory protein-1alpha (MIP-1alpha):MIP-1beta in the pancreas correlated with destructive insulitis and progression to diabetes in NOD mice, a decreased intrapancreatic MIP-1alpha:MIP-1beta ratio was observed in nonobese diabetes-resistant (NOR) mice. IL-4 treatment, which prevents diabetes in NOD mice by polarizing intraislet Th2 responses, decreased CCR5 expression in islets and potentiated a high ratio of MIP-1beta and monocyte chemotactic protein-1 (MCP-1): MIP-1alpha in the pancreas. Furthermore, NOD.MIP-1alpha-/- mice exhibited reduced destructive insulitis and were protected from diabetes. Neutralization of MIP-1alpha with specific Abs following transfer of diabetogenic T cells delayed the onset of diabetes in NOD.Scid recipients. These studies illustrate that the temporal expression of certain CC chemokines, particularly MIP-1alpha, and the CCR5 chemokine receptor in the pancreas is associated with the development of insulitis and spontaneous type I diabetes.  相似文献   

20.
Li L  Xia Y  Wang Z  Cao X  Da Z  Guo G  Qian J  Liu X  Fan Y  Sun L  Sang A  Gu Z 《Cell biology international》2011,35(9):961-966
T1DM (type 1 diabetes mellitus) is an autoimmune disease characterized by T-cell-mediated damage of islet β-cells. The pathology of NOD (non-obese diabetic) mouse involves the insulitis induced by infiltration of T-cells, a similar pathogenic mechanism in T1DM patient. BM-MSCs (bone marrow mesenchymal stem cells) are multipotent progenitor cells that can be isolated from a number of sources. Recent studies have shown that transplantation of MSCs to the NOD mice could prevent the process and have the therapeutic effects on T1DM. In our studies, we have found that migration and adhesion of BM-MSCs from NOD mice were suppressed compared with the BM-MSCs from ICR (imprinting control region) mice, accompanying with the abnormal distribution of FAK (focal adhesion kinase) and F-actin (filamentous actin). Further, we have found that the activation of PI3K (phosphoinositide 3-kinase)-Akt pathway was suppressed in BM-MSCs from NOD mice. When the PI3K-Akt pathway was inhibited by LY294002, the adhesion and migration of BM-MSCs from ICR mice were suppressed as well. These results indicated that the suppression of PI3K-Akt pathway is involved in the decreased adhesion and migration of BM-MSCs from NOD mice.  相似文献   

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