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1.
旨在阐明山羊胚性腺的发生规律,这对于山羊的繁殖育种、丰富胚胎学有关研究内容都具有重要意义。该研究对22枚从39日胎龄胎儿至初生奶山羊性腺进行石蜡组织切片,用组织学和免疫组化、免疫荧光方法对山羊胎儿性腺发育的组织学特点,山羊胎儿性腺发育过程中VASA及细胞增殖核抗原(PCNA)  相似文献   

2.
分别对取自50~95日龄水牛胎儿的原生殖细胞和前精原细胞进行体外培养,观察其生物学行为,并检测其碱性磷酸酶(AP)活性和Oct-4蛋白特性,探讨利用这些生殖细胞建立干细胞系的可行性和检测方法。结果表明水牛原生殖细胞及前精原细胞分别在体外培养时,均能形成细胞克隆;克隆与周围细胞分界明显,但克隆中细胞相互间界限不清;部分克隆有分隔现象,形如多个克隆共同组成一个大克隆;细胞克隆均至少能培养4代以上;原生殖细胞和前精原细胞及其来源的细胞克隆均呈AP阴性和Oct-4蛋白阴性,其中部分克隆表现为AP假阳性。研究结果显示水牛原生殖细胞和前精原细胞均可用于建立干细胞系;体外培养时,AP活性和Oct-4蛋白不适宜用来检测这些细胞及其来源的细胞克隆。  相似文献   

3.
小鼠实验性隐睾诱发生殖细胞类型变化   总被引:1,自引:0,他引:1  
利用 3 0~ 3 5日龄昆白系小鼠制作实验性隐睾 ,定期分批朴杀取样 ,检查隐睾组织学及生殖细胞群体变化 ,为生殖细胞富集及提高体内精原干细胞转基因效率提供条件和依据。结果表明 ,盆腔隐睾精子发生被阻断于精子形成阶段 ;经历 1 5d以上 ,曲细精管内精子数量较少 ;腹腔隐睾精子发生被阻断于精原细胞向精母细胞过渡阶段 ;经历 3 0 d以上 ,曲细精管仅由精原细胞、少量精母细胞及支持细胞组成。由此可知 ,制作盆腔隐睾 ,可得到含少量精子的生殖细胞群体以及主要含精原细胞的生殖细胞群体  相似文献   

4.
山羊胚胎生殖细胞是一种来源于胎儿原始性腺的多能干细胞,建立该细胞体外稳定分离培养体系对研究山羊繁殖育种具有重要价值。本试验通过酶消化法和组织培养法分离培养关中奶山羊胚胎生殖细胞,检测无血清培养基对细胞体外增殖的影响。结果发现,该培养基可以分离得到山羊胚胎生殖细胞,细胞集落形态典型,表达AKP、Oct4、TERT及SSEA-1。经体外分化试验表明,细胞可以分化为类胚体、成纤维样细胞、成脂细胞和卵母细胞样形态。无血清培养基可以用于山羊胚胎生殖细胞的分离与培养,本试验对进一步建立山羊胚胎生殖细胞长期培养体系提供了新的参考。  相似文献   

5.
鸡早期胚胎精原细胞和睾丸发生发育关系的研究   总被引:6,自引:2,他引:6  
采用连续切片技术,研究了15~45期(孵化50h~19d)鸡早期胚胎发育过程中精原细胞与睾丸发生发育的关系。结果显示:孵化第22~28期(第3.5~5天),原始生殖腺内的原始生殖细胞(PGCs)胞质内的糖原颗粒开始分解;第29期(孵化第6天),鸡胚性腺开始分化,PGCs的糖原颗粒进一步分解;第31期(孵化第7天),PGCs内的糖原颗粒完全消失。在雄性,性腺开始显示睾丸特征,PGCs分化为精原细胞;第34期(孵化第8天),睾丸内曲精细管索开始形成,呈实心状,精原细胞位于其中;第35~37期(孵化第9~11天),曲精细管索数量逐渐增加,索内精原细胞体积较大,呈圆形单层排列,且已分化出支持细胞,但数量不多,形态不易分辨,间质内有少量间质细胞;第38~40期(孵化第12~14天),可见到典型的曲精细管,精原细胞数量增加,支持细胞亦增多;曲精细管间的间质细胞成群分布。第40~45期(孵化第16~19天),两侧睾丸大小略有差异,右侧稍大于左侧,精原细胞数量明显增多,呈葡萄串状分布在曲精细管的中央;曲精细管的管腔已经形成,精原细胞已分层排列。  相似文献   

6.
体外培养山羊50~68日龄雄性胎儿生殖细胞,并检测它们的碱性磷酸酶(AP)活性和Oct-4蛋白,探讨性别分化后的生殖细胞用于建立干细胞系的可行性及检测指标。当山羊胎儿睾丸细胞体外培养时,生殖细胞及其来源的细胞克隆均呈AP阴性和Oct-4蛋白阴性,其中有部分细胞克隆表现为AP假阳性。山羊胎儿生殖细胞克隆呈隆突状生长,多为圆形,与周围细胞界限分明,但克隆内细胞间界限不清。细胞克隆至少可以培养3代以上。研究结果显示,山羊雄性胎儿生殖细胞可以用于建立生殖系来源的干细胞系;AP和Oct-4蛋白不适宜用来检测体外培养的山羊胎儿生殖细胞及其来源的细胞系。  相似文献   

7.
本研究旨在观察羊驼睾丸的出生后发育和精子发生过程中的细胞凋亡及凋亡相关蛋白Bcl2和Caspase3 的定位.取材新生、12月龄和24月龄羊驼的睾丸,用TUNEL法检测睾丸发育和精子发生过程的细胞凋亡,用免疫组织化学技术检测凋亡相关蛋白Bcl2和Caspase3在羊驼出生后发育和精子发生过程中的定位.结果显示在新生羊驼睾丸未检测到TUNEL阳性细胞,Caspase3和Bcl2表达于间质细胞,提示在新生期凋亡蛋白参与间质细胞凋亡的调节,为曲精小管的发育提供空间;12月龄羊驼睾丸TUNEL阳性细胞定位于曲精小管中央部分,Caspase3 和Bcl2定位于间质细胞和曲精小管中央生殖细胞,提示在青春期(12月龄)羊驼睾丸,细胞凋亡和凋亡相关蛋白参与曲精小管管腔形成的调节;24月龄羊驼睾丸TUNEL阳性细胞定位于精原细胞、精母细胞和精子细胞,Caspase3 和Bcl2定位于间质细胞和各个发育阶段的生精细胞,Caspase3阳性细胞在精原细胞最高,向精母细胞和精子细胞逐渐减少,Bcl2在精原细胞弱阳性表达,在血睾屏障以内的曲精小管近腔室部分呈弥散性强阳性表达,提示在性成熟(24月龄)羊驼睾丸精子发生过程中,细胞凋亡主要发生于精原细胞和早期精母细胞,Bcl2可能抑制精母细胞之后生殖细胞的凋亡.结果提示在羊驼睾丸出生后发育和精子发生过程中存在细胞凋亡现象;凋亡蛋白Caspase3和Bcl2参与羊驼睾丸发育和精子发生过程中细胞凋亡的调节.  相似文献   

8.
有关山羊皮肤组织结构的研究一直为国内外学者所关注,他们分别从不同的角度研究了各地区不同品种的山羊皮肤及其衍生物的组织结构[1-6],关中奶山羊是关中地区特有的山羊品种,本试验旨在通过常规组织学研究方法,对关中奶山羊皮肤的整体发育进行详细观察,以探索山羊胎儿皮肤生长发育的规律,从而为定向繁殖、培育地方良种及丰富家畜胚胎学的内容提供理论依据.  相似文献   

9.
从本地槐山羊胎儿中,将原始生殖细胞与其生殖嵴周围组织细胞共同分离,经传代培养后获得了具有干细胞特征的山羊胚胎生殖(EG)细胞。结果表明:高糖DMEM培养基和低糖DMEM培养基相比较,低糖DMEM更适宜于山羊EG细胞的分离与克隆;EG细胞在山羊胎儿成纤维细胞饲养层上生长效果较好,可传4代或5代,而在小鼠成纤维细胞饲养层上EG细胞仅传3代;联合添加白血病抑制因子(LIF)、干细胞因子(SCF)和碱性成纤维细胞生长因子(bFGF)能显著提高山羊EG细胞分离与克隆的效率;胎龄为30~45d的胎儿原代培养时可获得大量的细胞集落,克隆培养可传至5代,适合做山羊EG细胞的分离培养。  相似文献   

10.
多氯联苯对鸡胚睾丸结构的损伤作用   总被引:5,自引:3,他引:2  
选用海兰鸡作为实验动物 ,研究了多氯联苯 (polychlorinated biphenyl,PCB)对鸡胚胎期性腺发育和生殖细胞分化的影响。在入孵前将多氯联苯商业混合物 Aroclor 12 5 4花生油制剂注入海兰种蛋卵黄内 ,试验 、 、 组剂量分别为 1、10、10 0 μg/枚 ,体积为 10 0 μL,对照组注射等体积花生油 ,统计分析死亡率和孵化率 ,并取出新出壳雏鸡的性腺进行组织学观察。结果表明 ,雄性雏鸡的睾丸结构发生明显改变 ,与对照组相比 ,其横截面积、精细管直径和精细管面积占睾丸横截面积的百分比显著降低。在 组 ,雄性雏鸡的大部分精细管降解甚至消失 ,其睾丸内精细胞的分化受到了不同程度的抑制 ,几乎所有生殖细胞都发生了核固缩和胞质空泡化 ,而在 、 组则只有散在的发生。本试验结果表明 ,PCB干扰鸡胚性腺的发育 ,并具有抑制禽类睾丸发育和精原细胞分化的作用。  相似文献   

11.
山羊PGCs用于分离与克隆类ES细胞   总被引:11,自引:1,他引:10  
选择健康成年本地白山羊,自然发情,配种后44d取胎儿,以传统的原始生殖细胞(PGCs)分离与克隆的方法和PGCs与其胎儿生殖嵴周围组织细胞共同培养的方法获得类胚胎干细胞(类ES细胞),并对山羊类ES细胞在不同饲养层上进行培养。结果表明,采用传统方法与共培养的方法并添加细胞因子均能分离获得类ES细胞。分离获得的类ES细胞在同源(山羊)胎儿细胞饲养层上生长效果较好,可传4代或5代,而在小鼠原代成纤维细胞饲养层上类ES细胞仅传3代。另外,共培养不添加细胞因子组仅获1个ES细胞集落,传代后丢失。  相似文献   

12.
Rat uterine sensitization-associated gene-1 (USAG-1) mRNA is expressed in the uterus during the peri-implantation period, and its mRNA expression in uterine epithelial cells is highest on day 5 of pregnancy. On the other hand, since changes in USAG-1 mRNA expression in the mouse uterus are not seen during the estrous cycle, USAG-1 expression might be specifically regulated by embryonic factors rather than by the maternal environment. However, the expression pattern and function of USAG-1 in the mouse uterus have not been determined. Thus, we examined the tissue-specific USAG-1 mRNA expression in the uteri of ICR mice during peri-implantation using real-time quantitative PCR. Uterine tissues, such as the myometrium, luminal epithelium, and stroma, were collected by laser capture microdissection at 3.5-6.5 dpc. USAG-1 mRNA was expressed in the uteri of pregnant mice from 3.5 dpc to 6.5 dpc, and the highest level of expression was seen at 4.5 dpc (P<0.01). Significantly high USAG-1 mRNA expression was detected in the luminal epithelium at 4.5 dpc (P<0.05). The stroma and myometrium exhibited unchanged expression levels of USAG-1 mRNA at 3.5-5.5 dpc. USAG-1 mRNA was undetectable in blastocysts and implanting embryos. Expression of USAG-1 mRNA appears to be associated with blastocyst implantation to the luminal epithelium, suggesting that physiological or biochemical contact of the blastocyst to the uterus is required for USAG-1 expression.  相似文献   

13.
Mice cloned from somatic or ES cells showed signs of phenotypically various abnormalities. These abnormalities are now considered to result from aberrant gene expressions by epigenetic reprogramming errors but it is still unclear when these abnormalities occur and what histological changes occur during the gestation period. To address these issues, we histologically examined the hypertrophic placentas and open eyelids at 12.5, 17.5 and 19.5 days of the gestation period in ES-derived cloned mice that we have previously reported. In the placentas, the histology revealed that the hypertrophy had already occurred at 12.5 dpc and that the main change was the proliferation of trophoblast cells in the labyrinth layer. In the fetuses and placentas at 17.5 and 19.5 dpc, extensive proliferation of spongiotrophoblast and glycogen cells in the spongiotrophoblast layer and enlarged trophoblast giant cells were observed. Open eyelids in cloned mice were observed from 17.5 dpc, whereas the eyelids of the control mice had already been closed. The histology showed the malformation of eyelids where the formation of the stratum corneum and stratum granulosum in the epidermis was insufficient. Based on the histology described here, further comparative studies of the gene expression and histology of abnormalities seen in cloned mice and in gene-targeted and spontaneously mutated mice with similar phenotypic abnormalities could help illuminate these abnormalities and could contribute to the development of somatic cloning technology.  相似文献   

14.
利用鸡胚性腺生殖细胞-体细胞体外无血清共培养模型研究雄激素对生殖细胞增殖的影响。培养的鸡胚卵巢细胞用睾酮(T,10^-8、10^-7、10^-4 mol/L)和/或芳香化酶抑制剂letrozole(Let.10^-9、10^-8、10^-7mol/L)处理.48h后测定生殖细胞增殖的变化。结果显示.睾酮能够促进卵巢生殖细胞的增殖。且这种促增殖作用可被Let部分阻断。由此推断.睾酮的这种促进鸡胚卵巢生殖细胞增殖的作用,部分是通过转变为雌激素才得以发挥的。  相似文献   

15.
1. The present study was carried out to determine whether primordial germ cells isolated from embryonic blood can enter the bloodstream and successfully migrate to the germinal ridges of recipient embryos after transfer to stage X blastoderms, and also whether they can differentiate into blood cells, as is suggested in mice. 2. Primordial germ cells were transfected in vitro by lipofection and then transferred to stage X blastoderms. The introduced GFP gene was efficiently expressed in the gonads of 6-d incubated embryos. 3. Freshly collected primordial germ cells were transferred to stage X blastoderms. The fate of the transferred primordial germ cells was traced by detecting the single nucleotide polymorphism in the D-loop region of the mitochondrial DNA in White Leghorn and Barred Plymouth Rock chickens used in this study. The transferred donor primordial germ cell-derived cells were detected in the gonads, but not in the blood cells, of 17-d incubated embryos by PCR. 4. This procedure for primordial germ cell manipulation could provide a novel method of producing germline chimaeric chickens. 5. In conclusion, our findings indicate that primordial germ cells isolated from embryonic blood can migrate to the germinal ridges of recipient embryos after being transferred to stage X blastoderms. Although these transferred primordial germ cells differentiated into germ cells, no differentiation into blood cells was observed.  相似文献   

16.
Isolation and culture of rabbit primordial germ cells   总被引:2,自引:0,他引:2  
Primordial germ cells (PGCs) are embryonic precursors of the gametes of adult animals and are considered stem cells of the germline. Since their proliferation in vitro correlates well with the schedule of developmental changes in vivo, they might be interesting research tools for genomic imprinting, germ-cell tumors and fertility. Furthermore, once primordial germ cells are separated and placed on a feeder layer with cytokines, they become cultured pluripotent cell lines called embryonic germ (EG) cells. EG cells share several important characteristics with embryonic stem (ES) cells as they can also contribute to the germ line of chimeras. To investigate the characteristics of PGCs and establish rabbit EG (rEG) cells, we cultured rabbit PGCs (rPGCs) in vitro with various combinations of leukemia inhibitory factor (LIF), basic fibroblast growth factor (bFGF) and forskolin on inactivated mouse embryonic fibroblast (MEF) feeder layers. The present study found PGC proliferation in early cultures and induction of rEG-like colonies. These cells expressed pluripotent markers, such as alkaline phosphatase activity, OCT-4, Sox-2 and SSEA-1, in the undifferentiated state; however, the cells did not develop into a teratoma when injected into the kidney capsules of SCID mice, although the restricted differentiation potentials to neural cells were determined via embryoid body formation. From these characteristics and further characterization of the germ stem cell markers Vasa, SCP-1 and SCP-3, we suggested that these were hybrid cells with characteristics somewhere between PGC and EG cells.  相似文献   

17.
18.
对影响小鼠胚胎干细胞(Embryonic stem cells,ES细胞)培养、克隆、分离、传代效果的因素进行了探索研究。应用223枚昆明白小鼠胚胎和20枚129品系小鼠胚胎的研究结果表明,129品系小鼠胚胎比昆明白小鼠胚胎更适合作为ES细胞建系的材料,两者FS出现率差异显著(P<0.05);以DMEM+10%NBS+10%FCS为基础培养液,分别加入LIF、胰岛素、LIF+SCF,极显著提高昆明白小鼠胚胎贴壁率,ICM生长率及F1、F2出现率(P<0.01),而在DMEM+10%NBS+10%FCS+LIF+SCF为培养液,得到昆明白小鼠胚胎最高贴壁率、ICM生长率及传代率;4dpc胚胎传代情况显著好于3.5dpc胚胎(P<0.05)。  相似文献   

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