首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 203 毫秒
1.
培养原始生殖细胞的新方法   总被引:1,自引:0,他引:1  
为探讨原始生殖细胞(primordial germ cells,PGCs)在体外长期增殖、生长并长期保持分化潜能的新方法,我们将PGCs分别与睾丸支持细胞(Sertoli cells,SCs)和同源生殖嵴成纤维细胞共培养。结果与SCs共培养的PGCs集落明显多于同源生殖嵴成纤维细胞共培养PGCs集落,传代次数也显著多于同源生殖嵴成纤维细胞,目前与SCs共培养的PGCs已成功传代培养至了第51代。因此我们认为PGCs与SCs共培养.可有效提高原始生殖细胞在体外的增殖能力并可长期维持干细胞的特性。  相似文献   

2.
为探讨原始生殖细胞(primordial germ cells,PGCs)在体外长期增殖、生长并长期保持分化潜能的新方法,我们将PGCs分别与睾丸支持细胞(Sertoli cells,SCs)和同源生殖嵴成纤维细胞共培养。结果与SCs共培养的PGCs集落明显多于同源生殖嵴成纤维细胞共培养PGCs集落,传代次数也显著多于同源生殖嵴成纤维细胞.目前与SCs共培养的PGCs已成功传代培养至了第51代。因此我们认为PGCs与SCs共培养,可有效提高原始生殖细胞在体外的增殖能力并可长期维持干细胞的特性。  相似文献   

3.
哺乳动物精子体外发生   总被引:2,自引:0,他引:2  
Sun Y  Zhang JH 《生理科学进展》2004,35(4):338-341
精子的发生是一个高度复杂而有序的过程 ,涉及到细胞的增殖和分化。体外培养生精细胞在近年来取得了较大进展 ,建立了睾丸组织培养、曲精细管小段培养、支持细胞 生精细胞共培养及藻酸钙胶囊包裹培养等方法。建立生精细胞体外培养模型有助于 :(1)研究精子发生的调控机制 ;(2 )直接对雄性生殖细胞进行遗传修饰 ;(3)用于辅助生育技术 ,治疗精子发生阻滞的患者。如何改善培养条件 ,进一步提高生殖细胞的存活、分化、增殖效率 ,是使哺乳动物体外精子发生发展成为一项适用性较强的技术所必须解决的问题。  相似文献   

4.
过渡蛋白2基因(tnp2)是圆形精子细胞特异表达的基因。为了开展绵羊圆形精子细胞标记基因的研究,根据GenBank上已公布的牛的cDNA序列设计引物,采用RT-PCR和分子克隆方法,克隆了蒙古绵羊tnp2基因cDNA部分编码区序列。DNA 序列测定结果与牛的核苷酸序列比对,同源性为95.3%。根据绵羊tnp2基因的cDNA序列设计引物,对共培养的四月龄绵羊睾丸生殖细胞进行RT-PCR鉴定。结果显示体外共培养的绵羊睾丸生殖细胞一直到第十周后仍有圆形精子细胞产生。绵羊tnp2基因的cDNA克隆和序列测定为进一步研究绵羊精子发生过程奠定了基础。  相似文献   

5.
FasL/Fas系统介导的胞外信号凋亡途径是哺乳动物睾丸生殖细胞凋亡的一条主要途径,然而,关于FasL在睾丸细胞中的定位却存在争议。本文对近年来国内外关于FasL在睾丸中的细胞定位研究进行了综述,为阐明FasL/Fas系统介导生殖细胞凋亡的机制提供资料,对深入理解睾丸中Sertoli细胞和生殖细胞间的调控关系及临床实践具有一定的指导作用。  相似文献   

6.
目的:探讨B细胞淋巴瘤/白血病-2和人Bcl-2相关x蛋白(Bcl-2、Bax)在吗啡依赖大鼠睾丸生殖细胞中的表达及细胞凋亡可能机制,为治疗阿片类毒品造成的男性性功能减退提供理论依据。方法:以递增法每日给予雄性大鼠皮下注射盐酸吗啡针剂,建立吗啡依赖组。空白对照组注射等量生理盐水。实验成功后将两组大鼠睾丸组织作常规HE染色和免疫组化染色。结果:吗啡依赖组大鼠生精管壁细胞明显地出现上皮层次减少,仅有2~3层,细胞排列疏松,界限模糊,精子细胞和精子数目减少,并发现曲细精管腔内有脱落的生精细胞;免疫组化结果:吗啡依赖组大鼠生殖细胞中bcl-2的阳性表达率明显低于对照组(P〈0.01),而生殖细胞中bax蛋白的阳性表达率明显高于对照组(P〈0.01)。结论:吗啡依赖可造成雄性大鼠生殖细胞凋亡数量显著增加,其机制可能是通过下调抑凋亡因子Bcl-2,上调促凋亡因子Bax,促进生殖细胞凋亡来实现的。  相似文献   

7.
苏晓红  刘晓  吴佳  魏艳红  王云霞  邢连喜 《昆虫学报》2011,54(10):1104-1110
为探讨凋亡调节因子Bcl-2和Bax蛋白对白蚁生殖蚁和工蚁性腺发育的影响, 揭示白蚁生殖品级与非生殖品级性腺发育的调节机理, 以尖唇散白蚁Reticulitermes aculabialis为研究对象, 运用免疫细胞化学定位方法对生殖蚁和工蚁精子发生过程中的Bcl-2和Bax蛋白表达进行了研究。结果显示: 生殖蚁和工蚁精子发生过程中从精原细胞至精子时期均有Bcl-2-like和Bax-like的阳性表达。生殖蚁的次级精母细胞、 精子细胞和精子中Bcl-2-like阳性表达率较高, 而在精原细胞和初级精母细胞中阳性率较低; 工蚁在次级精母细胞中最高, 在精原细胞和初级精母细胞中较低。除初级精母细胞期外, 工蚁生殖细胞其他发育阶段Bax-like阳性表达率均显著高于生殖蚁同一阶段生殖细胞。生殖蚁的生殖细胞在精原细胞、 初级精母细胞和次级精母细胞时期Bax-like阳性表达率较高, 发育至精子时期阳性率最低; 工蚁在次级精母细胞、 精子细胞和精子时期Bax-like表达率较高, 在初级精母细胞中表达率最低。在精子发生过程中, 生殖蚁生殖细胞Bax/Bcl表达量比值逐步下降; 而工蚁生殖细胞发育过程中Bax/Bcl表达量比值仅在次级精母细胞期下降, 其他发育时期均升高; 根据Bax/Bcl判断, 精原细胞和初级精母细胞是生殖蚁精子发生过程中主要的凋亡点, 而工蚁除了精原细胞和初级精母细胞外, 精子细胞和精子也是主要的凋亡目标。研究结果表明, 白蚁生殖细胞凋亡与其他动物一样受Bcl-2家族的调节, 在精子发生过程中Bcl-2-like和Bax-like表达具有动态变化规律, 正是这种变化调控生殖细胞在不同发育阶段的生或死; Bcl-2-like和Bax-like对生殖细胞凋亡调节不仅在精子发生中有非常重要的作用, 而且可能与工蚁品级的形成有关。  相似文献   

8.
雄性生殖系干细胞(Male germ-line stem cells, mGSCs)是一群具有高度自我更新能力和分化潜能的细胞, 是雄性成体内唯一可复制的二倍体永生细胞。转基因技术与雄性生殖系干细胞异体及异种移植技术相结合, 将会为克隆动物、转基因动物生产及一些人类遗传性疾病的基因治疗提供新的机遇与途径。本试验采用组合酶消化和选择贴壁法, 对5月龄、6月龄牛胎儿及新生牛雄性生殖系干细胞体外培养及分化进行了研究。试验结果显示, 睾丸支持细胞对雄性生殖系干细胞体外增殖、分化所必需的, 同时对数期睾丸支持细胞对雄性生殖系干细胞贴壁、增殖与分化效果明显; 共培养16 d后, 牛雄性生殖系干细胞分化为长形精子细胞, 试验建立了牛雄性生殖系干细胞体外诱导培养分化体系。  相似文献   

9.
睾丸生殖细胞的凋亡及其调控   总被引:8,自引:0,他引:8  
Guo CX  Tang TS  Liu YX 《生理科学进展》2000,31(4):299-304
睾丸生殖细胞在分化过程中存在自发性和诱发性凋亡,这是清除过量或异常生殖细胞的一种重要途径。生殖细胞的凋亡涉及内分泌、细胞社会组成和基因等多因素的调控。深入了解生殖细胞凋亡的调控机制,明确决定睾丸生殖细胞(Germ cells,Gc)凋亡机制的分子组成,将为治疗男性不育和开发男性避孕药物奠定理论基础。  相似文献   

10.
哺乳动物精子发生过程中的细胞凋亡及其影响因素   总被引:2,自引:0,他引:2  
睾丸生殖细胞凋亡是维持精子发生动态平衡,限制生精上皮生殖细胞数量的一个重要生理机制,受多种因素调控。本简要叙述精子发生过程中细胞凋亡的激素调节、基因调控及其他理化等因素的影响及其作用机制。  相似文献   

11.
Mammalian spermatogenesis consists of three biologically significant processes: stem cell self-renewal and differentiation, meiosis, and haploid cell morphogenesis. Understanding the molecular mechanisms behind these processes might provide clues to the puzzle of species preservation and evolution, and to treatments for male infertility. However, few useful in vitro systems exist to investigate these processes at present. To elucidate these mechanisms, in vivo electroporation of the testis might be a convenient option. Since DNA solution can be injected into the seminiferous tubule via the rete testis, similar to germ cell transplantation, it is easy to transfect expression vectors into various differentiated germ cells and supporting Sertoli cells with adequate electric shock. Unfortunately, it is difficult to create transgenic animals using this method because of its low efficiency. However, gain- and loss-of-function assays, promoter assays, and tagged-protein behavior assays can be conducted with this technique, as in in vitro culture systems.  相似文献   

12.
Recent studies have demonstrated that mesenchymal stem cells could differentiate into germ cells under appropriate conditions. We sought to determine whether human umbilical cord Wharton's jelly‐derived mesenchymal stem cells (HUMSCs) could form germ cells in vitro. HUMSCs were induced to differentiate into germ cells in all‐trans retinoic acid, testosterone and testicular‐cell‐conditioned medium prepared from newborn male mouse testes. HUMSCs formed “tadpole‐like” cells after induction with different reagents and showed both mRNA and protein expression of germ‐cell‐specific markers Oct4 (POUF5), Ckit, CD49f (α6), Stella (DDPA3), and Vasa (DDX4). Our results may provide a new route for reproductive therapy involving HUMSCs and a novel in vitro model to investigate the molecular mechanisms that regulate the development of the mammalian germ lineage. J. Cell. Biochem. 109: 747–754, 2010. © 2010 Wiley‐Liss, Inc.  相似文献   

13.
Male mammals with two X chromosomes are sterile due to the demise of virtually all germ cells; however, the underlying reasons for the germ cell loss remain unclear. The use of a breeding scheme for the production of XXY male mice has allowed us to experimentally address the question of when and why germ cells die in the XXY testis and whether the defect is due to the presence of an additional X chromosome in the soma, the germ cells themselves, or both. Our studies demonstrate that altered X-chromosome dosage acts to impair germ cell development in the testis at a much earlier stage than suggested by previous studies of XX sex-reversed males or XX/XY chimeras. Specifically, we noted significantly reduced germ cell numbers in the XXY testis during the period of germ cell proliferation in the early stages of testis differentiation. Although the somatic development of the XXY testis is morphologically and temporally normal, our studies indicate that germ cell demise reflects a defect in somatic/germ cell communication, since, in an in vitro system, the proliferative potential of fetal germ cells from XXY males is indistinguishable from that of normal males. Mol. Reprod. Dev. 49:101–111, 1998. © 1998 Wiley-Liss, Inc.  相似文献   

14.
Spermatogenesis is a highly ordered developmental program that produces haploid male germ cells. The study of male germ cell development in the mouse has provided unique perspectives into the molecular mechanisms that control cell development and differentiation in mammals, including tissue‐specific gene regulatory programs. An intrinsic challenge in spermatogenesis research is the heterogeneity of germ and somatic cell types present in the testis. Techniques to separate and isolate distinct mouse spermatogenic cell types have great potential to shed light on molecular mechanisms controlling mammalian cell development, while also providing new insights into cellular events important for human reproductive health. Here, we detail a versatile strategy that combines Cre‐lox technology to fluorescently label germ cells, with flow cytometry to discriminate and isolate germ cells in different stages of development for cellular and molecular analyses.  相似文献   

15.
In cultivated male eel, spermatogonia are the only germ cells present in testis. Our previous studies using an organ culture system have shown that gonadotropin and 11-ketotestosterone (11-KT, a potent androgen in teleost fishes) can induce all stages of spermatogenesis in vitro. for detailed investigation of the control mechanisms of spermatogenesis, especially of the interaction between germ cells and testicular somatic cells during 11-KT-induced spermatogenesis in vitro, we have established a new culture system in which germ cells and somatic cells are cocultured after they are aggregated into pellets by centrifugation. Germ cells (spermatogonia) and somatic cells (mainly Sertoli cells) were isolated from immature eel testis. Coculture of the isolated germ cells and somatic cells without forming aggregation did not induce spermatogenesis, even in the presence of 11-KT. In contrast, when isolated germ cells and somatic cells were formed into pellets by centrifugation and were then cultured with 11-KT for 30 days, the entire process of spermatogenesis from premitotic spermatogonia to spermatozoa was induced. However, in the absence of 11-KT in the culture medium spermatogenesis was not induced, even when germ cell and somatic cells were aggregated. These results demonstrate that physical contact of germ cells to Sertoli cells is required for inducing spermatogenesis in response to 11-KT.  相似文献   

16.
In the embryonic gonads of mice, the genetic and epigenetic regulatory programs for germ cell sex specification and meiosis induction or suppression are intertwined. The quest for garnering comprehensive understanding of these programs has led to the emergence of retinoic acid (RA) as an important extrinsic factor, which regulates initiation of meiosis in female fetal germ cells that have attained a permissive epigenetic ground state. In contrast, germ cells in fetal testis are protected from the exposure to RA due to the activity of CYP26B1, an RA metabolizing enzyme, which is highly expressed in fetal testis. In this review, we provide an overview of the molecular mechanisms operating in fetal gonads of mice, which enable regulation of meiosis via RA signaling.  相似文献   

17.
18.
A major benefit of advanced reproduction technologies (ART) in animal breeding is the ability to produce more progeny per individual parent. This is particularly useful with animals of high genetic merit. Testis germ cell transplantation (TGCT) is emerging as a novel reproductive technology with application in animal breeding systems, including the potential for use as an alternative to artificial insemination (AI), an alternative to transgenesis, part of an approach to reducing generation intervals, or an approach toward development of interspecies hybrids. There is one major difference in TGCT between rodents and some other species associated with immunotolerance in heterologous transplantation. In particular, livestock and aquatic species do not require an immunesuppression procedure to allow donor cell survival in recipient testis. Testicular stem cells from a genetically elite individual transplanted into others can develop and produce a surrogate male—an animal that produces the functional sperm of the original individual.

Spermatozoa produced from testis stem cells are the only cells in the body of males that can transmit genetic information to the offspring. The isolation and genetic manipulation of testis stem cells prior to transplantation has been shown to create transgenic animals. However, the current success rate of the transplantation procedure in livestock and aquatic species is low, with a corresponding small proportion of donor spermatozoa in the recipient's semen. The propagation of donor cells in culture and preparation of recipient animals are the two main factors that limit the commercial application of this technique. The current paper reviews and compares recent progress and examines the difficulties of TGCT in both livestock and aquatic species, thereby providing new insights into the application of TGCT in food producing animals.  相似文献   

19.
20.
In mammals, early fetal germ cells are unique in their ability to initiate the spermatogenesis or oogenesis programs dependent of their somatic environment. In mice, female germ cells enter into meiosis at 13.5 dpc whereas in the male, germ cells undergo mitotic arrest. Recent findings indicate that Cyp26b1, a RA-degrading enzyme, is a key factor preventing initiation of meiosis in the fetal testis. Here, we report evidence for additional testicular pathways involved in the prevention of fetal meiosis. Using a co-culture model in which an undifferentiated XX gonad is cultured with a fetal or neonatal testis, we demonstrated that the testis prevented the initiation of meiosis and induced male germ cell differentiation in the XX gonad. This testicular effect disappeared when male meiosis starts in the neonatal testis and was not directly due to Cyp26b1 expression. Moreover, neither RA nor ketoconazole, an inhibitor of Cyp26b1, completely prevented testicular inhibition of meiosis in co-cultured ovary. We found that secreted factor(s), with molecular weight greater than 10 kDa contained in conditioned media from cultured fetal testes, inhibited meiosis in the XX gonad. Lastly, although both Sertoli and interstitial cells inhibited meiosis in XX germ cells, only interstitial cells induced mitotic arrest in germ cell. In conclusion, our results demonstrate that male germ cell determination is supported by additional non-retinoid secreted factors inhibiting both meiosis and mitosis and produced by the testicular somatic cells during fetal and neonatal life.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号