The biology of blood-testis barrier dynamics
血睾屏障动力学的生物学
基本信息
- 批准号:7760938
- 负责人:
- 金额:$ 30.29万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2009
- 资助国家:美国
- 起止时间:2009-02-01 至 2014-01-31
- 项目状态:已结题
- 来源:
- 关键词:AddressAdultAndrogen ReceptorAndrogensApicalBackBasement membraneBiochemicalBiochemistryBiologicalBiologyBlood-Testis BarrierCell AdhesionCell physiologyCell surfaceCellsCellular biologyCicatrixCoculture TechniquesCollagenEndocytosisEndosomesEpithelialEpitheliumExtracellular MatrixExtracellular Matrix ProteinsGelatinase BGerm CellsHomeostasisIn VitroInfertilityIntegral Membrane ProteinKineticsKnockout MiceLaboratoriesMale ContraceptionsMale Contraceptive AgentsMale InfertilityMatrix MetalloproteinasesMediatingMeiosisMembrane ProteinsMetalloproteasesMolecularMolecular BiologyMusPeptide HydrolasesPermeabilityPharmaceutical PreparationsProductionPropertyProtease InhibitorProteinsRattusRecombinantsRecyclingRegulationResearchResearch PersonnelSiteSpermatocytesSpermatogenesisStagingStudy modelsTNF geneTechniquesTestingTestisTestosteroneTight JunctionsTimeTissue Inhibitor of Metalloproteinase-1TissuesTransforming Growth FactorsTumor Necrosis Factor-alphaTumor Necrosis FactorsWorkbasecell motilitycytokinedesignin vitro Modelin vivoinhibitor/antagonistinnovationinsightlate endosomeleydig interstitial cellmigrationmouse modelnovelnovel strategiesoccludinpublic health relevancesertoli cellspermatogenic epithelium structuretooltranscytosis
项目摘要
DESCRIPTION (provided by applicant): The long-term objective of this proposal is to understand the biology and regulation of blood-testis barrier (BTB) dynamics during spermatogenesis using the adult rat testis as a study model. Specifically, it seeks to unravel the mechanism(s) that maintains BTB integrity as preleptotene and leptotene spermatocytes traverse the BTB that occurs at stage VIII of the seminiferous epithelial cycle of spermatogenesis. This study is important since it answers an open question in the field regarding the biochemical and/or molecular mechanism(s) utilized by the testis that regulates the timely 'restructuring' of the BTB to permit spermatocyte transit while maintaining the immunological barrier function at the BTB. This information is also helpful to develop innovative approaches to design new drugs (e.g., male contraceptives that exert their effects by disrupting germ cell function in the seminiferous epithelium) that can be targeted to the seminiferous epithelium behind the BTB. Recent studies have shown that cytokines (e.g., tumor necrosis factor ?, TNF?, and transforming growth factor-?2/-3, TGF-?2 or -?3) have a disruptive effect on BTB integrity, whereas testosterone promotes BTB function, illustrating that the opposing effects of these molecules are crucial to maintain the timely "opening" and "closing" of the BTB during spermatogenesis while facilitating germ cell movement across the barrier. Since both TNF? and TGF-?3 are products of Sertoli and germ cells, and testosterone is a product of Leydig cells (but the androgen receptor resides mostly on the Sertoli cell), in the testis, it is likely that these molecules are released into the BTB microenvironment during spermatogenesis to regulate BTB dynamics. In this application, the P.I. will examine the hypothesis that TNF? regulates BTB dynamics via its effects on basement membrane proteins, such as collagens, proteases and protease inhibitors, which, in turn, regulates the steady-state levels of integral membrane proteins at the BTB. This will determine the status of the BTB to facilitate or prohibit the transit of preleptotene/leptotene spermatocytes across the barrier (Specific Aim 1). Furthermore, the P.I. will test the hypothesis that cytokines and testosterone mediate their opposing effects on the BTB via their differential actions on endocytosis, recycling, endosome-mediated intracellular degradation and transcytosis/relocation of integral membrane proteins at the BTB (Specific Aim 2). The proposed studies will be performed using cutting-edge techniques of biochemistry, molecular biology, and cell biology. The P.I. will also develop and characterize a novel in vitro model using Sertoli-germ cell cocultures to investigate the regulation of germ cell movement across the BTB, which can become a valuable research tool for investigators in the field. In short, this proposal addresses a long-standing mystery in spermatogenesis regarding the biology and regulation of the BTB during the epithelial cycle. PUBLIC HEALTH RELEVANCE: This project seeks to understand the mechanism(s) that regulates blood-testis barrier (BTB) dynamics during the seminiferous epithelial cycle of spermatogenesis using the adult rat testis as a study model. The BTB must `open' or `restructure' transiently during spermatogenesis to facilitate the transit of spermatocytes across the barrier. This, in turn, poses a unique opportunity to transport a drug, such as a male contraceptive that disrupts cell adhesion, behind the BTB to exert its effects, if the mechanism(s) that regulates the timely opening of the BTB is known. In short, this proposal seeks to understand the biology of BTB dynamics during spermatogenesis. It also offers new insight into: (i) developing novel approaches for male contraception, and (ii) the causes of unexplained male infertility.
描述(由申请人提供):本提案的长期目标是使用成年大鼠睾丸作为研究模型,了解精子发生过程中血睾屏障(BTB)动力学的生物学和调控。具体而言,它试图揭示在前细线期和细线期精母细胞穿过发生在精子发生的生精上皮周期第VIII阶段的BTB时保持BTB完整性的机制。这项研究很重要,因为它回答了该领域的一个悬而未决的问题,即睾丸所利用的生物化学和/或分子机制,该机制调节BTB的及时“重组”,以允许精母细胞转运,同时维持BTB的免疫屏障功能。这些信息也有助于开发创新方法来设计新药(例如,通过破坏生精上皮中的生殖细胞功能来发挥其作用的男性避孕药),其可以靶向BTB后面的生精上皮。最近的研究表明,细胞因子(例如,肿瘤坏死因子?,TNF?,和转化生长因子2/-3,TGF-?两个还是-?3)对BTB的完整性具有破坏性作用,而睾酮促进BTB的功能,说明这些分子的相反作用对于在精子发生期间保持BTB的及时“打开”和“关闭”同时促进生殖细胞移动穿过屏障至关重要。由于TNF?TGF-?3是支持细胞和生殖细胞的产物,睾酮是间质细胞的产物(但雄激素受体主要位于支持细胞上),在睾丸中,这些分子可能在精子发生期间释放到BTB微环境中以调节BTB动力学。在本申请中,P.I.将检查假设,TNF?通过其对基底膜蛋白如胶原蛋白、蛋白酶和蛋白酶抑制剂的作用调节BTB动力学,所述基底膜蛋白又调节BTB处的整合膜蛋白的稳态水平。这将确定BTB的状态,以促进或禁止前细线期/细线期精母细胞穿过屏障(具体目标1)。此外,P.I.将检验以下假设:细胞因子和睾酮通过其对BTB处的内吞作用、再循环、内体介导的细胞内降解和整合膜蛋白的转胞吞作用/重新定位的差异作用来介导其对BTB的相反作用(特定目的2)。拟议的研究将使用生物化学,分子生物学和细胞生物学的尖端技术进行。私家侦探还将开发和表征一种新的体外模型,使用支持-生殖细胞共培养物来研究生殖细胞在BTB中运动的调节,这可以成为该领域研究人员的宝贵研究工具。简而言之,这个提议解决了精子发生中关于上皮周期中BTB的生物学和调节的长期谜团。公共卫生关系:本研究以成年大鼠睾丸为研究模型,探讨生精上皮细胞周期中血睾屏障(BTB)动态变化的调控机制。在精子发生过程中,BTB必须瞬时“打开”或“重组”,以促进精母细胞穿过屏障。这反过来又提供了一个独特的机会来运输药物,如破坏细胞粘附的男性避孕药,在BTB后面发挥其作用,如果调节BTB及时打开的机制是已知的。简而言之,该提案旨在了解精子发生过程中BTB动力学的生物学。它还提供了新的见解:(一)开发男性避孕的新方法,和(二)原因不明的男性不育症的原因。
项目成果
期刊论文数量(0)
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科研奖励数量(0)
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C. Yan Cheng其他文献
C. Yan Cheng的其他文献
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{{ truncateString('C. Yan Cheng', 18)}}的其他基金
An in vivo model to study blood-testis barrier dynamics
研究血睾屏障动力学的体内模型
- 批准号:
7485598 - 财政年份:2007
- 资助金额:
$ 30.29万 - 项目类别:
An in vivo model to study blood-testis barrier dynamics
研究血睾屏障动力学的体内模型
- 批准号:
7305201 - 财政年份:2007
- 资助金额:
$ 30.29万 - 项目类别:
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