Bovine ectopic testis tissue grafting is a technique that can be used to study bovine spermatogenesis and for the production of germ cells for a variety of applications. Approximately 10% of seminiferous tubule cross sections in testis grafts contain spermatids, providing a unique tool to investigate what regulates germ cell differentiation. We hypothesized that manipulation of testis tissue grafts would increase the percentage of seminiferous tubule cross sections undergoing complete germ cell differentiation. To test this hypothesis, bovine testis tissue was treated with vascular endothelial growth factor (VEGF) at the time of grafting or explant cultured for 1 wk prior to grafting. For the VEGF experiment, 8-wk donor tissue and graft sites were treated with 1 microg of VEGF in order to increase angiogenesis at the graft site. For the testis tissue culture experiment, 4-wk-old donor testis was cultured for 1 wk prior to grafting to stimulate spermatogonial stem cell proliferation. Testis tissue grafts were removed from the mice 24 wk after grafting. VEGF treatment increased graft weight and the percentage of seminiferous tubule cross sections with elongating spermatids at the time of graft removal. Cultured testis tissue grafts were smaller and had fewer seminiferous tubules per graft. However, there was no difference in the percentage of seminiferous tubule cross sections that contained any germ cell type between groups. These data indicate for the first time that bovine testis tissue can be manipulated to better support germ cell differentiation in grafted tissue.
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http://dx.doi.org/10.1095/biolreprod.105.049817 | DOI Listing |
Aging (Albany NY)
January 2025
Department of Public Health Sciences, University of Chicago, Chicago, IL 60615, USA.
Background: DNA methylation (DNAm) data from human samples has been leveraged to develop "epigenetic clock" algorithms that predict age and other aging-related phenotypes. Some DNAm clocks were trained using DNAm obtained from blood cells, while other clocks were trained using data from diverse tissue/cell types. To assess how DNAm clocks perform across non-blood tissue types, we applied DNAm algorithms to DNAm data generated from 9 different human tissue types.
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January 2025
The Affiliated Taian City Central Hospital of Qingdao University, 29 Longtan Rd, Taishan District, Taian, 271000, Shandong, China.
Oligoasthenoteratozoospermia (OAT) is a common cause of infertility among males, and the majority of cases of idiopathic OAT are thought to be attributed to genetic defects. In this study, the role of the CEP78 protein in spermatogenesis was initially investigated using Cep78 knockout (Cep78) mice. Notably, the male Cep78 mice exhibited the OAT phenotype and sterility.
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January 2025
Department of Pediatric Surgery and Urology, Medical University of Bialystok, Waszyngtona 17, 15-274, Bialystok, Poland.
Cryptorchidism, the absence of one or both testicles in the scrotum, is the most common anomaly of genitourinary tract in males. The pathogenesis of undescended testes is unknown however the role of inflammation, tissue remodeling and oxidative stress is postulated. The aim of this study was to explore the role of HSP-70, MMP-3, MMP-17 and IL-8 in possible pathogenic pathways connected with cryptorchidism.
View Article and Find Full Text PDFMol Biol Cell
January 2025
Department of Biology, University of North Carolina at Chapel Hill, CB#3280, Chapel Hill, NC 27599-3280, USA.
Collective cell migration is critical for morphogenesis, homeostasis, and wound healing. Migrating mesenchymal cells form tissues that shape the body's organs. We developed a powerful model, exploring how nascent myotubes migrate onto the testis during pupal development, forming the muscles ensheathing it and creating its characteristic spiral shape.
View Article and Find Full Text PDFMethods Mol Biol
January 2025
Centro de Biologia Molecular Severo Ochoa (CBM), CSIC-UAM, Madrid, Spain.
Hox genes specify identities mainly in the anteroposterior axis in various animal tissues, some of them forming part of the internal organs and systems. The expression and activity of these genes have been analyzed mainly in Drosophila melanogaster, the fruit fly, and in mouse; in the former, the functional study of Hox genes has been detailed predominantly in epidermal structures, but their role in internal organs poses some challenges, particularly in pupae. One of these genes, Abdominal-B, dictates the development of many internal organs in the posterior abdomen of the fly, yet techniques for its analysis, like in vivo time-lapse, have long been impractical.
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