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Single-cell sequencing of Klinefelter testicular biopsies
Despite timely and successful surgery, 32% of patients with bilateral and 10% with unilateral cryptorchidism will develop azoospermia. Cryptorchid boys at risk of azoospermia display a typical testicular histology of impaired mini-puberty at the time of the orchidopexy. During mini-puberty increased...
ORGANISM(S): Homo sapiens 
We collected testes biopsies from NOA (severe spermatogenic defects, no spermatids or sperm) and OA (normal spermatogenesis, tubular lumen obstruction) patients for iTRAQ proteomics analyses, to screen the genes for which the altered expression is involved in spermatogenic defects
ORGANISM(S): Homo sapiens (Human) 
2025-06-11 | PXD060811 | Pride
The aim of the study was to identify in vivo spermatogonial gene expression within the context of their biological niche. Identification of spermatogonial genes was done by t-testing on the replicates of Score 3 (Spermatogonia) and Score 2 (SCO) testicular biopsies. 3 biological replicates with sper...
ORGANISM(S): Homo sapiens 
Identification of gene expression patterns that correlate with distinct stages of male germ cell development using biopsies from men with highly defined and homogenous testicular pathologies based on the Johnsen score procedure. The Johnsen score procedure is a classical histopathological scoring pr...
ORGANISM(S): Homo sapiens 
Postnatal human male gonad development and function are known to involve many genes and pathways but our understanding of genome-wide developmental stage-specific and cell type-specific gene expression is far from complete. Integration of testicular and somatic data could elucidate regulatory mechan...
ORGANISM(S): Homo sapiens 
43 biopsies were obtained from subfertile/infertile patients undergoing testicular sperm extraction (TESE) as part of their treatment. Labelled cDNAs were compared to a reference normal testis RNA (Ambion).
ORGANISM(S): Homo sapiens 
The aim of the study was to identify in vivo spermatogonial gene expression within the context of their biological niche. Identification of spermatogonial genes was done by t-testing on the replicates of Score 3 (Spermatogonia) and Score 2 (SCO) testicular biopsies.
ORGANISM(S): Homo sapiens 
2009-11-13 | GSE18997 | GEO
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