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1 n critical for the formation of a functional theca.
2 e murine sperm perforatorium and perinuclear theca.
3 with a characteristic echinoderm-like plated theca, a muscular stalk reminiscent of the hemichordates
5 lands was compared to mRNA levels in ovarian theca and granulosa cells using real-time quantitative p
10 as highly expressed in follicular granulosa, theca, and endothelial cells; NTSR1 and NTSR2 were expre
12 ociated membrane protein and the perinuclear theca, and the exclusion of the nuclear mitotic apparatu
13 These data contributed panels of oocyte-, theca-, and granulosa-specific genes, thus expanding the
18 mutant stromal cells consist of a luteinized theca cell lineage at various differentiation stages inc
19 in impaired granulosa cell proliferation and theca cell recruitment as well as fewer primordial folli
22 is showing that treatment of cultured bovine theca cells (TC) with BMP6 significantly (>twofold; P <
23 strong mRNA labeling for BMP-4 and -7 in the theca cells and BMP receptor types IA, IB, and II in the
25 he first genetic evidence for the origins of theca cells and reveal a multicellular interaction criti
26 n and insulin resistance persist in cultured theca cells and skin fibroblasts, respectively, from wom
27 g in the development and function of ovarian theca cells and the pathophysiologic effects of hyperins
34 ved in excess androgen synthesis by the PCOS theca cells in order to identify candidate PCOS genes.
36 lls, the identification of mutant luteinized theca cells may add crucial evidence in understanding th
38 in expression to Leydig cells of the testis, theca cells of the ovary, and cells of the adrenal corte
39 ocytes and interstitial cells of the testis, theca cells of the ovary, cerebral cortical neurons, and
40 results suggest that GT198 mutant luteinized theca cells overexpressing CYP17 are common in ovarian c
42 orced overexpression of DENND1A.V2 in normal theca cells resulted in a PCOS phenotype of augmented CY
43 we report the unexpected finding that bovine theca cells show abundant INHA expression and 'free' inh
44 activated medullary follicles recruit fetal theca cells to establish a two-cell system for sex-stero
45 genes with increased mRNA abundance in PCOS theca cells were aldehyde dehydrogenase 6 and retinol de
46 , turn over most granulosa cells, but retain theca cells which expand in number together with interst
47 defined a stable molecular phenotype of PCOS theca cells, 2) suggested new mechanisms for excess andr
48 anisms for excess androgen synthesis by PCOS theca cells, and 3) identified new candidate genes that
51 ciated with the persistence of steroidogenic theca cells, but this connection is poorly understood.
52 ocated in the cytoplasm as well as nuclei of theca cells, suggesting a possible role in gene regulati
61 expression, although both theca interna and theca externa were also positive, interna greater than e
63 erplasia and hypervascularity of the ovarian theca interna and stroma are also prominent features of
64 e found strong expression of EG-VEGF mRNA in theca interna and stroma in most of the specimens examin
65 howed the greatest expression, although both theca interna and theca externa were also positive, inte
66 Sertoli and Leidig cells of the testes; (i) theca interna cells in the ovary; and (j) adrenal cortex
67 titial gland, and in the granulosa cells and theca interna of small to medium-sized antral follicles,
68 sulin receptor (IR) gene specifically in the theca-interstitial (TI) cells of the ovaries (Cyp17IRKO)
69 anulosa) and steroidogenic cells (Leydig and theca-interstitium) are two major somatic cell types in
77 cells of veins, either in the inner layer of theca of ovulating follicles during ovulation, or surrou
79 granulosa cells are known, the origin(s) of theca progenitor cells have not been definitively identi
80 n the mesenchyme, cotreatment with AMH halts theca progenitor differentiation and reduces apoptotic g
83 posure and solubilization of the perinuclear theca (PT), as evidenced by transmission electron micros
84 ated ovarian steroidogenic cells (granulosa, theca, small luteal, and large luteal), and isolated lut
86 s of follicle maturation, with granulosa and theca/stroma cells also displaying molecular hallmarks o
87 tivation and being stored in the perinuclear theca, the sperm compartment whose content is first rele
89 or a single origin of the group's cellulosic theca, which we show coincided with a radiation of cellu