BACKGROUND: Nerve growth factor (β-NGF) from llama seminal plasma has been described as a potent ovulatory and luteotrophic molecule after intramuscular or intrauterine infusion in llamas and alpacas. We tested the hypothesis that systemic administration of purified β-Nerve Growth Factor (β-NGF) during the preovulatory stage will up-regulate steroidogenic enzymes and Vascular Endothelial Growth Factor (VEGF) gene expression in granulosa cells inducing a change in the progesterone/estradiol ratio in the follicular fluid in llamas. METHODS: Experiment I: Female llamas (nâ=â64) were randomly assigned to receive an intramuscular administration of: a) 50âμg gonadorelin acetate (GnRH, Ovalyse, Pfizer Chile SA, Santiago, Chile, nâ=â16), b) 1.0âmg of purified llama β-NGF (nâ=â16), or c) 1âml phosphate buffered saline (PBS, negative control group, nâ=â16). An additional group of llamas (nâ=â16) were mated with a fertile male. Follicular fluid and granulosa cells were collected from the preovulatory follicle at 10 or 20âh after treatment (Time 0â=âadministration of treatment, nâ=â8/treatment/time point) to determine progesterone/estradiol concentration and steroidogenic enzymes and VEGF gene expression at both time points. Experiment II: Granulosa cells were collected from preovulatory follicles from llamas (nâ=â24) using ultrasound-guided transvaginal follicle aspiration for in vitro culture to determine mRNA relative expression of Steroidogenic Acute Regulatory Protein (StAR) and VEGF at 10 or 20âh (nâ=â4 replicates) and progesterone secretion at 48âh (nâ=â4 replicates) after LH or β-NGF treatment. RESULTS: Experiment I: There was a significant increase in the progesterone/estradiol ratio in mated llamas or treated with GnRH or purified β-NGF. There was a significant downregulation in the mRNA expression of Aromatase (CYP19A1/P450 Arom) for both time points in llamas mated or treated with GnRH or llama purified β-NGF with respect to the control group. All treatments except β-NGF (20âh) significantly up regulated the mRNA expression of 3-beta-hydroxysteroid dehydrogenase (HSD3B) whereas the expression of StAR and Side-Chain cleavage enzyme (CYP11A1/P450scc) where significantly up regulated only by mating (20âh), or β-NGF at 10 or 20âh after treatment. VEGF was up regulated only in those llamas submitted to mating (10âh) or treated with purified β-NGF (10 and 20âh). Experiment II: Only β-NGF treatment induced an increase of mRNA abundance of StAR from llama granulosa cells at 20âh of in vitro culture. There was a significant increase on mRNA abundance of VEGF at 10 and 20âh of in vitro culture from granulosa cells treated with β-NGF whereas LH treatment increases VEGF mRNA abundance only at 20âh of in vitro culture. In addition, there was a significant increase on progesterone secretion from llama granulosa cells 48âh after LH or β-NGF treatment. CONCLUSIONS: Systemic administration of purified β-NGF from llama seminal fluid induced a rapid shift from estradiol to progesterone production in the preovulatory follicle. Differences in gene expression patterns of steroidogenic enzymes between GnRH and mated or β-NGF-treated llamas suggest local effects of seminal components on the preovulatory follicle.
The effect of seminal plasma β-NGF on follicular fluid hormone concentration and gene expression of steroidogenic enzymes in llama granulosa cells.
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作者:Valderrama Ximena P, Goicochea Jose F, Silva Mauricio E, Ratto Marcelo H
| 期刊: | Reproductive Biology and Endocrinology | 影响因子: | 4.700 |
| 时间: | 2019 | 起止号: | 2019 Jul 22; 17(1):60 |
| doi: | 10.1186/s12958-019-0504-9 | ||
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