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1.
Brain Res Bull ; 165: 129-138, 2020 12.
Artículo en Inglés | MEDLINE | ID: mdl-32966849

RESUMEN

Reproduction is the biological process that sustains life. It is regulated by a neuro-hormonal mechanism that is synchronized by the interaction among the hypothalamus, hypophysis, and ovaries. Ovulation is regulated by the secretion of the gonadotropin-releasing hormone (GnRH), which stimulates the release of the luteinizing hormone (LH) and follicle-stimulating hormone (FSH). In addition to these neuroendocrine signals, other signals originating from the central nervous system, hypophysis, thyroid, adrenal glands, and the ovary itself are also involved. One of the neurotransmission systems involved in the regulation of ovulation is the cholinergic system, which not only participates in the regulation of reproductive functions but also modulates motor coordination, thermoregulation, and cognitive function. In mammals, the vagus nerve is one of the pathways through which acetylcholine reaches the ovary, and this pathway also participates in the regulation of ovulation. However, this regulation depends on the age of the animal (prepubertal or adult) and its endocrine status. The present review analyzes evidence of the roles of the central and peripheral cholinergic system and vagal innervation in the regulation of GnRH secretion and ovulation as well as their roles in the development and persistence of polycystic ovary syndrome (PCOS).


Asunto(s)
Acetilcolina/metabolismo , Neuronas Colinérgicas/metabolismo , Hormona Liberadora de Gonadotropina/metabolismo , Hipotálamo/metabolismo , Ovulación/fisiología , Nervio Vago/metabolismo , Animales , Vías Nerviosas/metabolismo , Transmisión Sináptica/fisiología
2.
J Assist Reprod Genet ; 37(6): 1477-1488, 2020 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-32363564

RESUMEN

PURPOSE: Little is known about the role of the superior ovarian nerve (SON) in follicular development during the estrus cycle. The aim of the present study was to analyze the role of neural signals arriving through the SON at the ovaries in the regulation of follicular development and ovarian steroid secretion in diestrus 1 of cyclic rats. METHODS: Cyclic rats were subjected to left, right, or bilateral SON sectioning or to unilateral or bilateral laparotomy at diestrus 1 at 11:00 h. Animals were sacrificed 24 h after surgery. RESULTS: Compared to laparotomized animals, unilateral SON sectioning decreased the number of preovulatory follicles, while bilateral SON sectioning resulted in a decreased number of atretic preantral follicles. An important observation was the presence of invaginations in the follicular wall of large antral and preovulatory follicles in animals with denervation. Furthermore, left SON sectioning increased progesterone levels but decreased testosterone levels, which are effects that were not observed in animals that were subjected to right denervation. CONCLUSIONS: At 11:00 h of diestrus 1, the SON was found to stimulate follicle development, possibly via neural signals, such as noradrenaline and/or vasoactive intestinal peptide, and this stimulation induced the formation of follicle-stimulating hormone receptors. The role of the SON in the regulation of ovarian steroid secretion is asymmetric: the left SON inhibits the regulation of progesterone and stimulates testosterone secretion, and the right nerve does not participate in these processes.


Asunto(s)
Diestro/fisiología , Estro/fisiología , Folículo Ovárico/fisiología , Ovario/inervación , Animales , Modelos Animales de Enfermedad , Femenino , Hormona Folículo Estimulante/farmacología , Humanos , Laparotomía , Hormona Luteinizante/farmacología , Tejido Nervioso/patología , Tejido Nervioso/cirugía , Folículo Ovárico/inervación , Folículo Ovárico/cirugía , Ovario/fisiología , Ovario/cirugía , Ovulación/fisiología , Ratas , Testosterona/farmacología
3.
Bol. latinoam. Caribe plantas med. aromát ; 13(1): 100-108, ene. 2014. ilus, tab
Artículo en Inglés | LILACS | ID: lil-726607

RESUMEN

The people of San Rafael Coxcatlán use Cordia curassavica to treat gastrointestinal and respiratory disorders. The aim of this work was to investigate the temporal variation of chemical composition and antimicrobial activity of the essential oil of C. curassavica in two seasons of the year (dry and rainy). The essential oil of aerial parts was obtained by steam distillation, 12 and 17 compounds were identified for dry and rainy seasons respectively by GC-MS. The major component was for the dry season 1,7,7-trimethyl tricyclo (2.2.1.0(2,6)) heptane (20.3 percent), and for the rainy season was germacrene (24.41 percent). The antibacterial activity of essential oils varies temporarily because was active in nine strains in the dry season and four in the wet. The more sensitive strains were Stapahylococcus epidermidis and Vibrio cholera. The essential oil obtained in dry season presented a MIC of 0.75 and 0.125 mg/mL, and for the rainy season a MIC of 1.00 and 0.375 mg/mL respectively. Rhizoctonia solani was the more sensitive fungi strain (IC25 0.1300 mg/mL) in the rainy season. These results show that the chemical composition and biological properties of essential oil of the C. curassavica have temporal variation.


La población de San Rafael para tratar padecimientos gastrointestinales y respiratorios emplean Cordia curassavica. El objetivo del presente trabajo fue investigar la variación temporal de la composición química y la actividad antimicrobiana del aceite esencial de C. curassavica colectada en dos épocas del año (sequía y lluvias). El aceite esencial se obtuvo mediante la técnica de arrastre de vapor y los componentes se identificaron por CG-MS. En la época de secas se detectaron 12 compuestos y 17 en la de lluvias. El principal componente para la época de secas fue el 1,7,7 trimetil triciclo (2.2.1.0(2,6)) heptano (20.3 por ciento) y para la temporada de lluvias fue el germacrano (24.41 por ciento). La actividad antibacteriana del aceite esencial varía temporalmente porque fue activo sobre nueve cepas en la época seca y sobre cuatro cepas en la época lluviosa. Las cepas más sensibles para ambas estaciones fueron Stapahylococcus epidermidis y Vibrio cholerae. En la época de seca, el aceite esencial presentó la concentración mínima inhibitoria (CMI) de 0.75 y 0.125mg/mL, mientras que en la época de lluvias fueron de 1.00 y 0.375 mg/mL respectivamente. La cepa fúngica más sensible fue Rhizoctonia solani (IC25 0.130 mg/mL) en la época de lluvia. Estos resultados muestran que la composición química y las propiedades biológicas de los aceites esenciales de Cordia curassavica varian de acuerdo a la época del año.


Asunto(s)
Aceites Volátiles/farmacología , Aceites Volátiles/química , Antibacterianos/farmacología , Antibacterianos/química , Cordia/química , Bacterias Gramnegativas , Bacterias Grampositivas , Boraginaceae/química , Estación Seca , Cromatografía de Gases y Espectrometría de Masas , Pruebas de Sensibilidad Microbiana , Estación Lluviosa , Estaciones del Año , Sesquiterpenos/análisis , Terpenos/análisis
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