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Biomedical subjects

Bo-Ying Chen

Publications and source records attributed to Bo-Ying Chen.

8 recordsLinked to original sources

[Effects of Chinese herbal medicine on modulating the course of puberty development in children with precocious puberty].

OBJECTIVE: To explore the therapeutic effects of Ziyin Xiehuo Recipe (ZYXHR) for nourishing yin and lowering fire and Yishen Tianjing Recipe (YSTJR) for nourishing kidney and replenishing essence on regulating the gonadotrophic and somatotrophic functions of hypothalamic-pituitary axis, and to reveal the mechanisms of ZYXHR and YSTJR in modulating the course of pubertal development of children with precocious puberty. METHODS: The pubertal rats were fed with ZYXHR or YSTJR for 30 days, and the parameters of rats were monitored as the followings: The content of gonadotropin-releasing hormone (GnRH), the frequency and amplitude of GnRH impulse releasing, the releasing amounts of aminoacid neurotransmitters, and neuropeptide Y (NPY) and beta-endorphin (beta-END) in the gonadotrophic area of the hypothalamus were detected with neurobiological methods (push-pull perfusion, homogenate, incubation of brain slices, and immunohistochemical staining). The levels of gene and protein expressions of GnRH, growth hormone releasing hormone (GHRH) and somatostatin (SS) in hypothalamus, and follicular stimulating hormone (FSH), luteinizing hormone (LH) and growth hormone (GH) in adenohypophysis as well as insulin-like growth factor I (IGF-I) in metaphysis were determined with real time reverse transcription-polymerase chain reaction (RT-PCR). RESULTS: The ZYXHR could reduce the activity of GnRH neurons in hypothalamus through inhibiting the release of central exciting aminoacid neurotransmitters, whereas promoting the release of central inhibiting aminoacid neurotransmitters, NPY and beta-END in gonadotrophic area of hypothalamus. The expression levels of GnRH, FSH and LH mRNAs were down-regulated while the expression level of SS mRNA in hypothalamus was up-regulated in the ZYXHR-treated group. The GH mRNA in hypophysis and the IGF-I mRNA in metaphysis were both down-regulated by ZYXHR. The YSTJR could promote the activity of GnRH neurons in hypothalamus through inhibiting the release of NPY in gonadotrophic area of hypothalamus, up-regulating the expression levels of GnRH, FSH, LH and GH mRNAs in hypophysis, and IGF-I mRNA in metaphysis, while down-regulating the expression level of SS mRNA in hypothalamus. CONCLUSION: The ZYXHR and YSTJR could both regulate the gonadotrophic and somatotrophic functions of hypothalamic-pituitary axis through modulating the neuroendocrine regulation and the gene expressions of GnRH and SS in hypothalamus, GH, FSH and LH in hypophysis, and IGF-I in metaphysis. These may be the chief mechanisms of ZYXHR and YSTJR in modulating the course of pubertal development and ameliorating the skeletal development in children with precocious puberty.

Animals↗

Electroacupuncture stimulates hypothalamic aromatization.

We have previously reported that the repeated electroacupuncture (EA) stimulation significantly increased the concentrations of circulating estradiol and restored the depressed function of the hypothalamus-pituitary-ovary axis (HPOA) in ovariectomized (OVX) rats. We hypothesize that extragonadal aromatization in specific brain areas might be responsible for these changes. Thus, various assays, including radiometric assay, Western blot, and reverse transcriptase polymerase chain reaction (RT-PCR), were employed to determine the aromatization in the hypothalamus of rats that received both OVX and electroacupuncture (OVX + EA). The results showed that EA significantly increased the aromatase activity as well as the expressions of its mRNA and protein (P < 0.05) in the OVX rats. These results suggest that EA enhances brain aromatization, which might contribute to influence the function of gonadotropin-releasing hormone (GnRH) neurons and promote the hypofunction of the HPOA in the ovariectomized rats.

Animals↗

Evaluation of electroacupuncture on ovariectomized rats: implications of modern scientific mechanisms on acupuncture curing woman perimenopausal syndrome.

Acupuncture has been used for treatment of female reproductive disorders dated back at least 2000 years. It has been known to promote homeostasis, modulate hormonal disturbance and induce ovulation. While the increasing popularity of acupuncture therapy demands a serious debate about its scientific documentation. This article is intended to present the experimental data about the effects of electroacupuncture at Guanyuan (RN 4), bilateral Zhongji (RN 3), Sanyinjiao (SP 6) and bilateral Zigong (EXCA 1) in the ovariectomized rats. The EA stimulation produced from a Model G6805-H EA apparatus, and the stimulation parameters were frequency of 3Hz and intensity about 1-2mA, which was progressed in recent years by our group, so as to provide preliminary scientific background of acupuncture therapy of female perimenopausal syndrome.

Animals↗

Decreased hypothalamic aromatization in female rats of true precocious puberty.

The true precocious puberty animal model induced by the single dose of danazol was used for investigating the expressions of hypothalamic aromatase in the advanced onset of puberty in rats. The day of vaginal opening and first estrus showed significant advancement in the model rats compared with the normal and vehicle rats (P < 0.01, respectively). The hypothalamic gonadotropin-releasing hormone (GnRH) mRNA expression increased significantly in the model rats compared with that in the normal and vehicle ones (P < 0.01). The levels of aromatase mRNA and protein expressions detected by RT-PCR and Western blot both decreased in the model rats compared with those in the normal and vehicle groups (P < 0.05). The results suggested that the hypothalamic aromatization might diminish in the onset of true precocious puberty of female rats.

Animals↗

[Effects of kidney-tonifying Chinese herbal medicine on hypothalamic-pituitary gonadotrophic function].

OBJECTIVE: To observe the effects of kidney-tonifying Chinese herbal medicine on the synthesis and secretion of gonadotropin releasing hormone (GnRH) and the related neurotransmitters and neuropeptides, and to explore the mechanism of the regulative effect of Chinese herbal medicine on the hypothalamic-pituitary gonadotrophic function. METHODS: Female Sprague-Dawley rats during the period of normal adolescent initiation (160-180 g, 1.5 months) were randomly divided into three groups. The control group was fed with normal saline and the two experimental groups were fed with Chinese herbal medicine for nourishing yin to reduce fire (Zi Yin Xie Huo, ZYXH) or nourishing kidney to replenish essence (Yi Shen Tian Jing, YSTJ) respectively. The dosage was 5 ml/d for 30 days by gastric gavage. Integrated optic densities of the GnRH and neuropeptide Y (NPY) in medial preoptic area (MPOA), arcuate nucleus (ARC) and median eminence (ME) of hypothalamus were determined by immunohistochemistry method and image processing. The content of GnRH in homogenate of hypothalamus preoptic area was determined by radioimmunoassay (RIA). The releasing amount of monoamine neurotransmitters from medial basal hypothalamus (MBH) was determined by brain slices incubation and high pressure liquid chromatography (HPLC). The releasing amount of GnRH and NPY from POA was determined by push-pull perfusion and RIA, and the releasing amount of monoamine neurotransmitters from this site was determined by HPLC. RESULTS: ZYXH could inhibit the synthesis and secretion of GnRH from periodic and tonic secretory centers of GnRH, while YSTJ could stimulate the synthesis and secretion of GnRH from the both secretory centers of GnRH. ZYXH could inhibit the activity of GnRH neurons via diminishing the releasing of norepinephrine (NE) from tonic secretory center of GnRH, increasing the releasing of dopamine (DA) in periodic secretory center of GnRH and increasing the synthesis and releasing of NPY from the both secretory centers of GnRH, it hence inhibited the hypothalamic-pituitary gonadotrophic function. YSTJ could stimulate the activity of GnRH neurons via diminishing the synthesis and releasing of NPY from tonic secretory center of GnRH, it hence promoted the hypothalamic-pituitary gonadotrophic function. CONCLUSION: Chinese herbal medicine for tonifying the kidney could modulate hypothalamic-pituitary gonadotrophic function via regulating the synthesis and secretion of GnRH and the related neurotransmitters (NE, DA) and neuropeptides (NPY).

Animals↗

Increased corticortropin-releasing hormone release in ovariectomized rats' paraventricular nucleus: effects of electroacupuncture.

Utilizing push-pull perfusion, we examined secretary profiles of corticotropin-releasing hormone (CRH) in the nucleus paraventricularis (PVN) of freely moving intact (INT) and ovariectomized (OVX) rats, and in the meanwhile the effects of electroacupuncture (EA) on the release patterns of CRH were observed. The PVN was perfused with artificial cerebrospinal fluid between 08:00 and 12:00 h, and perfusates were collected every 10 min. The average CRH output was significantly larger in OVX rats than that in INT and INT with EA (INT+EA) groups. Interestingly enough, the CRH output showed a significant elevation in OVX with EA (OVX+EA) group during the EA procedure and further increase immediately after the EA. It is the first time to present the temporal profiles of CRH secretion in the PVN of OVX and OVX+EA rats.

Analysis of Variance↗

An important role of corticotropin-releasing hormone in electroacupuncture normalizing the subnormal function of hypothalamus-pituitary-ovary axis in ovariectomized rats.

In the present study, the effects of electroacupuncture (EA) at a group of specific acupoints on corticotropin-releasing hormone (CRH) and gonadotropin-releasing hormone (GnRH) immunoreactivity (ir) in the hypothalamuses of ovariectomized rats were observed. Meanwhile the blood E2 level was detected. The results showed that EA might significantly increase the blood level of E2 and GnRH cell number in the ovariectomized rats. The number of CRH neurons was higher in the group ovariectomized with EA than that in the ovariectomized and intact groups. Interestingly enough, only in the group ovariectomized with EA was observed the co-localization of CRH-ir and GnRH-ir substances in one cell of hypothalamic nucleus paraventricularis by immunofluorescent double-labeling histochemistry combining laser con-focal scanning microscope. The results suggest that CRH might be an important factor in EA normalizing the subnormal function of hypothalamus-pituitary-ovary axis.

Animals↗