• 제목/요약/키워드: pituitary cell culture

검색결과 20건 처리시간 0.032초

Response of Pituitary Cells and Tissues to Neurokinin B and F in the Nile tilapia

  • Mun, Seong Hee;Oh, Hyeon Ji;Kwon, Joon Yeong
    • 한국발생생물학회지:발생과생식
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    • 제26권1호
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    • pp.13-21
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    • 2022
  • Neurokinin B (NKB) is a neuropeptide involved in the regulation of reproductive endocrine system of vertebrate animals, including fish. However, the pathway of NKB action in fish has not been clearly elucidated. In order to clarify the effect of NKB and NKF (neurokinin F) on gonadotropic hormone (GTH) gene expression in the pituitary, we studied the changes of LHβ and FSHβ gene expressions by using two different pituitary culture methods (whole pituitary culture or dispersed pituitary cell culture). Pituitaries were removed from mature female and male Nile tilapia. Changes of LHβ and FSHβ gene expressions were measured and compared after the treatment with NKB or NKF peptides at concentrations 0 to 1,000 nM. Expression of GTH genes in the whole pituitary cultures treated with NKB or NKF peptides did not show significant difference except in female at one concentration when treated with NKF. On the contrary, there were significant changes of GTH gene expressions in the dispersed pituitary cell cultures when treated with NKB and NKF peptides. These results suggest that dispersed pituitary cell culture is more relevant than whole pituitary culture in studying the function of pituitary, and that NKB and NKF could act directly on the pituitary to regulate the expression of GTH genes.

Induction of Growth Hormone by the Roots of Astragalus membranaceus in Pituitary Cell Culture

  • Kim, Chung-Sook;Ha, Hye-Kyung;Kim, Jin-Sook;Kim, Yun-Tai;Kwon, Sun-Chang;Park, Sie-Won
    • Archives of Pharmacal Research
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    • 제26권1호
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    • pp.34-39
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    • 2003
  • The traditional Asian medicinal herb, roots of Astragalus (A.) membranaceus (Leguminosae), is used for many purposes, some of which are purported to stimulate the release of growth hormone in vivo. Extracts of A. membranaceus were tested to determine whether they stimulate the release of growth hormone in rat pituitary cell culture. A. membranaceus was extracted sequentially with 80% ethanol (fraction A), n-hexane (fraction B); the test compound from the herbal extraction was isolated using silica gel column chromatography and was identified with spectral data. Test compound was also extracted by traditional boiling water methods. Induction of growth hormone in pituitary cell culture was conducted with isolated compounds and extracted fractions of A. Radix (dried roots of A. membranaceus). The fraction A was not active in the rat pituitary cell culture, but the fraction B derived from the ethanol fraction stimulated the release of growth hormone in culture. Six compounds from fraction B (1-6) were isolated and identified previously. The compounds 1,2-benzendicarboxylic acid diisononylester (1), $\beta$-sitosterol (2), and 3-Ο-$\beta$-D-galactopyranosyl-$\beta$-sitosterol (5) did not induce growth hormone release in the culture. Formononetin (3), 9Z, 12Z-octadecadienoic acid (4), stigmast-4-en-6$\beta$-o1-3-one (6) and 98-E, a mixture of 1'-9, 12-octadecadienoic acid (Z,Z)-2',3'-dihydroxy-propylester (7) and 1'-hexadecanoic acid-2',3'-dihydroxy-propylester (8) stimulated the release of growth hormone in the rat pituitary cell culture significantly compared to the control. In conclusions, four compounds isolated from extracts of A. Radix induced growth hormone release in the rat pituitary cell culture. The 98-E isolate was the most active inducer of growth hormone release.

인삼(人蔘) Saponin이 Prolactin 분비(分泌)에 미치는 효과(效果) (The Effects of Ginseng Saponin on Prolactin Secretion in Rats)

  • 백덕우;이서윤;지형준
    • 생약학회지
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    • 제9권1호
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    • pp.33-39
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    • 1978
  • The present study is involved with the prolactin secretion from anterior pituitary gland by ginseng saponin since it was handled down by tradition that ginseng might influence the milk secretion when it was given to nursing mother. To investigate the effect of saponin on the prolactin production or release from the anterior pituitary gland, cell culture study and whole animal studies were carried out. For the cell culture study, enzymatically dispersed anterior pituitary cells of rat anterior pituitary gland in HEPES buffers containing trypsin were used. Ginseng saponin was added to the culture media and the amount of prolactin produced in the cell culture media was determined by radloimmunoassay(RIA) technique. Dose-dependent increases of prolactin with ginseng saponin were observed, whereas, no change was observed without ginseng treatment. For the whole animal study, normal and castrated rats which previously cannulated into the heart via the right juglar vein were used. The prolactin concentration in plasma were determined by using the technique of RIA. In normal rats, prolactin concentration in plasma were elevated dramatically after 1 hour of ginseng saponin administration, whereas, instantaneous increases were observed in castrated rats. For prolactin assay by RIA, NIAMDD Rat Prolactin Kit and NIAMDD Rat Prolactin RP-1 were used as standard. The results indicate that ginseng saponins increase the release of prolactin from the anterior pituitary gland and production of prolactin from the cell in rats.

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산란계의 뇌하수체 세포배양에서 Prolactin의 생성에 관계하는 Protein Kinase C의 역할 (The Role of Protein Kinase C for Prolactin Secretion in Chicken Primary Pituitary Cell Culture)

  • 선상수
    • 한국가금학회지
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    • 제23권3호
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    • pp.113-119
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    • 1996
  • A series of experiments were conducted to investigate the role of protein kinase C (PKC) as a second messenger in vasoactive intestinal peptide (VIP) mediated prolactin secretion. Primary pituitary cells (106 cells/treatment) were separated from laying hens and incubated in M-199 with 5% chicken serum and 5% fetal calf serum. The VIP(0.1 $\pi$M) treatment enhanced prolactin Secretion into media upto 9-fold during 48-h incubation. The phorbol 12-myristate 13-acetate (PMA), a PKG agonist, increased prolactin secretion upto 2-fold at 0.1 nM PMA (P<0.01), and the prolactin secretion was not significantly higher than this concentration. Staurosporine (ST; 1.0$\pi$M) a PKC antagonist, decreased by 70% of 0.1 $\pi$M VIP-stimulated prolactin secretion and by 48% of 10 ${\mu}$M PMA-stimulated prolactin secretion (P<0.01). However, pituitary cell prolactin content did not differ in any treatment (P>0.05). In conclusion, these results indicate that the PKC second messenger system is involved in VIP-stimulated prolactin release in chicken primary pituitary cell culture.

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Dopaminergic influences on prolactin synthesis and release from rat anterior pituitary cultures

  • Kim, Kwang-Chul;Burkman, Allan
    • Archives of Pharmacal Research
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    • 제3권2호
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    • pp.85-86
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    • 1980
  • Dopaminergic influences on prolactin release from lactotrophs have been studied using the rat anterior pituitary cell culture. The prolactin inhibiting activity of hypothalamic extracts was examined in relation to dopamine. Dopamine inhibited prolactin secretion from the rat anterior pituitary cell culture in a dose dependent fashion. The median effective dose was $2{\times}10^{-7}$ / M and the maximal inhibition (70-90 % of the control value) was shown by 10$^{-5}$ / M dopamine. Further increase in dopamine concentration did not result in any further inhibition of prolactin secretion.nhibition of prolactin secretion.

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Effects of Gonadotropin-Releasing Hormone on in vitro Gonadotropin Release in Testosterone-Treated Immature Rainbow Trout

  • Kim, Dae-Jung;Kim, Yi-Cheong;Aida, Katsumi
    • Animal cells and systems
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    • 제13권4호
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    • pp.429-437
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    • 2009
  • The control mechanism of gonadotropin-releasing hormone (GnRH) on gonadotropin (GTH) release was studied using cultured pituitary cell or cultured whole pituitary obtained from Testosterone (T) treated and control immature rainbow trout. The release of FSH was not changed by salmon type GnRH (sGnRH), chiken-II type (cGnRH-II), GnRH analogue ([des-$Gly^{10}D-Ala^6$] GnRH ethylamide) and GnRH antagonist ([Ac-3, 4-dehydro-$Pro^1$, D-p-F-$Phe^2$, D-$Trp^{3,6}$] GnRH) in cultured pituitary cells of T-treated and control fish. Indeed, FSH release was not also altered by sGnRH in cultured whole pituitary. All tested drugs had no effect on the release of LH in both culture systems of control fish. The levels of LH, in contrast, such as the pituitary content, basal release and responsiveness to GnRH were increased by T administration in both culture systems. In addition, the release of LH in response to sGnRH or cGnRH-II induced in a dose-dependent manner from cultured pituitary cells of T-treated fish, but which is not significantly different between in both GnRH at the concentration examined. Indeed, LH release was also increased by sGnRH in cultured whole pituitary of T-treated fish. GnRH antagonist suppressed the release of LH by sGnRH ($10^{-8}\;M$) and GnRH analogue ($10^{-8}\;M$) stimulation in a dose-dependent manner from cultured pituitary cells of T-treated fish, and which were totally inhibited by $10^{-7}\;M$ GnRH antagonist. These results indicate that the sensitivity of pituitary cells to GnRH is elevated probably through the T treatment, and that GnRH is involved in the regulation of LH release. GnRH-stimulated LH release is inhibited by GnRH antagonist in a dose-dependent manner. The effects of gonadal steroids on FSH levels are less clear.

배양중인 흰쥐 뇌하수체 전엽 세포의 증식에 미치는 Growth Hormone Releasing Hormone (GHRH)의 영향 (Effect of Growth Hormone Releasing Hormone on the Proliferation of Cultured Cells Derived from Rat Anterior Pituitary Gland)

  • Lee, Sung-Ho
    • 한국발생생물학회지:발생과생식
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    • 제4권2호
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    • pp.237-242
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    • 2000
  • 흰쥐 시상하부에서 합성ㆍ분비되어 뇌하수체 전엽에서의 growth hormone (GH) 분비를 촉진하는 growth hormone releasing hormone (GHRH)이 시상하부 이외 조직들 (extrahypothalamic tissues)인 태반, 생식소, 그리고 뇌하수체 전엽에서도 발현됨이 보고되었다. 본 연구는 흰쥐 뇌하수체 전엽에서 발현되는 GHRH의 기능을 조사하기 위해 i)세포 배양을 시행하면서 GHRH의 세포내 함량, 분비 그리고 세포분획법 (cell-fractionation)을 사용하여 분리한 뇌하수체 세포 유형별로 GHRH 함량을 방사면역측정법으로 조사하였고, ii)체외배양 중인 뇌하수체 전엽세포의 증식에 미치는 GHRH의 효과를 측정하기 위해 [$^3$H] thymidine incorporation assay를, 그리고 iii) GHRH의 세포분열 촉진 효과와 세포내 c-fos 유전자 발현과의 상관관계를 조사하기 위해 northern blot analysis를 시행하였다. GHRH 방사면역측정법을 시행한 결과 상당량의 GHRH-like 분자들이 흰쥐 뇌하수체 전엽내에 존재하고, 체외 세포배양시 분비됨을 관찰하였다. 세포분획을 사용한 실험에서 GHRH 함량은 gonadotrope, somatotrope, lactotrope 그리고 thyrotrope 순으로 나타났다. 이 러한 결과는 흰쥐 뇌하수체 전엽에서 생성된 GHRH가 국부적인 조절인자, 특히 상이한 유형의 세포들 간의 상호조절 (cross-talk)을 통해 뇌하수체 전엽에서의 세포분열과 분화, 그리고 기능조절에 관여할 가능성을 보여주었다. GHRH는 체외 배양중인 뇌하수체 전엽세포의 [$^3$H] thymidine incorporation을 농도의존적으로 증가시켰으며, 이러한 GHRH의 세포분열 촉진 효과는 예상대로 세포내 oncogene 활성 의 증가를 통해 일어나는 것임을 c-fos northrn blot으로 확인하였다. 결론적으로, 본 연구는 흰쥐 뇌하수체 전엽에서 합성되는 GHRH가 paracrine 또는 autocrine 기작으로 GH의 분비 촉진 이외에도 세포분열의 조절함을 시사하는 것이다.

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인동 추출물의 성장호르몬 유발 효과 (Induction of Growth Hormone Release by the Extracts of Lonicera japonica $T_{HUNB.}$)

  • 정대영;이호영;하혜경;정다영;강삼식;김정숙
    • 생약학회지
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    • 제34권3호통권134호
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    • pp.256-262
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    • 2003
  • Lonicerae Flos (LF) has been used as an anticancer, anti-viral, and anti-inflammatory agent in traditional herbal medicine. In this study, induction of rat growth hormone (rGH) by addition of methanol (MeOH) extract of LF of Lonicerae (L.) Folium or several constituents of L. Folium were carried out in the pituitary cell culture system. Induced rGH level by addition of 70% MeOH extract of LF was increased to $732.65{\pm}105.64%$ of control (n=18, p<0.01), however, the other sequential fractions were not significantly different from the control. Ochnaflavone, a constituent of L. Folium, induced rGH level in the cell culture to $329.73{\pm}160.00%$ of control (n=6, p<0.01). An I..v. injection of the MeOH extract of LF did not increase plasma rGH level in anesthetized rats. Unfortunately, the MeOH extract of LF induced prolactin and LH release about 7 and 5 fold of the control, respectively (p<0.05, each). In conclusions, 70% MeOH extract of LF exerted induction of rGH release in rat pituitary cell culture. Further studies to investigate mechanisms of the inducded rGH by LF are in progress.

연어 생식소자극호르몬 II의 Sandwich Enzyme Immunoassay법 개발 (Development of a Sandwich Enzyme Immunoassay for Salmon Gonadotropin II.)

  • 김대중;한창희;회전귀미
    • 한국수산과학회지
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    • 제33권1호
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    • pp.55-59
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    • 2000
  • 무지개 송어의 뇌하수체 및 배양액에 존재하는 GTH II 농도를 측정하기 위해 Avidin- Biotin complex를 이용한 sandwich EIA 계을 개발했다. Protein A sepharose affinity chromatography을 통해서 얻어진 연어 GTH II의 rabbit IgG에 biotinylation시킨 것 (Biotin-salmon GTH II rabbit IgG)을 제2 항체로 사용하였고, Non-Biotin salmon GTH II rabbit IgG는 단지 protein A sepharose affinity chromatography에서 얻어진 IgG를 제 1 항체로 사용하였다. EIA는 sandwich법에 의해서 이루어졌으며, 효소반응 기질로는 TMB(3,3'5,5-tetramethylbenzidine)를 이용했으며, 반응후 450 nm의 흡광도에서 automatic microplate reader로 측정하였다. 그 결과, $0.12\;{\~}\;125\;ng/ml$의 범위에서 용량반응곡선을 얻었으며, 측정감도 (최소 검출량)는 거의 0.58 ng/ml 정도 였다. 그리고 뇌하수체 추출물 및 배양액 각각의 희석곡선은 GTH II 표존곡선과 일치 하였다. 또한 이러한 GTH II의 표준곡선는 뇌하수체내 다른 peptide hormone와는 교차반응을 거의 나타내지 않았다. Testosterone을 처리한 미성숙 무지개 송어의 뇌하수체 세포배양계를 이용하여 sGnRH에 의한 GTH II 분비량을 본 sandwich EIA계와 RIA계를 비교 조사한 결과, 거의 같은 분비량을 나타냈을 뿐만아니라 같은 분비 pattern을 나타냈다. 이러한 결과로부터 본 sandwich법 EIA계에 의해서 연어과 어류의 뇌하수체 추출물 및 뇌하수체 배양액 중의 GTH II 함량 및 분비량을 측정하는데 있어서 안정된 assay계라고 생각되어진다.

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The Control Mechanism of Gonadotropin-Releasing Hormone and Dopamine on Gonadotropin Release from Cultured Pituitary Cells of Rainbow Trout Oncorhynchus mykiss at Different Reproductive Stages

  • Kim, Dae-Jung;Suzuki, Yuzuru;Aida, Katsumi
    • Fisheries and Aquatic Sciences
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    • 제14권4호
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    • pp.379-388
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    • 2011
  • The mechanism by which gonadotropin-releasing hormone (GnRH) and dopamine (DA) control gonadotropin (GTH) release was studied in male and female rainbow trout using cultured pituitary cells obtained at different reproductive stages. The mechanisms of follicle-stimulating hormone (FSH) release by GnRH and DA could not be determined yet. However, basal and salmon-type GnRH (sGnRH)- or chicken-II-type GnRH (cGnRH-II)- induced luteinizing hormone (LH) release increased with gonadal maturation in both sexes. LH release activity was higher after sGnRH stimulation than cGnRH-II stimulation at maturing stages in both sexes. The GnRH antagonist ([Ac-3, 4-dehydro-$Pro^1$, D-p-F-$Phe^2$, D-$Trp^{3,6}$] GnRH) suppressed LH release by sGnRH stimulation in a dose-dependent manner, although the effect was weak in maturing fish. The role of DA as a GTH-release inhibitory factor differs during the reproductive cycle: the inhibition of sGnRH-stimulated LH release by DA was stronger in immature fish than in maturing, ovulating, or spermiated fish. DA did not completely inhibit sGnRH-stimulated LH release, and DA alone did not alter basal LH release. Relatively high doses ($10^{-6}$ or $10^{-5}M$) of domperidone (DOM, a DA D2 antagonist) increased LH release, which did not change with reproductive stage in either sex. The potency of DOM to enhance sGnRH-stimulated LH release was higher in maturing and ovulated fish than in immature fish. These data suggest that LH release from the pituitary gland is controlled by dual neuroendocrine mechanisms by GnRH and DA in rainbow trout, as has been reported in other teleosts. The mechanism of control of FSH release, however, remains unknown.