• 제목/요약/키워드: Mammary acini

검색결과 3건 처리시간 0.016초

Regulation of Apoptosis and Functional Activity in Bovine Mammary Acini

  • im, Sang Hoon
    • Animal cells and systems
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    • 제4권4호
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    • pp.347-352
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    • 2000
  • Programmed cell death, apoptosis, is a mechanism to maintain tissue homeostasis. Although the apoptotic process in rodent mammary tissues has been known to occur at the onset of involution, little is known about programmed cell death in the bovine tissues. Therefore, the purpose of this study was to investigate the molecular and cellular basis of apoptotic process in bovine mammary cells. Mammary tissues were obtained at different lactational and involurional stages. By apoptosis in situ endlabeling assay, apoptotic cells were found around the acinar celt lining in regressing bovine mammary tissues. The apoptosis-related genes bel-2 and bax were detected throughout involution by Northern blotting assay. The level of bax mRNA was dominantly expressed during involution. On the other hand, the bel-2 RNA transcripts were constantly expressed by 14 of post-lactation and declined thereafter. The expression of the testosterone-repressed prostate message-2 (TRPM-2) RNA transcripts, a marker for tissue remodeling, was increased as involution progressed. TNF a, were induced the DNA fragmentation and enhanced the expression of bax mRNA. In addition, milk protein secretion and amino acid uptake were decreased in mammary acinar culture treated with TNF $\alpha$. These results indicate that bovine mammary cells undergo apoptotic process after the cessation of milking and that TNF $\alpha$ may trigger apoptosis in lactating bovine mammary acini.

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3차원 배양 시스템을 이용한 돼지 유선 상피 세포 주 특성과 설정 (Establishment and characterization of porcine mammary gland epithelial cell line using three dimensional culture system)

  • 정학재
    • 한국산학기술학회논문지
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    • 제18권10호
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    • pp.551-558
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    • 2017
  • 조직특이적 프로모터 및 벡터를 연구하고 검증하기 위해서는 조직 및 종의 특이성을 유지하는 세포 시스템을 개발하는 것이 바람직하다. 이러한 시스템은 형질전환동물 모델에 대한 효과적인 대안이다. 우리는 베타 카제인 (CSN2)의 세포 형태와 mRNA 수준에 기초하여 일차 배양으로부터 돼지 유선 상피 세포 주 (PMECs)를 확립하였다. 선택된 PMECs는 cytokeratin 항체에 의해 염색되었으며, 유선 상피 세포에 존재한다고 생각되어지는 유즙 단백질 유전자 (CSN2, 락토페린 및 유청 단백질)를 발현하는 것으로 나타났다. 또한, 3D 배양에서 PMECs932-7의 acini 구조를 확인하기 위해 살아있는 세포를 핵산에 결합하는 SYTO-13으로 염색하였다. 우리는 마트리겔 (matrigel)에 있는 PMECs의 acini가 말초 세포의 응집에 의해 형성되고 공간의 lumen을 특징으로 한다는 것이 관찰하였다. 우리는 PMECs의 matrigel 사용법과 세포 밀도를 포함한 세포 배양 조건의 영향을 시험함으로서 시스템을 시연했다. 이러한 결과는 PMCEs의 유선 상피 세포는 유전적 또는 구조적 특징을 갖고 있음을 시사하고 있다.

Bioluminescent Determination of Lactose Secretion: A Measure of the In Vitro Performance of Mammary Acini from Lactating Rats

  • Choi, B.H.;Stewart, K.W.;Davis, S.R.;Myung, K.H.
    • Asian-Australasian Journal of Animal Sciences
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    • 제15권2호
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    • pp.274-278
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    • 2002
  • A culture system for lactating rat mammary acini was evaluated, where the primary indicator of performance was lactose secretion, measured by a sensitive bioluminescence assay. Lactose secretion was reduced by half (p<0.01) over the first 6 h of culture by overnight feed withdrawal (FW) from tissue donors but was sensitive to increased glucose concentration in the culture media (p<0.001) up to 30 mM. Lactose production of cells from fed donors over the first 6 h in culture in 30 mM glucose was 8.9 fmol/cell/h - a rate calculated to be about half that in vivo. No significant difference was shown in lactose secretion by cells from fed or FW rats over 6-24 h. Lactose secretion was 3.6 fmol/cell/h by cells from fed animals in 40 mM glucose concentration media over the 6-24 h culture period. Addition of insulin to the culture media had no effect on rates of lactose secretion while addition of prolactin and hydrocortisone, with or without insulin, significantly (p<0.001) decreased lactose production over both 0-6 h and 6-24 h culture periods. Lactose synthesis in vitro was significantly enhanced by aeration of the media during collagenase digestion of mammary tissue (p<0.05). No improvement in lactose secretion was effected by shaking of cells during culture, Matrigel coating of culture dishes or change in cell density over a range up to 2.5 million cells per ml.