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肾髓质间质细胞:肾髓质中血管活性肽内分泌和旁分泌作用的靶点。

Renomedullary interstitial cells: a target for endocrine and paracrine actions of vasoactive peptides in the renal medulla.

作者信息

Zhuo J L

机构信息

Howard Florey Institute of Experimental Physiology and Medicine, University of Melbourne, Parkville, Victoria, Australia.

出版信息

Clin Exp Pharmacol Physiol. 2000 Jul;27(7):465-73. doi: 10.1046/j.1440-1681.2000.03277.x.

Abstract
  1. The renal medulla plays an important role in regulating body sodium and fluid balance and blood pressure homeostasis through its unique structural relationships and interactions between renomedullary interstitial cells (RMIC), renal tubules and medullary vasculature. 2. Several endocrine and/or paracrine factors, including angiotensin (Ang)II, endothelin (ET), bradykinin (BK), atrial natriuretic peptide (ANP) and vasopressin (AVP), are implicated in the regulation of renal medullary function and blood pressure by acting on RMIC, tubules and medullary blood vessels. 3. Renomedullary interstitial cells express multiple vasoactive peptide receptors (AT1, ETA, ETB, BK B2, NPRA and NPRB and V1a) in culture and in tissue. 4. In cultured RMIC, AngII, ET, BK, ANP and AVP act on their respective receptors to induce various cellular responses, including contraction, prostaglandin synthesis, cell proliferation and/or extracellular matrix synthesis. 5. Infusion of vasoactive peptides or their antagonists systemically or directly into the medullary interstitium modulates medullary blood flow, sodium excretion and urine osmolarity. 6. Overall, expression of multiple vasoactive peptide receptors in RMIC, which respond to various vasoactive peptides and paracrine factors in vitro and in vivo, supports the hypothesis that RMIC may be an important paracrine target of various vasoactive peptides in the regulation of renal medullary function and long-term blood pressure homeostasis.
摘要
  1. 肾髓质通过其独特的结构关系以及肾髓质间质细胞(RMIC)、肾小管和髓质脉管系统之间的相互作用,在调节机体钠和液体平衡以及血压稳态方面发挥着重要作用。2. 多种内分泌和/或旁分泌因子,包括血管紧张素(Ang)II、内皮素(ET)、缓激肽(BK)、心钠素(ANP)和血管加压素(AVP),通过作用于RMIC、肾小管和髓质血管,参与肾髓质功能和血压的调节。3. 肾髓质间质细胞在培养物和组织中表达多种血管活性肽受体(AT1、ETA、ETB、BK B2、NPRA和NPRB以及V1a)。4. 在培养的RMIC中,AngII、ET、BK、ANP和AVP作用于它们各自的受体,诱导各种细胞反应,包括收缩、前列腺素合成、细胞增殖和/或细胞外基质合成。5. 将血管活性肽或其拮抗剂全身或直接注入髓质间质中,可调节髓质血流、钠排泄和尿渗透压。6. 总体而言,RMIC中多种血管活性肽受体的表达,在体外和体内对各种血管活性肽和旁分泌因子产生反应,支持了这样一种假说,即RMIC可能是各种血管活性肽在调节肾髓质功能和长期血压稳态中的重要旁分泌靶点。

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