Literature DB >> 9862864

Organic osmolyte transport in quiescent and activated rat hepatic stellate cells (Ito cells).

T Peters-Regehr1, J G Bode, R Kubitz, D Häussinger.   

Abstract

Activation of hepatic stellate cells (HSCs) results in multiple alterations of cell function, but nothing is known about organic osmolytes in these cells. Organic osmolyte transport and transporter messenger RNA (mRNA) expression was studied in quiescent rat HSCs and after their transformation into alpha1-smooth muscle actin-positive myofibroblastlike cells. Quiescent stellate cells expressed in an osmosensitive manner the mRNA levels of the transporters for taurine (TAUT) and myoinositol (SMIT), whereas that for betaine was not detectable. However, these cells showed osmosensitive uptake not only of taurine and myoinositol but also of betaine. Osmosensitive betaine uptake was mediated by amino acid transport system A. After transformation into myofibroblasts, taurine and myoinositol uptake increased 5.5-fold and 4.5-fold, respectively, together with the respective transporter mRNA levels. Betaine uptake increased twofold because of osmosensitive induction of BGT1 expression. In both quiescent and activated HSCs, hypoosmotic cell swelling induced a rapid and 4, 4'-diisothiocyanatostilbene-2,2'-disulphonic acid-sensitive osmolyte efflux. In quiescent HSCs, hyperosmotic exposure increased the messenger RNA (mRNA) level of cyclooxygenase-2, which was counteracted by taurine but not by betaine or myoinositol. The study identifies taurine, myoinositol, and betaine as osmolytes in HSCs. Transformation of HSCs is accompanied by enhanced osmolyte transport activity and induction of the BGT1 transporter, which may be another activation marker of HSCs.

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Year:  1999        PMID: 9862864     DOI: 10.1002/hep.510290111

Source DB:  PubMed          Journal:  Hepatology        ISSN: 0270-9139            Impact factor:   17.425


  4 in total

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3.  Loss of ability to self-heal malaria upon taurine transporter deletion.

Authors:  Denis Delic; Ulrich Warskulat; Elena Borsch; Saad Al-Qahtani; Saleh Al-Quraishi; Dieter Häussinger; Frank Wunderlich
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4.  Betaine Improves Intestinal Functions by Enhancing Digestive Enzymes, Ameliorating Intestinal Morphology, and Enriching Intestinal Microbiota in High-salt stressed Rats.

Authors:  Haichao Wang; Sisi Li; Shenglin Fang; Xiaojing Yang; Jie Feng
Journal:  Nutrients       Date:  2018-07-16       Impact factor: 5.717

  4 in total

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