Protein Information

ID 1799
Name smooth muscle actin
Synonyms ACTC; ACTC 1; ACTC1; Alpha cardiac actin; CMD1R; Smooth muscle actin; Alpha cardiac actins; Smooth muscle actins

Compound Information

ID 954
Name SMA
CAS sodium 2-chloroacetate

Reference

PubMed Abstract RScore(About this table)
18996287 Mazlyzam AL, Aminuddin BS, Saim L, Ruszymah BH: Human serum is an advantageous supplement for human dermal fibroblast expansion: clinical implications for tissue engineering of skin. Arthritis Res Ther. 2010 Jan 8;12(1):R4.
BACKGROUND: Standard fibroblast culture medium usually contains fetal bovine serum (FBS). In theory, unknown risks of infection from bovine disease or immune reaction to foreign proteins may occur if standard culture method is used for future human tissue-engineering development. Human serum (HS) theoretically would be another choice in providing a safer approach and autologous clinically reliable cells. METHODS: Isolated human dermal fibroblasts were culture-expanded in an equal volume mixture of Ham's F12 medium and Dulbecco's Modified Eagle Medium (DMEM) supplemented with either 10% HS or 10% FBS from passage 0 to passage 3. Effects of 10% HS and 10% FBS on human fibroblast viability, growth kinetics, cell cycle analysis and gene expressions were investigated and compared. RESULTS: Generally, fibroblast viability cultured in HS supplementations was much higher compared to FBS supplementation. Fibroblast proliferations were faster in HS supplementations with shorter doubling time. Cell cycle analysis showed fibroblasts cultured with HS supplementations have higher S-phase ratio compared to FBS. Gene expression levels by quantitative reverse transcriptase-polymerose chain reaction (RT-PCR) showed cultured fibroblasts with HS supplementation maintains expression of collagen type I collagen, increased expression of type III collagen and fibronectin and reduced expression of alpha-smooth muscle actin (alpha-SMA) compared to FBS. CONCLUSIONS: Results demonstrated potential advantages of HS vs. FBS in generating larger numbers of cultured dermal fibroblasts in a shorter period of time. HS also influenced mRNA expression of type III collagen and fibronectin (upregulated) and alpha-SMA (downregulated), which are important extracellular matrix proteins in wound healing.
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