## Abstract During wound healing and inflammation, fibroblasts express elevated alkaline phosphatase (ALP), but are not in contact with collagen fibrils in the fibronectin (FN)βrich granulation tissue. We hypothesized that the extracellular matrix (ECM) environment might influence the induction of
Collagen synthesis in human fibroblasts: Effects of ascorbic acid and regulation by hydrocortisone
β Scribed by Shirley B. Russell; James D. Russell; Kathryn M. Trupin
- Publisher
- John Wiley and Sons
- Year
- 1981
- Tongue
- English
- Weight
- 834 KB
- Volume
- 109
- Category
- Article
- ISSN
- 0021-9541
No coin nor oath required. For personal study only.
β¦ Synopsis
Abstract
The effects of hydrocortisone and ascorbic acid on collagen and noncollagen protein synthesis, and on growth were examined in fibroblasts derived from normal human dermis. When the medium was supplemented with 0.28 mM ascorbic acid, the apparent rate of collagen production increased 2ββ3 fold over the culture cycle. Ascorbic acid also caused a small increase in the apparent rate of synthesis of noncollagen protein and an elevation in growth rate and maximum cell density. Growth was not required for the increase in collagen production since addition of ascorbate to confluent cultures induced a similar increase. Hydrocortisone (1.5 ΞΌM) blocked the ascorbateβrelated increase in collagen production during growth and in confluent cultures. The hormone simultaneously increased the apparent rate of noncollagen protein production and maximum cell density, suggesting that the effect on collagen synthesis was specific. Inhibition of collagen production by hydrocortisone was observed only in the presence of ascorbate, while the increase in growth and noncollagen protein production occurred in the presence and absence of the vitamin.
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