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D M Peehl

Publications and source records attributed to D M Peehl.

96 records · Page 6Linked to original sources

Anchorage-independent growth of normal human fibroblasts.

Normal human fibroblasts, considered to be entirely anchorage dependent for proliferation, have been grown in methylcellulose medium. The most important factor required for growth in suspension appears to be the use of high levels of serum and hydrocortisone. Newborn foreskin or fetal lung fibroblasts form colonies as large as 0.5 mm in diameter after 3 wk, with a colony-forming efficiency as high as 70%. Mouse 3T3 cells that do not form colonies in standard assays for anchorage-independent growth also grow under these conditions. Colony formation results after inoculation of as few as 100 cells per 60-mm dish, and metaphase cells have been visualized with a fluorescent DNA stain, showing that colony formation is due to division rather than aggregation. Fibroblasts recovered from suspension and grown as monolayers retain a diploid karyotype and normal shape, do not form tumors upon injection into nude mice, and become senescent. Thus, the trait of anchorage-independent growth in vitro is clearly possessed by normal human fibroblasts and can be expressed under the proper conditions.

Animals↗

Clonal growth of human keratinocytes with small amounts of dialyzed serum.

A survey of commercially available media revealed that medium F-12 was superior to medium 199 for clonal growth of human epidermal keratinocytes (HK) when supplemented with 10 micrograms/ml hydrocortisone (HC) plus dialyzed fetal bovine serum protein (FBSP), rather than the whole serum used in previous studies. Qualitative and quantitative adjustment of the medium composition for optimal clonal growth with minimal amounts of FBSP generated a new medium, MCDB 151, which supports clonal growth of HK with 10 micrograms/ml HC and as little as 1 mg/ml FBSP (equivalent in protein concentration to 2.0% whole serum). MCDB 151 differs significantly from NCDB 105, previously developed in this laboratory for normal human fibroblasts, and each medium selectively favors growth of its own type of cell in primary cultures of disaggregated human neonatal foreskin cells. Differences in the amounts of calcium and adenine in the two media appear to be among the most influential factors mediating the selective growth. Optimal growth of HK occurs at a very low level of Ca2+ that causes the colonies to remain as monolayers rather than stratifying as they do in the presence of higher levels of calcium. However, keratin synthesis, which was examined through use of highly specific fluorescent antibodies, is not affected by the Ca2+ concentration. Agents that increase intracellular cyclic AMP levels appear to have no effect on HK growth in MCDF 151 with 10 micrograms/ml HC and 1.0 mg/ml FBSP.

Adenine↗

Defined medium for normal adult human prostatic stromal cells.

Stromal-epithelial interactions are pivotal in many aspects of prostatic biology. A defined culture system is critical for the investigation of factors that regulate the growth and differentiation of human prostatic stromal cells. We have identified conditions which promote stromal cell attachment and proliferation in serum-free medium. MCDB 201, originally developed for the clonal growth of chick embryo fibroblasts, proved to be a superior basal medium of those that we tested. Supplementation of MCDB 201 with basic fibroblast growth factor (FGF), insulin-like growth factor (IGF), and platelet-derived growth factor (PDGF) permitted attachment and exponential growth of cells throughout a 7-d period with an initial inoculum as low as 10(3) cells per well of a 96-well microtiter dish. Using these assay conditions, we subsequently verified that basic FGF and IGF, but not PDGF, were required for optimal growth. No activity was found for heparin, transferrin, or the androgen R1881. Epidermal growth factor (EGF) didn't stimulate growth when added to medium containing basic FGF and IGF, but was moderately stimulatory when added to basal medium alone. Cholera toxin inhibited growth. This simple and efficient culture medium provides a suitable assay system for more extensive studies of growth regulation and differentiation of human prostatic stromal cells, and will provide the basis for future development of a defined medium that supports clonal growth. Characterization of stromal-epithelial interactions will be facilitated by the use of this defined culture system for stromal cells in conjunction with the serum-free culture systems previously developed for human prostatic epithelial cells.

Adult↗

Altered growth regulation and loss of response to retinoic acid accompany tumorigenic transformation of prostatic cells.

In vitro models of human prostatic carcinogenesis are increasingly available and include representatives of normal, immortal, tumorigenic and metastatic phenotypes. In this study, growth regulation of immortal, but non-tumorigenic, human papillomavirus-transformed prostatic epithelial cells was compared to that of their tumorigenic variants. These variants were created either by exposure to a carcinogen or by passage through mice. In all cases, tumorigenic cells retained responsiveness to a potent mitogen, epidermal growth factor, and to a potent growth inhibitory factor, 1,25-dihydroxyvitamin D3. Responses to other growth regulatory factors were altered. One set of transformants, CA-HPV-10 and its tumorigenic variants 5019 and 5019IIc, lost their requirement for insulin-like growth factor. Another set, RWPE-1 and its tumorigenic variant 129Nu5002-1 Tu, became unresponsive to growth inhibition by transforming growth factor-beta. The only alteration uniquely correlated with the tumorigenic phenotype was loss of response to retinoic acid. This factor, which inhibits growth of normal and immortal but non-tumorigenic prostatic epithelial cells, had no effect on tumorigenic 129Nu5002-1 Tu cells. We previously reported that conversion of an SV40-immortalized prostatic epithelial cell line to tumorigenicity by introduction of the ras oncogene also resulted in loss of responsiveness to growth inhibitory activity of retinoic acid. 129Nu5002-1 Tu cells, which do not have an altered ras gene, gained the same phenotype. This suggests that loss of inhibition by retinoic acid may be a critical element in the tumorigenic conversion of prostatic epithelial cells.

Adenocarcinoma↗