PubMed HealthSearch

Biomedical subjects

R G Ham

Publications and source records attributed to R G Ham.

At least 19 recordsLinked to original sources

Improved medium with EGF and BSA for differentiated human skeletal muscle cells.

Epidermal growth factor (EGF) and bovine serum albumin (BSA) are both required for serum-free clonal growth of human muscle satellite cells (HMSC). However, neither inhibits differentiation of HMSC, and when both are added to a minimal serum-free differentiation medium, they enhance survival and maintenance of human myotubes. A combination of 10 ng/mL EGF and 0.5 mg/mL BSA, added to MCDB 120 plus 10 micrograms/mL insulin, increases both total protein per dish and total creatine kinase activity, and keeps the myotubes in good condition for a longer period of time. The myotubes become cross-striated and exhibit frequent spontaneous twitching. Substantial amounts of neonatal myosin heavy chain and the MM isozyme of creatine kinase are expressed, together with detectable amounts of adult fast myosin heavy chain. With regular feeding, these cultures can be maintained for at least 3 weeks with no overgrowth by mononucleate cells, and with far less degeneration than with insulin as the only supplement.

Adolescent

Regional localization of human beta-casein gene (CSN2) to 4pter-q21.

Milk proteins are crucial for the development of all newborn mammals. Caseins that constitute the bulk of the protein in mammalian milk have been shown to be members of a multigene family in at least two species. They are among the most rapidly diverging groups of proteins, and their numbers vary widely among species. beta- and kappa-Caseins are the only caseins present in human milk. Using polymerase chain reaction on genomic DNA from somatic cell hybrids, we have localized the human beta-casein gene (CSN2) to 4pter----q21.

Blotting, Southern

Exon skipping in human beta-casein.

Earlier amino acid alignments of mature beta-caseins showed that the human protein was shifted in alignment relative to other species, with amino acid deletions in the N-terminal region and others inserted in the C-terminal region. Our alignment, based on cDNA sequences and their translation products, has shown that the amino acid deletions correspond exactly to exon 3 in the other species. Cloning and sequencing of a segment of the human beta-casein gene between exons 2 and 4 revealed the presence of an intact exon 3 sequence in the gene. An interruption of the polypyrimidine tract adjacent to the 5' end of exon 3 sequence may account for the omission of the exon from human beta-casein mRNA.

Amino Acid Sequence

Separation of growth-promoting activity for human muscle cells from fetuin.

Whether the growth-promoting activity of Pedersen fetuin is due to fetuin itself or to a contaminant(s) has been a long-standing puzzle. The possibility that the growth-promoting activity of Pedersen fetuin for human muscle satellite cells (HMSC) could be caused by some other component of fetal bovine serum (FBS) that remained in the fetuin as a contaminant has been investigated. One liter of FBS was first precipitated with 50% saturated ammonium sulfate, which leaves the serum albumin in solution, and then with 25% polyethylene glycol, which leaves the fetuin in solution, to generate a fraction 50 PEG 2x that was enriched 11-fold in growth-promoting activity for HMSC, with 68% recovery of total activity. Further purification with FPLC anion exchange chromatography achieved 99-fold enrichment of the activity with 30% overall recovery. The activity is heat labile and pH sensitive, suggesting that it is of protein nature, and the size of the activity is above 70 kDa. SDS-PAGE of the most active fractions shows that they are virtually free of fetuin. Thus, although the active fractions are not homogeneous, these studies demonstrate that the growth-promoting activity for HMSC can be fully separated from fetuin.

Animals

Growth of rat mammary tumor line 64-24 in liposome-supplemented defined medium. I. Effect of liposome B components on colony growth.

An improved serum-free medium has been developed that supports growth of rat mammary tumor line 64-24 with far less protein supplementation and with a much smaller inoculum than previously possible. An initial survey showed that MCDB 202 supported clonal growth with 1% dialyzed serum. The remaining serum was then replaced with 5 micrograms/ml insulin, 10 ng/ml epidermal growth factor (EGF), 1 micrograms/ml hydrocortisone, 50 ng/ml ovine prolactin, and 5 micrograms/ml liposome B (a mixture of soy lecithin, sphingomyelin, cholesterol, vitamin E, and vitamin E acetate in liposome form). Insulin and EGF are required and growth is improved by hydrocortisone and prolactin. Estradiol is stimulatory in the absence of liposome B. With adequate iron supplementation, transferrin has no effect. Liposome B increases growth rate substantially. Most of the growth stimulation can be replaced with phosphatidylethanolamine or sphingomyelin.

Animals

Growth of rat mammary tumor line 64-24 in liposome-supplemented defined medium. II. Effect of liposome B and prolactin on colony forming efficiency.

During studies on serum-free clonal growth of rat mammary tumor line 64-24, we observed that liposome B causes a major increase in colony-forming efficiency. This phenomenon was studied with a short-term assay based on phase contrast microscopic observation of the effects of liposome B on recently plated, serum-depleted cells. In the serum-free medium, colony forming efficiency is not determined primarily by viability (measured by dye exclusion) or cell attachment. Instead, most of the effect is determined by the extent of degeneration that occurs during cell elongation and the first division. Factors that prevent degeneration, such as liposome B, restore colony forming efficiency. Prolactin alone stimulates cell elongation but does not prevent degeneration. However, the combination of prolactin and liposome B increases colony formation to levels observed in the presence of serum.

Animals

Improved media for normal human muscle satellite cells: serum-free clonal growth and enhanced growth with low serum.

We have developed a serum-free medium for clonal growth of normal human muscle satellite cells (HMSC). It consists of an optimized nutrient medium, MCDB 120, plus a serum-free supplement, designated SF, that contains epidermal growth factor (EGF), insulin, dexamethasone, bovine serum albumin, and fetuin. Fibroblast growth factor was needed with dialyzed fetal bovine serum (dFBS) as the only other supplement, but in media containing SF, it was only slightly beneficial, and was omitted from the final medium without significant loss. Clonal growth of HMSC in MCDB 120 plus SF is as good as with 15% serum and 0.5% chicken embryo or bovine pituitary extract. However, growth is further improved by use of a doubly-supplemented (DS) medium containing both SF and 5% dFBS. Clonal growth of HMSC in the DS medium far exceeds that in previous media with any amount of serum, and monolayer growth is at least equal to that in conventional media with higher levels of serum. Cells grown in these media exhibit little differentiation, even when grown to high densities. However, they retain the capacity for extensive fusion and synthesis of increased creatine kinase when transferred to a serum-free differentiation-promoting medium, such as Dulbecco's modified Eagle's medium plus insulin. All experiments were done with clonal cultures of HMSC to insure that observed growth responses were always those of muscle cells.

Cell Differentiation

Optimized medium for clonal growth of human microvascular endothelial cells with minimal serum.

An optimized basal nutrient medium, MCDB 131, has been developed that supports clonal growth of human microvascular endothelial cells (HMVEC) with as little as 0.7% dialyzed fetal bovine serum (dFBS) when also supplemented with 10 ng/ml epidermal growth factor (EGF) and 1 microgram/ml hydrocortisone. An extensive initial survey of available media showed that MCDB 402, a medium optimized for low-serum growth of Swiss 3T3 cells, supported the best clonal growth of HMVEC with 10% dFBS. Quantitative adjustment of the composition of MCDB 402 for improved clonal growth of HMVEC with reduced amounts of dFBS resulted in development of MCDB 131. Although many different adjustments contributed to the optimal properties of MCDB 131 for growth of HMVEC, the most unusual feature of this medium is its high magnesium concentration. A major benefit was achieved by increasing Mg2+ from 0.8 mM in MCDB 402 to 10.0 mM in MCDB 131. In the absence of defined supplements, MCDB 131 supports good clonal growth of HMVEC with 2% dFBS. This can be reduced to 0.7% by adding EGF and hydrocortisone, which act synergistically to improve growth with low levels of dFBS.

Animals

Development of improved media and culture conditions for clonal growth of normal diploid cells.

Multiplication of normal diploid cells in culture is controlled by a complex set of interacting extracellular variables. The amount of serum protein needed for colony formation by such cells is affected directly by many of the other variables, including the nature of the culture surface, the type of trypsinization procedure used, and the qualitative and quantitative composition of the culture medium. By a sequential process of adjusting all of these variables to optimum values for cellular multiplication with minimal amounts of serum protein, we have been able to obtain clonal growth of normal human and chicken cells with less than 500 microgram per ml dialyzed serum protein. Precise quantitative adjustment of nutrient concentrations is particularly important. The multiplication-promoting functions of serum can be classified operationally as "replaceable" (those that can be replaced by modifying the medium or the culture conditions) and "nonreplaceable" (those that we have not yet been able to replace). Elimination of the requirement for replaceable functions of serum has improved greatly the specificity and sensitivity of the bioassay for the nonreplaceable functions. The nonreplaceable multiplication-promoting activity from fetal bovine serum for human diploid fibroblasts has been separated from fetuin and serum albumin and purified approximately 15-fold.

Blood Proteins