PubMed HealthSearch

Biomedical subjects

C M Cameron

Publications and source records attributed to C M Cameron.

At least 19 recordsLinked to original sources

Emotional priming in clinically depressed subjects.

A study is described in which the Emotional Priming Paradigm (Power and Brewin (1990) Cogn. Emotion 4, 39-51) was used with a group of currently depressed patients and a group of nondepressed controls. The results for the depressed patients showed significant facilitation effects on both the speed and rate of endorsement of negative trait adjectives when these were preceded by negative emotional primes. These results contrast with those obtained with the control subjects who failed to show such facilitation effects. The results are discussed in relation to the role of cognitive biases in depression.

Adolescent

Acute effects of S-carboxymethylated human growth hormone on insulin resistance in the obese (ob/ob) mouse.

Chronic treatment of ob/ob mice with growth hormone (GH) increases plasma insulin and blood glucose concentrations, and enhances insulin resistance in peripheral tissues. The purpose of the present study was: (1) to determine the length of time required for the development of increased circulating insulin concentration and adipose tissue insulin resistance in response to GH in the ob/ob mouse, (2) to examine the relationship between the rise in insulin concentration and the development of insulin resistance, and (3) to test whether the hormone derivative could enhance insulin resistance in isolated adipose tissue when added in vitro. Female ob/ob mice were injected intraperitoneally (ip) with either saline or 200 micrograms of S-carboxymethylated human GH (RCM-hGH), a diabetogenic GH derivative, which lacks significant insulinlike or growth-promoting activities. A threefold increase in plasma insulin concentration was observed three and six hours after RCM-hGH injection, but increased hyperglycemia was evident only after six hours. The in vitro stimulatory effect of insulin on [14C]glucose oxidation by parametrial adipose tissue was unchanged at three hours but suppressed six hours following administration of RCM-hGH. When the plasma insulin level of ob/ob mice was increased threefold by the administration of neutral protamine Hagedorn (NPH) insulin, the in vitro stimulatory effect of insulin on [14C]glucose oxidation by adipose tissue isolated from these animals was not altered, suggesting that insulin-induced receptor or postreceptor changes do not account for the increased insulin resistance produced by RCM-hGH.(ABSTRACT TRUNCATED AT 250 WORDS)

Adipose Tissue

Influence of cycloheximide on acute diabetogenic effects of S-carboxymethylated human growth hormone in obese (ob/ob) mice.

Acute treatment of ob/ob mice with S-carboxymethylated hGH (RCM-hGH), a diabetogenic derivative of GH which lacks significant insulin-like and growth-promoting activities, results in an increase in fasting plasma insulin and blood glucose levels and enhanced peripheral tissue insulin resistance. Plasma insulin level increases within 3 h after RCM-hGH is administered, whereas increased blood glucose concentration and enhanced peripheral tissue insulin resistance became evident 6 h after the hormone derivative is given. The lag period seen in the manifestation of these diabetogenic effects of RCM-hGH is consistent with the time required for gene expression. Therefore, the present study was undertaken to determine whether the above acute responses to the diabetogenic action of RCM-hGH would be expressed in ob/ob mice in which protein synthesis was blocked with cycloheximide. Female ob/ob mice were given either saline or cycloheximide (0.1 mg/g BW) ip and 1 h later were fasted and treated with either saline or 200 micrograms RCM-hGH ip. The mice were given a second injection of cycloheximide during the middle of the hormone treatment period to insure that protein synthesis remained blocked for the entire 6 h. In the animals not receiving cycloheximide, fasting plasma insulin level and blood glucose concentration were markedly elevated 6 h after the injection of RCM-hGH. Also, the GH derivative attenuated the ability of insulin added in vitro to stimulate glucose oxidation by adipose tissue segments isolated from the animals.(ABSTRACT TRUNCATED AT 250 WORDS)

Adipose Tissue

The acute effects of growth hormone on amino acid transport and protein synthesis are due to its insulin-like action.

GH has acute stimulatory effects on amino acid transport and protein synthesis in a variety of tissues, but it has not been established whether these effects are expressions of the growth-promoting property of GH or of its separate insulin-like action. The 20,000-dalton structural variant of human GH (20K hGH) has been shown to have a high ratio of growth-promoting to insulin-like activity compared to native hGH (22K hGH), suggesting that it could be used as a tool to address the above question. Therefore, experiments were conducted to compare the relative abilities of native 22K hGH and 20K hGH, when added in vitro, to stimulate amino acid transport and protein synthesis in the isolated diaphragm of the female hypophysectomized rat. Paired intact hemidiaphragms were preincubated for 1 h in the absence or presence of various concentrations of 22K or 20K hGH. Then, 3-O-[14C]methylglucose was added to the medium to measure sugar transport as a test of insulin-like activity, and either alpha-[3H]aminoisobutyric acid acid or [3H] phenylalanine was also added to measure amino acid transport or protein synthesis, respectively, during a final hour of incubation. When the responses to the various concentrations of 22K and 20K were compared, 20K hGH was only about 20% as effective as 22K in stimulating 3-O-methylglucose transport, reflecting its markedly attenuated insulin-like activity on the diaphragm. Similarly, 20K hGH was only 20% as effective as 22K hGH in stimulating alpha-aminoisobutyric acid transport and phenylalanine incorporation into protein in the same muscles. Therefore, these findings support the idea that the rapid stimulatory effects of GH on amino acid transport and protein synthesis are expressions of the insulin-like action of GH and are not components of the response of target cells to its growth-promoting action.

3-O-Methylglucose

Biological characterization of charge isomers of human growth hormone.

Since deamidation of the human GH molecule may alter the manner and extent to which the hormone is cleaved by proteases, and since it has been repeatedly suggested that proteolytic processing is required for the expression of certain of the activities of GH, the present study was conducted to determine whether the biological activity profiles of more acidic forms of human GH are altered. Three charge isomers, GH-b, GH-c and GH-d, representing primarily deamidated forms, were isolated from a native human GH preparation (Crescormon) in amounts adequate for characterization of their biological activities. All three were essentially equipotent in a radioimmunoassay for human GH. When assessed for growth-promoting activity in the hypophysectomized rat, the isomers were again equipotent with each other and with the GH preparation from which they were derived. The charge isomers also had significant in vitro insulin-like activity on isolated rat adipose tissue and diabetogenic activity in the ob/ob mouse. Thus, the biological activity profiles of these charge isomers of human GH do not differ greatly from one another.

Adipose Tissue

Biological characterization of purified native 20-kDa human growth hormone.

Because of the propensity of the 20-kDa variant of human growth hormone (GH) to aggregate with itself and with 22-kDa human GH, it has been difficult to prepare monomeric 20-kDa GH in highly purified form. This has been a major complicating factor in determining whether 20-kDa GH has a biological activity profile distinct from that of 22-kDa GH. In the present study, native 20-kDa GH was isolated from a human GH dimer concentrate and purified by a procedure that included column electrophoresis in agarose suspension as a final separation step. This procedure yielded highly purified monomeric 20-kDa GH, which was contaminated to an extent of less than 1% with 22-kDa GH, and which exhibited only a small degree of dimerization upon storage. The native 20-kDa GH was quite active in stimulating growth in hypophysectomized rats, when growth was assessed by body weight gain, longitudinal bone growth, the stimulation of sulfation of cartilage, and the elevation of serum IGF-1 level. However, in all of these growth assays, the 20-kDa GH was somewhat less active than the native 22-kDa GH to which it was compared; e.g., in the body weight gain and longitudinal bone growth assays, it had an estimated potency of 0.6 relative to the 22-kDa GH. The 20-kDa GH exhibited substantial diabetogenic activity when tested for the ability to raise fasting blood glucose concentration and to impair glucose tolerance in ob/ob mice. Also, the native 20-kDa GH had significant in vitro insulin-like activity, although its potency was approximately 20% that of the native 22-kDa GH to which it was compared. Thus, the biological activity profile of native 20-kDa GH differs from that of 22-kDa GH primarily in that insulin-like activity is markedly attenuated.

Animals

Metabolic basis for the diabetogenic action of growth hormone in the obese (ob/ob) mouse.

The ob/ob mouse responds predictably to chronic treatment with large doses of pituitary GH with marked hyperglycemia and decreased glucose tolerance. The purpose of the present study was to characterize the metabolic alterations produced by GH that lead to this diabetogenic response in the ob/ob mouse in order to determine whether this animal might serve as a useful model for the study of the cellular mechanisms involved in the diabetogenic action of GH. Female ob/ob mice were treated sc for 3 days with either saline or 200 micrograms/day S-carboxymethylated human GH (RCM-hGH), a diabetogenic GH derivative lacking significant growth-promoting or insulin-like activities. Six hours before the start of the experiment, the animals were given a sc injection of 2 micrograms dexamethasone and deprived of food. RCM-hGH treatment produced marked increases in fasting blood glucose and plasma insulin concentrations, but had no effect on plasma glucagon or serum insulin-like growth factor I levels. It had no effect on liver glycogen level or in vitro hepatic glucose production in the absence or presence of pyruvate and lactate added to the incubation medium. By contrast, the in vitro stimulatory effects of insulin on [14C] glucose oxidation by isolated soleus muscle or segments of parametrial fat were greatly attenuated by RCM-hGH treatment, without changes in rates of basal glucose oxidation. This change in peripheral tissue responsiveness to insulin does not appear to involve glucose transport, since the in vitro stimulation by insulin of 3-O-[14C]methylglucose transport into isolated diaphragm muscle was not altered by RCM-hGH treatment. Moreover, the RCM-hGH-induced reduction in adipose tissue responsiveness to insulin does not appear to be mediated by a reduction in insulin binding, since [125I]iodoinsulin binding to adipocytes isolated from RCM-hGH-treated mice was similar to that to cells from saline-treated animals. Interestingly, the reduction in responsiveness to insulin seen with segments of adipose tissue from RCM-hGH-treated animals was not found with isolated adipocytes prepared from such tissue by collagenase digestion. These results suggest that the hyperglycemia and glucose intolerance produced in ob/ob mice by chronic GH treatment result primarily from increased peripheral tissue insulin resistance. Therefore, the ob/ob mouse provides a useful model to elucidate the cellular mechanism(s) of this aspect of the diabetogenic action of GH.

Adipose Tissue

Influence of age on responsiveness to diabetogenic action of growth hormone.

Responsiveness to the growth-promoting action of growth hormone (GH) develops gradually during post-natal life, and as the organism ages, sensitivity to the hormone declines. Our study was undertaken to determine whether there is a similar age-related pattern of sensitivity to the diabetogenic action of purified native human GH (hGH) in the obese (ob/ob) mouse. The ob/ob mouse was used because adults of this strain respond to chronic GH treatment with increases in fasting plasma insulin and blood glucose concentrations and with glucose intolerance. When hGH was given subcutaneously to adult (4-mo-old) female mice at doses of 5, 10, or 25 micrograms/day for 3 days, a significant increase in fasting blood glucose concentration and an impairment in glucose tolerance were produced by the 10-micrograms/day dose. Larger effects were obtained with the 25-micrograms/day dose. A threefold increase in fasting plasma insulin concentration was also produced with this dose of the hormone. By contrast, 25 micrograms/day of hGH had no effect on fasting plasma insulin, blood glucose, or glucose tolerance in 1-mo-old ob/ob mice. When a dose of 100 micrograms/day of hGH was given to 1-mo-old animals, a significant increase in fasting plasma insulin concentration occurred, but again there were no effects on fasting blood glucose or glucose tolerance. Mice 1.5 mo old showed marginal changes in fasting blood glucose and glucose tolerance when given hGH at doses of 25 or 100 micrograms/day. Mice 9 or 12 mo old exhibited responsiveness similar to that of 4-mo-old animals.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging

Antibody response in cattle to oil emulsion rabies and ephemeral fever vaccines.

A stable oil emulsion rabies vaccine with a low viscosity was composed by a formula previously employed for Newcastle disease vaccine. Cattle developed high and sustained antibody levels, and guinea pigs were found to be solidly immune after a single injection of this vaccine. Antibody responses in cattle to 2 oil emulsion ephemeral fever vaccines were not satisfactory after a single injection, and severe local reactions were encountered when booster injections were applied.

Animals

Prolactin actions on casein and lipid biosynthesis in mouse and rabbit mammary gland explants are abolished by p-bromphenacyl bromide and quinacrine, phospholipase A2 inhibitors.

p-Bromphenacyl bromide (BPB) at concentrations of 50 microM and above and quinacrine (50 microM) abolished the actions of prolactin (PRL) on casein and lipid biosynthesis in cultured mouse mammary gland explants. In cultured rabbit mammary gland explants, 100 microM BPB or quinacrine abolished the PRL stimulation of casein synthesis, while 50 microM BPB or 250 microM quinacrine abolished the PRL stimulation of lipid biosynthesis. Since BPB and quinacrine are known to inhibit the enzyme phospholipase A2 (PLA2), it is possible that ongoing PLA2 activity is essential for prolactin to express its actions on at least certain lactogenic processes.

Acetophenones

Comparison of single doses of ketanserin and placebo in chronic stable angina.

Single doses of ketanserin (20 or 40 mg) and placebo were compared in a double-blind cross-over study in 10 patients with chronic stable angina treated with a beta-adrenoceptor antagonist. Ketanserin had no significant effect on the exercise time to angina, the rate of ST segment depression, or the circulatory response to exercise. The 95% confidence limits indicate that ketanserin is unlikely to increase exercise time to angina by more than 20%.

Adrenergic beta-Antagonists

Response of sheep and cattle to combined polyvalent Pasteurella haemolytica vaccines.

The antibody response to various combined polyvalent Pasteurella haemolytica vaccines was studied in sheep and cattle. In sheep, certain oil adjuvant vaccines gave rise to a better antibody response to P. haemolytica than an A1(OH)3-adsorbed vaccine. This finding, however, was not consistent for all serotypes, and with respect to P. multocida, oil adjuvants had no advantage. Furthermore, it was found that the removal of all the culture supernatant fluid during the production process had no deleterious effect on the antigenicity of the product. In cattle, good responses were obtained with both alum-precipitated and A1(OH)3-adsorbed vaccine where all culture supernatant fluid was not removed during the production process. No advantage was gained with oil emulsion vaccines. The degree of immunity afforded to mice and the antibody response to different serotypes of P. haemolytica varied considerably. Further detailed studies with respect to specific serotypes of P. haemolytica are therefore required.

Adjuvants, Immunologic

Immunization of guinea-pigs and cattle with a reduced dose Clostridium chauvoei vaccine produced in a semi-synthetic medium.

A semi-synthetic culture medium and method are described for the production of a reduced dose Clostridium chauvoei vaccine. The vaccine gave excellent results in guinea-pigs, and 2 injections of 2.0 ml protected cattle against challenge with 2 M.L.D. of a virulent culture for at least 12 months. The suitability of C. chauvoei Strain OP64 as a vaccine strain was confirmed.

Animals

Trypsin-resistant forms of human growth hormone have diabetogenic and insulin-like activities.

Although diabetogenic and insulin-like activities are intrinsic properties of the growth hormone (GH) molecule, it has been frequently suggested that the hormone must be proteolytically processed for these activities to be expressed. If this is correct, then derivatives of GH having resistance to appropriate proteolytic attack might not have diabetogenic and/or insulin-like activity. The purpose of the present study was to prepare derivatives of human GH that are resistant to digestion by trypsin and to determine whether they possess diabetogenic or insulin-like activity. Three derivatives were prepared from purified native human GH in which lysine residues were modified with methyl acetimidate, citraconic anhydride or S-ethyl-thioltrifluoroacetate, and one in which arginine residues were modified with camphorquinone-10-sulfonic acid. Comparisons of peptide maps of tryptic digests of these derivatives with that of unmodified human GH indicated that all four were resistant to proteolysis by trypsin. All of these trypsin-resistant forms of human GH were found to possess significant growth-promoting, diabetogenic and insulin-like activities, although all activities were attenuated to some extent in each derivative. The relative potencies of the human GH derivatives in a radioimmunoassay for human GH were somewhat similar to their order of potency in the growth-promoting and diabetogenic assays. These results suggest that if proteolytic processing of the GH molecule is involved in the expression of one or more of its biological activities, such processing probably does not involve a trypsin-like proteinase.

Adipose Tissue