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Biomedical subjects

A K Adams

Publications and source records attributed to A K Adams.

At least 19 recordsLinked to original sources

Crosslink formation in porcine valves stabilized by dye-mediated photooxidation.

Bovine pericardial and porcine valve materials stabilized by dye-mediated photooxidation have shown potential for bioprosthetic valve use. Previously, in vitro and in vivo stability of these materials was demonstrated through enzymatic, chemical, extraction, rat subcutaneous, and functional challenges. Here, we examine the stability of photooxidized porcine aortic valves through amino acid, crosslink, and hydrothermal isometric tension analysis. Photooxidation reduced intact histidine residues from 17.0 to 0 residues per 1000, indicating the photooxidative alteration of this amino acid. Diphenyl borinic acid-derivitized hydrolyzates of proteins were separated by high-performance liquid chromatography, which identified several amino acid crosslinks that appeared with photooxidation that were absent in untreated controls. Thermal relaxation analysis indicated a significantly higher (p < 0.0002) thermal stability for photooxidized porcine cusps than that of untreated controls, with mean relaxation times for untreated cusps of 14,000 +/- 4650 versus 22,900 +/- 2480 s for photooxidized cusps. In summary, porcine aortic valve tissue treated by dye-mediated photooxidation contains new chemical species and exhibits properties consistent with intermolecular crosslink formation, which explain the increased biostability of this material and its potential for use in bioprosthetic devices.

Amino Acids↗

Calcification resistance, biostability, and low immunogenic potential of porcine heart valves modified by dye-mediated photooxidation.

The calcification potential, biostability, and immunogenic response of materials intended for long-term in vivo use, such as in heart-valve bioprostheses, are essential components of device performance. Here we explore these properties in photooxidized porcine heart valves. To study immunological sensitization, we injected tissue extracts intradermally into guinea pigs. Test and control animals received a challenge patch of the appropriate extract and were scored for dermal reactions. Neither cottonseed oil nor sodium chloride extracts of photooxidized heart-valve tissues caused any dermal inflammatory response. After implantation in the rat subcutaneous model for 90 days, the calcium content of 48-h-treated photooxidized cusp tissue [0.04 +/- 0.00 mg/g wet weight (gww)] was comparable to that of unimplanted control tissues (usually <1 mg/gww) and much lower than that of glutaraldehyde-treated controls (71 +/- 15 mg/gww). The porcine aortic wall calcium content (49 +/- 31 mg/gww) was comparable to that of glutaraldehyde-treated controls (59 +/- 8 mg/gww). Histologically, a time-dependent decrease in inflammation and vascularization with increasing photooxidation time was noted in the rat model along with an increase in the stability and organization of collagen bundles. In summary, porcine valve tissues treated by dye-mediated photooxidation were resistant to calcification, were biostable, and demonstrated a low immunogenic response, indicating potential for use in heart-valve bioprostheses.

Animals↗

Use of infrared thermographic calorimetry to determine energy expenditure in preterm infants.

BACKGROUND: Measurement of infant energy expenditure in the clinical setting is difficult and is rarely done. Both indirect and direct calorimetry require long measurement periods and frequent calibration. OBJECTIVE: The objective of this study was to validate in infants a newly developed method of determining energy expenditure, infrared thermographic calorimetry (ITC), against an established method, respiratory indirect calorimetry (IC). ITC measures mean infant body surface temperature. ITC was used in conjunction with heat loss theory to calculate radiant, convective, evaporative, and conductive heat losses and thereby determine total energy expenditure. DESIGN: Ten healthy preterm infants were studied by obtaining concurrent ITC and IC measurements over a 3.5-5.5-h study period. Continuous IC measurements were compared with ITC measurements taken every 10 min during study periods. IC values were summed over 10-min intervals covering the 5 min before and 5 min after each ITC measurement, to allow comparisons between the 2 methods. RESULTS: Comparison of paired ITC and IC mean measurements for all 10 infants over the entire study period showed no significant difference between the 2 methods. However, individual paired IC and ITC values were significantly different for 7 of 10 infants. The overall mean difference between the 2 methods was 1.3%. CONCLUSIONS: ITC is an accurate, noninvasive method for measurement of heat loss and energy expenditure in healthy preterm infants, and therefore it may be a useful clinical and research tool.

Body Temperature↗

Antioxidant vitamins and the prevention of coronary heart disease.

Clinical use of antioxidant vitamin supplementation may help to prevent coronary heart disease (CHD). Epidemiologic studies find lower CHD morbidity and mortality in persons who consume larger quantities of antioxidants in foods or supplements. Clinical trials indicate that supplementation with certain nutrients is beneficial in reducing the incidence of CHD events. Recent studies show that supplementation with antioxidant vitamins E and C have benefits in CHD prevention; however, supplementation with beta-carotene may have deleterious effects and is not recommended. Current evidence suggests that patients with CHD would probably benefit from taking vitamin E in a dosage of 400 IU per day and vitamin C in a dosage of 500 to 1,000 mg per day. Clinicians may also want to consider vitamin supplementation for CHD prevention in high-risk patients. Folate lowers elevated homocysteine levels, but evidence for routine supplemental use does not yet exist. Other nutritional supplements are currently under investigation.

Antioxidants↗

Metabolism, uptake, and excretion of a D-glucaric acid salt and its potential use in cancer prevention.

D-Glucaric acid (GA) is a nontoxic, natural compound. One of its derivatives is the potent beta-glucuronidase inhibitor D-glucaro-1,4-lactone (1,4-GL). The goal of this study was to demonstrate the in vivo formation of 1,4-GL from a D-glucarate salt and determine its metabolism, uptake by selected organs, and excretion following oral administration of potassium hydrogen D-[14C]glucarate to male and female Sprague-Dawley rats. 1,4-GL increases detoxification of carcinogens and tumor promoters/progressors by inhibiting beta-glucuronidase and preventing hydrolysis of their glucuronides. 1,4-GL and its precursors, such as potassium hydrogen D-glucarate and calcium D-glucarate, may exert their anticancer action, in part, through alterations in steroidogenesis accompanied by changes in the hormonal environment and the proliferative status of the target organ. Thus, GA derivatives may be useful as new or adjuvant cancer preventive and therapeutic agents. In our study, 1,4-GL was found to be formed from the D-glucarate salt in the stomach of rats. It was apparently absorbed from the gastrointestinal tract, transported with the blood to different internal organs, and excreted in the urine and to a lesser extent in bile. There were no significant differences in the metabolism of PHG between male and female rats. Thus, formation of 1,4-GL from D-glucaric acid derivatives may be prerequisite for their inhibition of chemical carcinogenesis in rodents and prevention of breast, prostate, and colon cancer in humans.

Animals↗

Specific DNA replication mutations affect telomere length in Saccharomyces cerevisiae.

To investigate the relationship between the DNA replication apparatus and the control of telomere length, we examined the effects of several DNA replication mutations on telomere length in Saccharomyces cerevisiae. We report that a mutation in the structural gene for the large subunit of DNA replication factor C (cdc44/rfc1) causes striking increases in telomere length. A similar effect is seen with mutations in only one other DNA replication gene: the structural gene for DNA polymerase alpha (cdc17/pol1) (M.J. Carson and L. Hartwell, Cell 42:249-257, 1985). For both genes, the telomere elongation phenotype is allele specific and appears to correlate with the penetrance of the mutations. Furthermore, fluorescence-activated cell sorter analysis reveals that those alleles that cause elongation also exhibit a slowing of DNA replication. To determine whether elongation is mediated by telomerase or by slippage of the DNA polymerase, we created cdc17-1 mutants carrying deletions of the gene encoding the RNA component of telomerase (TLC1). cdc17-1 strains that would normally undergo telomere elongation failed to do so in the absence of telomerase activity. This result implies that telomere elongation in cdc17-1 mutants is mediated by the action of telomerase. Since DNA replication involves transfer of the nascent strand from polymerase alpha to replication factor C (T. Tsurimoto and B. Stillman, J. Biol. Chem. 266:1950-1960, 1991; T. Tsurimoto and B. Stillman, J. Biol. Chem. 266:1961-1968, 1991; S. Waga and B. Stillman, Nature [London] 369:207-212, 1994), one possibility is that this step affects the regulation of telomere length.

Alleles↗

The delayed arrival: from Davy (1800) to Morton (1846).

Dr Adams was previously consultant anaesthetist to Addenbrooke's Hospital, Cambridge, with a special interest in ophthalmic and neuroanaesthesia, and Associate Lecturer in Cambridge University. She was Dean of the Faculty of Anaesthetists of the Royal College of Surgeons of England in 1985, now the Royal College of Anaesthetists, of which she is currently Honorary Archivist/Curator. She was Hunterian Professor in the Royal College of Surgeons in 1993, and is a past president of the History of Anaesthesia Society. Within the RSM she was president of the Section of Anaesthetics in 1985-1986 and of the Section of the History of Medicine in 1994-1995, having served as Honorary Secretary of each. She is now an Honorary Treasurer of the Society.

Anesthesia↗

The oncofetal protein p65: a new member of the steroid/thyroid receptor superfamily.

The 65-kDa oncofetal protein (p65), a potential tumor marker discovered and characterized in our laboratory, is highly conserved in different species. Its amino acid composition, peptide map, and N-terminal and internal peptide sequences are very similar if not identical in humans and rodents. We have now identified the p65 gene as a novel member of the superfamily of genes that encode nuclear receptors for various hydrophobic ligands such as steroids, vitamin D, retinoic acid, and thyroid hormones. these receptors are composed of several domains important in hormone binding, DNA binding, dimerization, and transcription activation. The human p65 cDNA was partially cloned, revealing at its C-terminal end regulatory elements typical of this superfamily of genes. The DNA-binding domain coincides with the cysteine-rich region encompassing the two conserved zinc fingers. In addition, the domain homologous to the receptor dimerization site was found close to the C-terminal end. The p65 protein is highly homologous to estrogen receptor in its DNA-binding domain but not in other regions of the sequence, indicating that p65 is a new receptor with an as yet unknown ligand. In addition, we have identified in the cloned p65 cDNA fragment sequences encoding two peptides, obtained by CNBr cleavage, whose amino acid sequences were previously established.

Amino Acid Sequence↗

Telephonic nursing: empowering patients at risk for preterm birth.

Telephonic nursing is an innovative approach to providing prevention-focused care to patients at risk for preterm birth. Telephonic nursing includes case management and direct care services. A focus on health promotion supports client empowerment in self-care and decision making during the high-risk pregnancy.

Case Management↗

Demonstration of a 65 kDa tumor-specific phosphoprotein in urine and serum of rats with N-methyl-N-nitrosourea-induced mammary adenocarcinomas.

Polyclonal antibodies against a 65 kDa tumor-associated phosphoprotein (p65) were used to develop an ELISA to analyze the presence of p65 in urine and serum of rats bearing N-methyl-N-nitrosourea-induced mammary gland adenocarcinomas. Highly purified rat p65 was added to normal urine and serum to establish a quantitative standard curve with the average correlation coefficient being 0.98 and 0.99 respectively. All samples of urine and serum obtained from different carcinoma-bearing rats showed p65 concentrations above the normal levels found in the control urine and sera. The correlation coefficient between tumor burden and p65 concentration in urine and serum was 0.65 and 0.77 respectively. The average levels of p65 in normal urine and normal serum were 37.0 +/- 32.0 and 48.0 +/- 38.0 ng/ml respectively. In the case of urine obtained from rats bearing mammary adenocarcinomas, the mean p65 level was 119.0 +/- 35.9 ng/ml and their serum level was 225.4 +/- 67.5 ng/ml. Sensitivity, specificity and predictive value for serum and urine marker elevation were 78.5, 70.0 and 78.5% respectively. Following in vitro phosphorylation of concentrated urinary proteins, isoelectrofocusing, SDS-PAGE and autoradiography, a phosphorylated form of the 65 kDa protein with a pI of 5.8 was identified in the urine of tumor-bearing rats. This phosphoprotein bound to an antiphosphotyrosine monoclonal antibody and an anti-p65 polyclonal as determined by Western blot analysis. Using the anti-p65 antibodies in an immunoprecipitation procedure, the main radio- and immunoactive band of 65 kDa and two lower mol. wt bands of 50 and 41 kDa, apparently representing degradation products of p65, were identified after in vitro and in vivo phosphorylation of urinary proteins obtained from mammary carcinoma-bearing rats.

Adenocarcinoma↗