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Biomedical subjects

L Klein

Publications and source records attributed to L Klein.

At least 217 records · Page 12Linked to original sources

A comparison of the healing processes in uremic and parallel-fed rats.

The effect of nutrition on the healing capacity of uremic rats was investigated. Wound tensile strenth and the amount of collagen formation in polyvinyl sponges implanted subcutaneously were compared in a group of uremic rats and a group of nonuremic rats parallel-fed an identical diet and caloric intake. Wound tensile strength in the parafed rats closely and significantly approximated that in the uremic snimals conpared to the stronger wounds in the controls. A correlation was also noted for collagen accumulation in the uremic and parafed groups. This experiment lends further evidence to support the theory that the mechanism of action for the shown poor healing associated with uremia is based on the poor state of nutrition in the uremic animal.

Animal Nutritional Physiological Phenomena↗

Effects of preanesthetic medication, anesthesia, and position of recumbency on central venous pressure in horses.

Central venous pressure (cvp) was recorded in horses before and after tranquilization and during halothane-maintained anesthesia in lateral or dorsal recumbency. The cvp was significantly decreased after administration of acetylpromazine, when compared with base line measurements and measurements taken after xylazine administration. After induction of anesthesia, cvp increased with time for 75 minutes, and values in lateral recumbency were significantly higher than those in dorsal recumbency.

Acepromazine↗

Collagen degradation in rat skin but not in intestine during rapid growth: effect on collagen types I and III from skin.

Metabolic degradation of prelabeled collagen in whole body skin and whole intestine was compared to that of types I and III collagens from skin in young, rapidly growing rats. Pregnant rats were given [3H]proline during the last week of gestation; and after birth, littermates were compared. Between the second and sixth weeks of age, there was a 43% loss of radioactivity from dermal collagen but no significant loss of radioactivity from intestinal collagen. Pepsin treatment solubilized 90% of the dermal collagen but only 12% of intestinal collagen. Skin from 2- and 6-week-old rats yielded the same proportions of type I and type III collagens (type I, 82%; type III, 18%). The relative losses of total radioactivity from types I and III were similar to each other (50 and 44%, respectively) and to the loss from whole skin. Because types I and III collagens are known to be present in both skin and intestine, the marked degradation of both collagen types in skin but not in the intestine may be related to the amount and kind of intermolecular crosslinks present.

Aging↗

Turnover of collagen in the adult rat after denervation.

Unilateral denervation of the hind limb in a group of adult rats prelabeled with radioactive proline induced a significant turnover of collagen in tendons, ligaments, menisci, and bones. After two or three months of disuse, there were significant losses (15 to 29 per cent) of old collagen from the four structures studied. Dilution of the radioactivity of the old collagen with new collagen involved partial to complete replacement of 3 to 20 per cent. The incomplete replacement of destroyed collagen with new collagen resulted in a net decrease of collagen mass ranging from 5 to 14 per cent. A significant turnover of collagen in two-year-old rats that showed little loss in collagen mass means that the new collagen produced would have fewer cross-links and would probably be weaker than the old, mature collagen.

Animals↗

Size and weight of glomeruli isolated from human diabetic and nondiabetic kidneys.

A sieving technique was used to isolate human glomeruli and to fractionate them by size in order to determine whether nondiabetic and diabetic glomeruli can be separated from one another on the basis of size and mass and to observe the effects of diabetes on the physical properties of glomeruli. The kidneys studied were from five diabetic patients and five nondiabetic controls that were age- and sex-matched. About 40 percent of the glomeruli in the samples of renal tissues were isolated for study. The preparations consisted of more than 90 percent glomeruli, and over 90 percent of the glomeruli were isolated whole. The mean diameter of the diabetic glomeruli was 45 percent greater than that of nondiabetic glomeruli. The mean mass of the diabetic glomeruli was 2.5 times greater than the mean nondiabetic glomerular mass.

Adult↗

Assay of bone resorption in vivo with 3H-tetracycline.

3H-Tetracycline (3H-TC) was used to quantify resorption in whole bones of growing rats and dogs. After repeated isotopic labeling of actively growing embryos or neonates, 3H-TC was observed to be distributed homogeneously and in equilibrium with 45Ca. A rapid and large loss of 3H-TC and a small loss of 45Ca occurred during the early weeks of rapid bone growth, suggesting that absolute amounts of 45Ca resorbed from bone, as reflected by losses of 3H-TC, are five to ten times greater than the net amounts of 45Ca lost from bone. Minimal loss of 3H-TC occurred due to nonspecific physicochemical exchange in vivo or in vitro (5%) except with nonradioactive tetracycline, and 3H-TC was not greatly exchanged or reused (10%) in vivo. The data are considered in terms of local and systemic conservation of calcium.

Animals↗

Comparison of whole calvarial bones and long bones during early growth in rats. II. Turnover of calcified and uncalcified collagen masses.

The increase of total collagen and its destruction were compared for whole calvaria and long bones from young growing rats prelabeled in utero with 3H-L-proline. Rats were compared from birth to 16 weeks of age. Long bones and calvaria were isolated as intact anatomical units for autoradiography or separated by collagenase into calified and uncalcified collagens. Autoradiography using 14C-L-proline demonstrated eccentric modeling of bone collagen. With growth the mass of calcified collagen (bone) increased rapidly in calvaria and long bones. A similar increase in the mass of uncalcified collagen (mainly cartilage) occured in the long bones; a very small increase occurred in the fibrous tissue of calvaria. Total and specific radioactivities of collagens at each age were compared to that present at birth. With growth remodeling an almost complete loss of pre-existing radioactive collagen occurred from uncalcified fibrous tissue of calvaria as compared to a smaller but substantial loss from the uncalcified cartilage of long bones. A marked loss of calcifed collagen occurred in long bones as compared to a smaller loss from calvarial bones. The istopic data indicate a large turnover of fibrous tissue (type I collagen) with growth remodeling as compared to a smaller turnover of bone (calcified, type I collagen) and cartilage (typc I collagen). The turnover rate of skeletal collagens depends upon whether the collagen is calcified or not, and not upon the type of collagen.

Animals↗

Concurrent exchange of 45Ca and 3H-tetracycline from rat bone in vitro.

Bone from rats sacrified at 2, 5, and 95 weeks of age following 45Ca and 3H-tetracycline labeling in utero or postnatally was placed in solutions of physiological saline, nonradioactive calcium, or tetracycline. This procedure was designed to determine the availability for exchange of 45Ca and 3H-tetracycline from bone mineral in vitro. With time after labeling a gradual decrease occurred in both the nonspecific loss and specific exchange of 45Ca and 3H-tetracycline. 45Ca and 3H-tetracycline in bone could be partially exchanged in vitro with their respective nonradioactive counterparts. Each isotope could be partially exchanged, independently of the other istope. Nonradioactive calcium increased the exchange of 45Ca while suppressing the release of 3H-tetracycline. Molecular 3H-tetracycline exchange occurred to a greater degree than ionic 45Ca exchange and was associated with a small loss of 45Ca. The molecular exchange of 3H-tetracycline with bulk tetracycline did not induce any significant loss of tritium from 3H-tetracycline.

Animals↗

ESSO London airport refuelling control centre redesign - an ergonomics case study.

Growth in traffic through London Airport (Heathrow), shortening of aircraft turn-around times, and other factors were reflected in the Esso Company's refuelling service by additional stress on their controllers and by shift supervisors spending time backing-up the controller instead of on general supervision duties. After an initial review of the background and the problem, this paper describes in the appropriate sequence of events the ergonomic redesign of the control functions and the control offices at the Esso Refuelling Control Centre, illustrating the need for a comprehensive approach to this type of problem.

Journal Article↗

Superoxide anions and other components of human renal adenocarcinoma.

The levels of superoxide anion production, cytochrome P450, ornithine decarboxylase(E.C.4.1.1.17), catalase(E.C.1.11.1.6), deoxyribonucleic acid, ribonucleic acid and protein have been studied in human kidney and renal clear-cell adenocarcinoma tissues. The levels of superoxide anion production, ornithine decarboxylase, catalase and ribonucleic acid in the tumor tissue are very different from those in the kidney.

Adenocarcinoma↗

Purification and properties of an acidic protein from rat skin.

An acidic protein, extractable in neutral salt solutions from rat skin, was markedly enriched when precipitated by dialysis against 0.5 M acetic acid. After dissolving the precipitate in 0.5 M Tris-HCl buffer, pH 8.0, the protein was disaggregated by the addition of the nonionic detergent Triton X-100 and purified by chromatography on Sephadex G-100 and DEAE-Sephadex A-50 columns. The protein isolated under nondenaturing conditions appeared to be essentially homogeneous by its migration as a single band on (a) cellulose acetate membrane electrophoresis at pH 8.6; (B) 4% and 7.5% polyacrylamide gel electrophoresis at ph 8.9; (C) sodium dodecyl sulfate (10%) polyacrylamide gel electrophoresis at pH 7.0; and by (d) its complete freedom from collagen, the major contaminating protein. The molecular weight of the protein was determined as 76,000 +/- 2,000 from its electrophoretic mobility in sodium dodecyl sulfate polyacrylamide gels and 75,000 from its elution volume in Sephadex G-100 columns. Reduction and alkylation of the protein failed to generate smaller subunits. The amino acid composition of the protein showed that it was relatively rich in glutamic and aspartic acids, which together comprised 25% of its total residues. Hydrophobic amino acids like phenylalanine, leucine, isoleucine, valine, methionine, alanine, proline, and cystine accounted for about 34% of the total residues in the protein. No free NH2-terminal amino acid could be detected in the purified protein by the dansylation method. Each mole of protein contained 11 mol of phosphate. Triton X-100 was necessary for achieving nondestructive disaggregation of the acidic protein. Each mole of protein bound about 3200 mol of Triton X-100 or 10 mol of Congo red. While the detergent binding could be reversed by dialysis, Congo red formed a stable complex with the protein.

Amino Acids↗

Comparison of whole calvarial bones and long bones during early growth in rats. Histology and collagen composition.

The distribution of ossified collagen (bone) and uncalcified collagen (fibrous tissue and cartilage) was compared histologically for rat and dog calvaria at birth. The relative amount of bone and uncalcified collagen was quantitated morphologically for rat calvaria during the first four weeks of rapid growth. Whereas dog calvaria are essentially ossified at birth, rat calvaria at birth consist mostly of fibrous tissue but rapidly become ossified with growth. Bacterial collagenase was used to separate uncalcified collagen from calcified collagen of whole membranous bones (frontal and parietal) and long bones (femur and humerus) at birth from man, monkey, dog, guinea pig, rabbit and rat. By this means quantitative changes in the relative fractions of the two forms of collagen were determined during the first eight weeks of postnatal growth for each type of rat bone. Quantitative biochemical data on whole rat bones (calvarium, femur, humerus) confirmed measurements based on histology which showed that at birth rat calvaria are mostly uncalcified as compared to other species whose bones are mostly ossified at birth. With growth rat membranous bones ossify more rapidly than long bones.

Animals↗