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Biomedical subjects

L B Sandberg

Publications and source records attributed to L B Sandberg.

At least 19 recordsLinked to original sources

Serum anti-tropo:anti-alpha-elastin antibody ratio assessing elastin turnover in scleroderma.

Serum antibodies to native (tropo) and denatured (alpha) elastins appear to correlate with the production and breakdown respectively of elastic tissue. Elastin may be degraded as a part of autoimmune diseases. This possibility was tested by measuring IgG antibodies to tropo- and alpha-elastins by ELISA in the sera of 111 patients with a variety of connective tissue diseases compared with 18 healthy individuals. Anti-alpha-elastin antibodies were significantly higher in sera from 18 scleroderma patients than from healthy controls (p less than 0.008). Conversely, anti-tropoelastin antibody levels for scleroderma patients (p less than 0.03) and for patients with a variety of other connective tissue diseases (p less than 0.02) were lower than in healthy controls. Low antibody levels to native elastin and high levels of antibodies to denatured elastin suggest a low synthesis: degradation ratio for elastin in scleroderma. Scleroderma may be a unique model for elastin turnover because of its heretofore unrecognized accelerated elastolysis.

Adolescent

Dietary lipid modulation of connective tissue matrix in rat abdominal aorta.

Dietary lipid modulation of structural and passive mechanical properties of isolated rat abdominal aortic segments were assessed during the early developmental period. Rats were raised from conception to 90 days of age on semisynthetic diets containing various types and amounts of lipids. Aortic segments from three groups of rats fed high-fat diets (15%, wt/wt) consisting of olive oil, corn oil, or lard as the sole lipid sources were compared with those from rats fed a low-fat control diet containing corn oil (5%, wt/wt). Morphometric analysis of the tunica media demonstrated that rats raised on diets with a relatively low polyunsaturated fatty acid content (olive oil and lard) had greater numbers of elastic lamellae than rats raised on diets with opposite fatty acid indexes (high- and low-fat corn oil). Changes in elastin content of the tunica media, determined biochemically, paralleled those seen by morphometric analysis of the elastic lamellar number. Altered dietary fatty acid ratios were also associated with changes in smooth muscle cell number. In this regard, a decreased cellular density was observed in the olive oil and lard diets compared with the corn oil diet. The olive oil diet was unique amongst the dietary lipid regimens in raising, whereas the lard-containing diet lowered, indexes of aortic tissue elasticity. These results demonstrate an effect of chronic feeding of high dietary fat on the composition and biomechanical properties of the connective tissue matrix of abdominal aortic rings from young Sprague-Dawley rats.

Animals

Complementary DNA cloning establishes microfibril-associated glycoprotein (MAGP) to be a discrete component of the elastin-associated microfibrils.

Affinity-purified antibodies to microfibril-associated glycoprotein (MAGP) were used to screen a random-primed, bovine nuchal ligament cDNA library in lambda gt11. A 303-base pair clone, cM5, was isolated which encoded an amino acid sequence homologous with that determined directly from a Lys-C peptide of MAGP. A 936-base pair cDNA clone, cM32, was identified in an oligo(dT)-primed cDNA library using plaque hybridization with clone cM5. Clone cM32 encoded amino acid sequences corresponding to sequences obtained from three Lys-C peptides of MAGP, indicating that the clone was an authentic cDNA for the glycoprotein. The cDNA coded for the entire MAGP polypeptide (21 kDa) of 183 amino acids including a putative signal peptide of 17-19 amino acids. This was confirmed by in vitro translation of synthetic mRNAs transcribed from cM32. The amino acid composition of the encoded protein was virtually identical to that previously published for MAGP. DNA sequence analysis of cM32 indicated that MAGP contains two structurally dissimilar regions, an amino-terminal domain containing high levels of glutamine, proline, and acidic amino acids and a carboxyl-terminal domain containing all 13 of the cysteine residues and most of the basic amino acids. Northern blot hybridization of poly(A+) RNA from fetal nuchal ligament with clone cM32 identified a single mRNA species for MAGP of approximately 1.1 kilobases. The evidence indicates that MAGP is a distinct component of 12-nm microfibrils and that it is not derived from a larger microfibrillar glycopolypeptide.

Actin Cytoskeleton

Oxysterol incorporation into rat aorta resulting in elastin compositional changes.

The incorporation of dietary cholestan-3 beta,5 alpha,6 beta-triol (triol) into rat thoracic aortic tissue and changes in amino acid composition of the elastin were investigated to identify the cytotoxic properties of the triol. Weanling male Sprague-Dawley rats were fed the following diets for three months: (i) normal chow, (ii) normal chow with 1% (w/w) cholesterol added, or (iii) normal chow with 0.9% (w/w) cholesterol and 0.1% (w/w) triol added. Triol levels in the blood and in the thoracic aortic tissue were measured. Compositional changes of elastin were also determined. After three months on the triol-containing diet, triol was found in the thoracic aorta but was not detected in the blood. Amino acid analyses of the aortic tissue elastin revealed that the proline levels in the triol-fed animals were significantly greater than in the other two diet groups, while the elastin levels of leucine, aspartate, arginine, and phenylalanine decreased significantly. The mechanism for these observed changes induced by triol may reflect alternate splicing of elastin messenger ribonucleic acid (mRNA) resulting in structual changes in the elastin molecule. Dietary triol does contribute to tissue triol content and is associated with aortic elastin compositional changes. How these changes may contribute to the development of cardiovascular disease is not known.

Amino Acid Sequence

Modification of the pulmonary connective tissue developmental response in the neonatal rat by ciclosporin.

Neonatal rat pups were treated either with ciclosporin at 10 mg/kg/day dissolved in olive oil (experimental) or with pure olive oil (control). Lung protein biosynthesis was evaluated in a protocol which involved the measurement of total accumulated protein, collagen and elastin. Four time points were studied in the first 21 days of life, 12 animals contributing to each point (6 control and 6 ciclosporin). Ciclosporin levels in the treated group ranged widely (2,000-4,000 ng/ml). There were significant differences in total body weight and lung weight in treated vs. controls during and after the first week. DNA contents per unit wet weight varied significantly during the second week of life, indicating increased cellularity of the ciclosporin-treated animals. Associated with this was an increase in the lung protein/DNA ratio as well as the elastin/DNA ratio in the control animals, but not in the treated ones. The lung collagen/DNA ratio was not as dramatically affected by the ciclosporin treatment. However, the collagen content per unit wet weight of lung tissue was increased in the ciclosporin-treated animals at 15 days of life. We conclude that ciclosporin has a marked effect on lung connective tissue metabolism in early life, the long-term effects of which are unappreciated and undocumented but may well be of vital importance in the lungs of long-surviving organ transplant patients.

Animals

Haloperidol administration to rats during pregnancy induces permanent alterations in serum lipoprotein patterns of progeny.

The rat is notoriously resistant to vascular disease, but administration of haloperidol prenatally to the pregnant dam results in hyperlipidemic changes in F1 and F2 progeny. Total serum cholesterol concentrations in the F1 males reach levels three or more times greater than controls by one year of age. The phenomenon indicates a link between dopaminergic elements of the autonomic nervous system and cholesterol metabolism, a phenomenon heretofore unrecognized. Transfer of the hypercholesterolemia into the second generation further suggests that haloperidol induces a permanent change in the genetic control of lipoprotein metabolism. Although the observations are preliminary, they warrant consideration when administering the drug to pregnant women.

Animals

Improvement in plasma protein concentrations with fibronectin treatment in severe malnutrition.

Severely malnourished young children (n = 72) were treated with intravenous fibronectin to assess its efficacy as an adjunct treatment for kwashiorkor and/or marasmus. The protein was given in a double-blind study during the first 4 d of hospitalization together with standard nutrition and supportive therapy. Fibronectin concentrations as well as albumin, transferrin, prealbumin, and alpha-2-macroglobulin were monitored in samples taken before each dose of fibronectin and in samples taken five times thereafter. Sick individuals had significantly lower concentrations of all five proteins than did healthy control individuals of matching ages. Mean fibronectin concentrations were 98 +/- 7 mg/L (mean +/- SEM) for sick vs 303 +/- 21 mg/L for healthy individuals. Concentrations of all five proteins increased at a greater daily rate in patients treated with fibronectin than in patients who received placebos. Eighty-seven percent of the treated children survived to the end of the treatment and observation periods (mean hospitalization 14.7 d) whereas only 56% of the control subjects survived (P = 0.004). These data support the use of intravenous fibronectin as an adjunct in the treatment of severe malnutrition at a dosage of 7.5 mg.kg-1.d-1 over a 4-d period.

Blood Proteins

Quantitation of elastin in tissues and culture: problems related to the accurate measurement of small amounts of elastin with special emphasis on the rat.

Both rat and sheep elastin can be quantified by measurement of discrete peptides released from the insoluble protein by thermolysin digestion. These peptides are easily visualized and measured by HPLC. With the sheep the tallest peak on the chromatogram represents the VGVPG pentapeptide derived from a repeating sequence seen in elastin from many species. This repeating sequence allows for amplification of the signal significantly above background so that accurate quantitation can be carried out. The measurement is reproducible over a wide range of protein concentrations. With the rat however the pentapeptide is not present but appears to be replaced by other repeating sequences. We quantitated and determined amino acid sequence on 8 peaks present in the early portion of the chromatogram for purposes of quantifying rat elastin. That signal most reliably present over a range of concentrations was tyrosyl-glycine (YG) which eluted at 8.5 minutes. We have used YG as a basis for quantitation of rat elastin both from tissues and tissue culture. We have also shown that the desmosine crosslinks are not constant in elastin produced in a neonatal rat smooth muscle culture system but vary with the age of the culture. We thus propose that an index of maturation be considered for a given elastin in the form of mumoles of crosslink per gram of elastin so as to better define its quality.

Amino Acid Sequence

Uniqueness of dietary olive oil in stimulating aortic prostacyclin production in post-weanling rats.

Groups of weanling Sprague-Dawley rats developed from conception through gestation, and weanling periods on a formulated diet fed to the dams were continued on the same diet until sacrificed at 30 days of age. The diet groups consisted of control (5% corn oil, w/w) and experimental (15%, w/w) olive, safflower (hi-oleic and hi-linoleic), soy oil, and lard. The object of the study was to identify the effect of high and low fat content and differing proportions of polyunsaturated:saturated (P:S) and mono:polyunsaturated (M:P) fatty acids on arachidonate stimulated aortic prostacyclin (PGI2) production (measured as 6-keto-PGF1 alpha). Neither the amounts of dietary fat or wide ranging P:S or M:P fatty acid ratio levels (P:S or M:P) affected PGI2 production. PGI2 production was, however, markedly enhanced (2x) in aortic segments from rats raised on diets containing olive oil. The unique stimulation of aortic PGI2 production by the olive oil diet suggests an effect of the extraordinarily high M:P fatty acid ratio or, alternatively, of a still-to-be identified substance(s) in this ancient food.

6-Ketoprostaglandin F1 alpha

Quantitation of elastin through measurement of its pentapeptide content.

Digestion of insoluble porcine elastin with thermolysin produces a number of discrete small peptides. That present in highest concentration is the pentapeptide valyl-glycyl-valyl-prolyl-glycine (VGVPG) derived from the portion of the polymer containing extensive repeats of this sequence. Among eukaryotes, this sequence appears to be found only in elastin and its precursor tropoelastin. In the pig this is represented by peptide W4 of a tropoelastin tryptic digest (Sandberg, L.B., et al. Path. Biol. 33, 266-274, 1985). Quantitation of this peptide by HPLC separation, monitoring its absorption at 212 nm, offers a simple reliable means of measuring purified insoluble elastin as well as non-purified elastin in fat-free tissue samples. Digestion times and incubation temperatures are discussed. The method is sensitive enough to accurately quantitate elastin at the 2 to 3 microgram level.

Amino Acid Sequence

Classification of malnutrition by statistical analysis of quantitative two-dimensional gel electrophoresis of plasma proteins.

An attempt to use the relative concentrations of major plasma proteins for clinical assessment of severe malnutrition is described. Quantitative two-dimensional gel electrophoresis was used to measure the concentrations of 24 major proteins in small aliquots of plasma obtained from children, aged 0 to 3 years, who were patients and outpatients in Liberian hospitals. Fifteen had a clinical diagnosis of kwashiorkor, 36 were diagnosed with marasmus, and 18 were controls. There were also 5 controls from the United States. The individuals were placed in six groups; kwashiorkor, kwashiorkor who died during treatment, marasmus, marasmus who died, Liberian controls, and U.S. controls. The amount of protein in each spot in the two-dimensional gels was estimated by measuring bound stain using a laser scanner and computerized image analysis. We found very low serum transferrin levels in malnourishment, in agreement with reports from other investigators. All of the data for 24 protein variables were pooled for factor analysis; the mean factor scores for each group differed, with the kwashiorkor groups furthest from the controls. Results of discriminant analysis using the amounts of different numbers of protein variables (3 to 24) were compared for posterior assignment of individuals to groups. The validity of the method was tested by analysis of plasma aliquots obtained from patients following initiation of therapy and which were not a part of the training set. Predictive performance (prognosis of patient survival) depended upon the number of protein variables used. Although artifactual fitting of the data is expected to contribute to performance as the number of variables is increased, use of as many as 7 variables may be justified, even with our small patient groups. Possible use of these results for development of a practical clinical test is discussed.

Blood Protein Electrophoresis

Lysyl oxidase activity in lungs of copper-deficient hamsters.

Lysyl oxidase, the enzyme responsible for mediating crosslink formation in collagen and elastin, requires copper for its activity. In this study, lysyl oxidase activity and insoluble elastin content were unchanged in lungs from copper-deficient hamsters compared to controls. The lack of dramatic diminution in lysyl oxidase activity in animals who demonstrate significant structural alterations in the lung suggests that other mechanisms in addition to inhibition of crosslink formation are operative in this model.

Amino Acid Oxidoreductases

Elastin covalent structure as determined by solid phase amino acid sequencing.

The amino acid sequences of 16 large tryptic fragments of aortic tropoelastin have been determined establishing the presence of several repeating structures: GVP, GGVP, PGVGV, PGVGVA, and AGVPGFGVG. The methodologies for achieving these results by solid phase sequencing are reviewed and also the possible biologic significance of the unusual primary structures of elastin are discussed.

Amino Acid Sequence

Quantitation of elastin production in cultured vascular smooth muscle cells by a sensitive and specific enzyme-linked immunoassay.

An enzyme-linked immunoassay (ELISA) procedure has been developed to quantitate the amount of elastin produced by cultured porcine aortic smooth muscle cells. ELISA was used to determine both titer and specificity of antisera raised in rabbits against porcine aortic alpha-elastin conjugated with key-hole limpet hemocyanin. Under optimum conditions (1: 3000 dilution of antiserum, 20 ng alpha-elastin per assay well), sensitivity averaged 60 ng/ml). Specificity was confirmed by immunoprecipitation of [125I]-tropoelastin, radial immunodiffusion, Western blotting and lack of cross-reactivity with serum proteins or collagen. Extensive cross-reactivity was found with both human alpha-elastin and porcine beta-elastin, while porcine tropoelastin was able to compete with 80% of the alpha-elastin determinants. Affinity of anti-porcine antisera for sheep alpha- elastin was significantly lower. When the ELISA was made specific for tropoelastin by coating wells with 60 ng of this antigen, a time-dependent and serum-dependent rate of production of tropoelastin was observed in the culture medium of primary and secondary cultures of smooth muscle cells. Comparison of elastin production in cultures of porcine smooth muscle cells suggests that porcine aortic elastin production varies as a function of cell density and phase of growth.

Animals

A copper-deficient, zinc-supplemented diet produces emphysema in pigs.

A mild form of emphysema was produced in pigs raised on a copper-deficient, zinc-supplemented diet. The copper-requiring enzyme, lysyl oxidase, catalyzes the cross-linking of tropoelastin into mature elastin. Zinc further inhibits the activity of lysyl oxidase. Lungs from animals raised on copper-deficient, zinc-supplemented diets of demonstrate perforations in alveolar walls and diminished amounts of elastin bronchi and pulmonary arteries. Mean linear intercepts are greater and alveolar internal surface areas are less than those in control animals, fulfilling the generally accepted definition of emphysema. Physiologic confirmation is provided by a leftward shift of the saline volume-pressure curves when compared with those in control animals. Ultrastructurally, the alveolar walls are effaced and pores of Kohn are enlarged. There are areas in which elastin is absent leaving remnant microfibrils, and there are other changes consistent with active elastin synthesis. Biochemical data demonstrate no difference in elastin content as micrograms/ml of fat-free dry weight but do demonstrate increased collagen content in experimental animal lungs compared with that in control lungs. Ultrastructural similarities to enzyme-induced models of emphysema suggest the presence of elastin degradation in our model. We speculate that although the copper-deficient, zinc-supplemented state may stimulate protein synthesis in general, elastin is being degraded by endogenous means, but collagen is not.

Air Pressure