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B Brodsky

Publications and source records attributed to B Brodsky.

At least 73 records · Page 4Linked to original sources

Isolation and partial characterization of collagen chains dimerized by sugar-derived cross-links.

Incubation of tail tendon from a young rat in solutions containing D-ribose resulted in attachment of the monosaccharide to collagen and subsequent cross-link formation at a rate much faster than found for glucose. The collagen rapidly became resistant to solubilization and showed increasing fluorescence. Ribose bound to all major CNBr peptides of collagen, with some preference for the alpha 2-CB3,5 peptide and the triple-helical region of alpha 1-CB6, and was incorporated into higher molecular weight material. Extensive pepsin digestion permitted isolation of dimers of alpha chains cross-linked in triple-helical regions as a result of incubation with ribose. The dimers were identified as beta 11, beta 12, and beta 22 components, and the limited degree of heterogeneity of these components indicated that cross-linking occurred at several sites, some of which must be intermolecular. Isolated beta components were strongly fluorescent with a spectrum similar to that of collagen in aged tissues. Fluorescent dimers with similar characteristics were found in pepsin digests of tail tendons from older rats.

Animals↗

Glycation induces expansion of the molecular packing of collagen.

Exposure of rat tail tendon to a reducing sugar results in covalent attachment of the sugar to collagen, a process termed glycation, and leads to the formation of stable intermolecular cross-links. We have used X-ray diffraction to study the changes in the crystalline unit cell of rat tail tendon collagen brought about by glycation. Ribose was selected as a model compound for most of the study because its reaction with proteins is faster than that of glucose, and therefore more convenient for laboratory studies, but glucose and glyceraldehyde were used as well. A kinetic model describing the process of glycation by ribose and subsequent cross-link formation has been developed. Glycation resulted in an expansion by more than 12% of the unit cell that describes the three-dimensional structure of rat tail tendon collagen. The expansion was in a direction perpendicular to the axes of the rod-shaped molecules, indicating that the intermolecular spacing of the collagen increased. Thus, the structure of collagen in rat tail tendon is significantly altered by glycation in vitro. The expansion was not isotropic, but was directed parallel to the (120) planes, one of the three major planes of the quasi-hexagonal structure that is densely populated by collagen molecules. It is hypothesized that this expansion is brought about by the formation of one, or at most a few, specific intermolecular cross-links in the overlap zone that act to push the molecules apart. It is likely that similar structural changes in collagenous tissues are caused by glycation in vivo during the natural course of aging, and that these changes are accelerated in chronic hyperglycemia such as that associated with diabetes. Analysis of the structure of glycated rat tail tendon potentially can give us new insight into the detailed molecular structure of collagen.

Animals↗

Fibril-forming collagens in lamprey.

Five types of collagen with triple-helical regions approximately 300 nm in length were found in lamprey tissues which show characteristic D-periodic collagen fibrils. These collagens are members of the fibril forming family of this primitive vertebrate. Lamprey collagens were characterized with respect to solubility, mobility on sodium dodecyl sulfate-polyacrylamide gel electrophoresis, carboxylmethyl-cellulose chromatography, peptide digestion patterns, composition, susceptibility to vertebrate collagenase, thermal stability, and segment long spacing-banding pattern. Comparison with fibril-forming collagens in higher vertebrates (types I, II, III, V, and XI) identified three lamprey collagens as types II, V, and XI. Both lamprey dermis and major body wall collagens had properties similar to type I but not the typical heterotrimer composition. Dermis molecules had only alpha 1(I)-like chains, while body wall molecules had alpha 2(I)-like chains combined with chains resembling lamprey type II. Neither collagen exhibited the interchain disulfide linkages or solubility properties of type III. The conservation of fibril organization in type II/type XI tissues in contrast to the major developments in type I and type III tissues after the divergence of lamprey and higher vertebrates is consistent with these results. The presence of type II and type I-like molecules as major collagens and types V and XI as minor collagens in the lamprey, and the differential susceptibility of these molecules to vertebrate collagenase is analogous to the findings in higher vertebrates.

Amino Acids↗

Mental health attitudes and practices of Soviet Jewish immigrants.

This article describes some of the difficulties Soviet Jewish immigrants face and the results of a survey of immigrant attitudes toward western mental health resources. The author identifies doctors and medical facilities as primary mental health resources and explores implications for social work service delivery in ambulatory care settings. Comparisons with other populations also are made.

Attitude to Health↗

Type II collagen of lamprey.

The major collagen in lamprey notochord is type II, as determined by its amino acid composition and solubility properties. This collagen has a distribution of charged residues indistinguishable from higher vertebrate Type II collagens as judged by its SLS banding pattern. Lamprey type II collagen has a higher thermal stability than lamprey skin collagen, in contrast to the identical melting temperatures for these types in mammals. A minor collagen in lamprey notochord has solubility properties, amino acid composition, and electrophoretic mobility similar to that of 1 alpha, 2 alpha, 3 alpha collagen in human cartilage.

Amino Acids↗

Characterization of the tissue form of type V collagen from chick bone.

Type V collagen was prepared from acetic acid extracts of lathyritic chick bone. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis of the extracted material demonstrated two collagenous bands of slower mobility than pepsin-extracted alpha 1(V) and alpha 2(V) chains. Cyanogen bromide peptide maps of these protein bands identified them as forms of alpha 1(V) and alpha 2(V). Segment long spacing (SLS) crystallite banding patterns of the acid-extracted Type V were identical within the triple-helical domain to the SLS banding patterns of pepsin-extracted Type V collagen, supporting the identification of this material. A globular domain at one end of the triple helix of the acid-extracted Type V was visualized by both rotary shadowing and negative staining of SLS crystallites. The molecular weights of the globular terminal peptides were 18,000 and 29,000, respectively, for alpha 1(V) and alpha 2(V), as determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis after bacterial collagenase digestion of the isolated alpha chains. The results presented here indicate that fully processed Type V collagen in chick bone exists as a higher molecular weight form than that from pepsin extracts and retains a globular domain at one end of the triple helix. This is in contrast to the interstitial collagens in which only very small non-triple-helical domains (telopeptides) are retained in the fully processed molecules. In vitro aggregation studies demonstrated the intact fully processed form of Type V collagen forms uniform small-diameter fibrous structures. These results suggest that Type V collagen may be present in fibrous structures within tissues.

Animals↗

Crystalline fibril structure of type II collagen in lamprey notochord sheath.

We report here the existence of a crystalline molecular packing of type II collagen in the fibrils of the lamprey notochord sheath. This is the first finding of a crystalline structure in any collagen other than type I. The lamprey notochord sheath has a composition similar to that of cartilage, with type II collagen, a minor collagen component with 1 alpha, 2 alpha and 3 alpha chains, and cartilage-like proteoglycan. The high degree of orientation of fibrils in the notochord makes it possible to use X-ray diffraction to determine collagen fibril organization in this type II-containing tissue. The low angle equatorial scattering shows the fibrils are all about 17 nm in diameter and have an average center-to-center separation of 31 nm. These results are supported by electron microscope observations. A set of broad equatorial diffraction maxima at higher angles represents the sampling of the collagen molecular transform by a limited crystalline lattice, extending over a lateral dimension close to the diameter of one fibril. This indicates that each 17 nm fibril contains a crystalline array of molecules and, although a unit cell is difficult to determine because of the broad overlapping reflections, it is clear that the quasi-hexagonal triclinic unit cell of type I collagen in rat tail tendon is not consistent with the data. The meridional diffraction pattern showed 26 orders with the characteristic 67 nm periodicity found for tendon. However, the intensities of these reflections differ markedly from those found for tendon and cannot be explained by an unmodified gap/overlap model within each 67 nm period. Both X-ray diffraction and electron microscope data indicate a low degree of contrast along the fibril axis and are consistent with a periodic binding of a non-collagenous component in such a way as to obscure the gap region.

Animals↗

An unusual collagen periodicity in skin.

The axial periodicity of collagen fibrils was observed by X-ray diffraction to be significantly shorter in wet skin (65.2 nm) than in wet tendon (67.0 nm). This difference appears to be due to some feature in the native skin environment, since purified skin Type I and Type III collagens will both form fibrils with a normal 67.0 nm d-period.

Animals↗

Chloramphenicol sodium succinate kinetics in critically ill patients.

Chloramphenicol sodium succinate (SCAP) kinetics were studied in 10 critically ill patients. High-performance liquid chromatography was used to assay SCAP and chloramphenicol (CAP) in serum and urine. Total body (ClTB), metabolic (ClM), and renal (ClR) clearances of SCAP were variable. Correlations were found between creatinine clearance (Clcr) and ClTB, ClM, and ClR of SCAP (r = 0.92, p less than 0.001; r = 0.84, p less than 0.005; and r = 0.84, p less than 0.005). Recovery of SCAP in the urine also demonstrated large interpatient variability. Between 6.5% and 43.5% of the SCAP dose was recovered in the urine of 6 patients. This variability could not be explained by incomplete urine collection or by differences in renal function. Renal excretion of SCAP was shown to influence CAP serum levels. CAP ClTB was diminished, but no relationship was found between routine liver function studies and CAP ClTB. Therefore we caution the use of such relationships in using CAP in critically ill patients.

Acute Disease↗

X-ray diffraction investigations of collagen fibril structure in dermatosparactic lamb tissues.

The x-ray diffraction of dermatosparactic lamb skin and tendon was compared with that from normal lamb tissues in order to investigate alterations in collagen fibril structure in the diseased tissues. Dermatosparactic tendon, which contains about 13 per cent pN-collagen, gave a normal x-ray pattern, whereas dermatosparactic skin, with 70 per cent pN-collagen, gave extremely weak meridional diffraction. The loss of meridional diffraction indicates a loss of long range axial alignment of the collagen molecules in the affected skin fibrils. Drying or reduction of dermatosparactic skin increased the meridional diffraction, indicating some restoration of the axial order.

Animals↗

Stability of pulmonary function during periodic intravenous bolus aminophylline therapy.

Peak expiratory flow, forced vital capacity, forced expiratory volume at 1 sec, and midmaximal expiratory flow were measured immediately before and 1 hr after a scheduled intravenous maintenance dose of aminophylline in 12 recently hospitalized asthmatic patients. Serum theophylline concentrations were also determined. No significant improvement was noted in any of these pulmonary function tests despite a significant increase in serum theophylline concentration (10.5 +/- 5.2 to 18.2 +/- 6.3 micrograms/ml, p < 0.001). These results were consistent with previously developed pharmacologic response theory.

Aminophylline↗

Chloramphenicol pharmacokinetics in hospitalized patients.

The apparent body clearance of chloramphenicol was investigated in 21 hospitalized adult patients on 27 occasions. Apparent body clearance was found to be significantly lower (1.99 +/- 1.49 ml/min per kg) in patients with total serum bilirubin concentrations of >1.5 mg/100 ml than in patients with serum bilirubin concentrations of </=1.5 mg/100 ml (3.57 +/- 1.72 ml/min per kg; P < 0.001). Serum protein binding of chloramphenicol was lower in cirrhotic patients (42.2 +/- 6.8% bound) than in normal adults (53.1 +/- 5.2% bound; P < 0.001). Low binding of chloramphenicol was also found in the serum of premature neonates (32.4 +/- 8.2% bound; P < 0.001). Reduced binding in neonates implies the need for a lower therapeutic range of total chloramphenicol concentration (3.5 to 13.9 mug/ml) compared with the usual adult range (5 to 20 mug/ml). Finally, three case reports are presented which demonstrate marked abnormalities and intrasubject variation in chloramphenicol clearance.

Adolescent↗

Relationship between serum and saliva chloramphenicol concentrations.

The relationship between serum and saliva chloramphenicol (CAP) concentrations was evaluated in 27 paired specimens collected from 20 hospitalized patients during therapy with the drug. A significant (R = 0.80, P < 0.001) but variable relationship was found to exist. Serum protein binding of CAP was also evaluated (43.7 +/- 5.7% bound; N = 24). Differences in CAP binding did not apparently account for a significant portion of the variability in the observed saliva/serum CAP concentration ratios. The degree of variation observed indicated that saliva CAP concentrations could not be relied upon for the prediction of serum CAP concentrations.

Adult↗

Low angle X-ray diffraction studies on stained rat tail tendons.

Low angle X-ray diffraction patterns of rat tail tendons with heavy metal stains added were examined to help clarify the effects of fixation and staining on collagen fibrils. Fixing and staining of rat tail tendon fibers gives an X-ray pattern with an intensified 3.8 nm row and the preservation of most equatorial features found in the native pattern. The presence of the native pattern features suggests the value of fixation in preserving native structure before staining. Staining of rat tail tendon fibers without prior fixation led to the disappearance of the native equatorial features and the appearance of a new broad row line corresponding to a spacing of around 10.0--17.5 nm. This observation suggests that some alteration has taken place in the native structure and may be related to electron microscopic observations of units of 10.0--20.0 nm in collagen fibrils under some disruptive or developmental conditions.

Animals↗