Biomedical subjects
A Khare
Publications and source records attributed to A Khare.
Pregnane glycosides from Hemidesmus indicus.
Three new pregnane oligoglycosides, medidesmine, hemisine and desmisine isolated from the plant Hemidesmus indicus were identified as sarcostin-3-O-alpha-D-glucopyranosyl (1 --> 4)-O-beta-D-digitoxopyranosyl (1 --> 4)-O-beta-D-oleandropyranoside, calogenin-3-O-beta-D-cymaropyranosyl (1 --> 4)-O[3-O-methyl]beta-D-glucopyranosyl (1 --> 4)-O-beta-D-glucopyranosyl (1 --> 4)-O-beta-D-cymaropyranoside and calogenin-3-O-beta-D-xylopyranosyl (1 --> 4)-O-beta-D-digitoxopyranosyl (1 --> 4)-O-beta-D-xylopyranosyl (1 --> 4)-O-beta-D-digitoxopyranoside, respectively, with the help of FAB-MS, EI-MS, 1H and 13C NMR spectroscopy, along with chemical transformations.
Acid-labile subunit of human insulin-like growth factor-binding protein complex: measurement, molecular, and clinical evaluation.
Although the acid-labile subunit (ALS) of the approximately 150-kDa insulin-like growth factor (IGF)-binding protein (IGFBP) complex was described over a decade ago, details of ALS physiology have remained largely uncertain. We evaluated antibodies to synthetic human ALS and constructed a noncompetitive ALS enzyme-linked immunosorbent assay. Whereas uncomplexed ALS is directly measured, determination of total levels required sample pretreatment with SDS, which was found to optimally dissociate complexed ALS and significantly enhance ALS immunoreactivity. ALS in random adult sera was approximately 50% uncomplexed, and samples devoid of complexed ALS by immunoaffinity separation contained about 54% of the total levels. Serum ALS fractionated by gel filtration high performance liquid chromatography eluted in a single peak at approximately 150 kDa with IGF-I and IGFBP-3, but appeared at about 400-500 kDa after sample acidification and fractionation under acidic condition. The unexpected shift in ALS immunoreactivity remained unchanged when acid-neutralized or SDS-treated samples were fractionated under neutral pH and was reproducible when the 150-kDa complex was isolated, treated with acid or SDS, and rechromatographed. ALS in adult sera more tightly correlated with IGFBP-3 than IGF-I or IGF-II. The total levels (mean +/- SD) were 16.7 +/- 3.7 mg/L in 22 normal subjects, 28.3 +/- 8.1 mg/L in 20 acromegalic patients, and 9.5 +/- 3.8 in 32 GH-deficient adults. Little or no ALS was detectable in amniotic fluid, cerebrospinal fluid, seminal plasma, or milk, whereas high levels were present in synovial fluid. The development of ALS enzyme-linked immunosorbent assay should greatly facilitate further investigations of this unique glycoprotein.
Synthesis of IGFBP-3 fragments in a baculovirus system and characterization of monoclonal anti-IGFBP-3 antibodies.
IGFBPs play an important role in IGF biological actions by modulating IGF binding to its receptors. The major IGFBP in serum is IGFBP-3, which transports 70-90% of the circulating IGFs. In target cell systems, it sequesters IGFs and inhibits their hormonal actions, but may potentiate IGF activity or exert IGF-independent effects under specific conditions. IGFBP-3 can be modified by IGFBP-3 proteases, which degrade it into smaller fragments. IGFBP-3 fragments generated by proteolysis have reduced affinity for IGFs, thereby modifying IGF action. To study IGFBP-3 fragments in vivo and in vitro, we constructed six different IGFBP-3 fragments by use of a baculovirus expression system and generated 8 different monoclonal IGFBP-3 antibodies. Based on the known cleavage sites of IGFBP-3 for PSA, MMPs, and the predicted plasmin cleavage sites, we expressed a N-terminal IGFBP-3(1-97) fragment and a C-terminal IGFBP-3(98-264) fragment. By stepwise truncation from the C-terminal end, we created IGFBP-3(98-232), IGFBP-3(98-206), IGFBP-3(98-179), and IGFBP-3(98-159). A strong recognition of the C-terminus and the intermediate parts of IGFBP-3 by six antibodies was found. Four of these mAbs were able to recognize the intermediate fragment alone. Two mAbs were found to immunoreact only with the N-terminal IGFBP-3 fragment and two additional mAbs recognized the N- as well as the C-terminal parts and lacked immunoreactivity for the intermediate part of IGFBP-3. The 15 kDa IGFBP-3 fragment resulting from plasmin digestion was found to only react with N-terminal antibodies, while the 29 kDa fragment in pregnancy serum reacted with both N- and C-terminal antibodies. Thus, these mAbs will be useful tools to determine whether IGFBP-3 fragments found in vivo derive from either the N- or C-terminal domains of IGFBP-3.
Case holding for tuberculosis in Africa: the patients' perspective.
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Cardiac glycosides.
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Exactness of the broken supersymmetric, semiclassical quantization rule.
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Phase of the Riemann zeta function and the inverted harmonic oscillator.
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Culture surfaces coated with various implant materials affect chondrocyte growth and metabolism.
The effect on chondrocyte metabolism of culture surfaces sputter-coated with various materials used for orthopaedic implants was studied and correlated with the stage of cartilage cell maturation. Confluent, fourth-passage chondrocytes from the costochondral resting zone and growth zone of rats were cultured for 6 or 9 days on 24-well plates sputter-coated with ultrathin films of titanium, titanium dioxide, aluminum oxide, zirconium oxide, and calcium phosphate (1.67:1). Corona-discharged tissue culture plastic served as the control. The effect of surface material was examined with regard to cell morphology; cell proliferation (cell number) and DNA synthesis ([3H]thymidine incorporation); RNA synthesis ([3H]uridine incorporation); collagenase-digestible protein, noncollagenase-digestible protein, and percentage of collagen production; and alkaline phosphatase-specific activity, both in the cell layer and in trypsinized chondrocytes. Cell morphology was dependent on surface material; only cells cultured on titanium had an appearance similar to that of cells cultured on plastic. While titanium or titanium dioxide surfaces had no effect on cell number or [3H]thymidine incorporation, aluminum oxide, calcium phosphate, and zirconium oxide surfaces inhibited both parameters. Cells cultured on aluminum oxide, calcium phosphate, zirconium oxide, and titanium dioxide exhibited decreased collagenase-digestible protein, noncollagenase-digestible protein, and percentage of collagen production, but [3H]uridine incorporation was decreased only in those chondrocytes cultured on aluminum oxide, calcium phosphate, or zirconium oxide. Chondrocytes cultured on titanium had greater alkaline phosphatase-specific activity than did cells cultured on plastic, but the incorporation of [3H]uridine and production of collagenase-digestible protein, noncollagenase-digestible protein, and percentage of collagen was comparable. The response of chondrocytes from the growth zone and resting zone to culture surface was comparable, differing primarily in magnitude. Cell maturation-dependent effects were evident when enzyme activity in trypsinized and scraped cells was compared. These results indicate that different surface materials affect chondrocyte metabolism and phenotypic expression in vitro and suggest that implant materials may modulate the phenotypic expression of cells in vivo.
p-[18F]fluorobenzyltrozamicol ([18F]FBT): molecular decomposition- reconstitution approach to vesamicol receptor radioligands for positron emission tomography.
Current methods of radioligand synthesis for the vesamicol receptor either utilize bioactive unlabeled precursors and/or generate unlabelled bioactive by-products. The presence of these compounds in the radiotracer preparation increases the risk of adverse pharmacological reactions in animals. To eliminate the risk of such reactions, we have synthesized the novel radioligand [18F]FBT from two inactive precursors, [18F]fluorobenzyl iodide and trozamicol. (+)- and (-)-[18F]FBT were synthesized in 57-85% yield, from [18F]fluorbenzyl iodide and (+)- and (-)-trozamicol, respectively. In the rat brain, comparable levels of (-)-[18F]FBT were found in the striatum, cortex, cerebellum and hippocampus during a 3 h period. In contrast, the striatum:cerebellum, cortex:cerebellum and hippocampus:cerebellum ratios for (+)-[18F]FBT increased from unity at 5 min post-injection to 2.8, 1.4 and 1.7, respectively, at 3 h. Therefore, (+)-[18F]FBT may be potentially useful for mapping vesamicol receptor density in vivo.
Improved calculation of the third virial coefficient of a free anyon gas.
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Immunoblot studies of the IGF-related acid-labile subunit.
Insulin-like growth factors I and II (IGF-I and II) are present in serum primarily within a ternary complex consisting of IGF, IGF-binding protein-3 (IGF-3) and acid-labile subunit (ALS). Relatively little is known about ALS as compared to the other components of the complex. We report immunoblot studies of ALS using a new rabbit antiserum to human ALS1-34. The antiserum shows high specificity for ALS, labelling only the intact 82-88 kDa doublet in whole serum. Treatment with endoglycosidase-F leads to only a partial deglycosylation of ALS in whole serum, while purified ALS is reduced to M(r) approximately 58 kDa. Acidification of both whole serum and purified ALS leads to a complete loss of ALS ability to bind to cross-linked IGFBP-3:[125I]IGF-II tracer; however, immunoblot studies show no change in the apparent M(r) of the major ALS band. Immunoblot studies of human serum shows that intact ALS is decreased in growth-hormone (GH) deficiency, increases with GH treatment, is elevated in GH excess and is unchanged with IGF-I treatment. These data provide new information regarding the characteristics of ALS and demonstrate the research utility of a highly-specific antiserum for this protein.
Propagators for shape-invariant singular potentials.
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Nonsymmetrical bipiperidyls as inhibitors of vesicular acetylcholine storage.
Introduction of a nitrogen atom into the cyclohexane ring of 2-(4-phenylpiperidinyl)cyclohexanol (vesamicol, AH5183) yielded two positional isomers, 5-azavesamicol (5, prezamicol) and 4-azavesamicol (6, trozamicol). As inhibitors of vesicular acetylcholine transport, 5 and 6 were found to be 147 and 85 times less potent than vesamicol. N-Benzoylation of 5 (to yield 9a) increased the potency 3-fold. In contrast, 10a, a compound derived from N-benzoylation of 6, was 50 times more potent than the latter and almost equipotent with vesamicol, thereby suggesting a preference for the 4-azavesamicol series. Although (-)-vesamicol is more potent than its dextrorotary isomer, (+)-10a was found to be 3 times more potent than (-)-10a, suggesting a reversal of the sign of rotation in the azavesamicol series. Reduction of 9a and 10a (to yield the corresponding N-benzyl derivatives 11a and 12a) increased potency 20- and 2-fold, respectively, indicating a preference for a basic nitrogen. The reaction of 5 or 6 with substituted benzyl halides yielded several potent inhibitors of vesicular acetylcholine transport, including N-(p-fluorobenzyl)trozamicol, 12d, which is twice as potent as vesamicol. Thus the introduction of a nitrogen atom into the cyclohexane ring of vesamicol provides opportunities for developing a new class of anticholinergic agents.
Semiclassical approach to quantum-mechanical problems with broken supersymmetry.
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New exactly solvable Hamiltonians: Shape invariance and self-similarity.
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One-parameter family of soliton solutions with compact support in a class of generalized Korteweg-de Vries equations.
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Total hepatic vascular exclusion for major hepatic resection.
Use of vascular occlusion techniques during hepatic resection has besides decreasing blood loss improved the feasibility of surgical extirpation of large hepatic tumors. We report successful use of this technique to resect a large hepatoma in the right lobe of the liver. The hemodynamic and biochemical changes in the perioperative period are documented.