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Biomedical subjects

S Pal

Publications and source records attributed to S Pal.

At least 19 recordsLinked to original sources

Investigation on glutamine amidohydrolase (EC 3.5.1.2) and glutamine aminotransferase (EC 2.5.1.15) activity in liver and plasma of EAC-bearing mice following glutaminase therapy.

The anti-neoplastic activity of bacterial glutaminase on Ehrlich ascites tumor-bearing mice was studied by determining the reduction in the tumor cell count and extension of life span of the host after therapy. The therapeutic effect of glutaminase in relation to change in activity of glutaminolytic enzymes (glutamine amidohydrolase (GNase) and glutamine aminotransferase (GAt)) in liver and plasma were also studied. Bacterial glutaminase was shown to be effective in lowering the tumor burden with increased life span of the host. Glutamine amidohydrolase activity in the liver and plasma was raised significantly with increased tumor burden, whereas GAt activity remained unchanged. Following glutaminase therapy, this high level of GNase activity decreased in comparison to the untreated control. These changes were not seen when normal mice were treated with the same enzyme. Thus alteration in the enzyme levels, particularly GNase was observed to have some correlation with progression of the tumor growth.

Animals

Frequency of antigen-specific B cells during experimental ocular Chlamydia trachomatis infection.

Chlamydia-specific antibody-secreting cells have been identified in conjunctiva and draining cervical lymph nodes by an ELISPOT assay in a cynomolgus monkey model of trachoma. These local sites contained numbers of chlamydia-specific B cells that were higher than those in distant inguinal lymph nodes and peripheral blood. The numbers of chlamydia-specific immunoglobulin G-secreting B cells observed were 5 to 57 per 10(6) cells in conjunctiva and 24 to 996 per 10(6) cells in cervical lymph nodes during conjunctival infection or after challenge of immune monkeys with the chlamydial 57-kDa heat shock protein (hsp60). These studies demonstrate a large chlamydia-specific B-cell component in the conjunctiva during ocular chlamydial infection. These results are similar to our findings for chlamydia-specific T-cell responses.

Animals

Characterization of the humoral response induced by a peptide corresponding to variable domain IV of the major outer membrane protein of Chlamydia trachomatis serovar E.

A 30-amino-acid peptide corresponding to variable domain IV (VD IV) of the major outer membrane protein of Chlamydia trachomatis serovar E was conjugated to keyhole limpet hemocyanin (KLH) and used to immunize mice. The resulting antisera (anti-KLH-VD IV sera) recognized all 15 serovars of C. trachomatis when assayed by indirect immunofluorescence and Western blotting. Probing of overlapping hexameric peptides representing VD IV with mouse anti-KLH-VD IV sera revealed that two main regions of the peptide were recognized by the antisera, the N terminus of the peptide, which contains B-complex-specific epitopes, and the middle region of the peptide, which contains a species-conserved domain. When used in an in vitro neutralization assay, these antisera were able to neutralize mainly serovars in the B complex. These data provide evidence that a linear peptide corresponding to VD IV can induce in vitro protection from C. trachomatis infectivity that is subspecies specific.

Animals

UDP-galactose:globotriaosylceramide alpha-galactosyltransferase activity in rat pheochromocytoma (PC12h) cells.

The activity of alpha-galactosyltransferase in cultured rat pheochromocytoma subcloned (PC12h) cells was examined using Gb3 as the acceptor for the galactose from UDP-galactose. The major reaction product was identified as gal alpha 1-3Gb3 based on its mobility on thin-layer chromatographic (TLC) plates and susceptibility to specific galactosidases. The enzyme activity in PC12h cells was the highest at pH 7.0 while the presence of Triton CF-54 (0.1%) and Mn2+ (5 mM) was required for its full activity. The apparent Km values for Gb3 and UDP-galactose were 57 and 17 microM, respectively. The enzyme activity in PC12h cells was compared with that in parent PC12 cells, in which gal alpha 1-3Gb3 is not expressed in an appreciable amount. In the enzyme reaction with exogenous Gb3, the enzyme activity in PC12h cells was about 1.5-fold higher than that in PC12 cells. In the absence of exogenous Gb3, this difference became even more pronounced; gal alpha 1-3Gb3 was generated from endogenous Gb3 at a much higher rate in PC12h cells than in PC12 cells. These findings suggest that the higher level of the alpha-galactosyltransferase activity in PC12h cells may, at least in part, be responsible for the accumulation of unique neutral glycosphingolipids having gal alpha 1-3 terminal residues in the cells.

Adrenal Gland Neoplasms

Sequence of the gene encoding the major outer membrane protein of the mouse pneumonitis biovar of Chlamydia trachomatis.

The gene encoding the major outer membrane protein of the Chlamydia trachomatis mouse pneumonitis biovar was sequenced and the amino acid sequence deduced. The primary structure of this protein is similar to that of the lymphogranuloma venereum and trachoma biovars in that it consists of four variable domains interspersed with five constant domains. This protein may be an ideal candidate for a vaccine in chlamydia-infected mouse experimental models.

Amino Acid Sequence

Investigation on phosphate dependent glutaminase (EC 3.5.1.2) activity in host tissues of EAC-bearing mice and response of liver EC 3.5.1.2 on Cu-ATP therapy.

Phosphate-dependent glutaminase activity in spleen, kidney, brain and liver is increased after tumor cell inoculation and this activity gradually increases with the progression of the tumor. The increase in enzyme activity in the liver is significant. Studies of the response of liver glutaminase after Cu-ATP treatment reveals that Cu-ATP is capable of reducing the high glutaminase level in subjects with malignant tumors to the normal level.

Adenosine Triphosphate

Proteoglycans of bovine articular cartilage. The effects of divalent cations on the biochemical properties of link protein.

In cartilage proteoglycan aggregates, link protein stabilizes the binding of proteoglycan monomers to hyaluronate by binding simultaneously to hyaluronate and to the G1 globular domain of proteoglycan monomer core protein. Studies reported here involving metal chelate affinity chromatography demonstrate that link protein is a metalloprotein that binds Zn2+, Ni2+, and Co2+. Zn2+ and Ni2+ decrease the solubility of link protein and result in its precipitation. However, link protein is readily soluble and functional in low ionic strength solvents from which divalent cations have been removed with Chelex 100. These observations make it possible to study the biochemical properties of link protein in low ionic strength, physiologic solvents. Studies were carried out to define the oligomeric state of link protein alone in physiologic solvents, and the transformation in oligomeric state that occurs when link protein binds hyaluronate. Sedimentation equilibrium studies demonstrate that in 0.15 M NaCl, 5 mM EDTA, 50 mM Tris, pH 7, link protein exists as a monomer-hexamer equilibrium controlled by a formation constant of 2 x 10(27) M-5, yielding a delta G' of -36 kcal/mol for the formation of the hexamer from six monomers. On binding hyaluronate oligosaccharides (HA10 or HA12), link protein dissociates to dimer. Link protein hexamer is rendered insoluble by Zn2+. Greater than 90% of the protein is precipitated by 2 mol of Zn2+/mol of link protein monomer. The binding of hyaluronate oligosaccharide by link protein strongly inhibits the precipitation of link protein by Zn2+. The link protein/hyaluronate oligosaccharide complex is completely soluble in the presence of 2 mol of Zn2+/mol of link protein. At higher molar ratios of Zn2+/link protein, the inhibitory effect of hyaluronate oligosaccharide on the precipitation of link protein is gradually overcome. Hyaluronate oligosaccharide is not dissociated from link protein by Zn2+. Hyaluronate remains bound to the link protein which is precipitated by Zn2+, or to the link protein which binds to Zn2(+)-charged iminodiacetate-Sepharose columns. Hyaluronate oligosaccharides and Zn2+ bind to different sites on link protein.

Animals

Effects of different types of polyunsaturated fatty acids on cholesterol esterification in human fibroblasts.

We have enriched human fibroblasts with oleic acid, with linoleic acid and with eicosapentaenoic acid. The accumulation of cholesteryl esters in the cells and the rate of esterification of cholesterol by microsomal acyl-CoA:cholesterol acyltransferase (ACAT) were measured in these cells. Cholesteryl ester levels were lower in cells enriched with eicosapentaenoic acid compared with cells enriched with oleate or linoleate. We also observed significantly lower ACAT activities in the microsomes from fibroblasts enriched with the n-3 polyunsaturated fatty acids relative to cells enriched with oleic acid or linoleic acid. We suggest that the presence of n-3 polyunsaturated fatty acids might suppress cholesteryl ester accumulation and inhibit atherogenesis.

Cells, Cultured

Study of serum myoglobin and serum electrolytes in acute uncomplicated myocardial infarction.

Forty patients with uncomplicated acute myocardial infarction were studied within 6-18 hours after the infarction. Serum myoglobin was elevated in all the cases and was markedly high in cases studied 18 hours after the acute infarction, though the level did not show any relation with the severity of the attack. Myoglobin level showed no correlation with SGOT level, which did not rise appreciably within 6 hours. Serum sodium and potassium levels did not show any change, even in the most severe cases. Serum myoglobin estimation is thus a good diagnostic test in the early hours of acute myocardial infarction.

Electrolytes

N-3 polyunsaturated fatty acids enhance cholesterol efflux from human fibroblasts in culture.

Normal human skin fibroblasts were incubated in medium supplemented with 60 micrograms/ml linoleic acid (18:2n6) or eicosapentaenoic acid (20:5n3). After five days, cells lipids were enriched with linoleic acid or with docosapentaenoic acid (22:5n3). The HDL-mediated efflux of cholesterol from cells enriched with n-3 polyunsaturated fatty acids (PUFAs) was twice as fast as the rate of efflux of cholesterol from cells enriched with n-6 PUFAs. This suggests that the fatty acid composition of cellular lipids affects cholesterol efflux. The faster efflux when cells contain n-3 PUFAs may account for part of the reduction in risk of coronary disease with increases in dietary n-3 PUFAs (fish oils).

Cells, Cultured

Prediction of temperature profiles in the human skin and subcutaneous tissues.

Exact mathematical solutions in terms of confluent hypergeometric and Airy's functions are obtained to study the steady state temperature distributions in human skin and subcutaneous tissues (SST). It is assumed that the skin is exposed to an air environment and heat transfer from the skin occurs by convection, radiation and evaporation. A mathematical model of the SST, accounting for heat conduction, perfusion of the capillary beds and metabolic heat productions of the dermis and subcutaneous tissues, has been solved to obtain interface temperatures for a wide range of environmental temperatures, rates of evaporation of sweat, wind speeds and relative humidities. The solutions provide inter-relationships between interface temperatures, thermal conductivities, metabolic heat production, blood perfusion, thicknesses of various layers of SST and ambient temperature.

Body Temperature

Chlamydial heat shock proteins and trachoma.

Two chlamydial proteins (HSP-60 and HSP-70) have marked homology with bacterial and mammalian heat shock proteins. Previous studies have indicated that when inoculated into the eyes of immune animals, a Triton X-100 extract of chlamydia containing HSP-60 induces an ocular delayed-type hypersensitivity reaction. The potential for HSP-70 to induce a similar reaction was tested in six cynomolgus monkeys that had been sensitized to both antigens by previous ocular chlamydial infection. Whereas the chlamydial extract containing HSP-60 induced a marked clinical response within 24 h of inoculation, no response followed inoculation of HSP-70 in the contralateral eye. The lack of a response to HSP-70 suggests that further assessment of its potential as a trachoma vaccine is warranted.

Animals

Immunologic and survival studies in mice immunised with cryodestroyed ascites fibrosarcoma (AFS) cells.

Adult mice weighing 20 g, divided into 5 groups, were immunised with single and three cycle cryodestroyed ascites fibrosarcoma cells using different modes of immunisation with respect to dose and administration frequency. Survival against subsequent challenge with the same tumour cells and immune response given by leucocyte migration inhibition, were studied in these animals. It appears from the present study that animals with relatively low antigenic load have a significantly (P less than 0.001) high mean survival time and/or survival index compared with controls than those with relatively high antigenic load. Survival in animals immunised with three cycle cryodestroyed tumour cells is significantly (P less than 0.001) higher than that with single cycle even in face of a greater challenging tumour dose with mode of immunisation remaining the same. Preliminary observations on percentage leucocyte migration inhibition showed that there exists no difference in percentage inhibition with either viable or cryodestroyed tumour cell antigens added to migration chamber excepting in animals immunized with three cycle cryodestroyed tumour cells where percentage inhibition was significantly (P less than 0.001) greater with viable than with cryodestroyed tumour cell antigen without altering the percentage inhibition between the two groups. Factors maximising immune response and their modulating effects are discussed.

Animals

Characterization of the dermatan sulfate proteoglycans, DS-PGI and DS-PGII, from bovine articular cartilage and skin isolated by octyl-sepharose chromatography.

Two forms of dermatan sulfate proteoglycans, called DS-PGI and DS-PGII, have been isolated from both bovine fetal skin and calf articular cartilage and characterized. The proteoglycans were isolated using either (a) molecular sieve chromatography under conditions where DS-PGI selectively self-associates or (b) chromatography on octyl-Sepharose, which separates DS-PGI from DS-PGII based on differences in the hydrophobic properties of their core proteins. The NH2-terminal amino acid sequence of DS-PGI from skin and cartilage is identical. The NH2-terminal amino acid sequence of DS-PGII from skin and cartilage is identical. However, the amino acid sequence data and tryptic peptide maps demonstrate that the core proteins of DS-PGI and DS-PGII differ in primary structure. In DS-PGI from bovine fetal skin, 81-84% of the glycosaminoglycan was composed of IdoA-GalNAc(SO4) disaccharide repeating units. In DS-PGI from calf articular cartilage, only 25-29% of the glycosaminoglycan was composed of IdoA-GalNAc(SO4). In DS-PGII from bovine fetal skin, 85-93% of the glycosaminoglycan was IdoA-GalNAc(SO4), whereas in DS-PGII from calf articular cartilage, only 40-44% of the glycosaminoglycan was IdoA-GalNAc(SO4). Thus, analogous proteoglycans from two different tissues, such as DS-PGI from skin and cartilage, possess a core protein with the same primary structure, yet contain glycosaminoglycan chains which differ greatly in iduronic acid content. These differences in the composition of the glycosaminoglycan chains must be determined by tissue-specific mechanisms which regulate the degree of epimerization of GlcA-GalNAc(SO4) into IdoA-GalNAc(SO4) and not by the primary structure of the core protein.

Amino Acid Sequence

Mortality pattern in babies delivered by cesarean section and vaginal delivery.

A total of 7077 cases of delivery were studied in a rural based hospital where most of the mothers come without any antenatal care, from November, 1979 to December, 1980 to observe the mortality pattern in different types of delivery. Only live born babies were included in the study in which the mortality rate in elective cesarean section was found to be nearly equal to that in vaginal delivery. The percentage of mortality was higher (5.4%) in emergency cesarean section-the chief causes being asphyxia neonatorum, low gestational age and low birth weight.

Cesarean Section

Proteoglycans of bovine articular cartilage. Studies of the direct interaction of link protein with hyaluronate in the absence of proteoglycan monomer.

When link protein binds to hyaluronate in the absence of proteoglycan monomer a high molecular weight complex is formed. Two assay procedures have been developed to examine the formation of the complex and the rate and stoichiometry of binding of link protein to hyaluronate in the complex. In the first, the complex is isolated by differential centrifugation, and the stoichiometry of binding of link protein to hyaluronate in the sedimented complex is determined. In the second assay, which involves turbidimetry, the rate of complex formation (delta A420/min) is determined, and the amount of complex formed is determined in terms of the maximum turbidity (A420,max) attained. The effects of temperature, pH, initial total solute concentration, and the ratio by weight of link protein to hyaluronate on the amount of complex formed and on the rate of complex formation were examined. There is a linear correlation between the amount of complex formed as determined by turbidity and by differential centrifugation. Using these assays, we examined the specificity of the binding of link protein to hyaluronate and the capacity of hyaluronate oligosaccharides to competitively inhibit the binding of link protein to hyaluronate. Hyaluronate decasaccharide is the oligosaccharide of minimum size that strongly inhibits the binding of link protein to hyaluronate. Proteoglycan monomers dissociate from hyaluronate as the pH is decreased from pH 7 to pH 5. Turbidimetric studies show that the rate of binding of link protein to hyaluronate increases with decreasing pH. The binding affinity of proteoglycan monomers for hyaluronate is decreased at pH 5, whereas the binding affinity of link protein for hyaluronate is not. This difference in the effect of pH on the stability of binding of link protein to hyaluronate, compared with proteoglycan monomer, explains in part the capacity of link protein to stabilize the binding of proteoglycan monomer to hyaluronate at pH 5.

Animals