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Biomedical subjects

T Mukherjee

Publications and source records attributed to T Mukherjee.

At least 73 records · Page 4Linked to original sources

Elderly people with learning disabilities in hospital: a psychiatric study.

In a study of 124 hospital residents with a learning disability aged 60 years and over, DSM-III-R diagnostic criteria were used to determine the prevalence of dementia (12.9%), mood disorder (8.9%) and schizophrenia (6.5%). The figure for dementia confirms the prevalence given in previous studies, but the figures for mood disorder and schizophrenia are higher. It was found that mood disorder was commoner in the age group 60-69 years (P > 0.01) and dementia was commoner in the age group 70-79 years (P > 0.01). There were no significant differences in the prevalence of schizophrenia with age.

Aged↗

Identification of the microsporidian parasite, Enterocytozoon bieneusi in faecal samples and intestinal biopsies from an AIDS patient.

The microsporidian parasite, Enterocytozoon bieneusi, is currently recognized as a potentially important cause of chronic diarrhoea in patients infected with the human immunodeficiency virus (HIV). Faecal concentrates from a 38-year-old, HIV-seropositive patient examined by light and electron microscopy revealed the presence of numerous microsporidian spores. The structural characteristics of the spores were consistent with those previously described for Enterocytozoon bieneusi. Each spore contained a single nucleus, a posterior vacuole and a polar filament with 6-7 overlapping coils which appeared in cross-section as a series of 3 doublets. Mature spores were surrounded by an inner unit membrane, an electron-lucent endospore and a thin, electron-dense exospore. The identity of the parasite was confirmed by the detection of unique endogenous developmental stages in duodenal biopsies. Both proliferative and sporogonial plasmodia (meronts and sporonts) were observed and all stages were monokaryotic (single nucleus) and apansporoblastic (sporophorous vesicle absent). Proliferative and sporogonial plasmodia divided by plasmotomy and spore organelles (polar filament, attachment disc and polaroplast) were well developed prior to fission of the sporogonial plasmodium.

AIDS-Related Opportunistic Infections↗

Postimmunization (vaccination) injection-site reactions. A report of four cases and review of the literature.

Four patients each had a single subcutaneous nodule at the site of a previous vaccine injection; three after injection of diphtheria, tetanus, and pertussis vaccination and one after tetanus toxoid vaccination. Presentation was with a mass 4-22 months after vaccination at the site of injection. Histologically, three patients had a necrotizing granulomatous reaction with a surrounding infiltrate of lymphocytes, plasma cells, histiocytes, and associated fibrosis. The fourth patient demonstrated a lymphohistiocytic reaction with a predominance of histiocytic cells as well as associated plasma cells, fibroblasts, and fibrosis. The lymphoid infiltration in these reactions showed a predominance of T-lymphocytes over B-lymphocytes. Aluminum was demonstrated in necrotic foci, inflammatory stroma, and the granular cytoplasm of histiocytes with the aid of solochrome azurine and solochrome cyanine stains as well as by energy-dispersive x-ray microanalysis. The reactions are thought to be immunologic (hypersensitivity) reactions associated with the aluminum contents of the preparation.

Adolescent↗

Allosteric modulation of Leishmania donovani plasma membrane Ca(2+)-ATPase by endogenous calmodulin.

The plasma membrane of the human pathogen Leishmania donovani possesses a high-affinity transmembrane Ca(2+)-ATPase that has its catalytic site oriented toward the cytoplasmic milieu (Ghosh, J., Ray, M., Sarkar, S., and Bhaduri, A. (1990) J. Biol. Chem. 265, 11345-11351). When the enzyme is studied in its more authentic, physiologically relevant, membrane-associated form, it exhibits pronounced sigmoidal kinetics with Ca2+ (K0.5 approximately 700 nM) in a trans-1,2-diaminocyclohexane-N,N,N',N'-tetraacetic acid buffering system that effectively complexes all available Mg2+. Addition of exogenous Mg2+ (60 microM) completely abolishes sigmoidicity and establishes strictly hyperbolic kinetics, and the Km for Ca2+ reduces to 100 nM. Mg2+ can be replaced by heterologous calmodulin. The exclusive dependence of the enzyme on only Ca2+ for its activity and its positive allosteric modulation by Mg2+ distinguish this enzyme from other well-characterized plasma membrane Ca(2+)-ATPases. Employing this Ca(2+)-ATPase as the assay system, a soluble endogenous activating protein factor was purified that, by several criteria, corresponds to authentic calmodulin. The parasite calmodulin shifts the kinetics to hyperbolic kinetics, increases the Vmax 2-fold, and most important lowers the Km (approximately 100 nM) to a physiological level. The interaction with endogenous calmodulin thus converts the enzyme from a totally inactive to a fully active state.

Adenosine Triphosphate↗

Antileishmanial activity of hamycin: a polyene antibiotic.

Hamycin, a polyene antibiotic, now in extensive use in the treatment of candidiasis and otomycosis, is found to be remarkably effective in killing Leishmania donovani promastigotes in a liquid medium at a concentration of 0.2 microgram/ml. The glucose stimulated respiration and the uptake of 2-deoxy-D[U-14C]-glucose was inhibited in cells treated with the drug at a growth inhibitory concentration. An immediate release of isotopic glucose from preloaded cells could be demonstrated after exposure to hamycin. All the above effects could be effectively prevented in the presence of ergosterol. The primary site of action of hamycin on L. donovani promastigote cells appears to be membrane sterols that result in the loss of the permeability barrier to small metabolites. The lower minimum inhibitory concentration of hamycin compared to other established drugs warrants further study in the context of increasing reports of clinical resistance to pentavalent antimonials.

Amphotericin B↗

Acivicin: a highly active potential chemotherapeutic agent against visceral leishmaniasis.

Acivicin, a chlorinated amino acid antibiotic, is found to be remarkably effective in killing both the vector and the host form of the parasitic protozoa, Leishmania donovani, the causative agent for visceral leishmaniasis or Kala-azar. The ED50 (50 nM) for the pathogenic amastigote form in in vitro screening system is significantly lower than the reported values for other drugs under trial. The drug irreversibly inactivates both in vitro and in vivo carbamyl phosphate synthetase II, the first enzyme of the pyrimidine biosynthetic pathway. The irreversible inactivation of this sensitive target enzyme and lack of effective reversal by glutamine makes acivicin a preferred candidate for potential chemotherapy against increasing number of Kala-azar cases that are reported to be unresponsive to pentavalent antimonials.

Animals↗

One-electron reduction of adriamycin and daunomycin: short-term stability of the semiquinones.

Pulse radiolysis studies of the one-electron reduction of adriamycin have now been extended to daunomycin. The daunomycin semiquinone has a pKa for phenolic dissociation of 2.8 +/- 0.1. Measurement of the one-electron reduction potential using several redox references at pH values within the range pH 6 to 12 indicated no significant difference between the semiquinones of adriamycin and those of daunomycin. A value of E1(7) = -341 +/- 15 mV (vs NHE) fitted the complete set of data for both compounds, with a pKa of the NH+3 group of the sugar moiety of 9.2 +/- 0.1. Measurement of equilibria between the semiquinones and the parent quinones and their fully reduced products showed a maximum semiquinone stability around pH 9. At pH 7 the stability constant is 0.04 for both adriamycin and daunomycin. From the equilibrium and E1 data, the second one-electron and the two-electron reduction potentials have been calculated over the pH range 7 to 12. E2(7) is -260 +/- 15 mV and Em7 is -300 +/- 15 mV for both compounds. The pKa values for the reduced anthracyclines have been calculated from the equilibrium data in the approximate pH range 7-12 to be 8.1 +/- 0.1 and 9.0 +/- 0.2 for the first two hydroxy groups and the two possible combinations for the ionization of the sugar NH+3 groups, with the remaining two hydroxy groups ionizing above pH 14.

Daunorubicin↗

Aspartate transcarbamylase from Leishmania donovani. A discrete, nonregulatory enzyme as a potential chemotherapeutic site.

Leishmania donovani is a protozoal pathogen that belongs to the kinetoplastida order. Unlike in other eucaryotic systems, the first three enzymes of the de novo pyrimidine biosynthetic pathway are not components of a multifunctional protein system. The three enzyme activities in the crude extract were separated on a Sephacryl S-200 column. Aspartate carbamoyltransferase (EC 2.1.3.2) has been purified to apparent homogeneity. The enzyme has an approximate molecular weight of 135,000 and seems to be a tetramer of equivalent subunits of molecular weight 35,000. The enzyme shows strictly hyperbolic kinetics with both the substrates under a variety of conditions and is not inhibited by nucleotide phosphates. Km for carbamyl phosphate is 3.1 x 10(-4) M and for aspartate is 7.6 x 10(-3) M. Apparently, the enzyme has no regulatory role in pyrimidine biosynthesis. N-(Phosphonoacetyl)-L-aspartic acid is a powerful competitive inhibitor (Ki = 5 x 10(-7) M) for this enzyme with carbamyl phosphate as substrate. This inhibitor completely inhibits the growth of the vector form of organism at 60 microM and significantly affects the growth of the pathogenic form in a macrophage assay system. The potency of the inhibitor is comparable with allopurinol which is undergoing human clinical trial as an antileishmanial drug.

Animals↗

Mechanism of action of amphotericin B on Leishmania donovani promastigotes.

The growth of Leishmania donovani promastigotes in a liquid medium was completely inhibited by amphotericin B at a concentration of 0.3 microgram ml-1 (0.3 microM). Continuous release of small molecules that absorb at 260 nm and 280 nm was observed after contact with the drug. Uptake of [U-14C]glucose was inhibited in cells treated with the drug. An immediate release of isotopic glucose and its metabolites from preloaded cells could be demonstrated after incubation with amphotericin B (0.4 microM). Inhibition of respiration by the drug was a comparatively slower process. All the above effects could be effectively prevented in the presence of either cholesterol or ergosterol. The primary site of action of amphotericin B on L. donovani promastigote cells appears to be membrane sterols that result in a loss of the permeability barrier to small metabolites. An interesting biochemical similarity, thus, emerges between flagellated protozoa and fungi.

Amphotericin B↗

Possible intermediates in the action of adriamycin--a pulse radiolysis study.

Over a wide range of pH, the semiquinone free radicals formed by reduction of adriamycin exist as a form which is strongly stabilised by internal hydrogen bonding and resonance. They protonate with pKa = 2.9. Below this pH they exhibit absorption maxima at 430 nm (Emax = 13,200 dm3 mol-1 cm-1) and approximately 720 nm (Emax = 4,200 dm3 mol-1 cm-1). Above pH 2.9 they have maxima at 480 nm (Emax = 14,600 dm3 mol-1 cm-1) and approximately 700 nm (Emax = 3,400 dm3 mol-1 cm-1). In acid and alkaline solution the radicals rapidly disappear by disproportionation, but within the approximate pH range 6 to 11 they appear to be relatively stable for at least 10-20 ms, existing in transient equilibrium with parent adriamycin and the full reduced form. Some rate constants for the formation and reactions of the semiquinone are given, including the reaction with oxygen to give O2.-. Fully reduced adriamycin has absorption maxima at 410 nm (Emax = 11,000 dm3 mol-1 cm-1) at pH 5 and 430 nm (Emax = 19,000 dm3 mol-1 cm-1) at pH 11. It undergoes decomposition within a few hundred ms. The intermediates from daunomycin would be expected to have properties similar to those from adriamycin.

Benzoquinones↗

Free radical formation from anthracycline antitumour agents and model systems--I. Model naphthoquinones and anthraquinones.

Several naphthoquinones and anthraquinones were chosen as simple models of the anthracycline drugs and their semiquinone radical anions were generated by various methods. With the exception of 1,4-naphthoquinone, all of the quinones studied gave radicals that were highly reactive with oxygen, but which, in its absence, were stable over a limited pH range. The radicals were studied using electron spin resonance (ESR) spectroscopy and an examination was made of the effect on the distribution of the unpaired electron, of introducing various groups into the conjugated ring system. Hydroxyl groups capable of participating in strong intramolecular hydrogen bonding with neighbouring carbonyl groups had a marked influence on electron distribution and reduced the effects of intermolecular hydrogen bonding of the radicals with solvent molecules.

Anthraquinones↗

One-electron reduction of adriamycin: properties of the semiquinone.

Pulse radiolysis of aqueous solutions containing adriamycin and redox indicators of known one-electron reduction potential (E1) shows that its E1 at pH 7 is -328 mV (vs NHE). The variation E1 with pH in the range 6-12 shows that the net charge on the semiquinone at pH 7 is zero. As well as the pKa values of 2.9 and greater than or equal to 14 established independently, the semiquinone has a pKa close to 9.2. The new data enable the structure and likely reactivity of the semiquinone to be specified.

Benzoquinones↗

Absence of novel translation products in relation to induced activity of the 93D puff in Drosophila melanogaster.

Salivary glands of Drosophila larvae were treated in vitro with benzamide or with a homogenate of heat shocked glands to specifically induce high transcriptional activity of the 93D puff. The newly synthesized 14C-amino acids labelled polypeptides in the treated and sister control glands were analysed by polyacrylamide gel electrophoresis, followed by gel autoradiography. The protein synthesis patterns in the treated glands in either case remain the same as in control glands. No novel polypeptide was seen which could be correlated with the high induced transcriptional activity of the 93D puff. This suggests that the 93D transcript/s is/are probably not translated.

Animals↗

Specific activation of puff 93D of Drosophila melanogaster by benzamide and the effect of benzamide treatment on the heat shock induced puffing activity.

A 10 or 20 min in vitro treatment of salivary glands of late 3rd instar larvae of Drosophila melanogaster with 1 mg/ml benzamide (BM) at 24 degrees C results in the specific induction of the 93D puff and at the same time all other chromosomal RNA synthesis is severely repressed. Incorporation of 3H-uridine in the nucleolus is not affected. In glands heat shocked (37 degrees C) for 20 min in presence of BM, all the temperature shock (TS) puffs are induced but they incorporate 3H-uridine to a lesser extent than in glands heat shocked in absence of BM. The 93D puff, which is highly induced by either of the treatments alone, is relatively less active in glands exposed to TS and BM simultaneously. When a 10 min BM treatment (at 24 degrees C) incorporation on all TS puffs is relatively less and significantly, in both cases, the 87C puff is much less active active (more so in TS followed by BM treated glands) than the 87A puff. Also, in both these treatments, the 93D puff does not show ant additive effect on the BM and TS treatments. These observations are discussed in the light of possible role of the 93D puff in modulating the heat shock response.

Animals↗