Information theory and resistance fluctuations in one-dimensional disordered conductors.
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Biomedical subjects
Publications and source records attributed to N Kumar.
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Five groups of subjects underwent EEG sleep recordings, arecoline rapid eye movement (REM) induction response testing, and Schedule for Affective Disorders and Schizophrenia (SADS) interview. Group I: 20 patients with primary major depressive disorder (MDD) (endogenous) without any coexisting anxiety disorder; Group II: 19 primary MDD (endogenous) patients with secondary panic, GAD, or phobic disorders; Group III: 18 patients with primary anxiety disorder without coexisting MDD; Group IV: 14 patients with primary anxiety plus secondary MDD; Group V: 26 normal controls. Modified Research Diagnostic Criteria (RDC) were used for diagnosis, based on the SADS interview. There was considerable overlap of SADS scaled scores between patient groups, which is consistent with a heterogeneous clinical presentation of depressive and anxiety states. REM latency was significantly shorter in patients with primary MDD (without anxiety) as compared with that in patients with primary anxiety (no MDD) and normals. Arecoline REM induction response time was significantly shorter in both primary affective groups (I and II) as compared with primary anxiety (no MDD) patients and normal controls. REM latency and arecoline REM induction time was not significantly different between the primary anxiety groups (III and IV) and normals. The study highlights the use of biological markers in differentiating between clinical syndromes confounded by mixed or overlapping phenomenology.
The role of microtubules and microfilaments in the transformation of spherical zygotes of Plasmodium gallinaceum (avian malaria parasite) into vermiform ookinetes has been studied by using specific drugs (taxol, colchicine, and cytochalasin-B). Both taxol and colchicine completely abolished the transformation of zygotes into ookinetes. The inhibitory effect was seen only if the drugs were added during the initial 6 hr of total time (20-24 hr) required for complete transformation; the addition of drugs after 6-8 hr of initiation of transformation had no effect. Electron microscopy revealed that microtubules were depolymerized by colchicine treatment, whereas in taxol-treated cells there was an extensive array of cytoplasmic and nuclear microtubules which appeared to be clumped in bundles. In contrast to the effects of taxol and colchicine, cytochalasin-B, which affects the microfilament system, had no effect on the transformation. Protein synthesis and expression of two ookinete-specific surface proteins were not affected in the drug-inhibited parasites. Zygotes treated with taxol for 4 hr at room temperature failed to develop into oocysts when they were subsequently fed to mosquitoes. These studies demonstrate a critical role for microtubules in the initial stages of transformation of zygotes into ookinetes.
A simple method was developed for the controlled cleavage of protein disulfide bonds and the simultaneous blockage of the free sulfhydryl groups in the absence of a denaturant. The disulfide bonds of bovine serum albumin were cleaved unsymmetrically at pH 7.0 using 0.1 M sulfite in 0.1 M phosphate buffer and the free sulfhydryl groups formed were sulfonated in an oxidation-reduction cycle using molecular oxygen and 400 microM cupric sulfate as a catalyst. The reaction was affected by cupric ion concentration, sulfite concentration, reaction pH and temperature. The standardized method was successfully used to cleave the disulfide bonds of other proteins pepsin, trypsin, and chymotrypsin. The method is reliable and can be used for achieving progressive cleavage of disulfide bonds in proteins without employing a denaturant.
The distribution of proteins of mosquito midgut forms of Plasmodium gallinaceum in the detergent-free (aqueous) and detergent-enriched phases was studied using a phase separation technique in Triton X-114. Of the three surface proteins on gametes and newly fertilized zygotes (240, 56, and 54 kDa) immunoprecipitated by transmission blocking monoclonal antibodies, 240 kDa protein was recovered in the aqueous phase, whereas 56 and 54 kDa proteins were found preferentially in the detergent phase. The hydrophobic properties of the 56 and 54 kDa proteins were also shown by their strong tendency to interact with the lipid bilayers and a hydrophobic matrix phenyl-Sepharose. Monoclonal antibody IID3B3 immunoprecipitated all the three proteins from the whole Triton extract but in the phase-separated extracts reacted only with the 240 kDa protein in the aqueous phase and not with the 56 and 54 kDa doublet in the detergent phase. In Western blot analysis also monoclonal antibody IID3B3 reacted only with the 240 kDa protein. The 240 kDa protein in the aqueous phase was retained by monoclonal antibody IID3B3 linked to Sepharose 4B beads and could be eluted either with 0.1 M acetic acid or 50 mM diethylamine. The 56 and 54 kDa doublet in the detergent phase could be bound to and eluted from Sepharose 4B beads-linked monoclonal antibody IID4 or rabbit anti-male P. gallinaceum gamete serum. Two stage-specific glycoproteins of 26 and 28 kDa on the surface of ookinetes of P. gallinaceum were also separated in the detergent phase following Triton X-114 extraction. Phase separation in Triton X-114 offers a simple approach to the separation of a select group of proteins from the bulk of the cellular proteins.
We have studied the synthesis and expression of surface proteins in zygotes of Plasmodium gallinaceum during their transformation to mature ookinetes. The cells were biosynthetically labelled in vitro using [35S]methionine and proteins were immunoprecipitated with rabbit anti-ookinete serum or monoclonal antibodies. Early zygotes (approx. 2 h post-gametogenesis and fertilization) synthesized and expressed on their surface a protein of Mr 26 000 as observed under reducing conditions on polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate (SDS-PAGE) (31 000 under non-reducing conditions) and continued to do so for 8-10 h; thereafter synthesis of the Mr 26 000 protein declined and little or none was synthesized in the mature ookinetes (greater than 20 h post-gametogenesis). Between 3-5 h post-gametogenesis, zygotes also began to synthesize a protein of Mr 28 000 (34 000 under non-reducing conditions). Synthesis and expression of this surface protein continued throughout development; and the Mr 28 000 protein was the predominant surface protein synthesized by the mature ookinete. Mr 26 000 and Mr 28 000 proteins have been designated earlier as PgO-1 and PgO-2 respectively (Carter and Kaushal, Mol. Biochem. Parasitol. (1984) 13, 235-241). Neither protein was synthesized in the gametocytes prior to gametogenesis. Both proteins could be labelled with [3H]glucosamine or [3H]mannose. When zygotes were incubated with [3H]palmitic acid both PgO-1 and PgO-2 bound fatty acids in covalent linkage. The two proteins do not otherwise appear to be structurally related. They were differentially immunoprecipitated by different monoclonal antibodies and gave rise to distinct patterns of peptides following digestion with proteases such as Staphylococcus aureus V-8, trypsin and chymotrypsin.
Emergency endoscopic sclerotherapy (EEST) during continued moderate to severe bleeding was carried out using a flexible endoscope and absolute alcohol as a sclerosant in 38 patients with variceal bleeding. Portal hypertension was due to cirrhosis in 27, noncirrhotic portal fibrosis in eight, extrahepatic obstruction in two, and Budd-Chiari Syndrome in one patient. A technically adequate EEST could be carried out in 36 (95%) patients, with successful control of variceal bleeding in 35 (92%). Thirty-one episodes of rebleeding occurred in 12 (31.6%) patients. Twenty-nine (93.5%) of these episodes could be controlled with repeated EEST, giving an overall success of 87%. The new approach of repeating sclerotherapy on every rebleeding episode up to a maximum of three course within 24 hours, use of a wide bore injector, and certain other technical innovations were found safe and effective. The mean (+/- SD) amount of alcohol injected per patient was 9.23 +/- 3.3 ml and the mean (+/- SD) number of injections needed per patient were 6.0 +/- 3.07. Complications were minor, transient, and similar to conventional sclerotherapy. There were three deaths, two due to massive rebleeding and one due to hepatic encephalopathy. It can be concluded that EEST is technically feasible during active variceal bleeding and is an effective and relatively safe procedure. It can serve as the first line treatment in this group of patients.
A retrospective review of 64 patients receiving more than 10 units of red cell concentrate plus crystalloid within 12 h revealed two consecutive patterns of elevation of the partial thromboplastin time (PTT). The PTT at 3 to 4 h (PTT3-4) correlated with the number of liters of crystalloid (LC) infused over the first 3 h (PTT3-4 = 37 + 7 LC, r = .7643, p less than .001); the PTT thereafter (PTT4+) correlated with the number of hours of closely antecedent hypotension (AH) (PTT4+ = 37 + 21AH, r = .8680, p less than .001). These data indicate a transient dilutional coagulopathy, followed by coagulopathy related to the duration of closely AH. Whether this latter is due to impaired production, disseminated intravascular coagulation, or dilution due to internal shifts of fluids and/or proteins, remains to be clarified. Therapeutic implications of these data are discussed.
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Above its critical micelle concentration, Triton X-114 in solution forms two phases at room temperature: a lower phase containing supramicellar aggregates and an upper phase largely depleted of detergent. This property of the detergent is potentially useful for separating under mild conditions proteins that bind detergent from those that do not (Bordier, C. (1981) J. Biol. Chem. 256, 1604-1607). We studied the distribution of the receptor for immunoglobulin E (IgE) and its subunits in the two phases. IgE and IgE complexed either with intact receptors or with the alpha chains of the receptor alone are principally partitioned into the upper phase, whereas the unliganded receptor as well as the isolated alpha, and especially the beta and gamma chains of the receptor, preferentially partition into the lower detergent phase. Chromatography of IgE and of the subunits of the receptor on a hydrophobic support showed that the beta and gamma chains have a considerably greater hydrophobic surface than the alpha chains or IgE. These results indicate that the distribution of a protein in the two phases of phase-separated Triton X-114 is not an all-or-none effect based upon whether it binds detergent or not. Rather, it reflects the overall balance between the hydrophobic and hydrophilic properties of the protein's surface.
Malaria transmission blocking immunity has been found to operate against two distinct phases of development of malaria parasites in the mosquito midgut: (i) against the extracellular gametes and newly fertilized zygotes shortly after ingestion by a mosquito of parasitized blood and (ii) against the zygotes during their subsequent development into ookinetes. Immunity is antibody-mediated and stage-specific. A set of three proteins, synthesized in the gametocytes, expressed on the surface of the gametes and newly fertilized zygotes and subsequently shed during later transformation of the zygotes, has been identified as the target antigens of anti-gamete fertilization blocking antibodies. A single protein, synthesized and expressed on the zygote surface during its development to ookinetes, has been identified as the target of antibodies which block the development of the fertilized parasites in the mosquito. Immunization of human populations against gamete or zygote antigens, while not directly protecting an immunized individual from inflection, would reduce the transfer of malaria within the population. Such immunity, in addition to reducing the overall rate of malaria transmission, would, if combined with a vaccine against the asexual (disease-causing) stages, reduce the chance of selection of parasites that are resistant to the asexual vaccine by preventing their entry into the mosquito population.
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We have studied the biosynthesis of three proteins of Mr 260 000, 59 000 and 53 000 previously identified on the surface of extracellular gametes of Plasmodium falciparum as the targets of monoclonal antibodies which block infectivity of P. falciparum to mosquitoes. In cultures of P. falciparum pulse labeled with [35S]methionine we have found that these proteins are synthesized by gametocytes from an early stage in their maturation but are not synthesized by asexual blood stage parasites. The target proteins synthesized by the gametocytes become expressed on the surface of the extracellular gametes but the gametes themselves no longer synthesize these proteins. The 59 000 and 53 000 Mr proteins do not result from processing from the 260 000 Mr protein. The 59 000 and 53 000 Mr protein, but not the 260 000 Mr proteins, were glycosylated by either glucosamine or mannose.