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Biomedical subjects

R Kaul

Publications and source records attributed to R Kaul.

At least 163 records · Page 9Linked to original sources

Cell-mediated immunity to cytomegalovirus in immunocompromised patients: effect of radiation or chemotherapy.

Using the techniques of complement fixation, immunofluorescence, and in vitro lymphocyte transformation (LTF), we studied the humoral antibody and cell-mediated immunity to cytomegalovirus (CMV) in normal subjects, in patients with cancer receiving localized or nonlocalized radiation, and in renal transplant recipients on immunosuppressive chemotherapy. The LTF activity was determined by the whole blood microassay, using four strains of CMV (AD-169, Davis, Veca, and Towne), AD-169 early antigen, and phytohemagglutinin (PAH). The renal transplant subjects manifested significantly depressed LTF responses to PHA and CMV and frequent presence of immunoglobulin M and early antigen-specific antibody response. The depressed LTF response to CMV recovered significantly 2 years after transplantation. The cancer patients were also characterized by a profound drop in LTF responses to PHA and CMV and in immunoglobulin M and early antigen-specific antibody response after nonlocalized radiation. LTF responses to AD-169 and Towne strains were found to be higher than those to Davis and Veca strains. The LTF response to PHA declined with age. However, LTF responses to specific CMV antigens were found to be somewhat increased with advancing age. These observations suggest that transplantation-associated suppression of CMV-specific cell-mediated immunity may improve a few years after transplantation despite continued immunosuppressive therapy.

Adolescent↗

Dehydration elevates osmotic threshold for salt gland secretion in the duck.

Acute salt and water balance measurements were made in two conscious salt water-acclimated Pekin ducks at and above their osmotic threshold for salt gland secretion. Intravneous infusion of 1,000 mosmol/kg H2O NaCl at 0.350 ml/min increased plasma tonicity less than 0.5% and increased secretion from nearly zero to a rate matching the infusion. Continuous secretion at a similar submaximal rate was driven by 5,600 mosmol/kg H2O NaCl infused at 0.070 ml/min. Osmolality of secreted fluid was constant for any secretion rate, so that net water loss occurred when the concentration of infusate exceeded that of secreted fluid. Threshold plasma osmolality increased by 9 mosmol/kg H2O after the loss of 77 g water (3% body wt). Solutes were always secreted at the infusion rate, even when body fluid osmolality increased while body water decreased. We conclude that the salt gland controller is sensitive to more than just extracellular fluid (ECF) tonicity, and we suggest that elevation of the osmotic threshold may occur in response to decreased ECF volume.

Animals↗

Fate of [14C]aldrin in crop rotation under outdoor conditions.

[14C]Aldrin was applied to soils (about 3kg/ha) in outdoor boxes at various locations (Germany, England, and United States), and crops were cultivated (maize, wheat, sugar beets, and potatoes). In the following year, crop rotation experiments were carried out in the same soils without retreatment; in addition, wheat was grown in soils retreated with [14C]aldrin (3.5 kg/ha). After the harvest of both years, the distribution of aldrin and major metabolites (dieldrin; photodieldrin; hydrophilic metabolites including dihydrochlordene dicarboxylic acid; an unidentified nonpolar compound X; and unextractable metabolites) was determined in plants, soils, and leaching water. Two further conversion products, photoaldrin and aldrin-trans-diol, occurred in trace amounts only in a few samples. Metabolic pathways for aldrin under outdoor conditions are presented. The distribution of radioactive residues in soils and plants as well as their quantitative chemical composition are discussed, and comparisons are made between the different experimental sites, the crops, the first and second year, and retreated and nonretreated samples. The quantitative results are compared to those of field trials.

Agriculture↗

Effects of altering spinal cord temperature on temperature regulation in the Adelie Penguin, Pygoscelis Adeliae.

In 6 Adelie penguins, thermodes were implanted in the cervical and upper thoracic spinal canal. At thermoneutral (+8 to +16 degrees C) and cold (-18 to -22 degrees C) ambient conditions, the effects of spinal canal heating and cooling on the surface temperature of one flipper (skin blood flow), oxygen consumption (metabolic heat production) and esophageal (core) temperature were observed in the conscious animals.- At thermoneutral ambient conditions, spinal cord cooling reduced and spinal heating increased skin blood flow. Only very strong spinal cooling induced small increases of oxygen consumption, while spinal heating had no effect at all. The relation between spinal canal temperature and metabolic heat production at thermoneutral ambient conditions could be described by a linear regression with a slope of -0.05 W. KG-1 . DEGREES C-1. -At cold ambient conditions, the skin vessels of the flippers were permanently constricted and an increase of metabolic heat production by 5-50% of the resting rate developed within 1-3 h of cold exposure. Spinal cord cooling augmented metabolic heat production. Spinal heating reduced heat production but did not release skin vasoconstriction even at high stimulus intensities. The relation between spinal canal temperature and metabolic heat production in the cold could be described by a linear regression with a slope of -0,52 W. kg-1 . degrees C-1. -It is concluded that temperature sensors with specific functions in temperature regulation are located in the spinal cord of the Adelie penguin. These sensors contribute to the central temperature signal input in the hypothermic and hyperthermic ranges of core temperature. The peripheral thermal conditions strongly influence the responsiveness of the various thermoregulatory effectors to the spinal thermal stimulus.

Animals↗

Effects of altering rostral brain stem temperature on temperature regulation in the Adelie penguin, Pygoscelis adeliae.

In 4 Adelie penguins, thermodes were implanted in the rostral brain stem. Two animals were additionally equipped with spinal canal thermodes. At thermoneutral (+8 to +16 degrees C) and cold (-18 to -22 degrees C) ambient conditions, the effects of hypothalamic heating and cooling on the surface temperature of one flipper (skin blood flow), oxygen consumption (metabolic heat production) and esophageal (core) temperature were observed in the conscious animals.- Heating the rostral brain stem induced heat defence responses: Heat production was reduced in the cold and skin vasodilatation was evoked at thermoneutral ambient conditions. As a rule, core temperature fell during rostral brain stem heating.- Cooling the rostral brain stem did not induce clear-cut cold defence responses. On the contrary, strong cooling at thermo-neutral ambient conditions induced vasodilation in the skin. In the cold, even slight degrees of rostral brain stem cooling decreased metabolic heat production. As a rule, core temperature fell when the rostral brain stem was cooled.- It is concluded from the results that thermosensitive structures in the stimulated section of the rostral brain stem of the Adelie penguin contribute to the central temperature signal input in the range of normal to elevated core temperatures. These hypothalamic warm signals appear to be at least as effective as spinal warm signals in controlling skin blood flow and metabolic heat production. The inhibition of ongoing thermoregulatory effector activity by rostral brain stem cooling suggests positive temperature coefficients of the integrative and/or efferent neurons in the hypothalamic temperature regulation center of the Adelie penguin.

Animals↗

[Kinetics of the anti-staphylococcal activity of bakuchiol in vitro (author's transl)].

The growth curve of Staphylococcus aureus in a liquid medium with and without bakuchiol, the main component of Psoralea corylifolia Linn., has been studied for in vitro evaluation of the antibacterial activity. The dynamics of the antibacterial action has also been studied by finding the generation time and number of generations of the microbial growth before stationary phase is reached. This study of the growth curve of the test bacteria gives in general an accurate method of evaluating the in vitro antibacterial activity of drugs with exact mathematical implications, besides serving also as a means for studying the kinetics as well as the mode of antibacterial action.

Anti-Bacterial Agents↗

[Identification of two S-containing metabolites of 1-allyl-3,5-diethyl-6-chlorouracil in rabbit urine (author's transl)].

The synthesis of 2-14C-1-allyl-3,5-diethyl-6-chlorouracil (2-14C-Aclu; Acluracil) is described. After application in rabbits, 2-14C-Aclu is biotransformed in one S-free major metabolite I and two S-containing minor metabolites II and III, which are more polar than Aclu. The metabolites have been isolated and purified by thick layer-, column- and gaschromatography. With the help of 1N-NMR- and mass spectroscopy, metabolite II could be identified as 1-allyl-3-ethyl-5-(2-hydroxy ethyl)-6-methylmercaptouracil and metabolite III as 1-allyl-3,5-diethyl-6-methylmercaptouracil. The introduction of methylmercapto group (-SCH3) in metabolites II and III represents a new biochemical pathway which to the best of our knowledge has not been reported in the literature up to now.

Animals↗

Affinity precipitation of proteins.

Affinity precipitation is being studied as a technique to be introduced at an early stage of downstream processing for the selective isolation of proteins. The technique utilizes a heterobifunctional ligand, which, in addition to having affinity for the target protein(s), possesses another function for controlling precipitation. The latter component is comprised of a polymer which can be made reversibly soluble and insoluble by altering a specific parameter such as pH or temperature. Different polymers of natural and synthetic origin have been used for this purpose. The soluble form of the ligand is used for the affinity binding step and precipitation is induced for obtaining separation of the affinity complex. Some of the polymers used in this laboratory include chitosan, alginate, Eudragit S-100 (copolymer of methacrylic acid and methyl methacrylate) and polyethyleneimine. Chitosan and alginate served as natural ligands for wheat germ agglutinin and pectinase, respectively. The aromatic dye Cibacron Blue 3GA coupled to Eudragit S 100 and polyethyleneimine way used for the affinity precipitation of some model enzymes such as lactate dehydrogenase and alcohol dehydrogenase. As prior removal of cell debris, etc., is essential for affinity precipitation, the possibility of integration of the technique with extraction in aqueous two-phase systems was also demonstrated.

Chemical Precipitation↗

Affinity thermoprecipitation of yeast alcohol dehydrogenase through metal ion-promoted binding with Eudragit-bound Cibacron blue 3GA.

Metal ion-promoted binding of Saccharomyces cerevisiae alcohol dehydrogenase to Cibacron Blue 3GA was used for its isolation by affinity precipitation with Eudragit-bound dye. The yeast cells were broken and the cell debris was separated by flocculation with poly(ethylene imine). The supernatant containing the enzyme activity was mixed with Eudragit--Cibacron Blue in the presence of zinc ions. The precipitation of the affinity complex was induced by the addition of 50 mM CaCl2 and a subsequent increase in temperature to 40 degrees C. The enzyme was desorbed by treating the precipitate with iminodiacetic acid solution. The procedure resulted in about 66% recovery of enzyme activity with more than 20-fold purification. Recycling of Eudragit--dye for enzyme purification was also shown to be possible.

Acrylic Resins↗