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Biomedical subjects

J S Chahl

Publications and source records attributed to J S Chahl.

13 recordsLinked to original sources

Plasma extravasation induced by dynorphin-(1-13) in rat skin.

The plasma extravasation response to dynorphin-(1-13) was investigated using the Evans blue dye leakage technique. Dynorphin induced plasma extravasation in rat and guinea-pig abdominal skin with a similar potency to substance P. In rat skin dynorphin, unlike substance P, produced its action entirely by release of histamine and 5-hydroxytryptamine since the response was abolished by pretreatment of rats with mepyramine and methysergide. Pretreatment of rats with capsaicin or the tachykinin antagonist, spantide, reduced but did not abolish the response to dynorphin, indicating that its action was not mediated primarily by a neurogenic mechanism. Since the response was not significantly reduced by naloxone it was concluded that the plasma extravasation response to dynorphin was mediated by receptors other than mu opiate receptors. Thus dynorphin, if released from sensory nerves, might play a role in neurogenic inflammation.

Analgesics

The role of prostaglandins in chemically induced inflammation.

Dye leakage in rats, produced by intracutaneous injections of irritants into the abdominal skin, was quantitated using the Evans blue technique of Harada et al. (1971). In control rats and in rats pretreated with indomethacin (an inhibitor of prostaglandin synthesis) concentration-response lines were obtained for 5-hydroxytryptamine, histamine, bradykinin and prostaglandin E1, bradykinin in the presence of prostaglandin E1 (10-6 M), adenosine-5'-triphosphate, compound 48/80, capsaicin and silver nitrate. In rats pretreated with indomethacin the dye leakage responses to histamine, prostaglandin E1, adenosine-5'-triphosphate and silver nitrate were significantly reduced, but no significant changes were observed in the responses to the other irritants. It is suggested that part of the action of histamine, adenosine-5'-triphosphate and prostagland in E1 is produced indirectly by releaseor stimulation of the synthesis of prostaglandins or their precursors. These results might have important implications in the understanding of the inflammatory response.

Adenosine Triphosphate

Environmental temperature and choline requirement in rats. I. Choline deficiency in rats at various temperatures.

Rats were maintained at 2 degrees, 21 degrees, and 33 degrees for 3 weeks on a choline-supplemented or a choline-deficient diet. In contrast to the findings of some other workers, choline deficiency produced fatty livers at all temperatures. The ratio of the total liver lipid to the total food intake was the same in all choline-supplemented rats. In choline-deficient rats this ratio was always higher and varied directly with temperature.

Animals

Environmental temperature and choline requirements in rats. II. Choline and methionine requirements for lipotropic activity.

Young rats were fed choline-deficient diets and maintained at different environmental temperatures. The hepatic lipid level remained normal in rats at 2 degrees when 25 mg of choline per 100 g of food was fed; 50 mg of choline per 100 g food was required at 21 degrees and 100 mg of choline per 100 g food at 33 degrees to prevent excessive lipid accumulation. These values were equivalent to a mean daily intake per rat of 3 mg of choline at 2 degrees, 5.5 mg at 21 degrees, and 7 mg at 33 degrees respectively. When the growth rate was slower owing to a slight inadequacy of histidine in the basal choline-deficient diet, normal hepatic lipid was maintained by supplements of 50 mg of choline per 100 g food at 21 degrees and 33 degrees. Increasing the methionine content of the diet two- or three-fold from a basal value of 340 mg per 100 g food was as effective as 200 mg of choline per 100 g of food in lowering hepatic lipids at 2 degrees, 21 degrees, and 33 degrees.

Animals