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G P Dutta

Publications and source records attributed to G P Dutta.

At least 19 recordsLinked to original sources

Comparative evaluation of the colony-stimulating factors induction potential of Plasmodium cynomolgi-infected monkey erythrocytes and soluble antigens.

Plasmodium cynomolgi total antigens soluble in culture medium (P.c.SA), and noninfective P. cynomolgi-infected monkey erythrocytes (P.c.IE) were compared for their potential to induce colony-stimulating factors (CSFs). When injected intravenously in monkeys, both preparations induced an increase in the serum CSFs levels; P.c.IE appeared to be 1.6-fold more potent than the P.c.SA. In vitro P.c.IE induced 1.8-fold more CSF by monkey blood monocyte-derived macrophages than P.c. However, both in vivo and in vitro, the peak CSFs levels induced by P.c.SA were attained apparently 8 h earlier. CSF generated by P.c.SA and P.c.IE induced the formation of macrophage, granulocyte and granulocyte-macrophage colonies, in vitro; P.c.IE-generated CSF induced the formation of significantly (P < 0.01) higher numbers of granulocyte-macrophage colonies, indicating that the CSF induced by them stimulated different biological responses. The CSF induction appeared to be LPS-independent.

Animals

Aberrations in cerebral vascular functions due to Plasmodium yoelii nigeriensis infection in mice.

Plasmodium yoelii nigeriensis infection in mice caused an increase in uptake of 125I-labeled bovine serum albumin, 51Cr-labeled erythrocytes and Evans blue dye from peripheral circulation into the brain. Isolated cerebral microvessels which were characterized in terms of their morphology under scanning electron microscope and enhancement of the specific activities of biochemical markers, viz. alkaline phosphatase, gamma-glutamyl transpeptidase, and monoamine oxidase, showed significant decrease in these activities due to P. yoelii nigeriensis infection. On the other hand, relatively minor (statistically insignificant) changes occurred in the first two enzyme specific activities in the cerebral cortex and monoamine oxidase registered an increase in this tissue due to infection. Histological examination of the cerebral tissue of infected animals by light and electron microscopy showed broken blood vessel walls and leakage of erythrocytes into extravascular space, some of which contained intraerythrocytic malarial parasite in a state of cell division.

Alkaline Phosphatase

Status of oxidative stress and antioxidant defences during Plasmodium knowlesi infection and chloroquine treatment in Macaca mulatta.

Plasmodium knowlesi (a simian malarial parasite) infection resulted in elevation of hepatic oxidative stress in monkeys. Further, the antioxidant defence system of the host was also noticeably affected. The infected monkeys showed a marked increase in the levels of superoxide (O2-), lipid peroxidation (LPO), glutathione (GSH) and xanthine oxidase (XO), and decreased levels of superoxide dismutase (SOD) and catalase. Oral administration of chloroquine (20 mg kg body wt-1 for 3 days) to infected monkeys caused recovery trends in oxidative stress and antioxidant defences to almost normal a week after cessation of drug treatment.

Animals

Alterations in host regulatory glycolytic enzymes during pathogenesis of primate malaria and following chloroquine therapy.

Hexokinase, phosphofructokinase and pyruvate kinase, the regulatory enzymes of the glycolytic sequence, showed progressive increases in their activities with the rise of parasitaemia in Plasmodium knowlesi-infected rhesus monkey serum and red blood cells. Chloroquine therapy cleared the parasitaemia in 72 h and brought the elevated levels of these enzymes back to almost normal in about 30 days.

Animals

Studies on glycolytic enzymes of Plasmodium knowlesi, a simian malaria parasite, and infected host erythrocytes.

Almost all of the important enzymes of glycolytic sequence were studied in isolated schizonts of Plasmodium knowlesi as well as in normal and P. knowlesi parasitized rhesus red blood cells. Significant activities of all the glycolytic enzymes assayed were observed in cell-free schizonts and the levels of all were found to be considerably elevated in infected host erythrocytes, confirming that the consumption of glucose is dramatically increased in host red cells, consequent to malaria infection.

Animals

Cerebral ammonia levels and enzyme changes during Plasmodium yoelii infection in mice.

Ammonia, lactate and glutamate levels and the activities of glutamine synthetase (GS), glutamate dehydrogenase (GDH), glutaminase (GLN), aspartate transaminase (AST), phosphofructokinase (PFK) and monoamine oxidase (MAO) were compared in the brain tissue of normal and P. yoelii infected mice. The brain lactate increased by 96% at peak parasitaemia. Cerebral ammonia also exhibited an increase in infected mice which was parasitaemia dependent, while glutamate remained almost unchanged. The brain glutamine synthetase registered an increase of 35% (P < 0.001) in post-mitochondrial fractions, this effect being perceptible even at low parasitaemia, but attained constancy at parasitaemia levels higher than 20%. The activity of monoamine oxidase and phosphofructokinase increased by 105% (P < 0.02) and 41% (P < 0.05) respectively while glutamate dehydrogenase decreased by 15% (P < 0.001). Glutaminase and aspartate transaminase were not significantly influenced by infection (tested only at high parasitaemia levels). It has been postulated that cerebral hypoxia and aberrations in ammonia metabolism may both contribute towards malaria induced cerebral complications.

Ammonia

Community medicine.

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Community Medicine

Schizontocidal activity of antibiotics against blood-induced Plasmodium gallinaceum infection.

Comparative studies on the blood schizontocidal activity of antibiotics against Plasmodium gallinaceum infection of chicks have shown that doxycycline, minocycline, demeclocycline, tetracycline and oxytetracycline possess high antimalarial activity as judged by suppression of parasitaemia and extension of survival period. Of these, demeclocycline, tetracycline and oxytetracycline were effective only at high dose level. Chloramphenicol, erythromycin and gentamicin were relatively inactive. Treatment in 5- to 6-day-old established infection of chicks has shown that doxycycline and minocycline are relatively more effective than oxytetracycline and tetracycline in controlling acute infection.

Administration, Oral