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Biomedical subjects

G Chaudhuri

Publications and source records attributed to G Chaudhuri.

At least 73 records · Page 4Linked to original sources

Characterization and actions of human umbilical endothelium derived relaxing factor.

1. A bioassay cascade superfusion technique was utilized to study the properties of endothelium derived relaxing factor (EDRF) from human umbilical vein (HUV) and compare its actions on umbilical, chorionic plate and bovine pulmonary arterial strips. 2. Histamine (1 microM), bradykinin (1 microM) and A-23187 (0.3 microM, 1 microM) but not acetylcholine (1 microM) released EDRF. 3. The non-innervated human foetoplacental vessels, i.e., umbilical and chorionic plate arteries, do relax to EDRF by a guanosine 3':5'-cyclic monophosphate (cyclic GMP)-mediated mechanism. 4. The sensitivity of the human umbilical arterial strips to EDRF was less than that of the chronic plate arterial strips. Bovine pulmonary arterial strips were the most sensitive to the relaxant actions of human umbilical EDRF.

Animals↗

Comparison of the inhibitory potencies of N(G)-methyl-, N(G)-nitro- and N(G)-amino-L-arginine on EDRF function in the rat: evidence for continuous basal EDRF release.

The relative potencies of the argininolytic agents NG-methyl-L-arginine (L-NMA), NG-nitro-L-arginine (L-NNA) and NG-amino-L-arginine (L-NAA) were assayed by their inhibitory effect on both basal and stimulated release of endothelium-derived NO in vitro and in vivo. Basal NO release was indirectly assessed by the ability of the analogs to contract phenylephrine-preconstricted rat aortic rings and their ability to produce a hypertensive response in awake, unanesthetized normotensive rats. In aortic rings, the three analogs induced vasocontraction and inhibited the vasorelaxation mediated by ACh-stimulated endothelial NO release. In this latter assay, L-NNA was 30 times more potent than either L-NMA or L-NAA. In free-moving rats, the agents caused dose-dependent increases in arterial pressure due to the blockade of endogenous NO formation. Dose-response analysis indicated that L-NNA was 87 and 230 times more potent than L-NMA and L-NAA, respectively. Pretreatment with L-NNA was also found to selectively inhibit, but not abolish, the depressor effects of acetylcholine in unanesthetized and phenylephrine- or vasopressin-infused normotensive-pithed rats. These studies indicate that L-NNA is a potent antagonist of endothelium-derived relaxing factor formation in vitro and in vivo. The contractile and hypertensive effects of the argininolytic agents clearly demonstrates that a continuous basal release of endothelium-derived relaxing factor/NO occurs in both isolated vascular rings and whole animals.

Acetylcholine↗

Endothelium-derived vasoactive substances in fetal placental vessels.

In conclusion, it appears that the endothelium-derived vasoactive substances may have important physiological roles to play in the fetoplacental circulation. They may also play an important role in the pathogenesis of some disease states. The complexity of the umbilical and placental vessels as well as the complexity of the placental vascular bed can slow research progress in this area. It is also important to realize that no single mediator may be able to explain a physiological process, and research workers in this area need to consider possible interactions between the different endothelium-derived vasoactive substances in any physiological or pathological phenomenon.

Animals↗

Physiological release of nitric oxide is dependent on the level of vascular tone.

The pressor effect of NG-methyl-L-arginine (NMA) was tested in urethane-anesthetized rats which were untreated (control) or devoid of sympathetic tone. In contrast with controls, the NMA response was attenuated by pithing or ganglionic blockade. In pithed rats, the induction of moderate or intense vasoconstriction with constant phenylephrine infusion restored or augmented, respectively, the NMA pressor response. Our data suggest that vascular tone may physiologically regulate the release of nitric oxide in vivo.

Acetylcholine↗

Antagonistic modulatory roles of magnesium and calcium on release of endothelium-derived relaxing factor and smooth muscle tone.

The objective of this study was to elucidate the mechanisms associated with the reciprocal relation between magnesium and calcium on vascular smooth muscle tone in bovine pulmonary artery and vein. Rapid removal of magnesium from Krebs-bicarbonate medium used to bathe isolated rings of precontracted artery or vein caused transient endothelium- and calcium-dependent relaxation and cyclic GMP accumulation. Both responses were antagonized by oxyhemoglobin, methylene blue, or superoxide anion and were enhanced by superoxide dismutase. The transient relaxation was followed by sustained endothelium-independent contraction. Endothelium-denuded vascular rings contracted in response to extracellular magnesium depletion without alteration in cyclic GMP levels. The data suggest that vascular endothelium-derived nitric oxide is responsible for the calcium-dependent relaxation elicited by extracellular magnesium depletion. Indeed, in bioassay cascade studies, magnesium removal from the medium used to perfuse intact artery or vein enhanced the formation and/or release of an endothelium-derived relaxing factor by calcium-dependent mechanisms. In the absence of both extracellular magnesium and calcium, calcium readdition caused transient endothelium-dependent relaxation and cyclic GMP accumulation, and both responses were abolished by oxyhemoglobin or methylene blue. In the presence of magnesium, however, readdition of calcium to calcium-depleted medium caused only contractile responses. Addition of magnesium to calcium-containing medium consistently caused endothelium- and cyclic GMP-independent relaxation that was not altered by oxyhemoglobin or methylene blue. Thus, magnesium and calcium elicit reciprocal or mutually antagonistic effects at the levels of both endothelium-derived relaxing factor formation and/or release and smooth muscle contraction. This relation may be of physiological importance, and the possibility that a reduction in circulating magnesium levels could lead to calcium-mediated vasospasm may be of pathophysiological concern.

Animals↗

Selective delivery of drugs to macrophages through a highly specific receptor. An efficient chemotherapeutic approach against leishmaniasis.

Methotrexate (Mtx) conjugated with maleylated bovine serum albumin (Mtx-MBSA) was taken up and degraded by cultured hamster peritoneal macrophages through the polyanion binding site for acetylated low density lipoprotein. Mtx-MBSA also eliminated intracellular amastigotes of Leishmania donovani in cultured hamster peritoneal macrophages about three times more efficiently than free Mtx. The antileishmanial effect of Mtx-MBSA on parasitized macrophages was blocked by MBSA, lysosomal inhibitors (chloroquine and monensin), and metabolic antagonists of Mtx (folic and folinic acids). The primary sites of accumulation of radioactivity of injected 125I-labeled Mtx-MBSA were the macrophage rich tissues, viz. liver and spleen. These results suggest that Mtx-MBSA would ensure rapid and effective killing of intracellular parasites harbored by macrophages. Furthermore, these results also indicate the feasibility of a general approach for rapid intracellular delivery of desired agents to macrophages for various purposes.

Animals↗

Receptor-mediated drug delivery to macrophages in chemotherapy of leishmaniasis.

Methotrexate coupled to maleylated bovine serum albumin was taken up efficiently through the "scavenger" receptors present on macrophages and led to selective killing of intracellular Leishmania mexicana amazonensis amastigotes in cultured hamster peritoneal macrophages. The drug conjugate was nearly 100 times as effective as free methotrexate in eliminating the intracellular parasites. Furthermore, in a model of experimental cutaneous leishmaniasis in hamsters, the drug conjugate brought about more than 90% reduction in the size of footpad lesions within 11 days. In contrast, the free drug at a similar concentration did not significantly affect lesion size. These studies demonstrate the potential of receptor-mediated drug delivery in the therapy of macrophage-associated diseases.

Albumins↗

Surface acid proteinase (gp63) of Leishmania mexicana. A metalloenzyme capable of protecting liposome-encapsulated proteins from phagolysosomal degradation by macrophages.

Acid proteinase activity is associated with the major surface glycoprotein (gp63) of both extracellular promastigotes and intracellular amastigotes of the parasitic protozoan, Leishmania mexicana. The enzyme purified by monoclonal affinity chromatography from promastigotes is strongly inhibited by metal ion chelators, which is reversible by the addition of Zn(II). This proteinase loses its activity after dialysis against 1,10-phenanthroline. The apoenzyme thus prepared is reactivated substantially by Zn(II) and partially by Cu(II), Cd(II), Co(II), or Ni(II). From the recently published structure of the gene encoding gp63, we identify hitherto unrecognized sequences, which can be aligned to the consensus zinc-binding sites of other known metalloproteinases. Anti-gp63 polyclonal antibodies, but not the monoclonals, precipitate similar molecules from amastigotes. These molecules differ slightly from gp63 in electrophoretic mobility but have similar endopeptidase activity. Phagolysosomal degradation by macrophages of proteins entrapped in liposomes is prevented by coating them with native gp63. This protection is lost with heat denaturation of gp63 to kill its enzymatic activity. The proteolytic activity of the metalloenzyme on the surface of these parasites may thus protect their membrane from cytolytic damages during their survival, differentiation, and multiplication in the phagolysosomes of macrophages.

Animals↗

Endothelium-derived nitric oxide relaxes nonvascular smooth muscle.

A bioassay cascade superfusion procedure was used to compare and contrast the actions of arterial and venous endothelium-derived relaxing factor (EDRF) with authentic nitric oxide (NO) on several nonvascular smooth muscle preparations. EDRF was released from human umbilical vein or bovine pulmonary artery by A23187 and allowed to superfuse two nonvascular and one vascular precontracted smooth muscle strips arranged in a cascade. NO or S-nitroso-N-acetylpenicillamine was delivered by superfusion. Both EDRF and NO relaxed bovine trachea, although artery was 10 times more sensitive than trachea to either relaxant. Similarly, rabbit taenia coli and rat fundus relaxed in response to high concentrations of NO or large amounts of EDRF released from umbilical vein. Vascular and nonvascular relaxant responses to both EDRF and NO were inhibited by oxyhemoglobin, methylene blue or superoxide, and were enhanced by superoxide dismutase. Perfusion of pulmonary artery or umbilical vein with A23187 resulted in contraction of guinea pig ileum and relaxation of pulmonary artery, whereas NO relaxed both preparations. Oxyhemoglobin enhanced the contractile and abolished the relaxant responses. Thus, ileum is more sensitive to endothelium-derived contracting factor(s) than to EDRF. NO raised cyclic GMP levels in all smooth muscle preparations, but a greater fold increase was observed in artery than in nonvascular smooth muscle. EDRF released from human umbilical vein was identified chemically as NO or a nitroso compound, as was done previously for EDRF from bovine pulmonary artery and vein. These observations support the view that one EDRF from artery and vein is NO or a labile nitroso compound.

Animals↗

Basic polyamino acids rich in arginine, lysine, or ornithine cause both enhancement of and refractoriness to formation of endothelium-derived nitric oxide in pulmonary artery and vein.

The objective of this study was to elucidate the mechanism by which polyamino acids containing L-arginine, L-lysine or L-ornithine cause endothelium-dependent relaxation of bovine intrapulmonary artery and vein. Basic but not acidic or neutral polypeptides ranging in average molecular weights from 17 to 225 kDa elicited time- and concentration-dependent relaxation and cyclic GMP accumulation in precontracted rings of artery and vein by endothelium-dependent mechanisms. Vascular responses were markedly inhibited by oxyhemoglobin, methylene blue, or potassium. The basic polyamino acids stimulated the formation and/or release of an endothelium-derived relaxing factor (EDRF) identified as nitric oxide (NO) in perfused segments of both artery and vein as assessed by bioassay. The polyamino acids and A23187 released a similar endothelium-derived NO (EDNO) from artery and vein, as assessed by the similar half-life (3-5 seconds), antagonism by superoxide anion or oxyhemoglobin, enhancement by superoxide dismutase, and lack of influence by indomethacin. The basic polyamino acids elicited potent relaxant responses with EC50 values ranging from 3 x 10(-9) to 2 x 10(-7) M, and a direct correlation was obtained between molecular weight and relaxation potency irrespective of the basic amino acid incorporated. Prolonged contact of arterial or venous rings with basic polyamino acids resulted in the rapid development of marked refractoriness to relaxation and cyclic GMP formation on addition of polyamino acid. Moreover, refractoriness developed to the vascular responses of other endothelium-dependent vasodilators but not to glyceryl trinitrate or isoproterenol. The mechanism of refractory responses was attributed to interference with EDNO formation and release as assessed by bioassay and chemical assay. The hypothesis is forwarded that the basic polyamino acids serve as partial substrates for the enzyme system that catalyzes the conversion of L-arginine to NO. Prolonged contact between substrate and enzyme results in enzyme desensitization and the development of refractoriness or a form of tolerance to vasodilators whose action is mediated by EDNO.

Amino Acids↗

Effect of heat-shock & nutritional stress on the expression of a neutral thiol protease in Leishmania donovani promastigotes.

The soluble intracellular protease was partially purified from L. donovani promastigotes. The activity of this enzyme increased with increase in temperature from 25 degrees C to 37 degrees C and was active optimally at 70 degrees C. This protease activity appeared to be decreased due to heat-shock of the promastigotes for 4 h at 37 degrees C and increased due to nutrient starvation. Inhibition of the protease by p-chloromercuribenzoate and iodoacetamide suggested that this enzyme could be a thiol protease.

Animals↗

EDRF generation and release from perfused bovine pulmonary artery and vein.

A bioassay cascade superfusion procedure was utilized to study the release and effects of endothelium-derived relaxing factor (EDRF) from isolated bovine pulmonary artery and vein. Three precontracted, endothelium-denuded strips of pulmonary artery or vein mounted in series served as the detector of EDRF. Perfusion of artery with acetylcholine, bradykinin or A23187, in the presence of indomethacin, caused the release of EDRF (t1/2 = 3-5 s) which relaxed superfused strips of both artery and vein. Similarly, perfusion of vein with bradykinin or A23187, but not acetylcholine, caused the release of EDRF (t1/2 = 3-5 s) which relaxed superfused strips of both vein and artery. EDRF-elicited vascular smooth muscle relaxation was associated with cyclic GMP accumulation in the superfused strips. EDRF activity was increased and its duration prolonged by superoxide dismutase or low oxygen tension, whereas oxyhemoglobin and methylene blue were markedly inhibitory. The similar patterns of release, instability, and properties of EDRF from intact artery and vein suggest that arterial and venous EDRF are closely similar.

Animals↗

DNA amplification in tunicamycin-resistant Leishmania mexicana. Multicopies of a single 63-kilobase supercoiled molecule and their expression.

Tunicamycin-resistant variants of Leishmania mexicana were found to contain elevated activity of N-acetylglucosamine-1-phosphate transferase and amplified DNA (Kink, J. A., and Chang, K.-P. (1987) Proc. Natl. Acad. Sci. U. S. A. 84, 1253-1257). Complete digestion of their DNA with restriction endonucleases produced discrete ethidium bromide-staining bands after agarose gel electrophoresis. All four BamHI fragments of the amplified DNA were cloned separately into pBR322 and found to share no substantial sequence homology. DNA complementary to each of the cloned fragments is 64-128-fold more abundant in the variants than in the wild type cells. The amplified DNA appears to originate from a single chromosomal region of 63 kilobases. Individual copies of the 63 kilobases are each circularized at the newly formed junction site producing multiple extrachromosomal supercoiled molecules in the drug-resistant cells. There is overproduction of RNA ranging in size from 1.9 to 6.6 kilobases complementary to the amplified DNA in these cells.

Animals↗

Acid protease activity of a major surface membrane glycoprotein (gp63) from Leishmania mexicana promastigotes.

A unique protease with activity optimal at pH 4.0 and trailing toward the alkaline pH spectrum was detected with intact glutaraldehyde-fixed promastigotes of Leishmania mexicana amazonensis, indicating surface localisation of the enzyme. That this surface protease may be a virulence factor is suggested by its apparent roles in multiple steps during leishmanial infections of macrophages. Indeed, its specific activity was 2-2.5 fold higher on virulent cells than on avirulent cells. Several lines of evidence indicate that this acid protease activity is expressed by the major surface glycoprotein (gp63) of L. m. amazonensis. Monoclonal antibody affinity purified gp63 degraded serum albumin, hemoglobin, complement C3, immunoglobulin G and purified rat liver lysosomal proteins in their native forms. The specific activity is about 20-fold higher at pH 4.0 than at pH 7.5 and is about four-fold higher at the body temperature of the mammalian host (37 degrees C) than at that of the insect host (27 degrees C). The protease activity is sodium dodecyl sulphate-sensitive. Among various protease inhibitors tested, only heavy metal ions (1 mM), 1,10-orthophenanthroline (1 mM) and bestatin (100 ng ml-1) significantly inhibited gp63 acid protease activity by up to 80%. N-linked oligosaccharides of gp63 appear to be important for the stability of this molecule, possibly by preventing its autodegradation. Purified gp63 effected limited proteolysis of human complement C3 molecules at the physiological serum pH of 7.5 in a manner, which supports the idea of its participation in complement-receptor mediated endocytosis of promastigotes by macrophages.

Animals↗

TeBG- and CBG-bound steroid hormones in rabbits are available for influx into uterus in vivo.

The metabolic clearance rate (MCR) of gonadal or adrenal steroid hormones in rabbits often does not bear the expected inverse relationship with hormone binding to testosterone-binding globulin (TeBG) or corticosteroid-binding globulin (CBG). This suggests TeBG or CBG may not impede steroid hormone delivery to tissues. The effects of rabbit plasma proteins on the influxes of 3H-labeled steroids from the circulation into the rabbit uterus were measured in vivo using a tissue sampling single-injection technique. In the absence of plasma proteins, estradiol (E2) and testosterone (T) were freely diffusible through the uterine microvasculature (i.e., extraction greater than 80%). The extractions of dihydrotestosterone (DHT) and corticosterone (B) ranged from 60 to 72%, while that of cortisol (F) was reduced at 40%. Rabbit serum exerted no inhibition of the influxes of the steroids tested. The influxes of T and B greatly exceeded the rates that would be expected if only the free and albumin-bound fractions estimated in vitro were diffusible in vivo. However, the extraction of [3H]corticosteroid-binding globulin or bovine [3H]albumin were low, consistent with little, if any, extravascular uptake of the plasma proteins. The results indicate both albumin-bound and globulin-bound steroid hormone are available for transport into the uterus in the rabbit in vivo without significant exodus of the plasma protein, per se.

Animals↗