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Biomedical subjects

K Nath

Publications and source records attributed to K Nath.

At least 19 recordsLinked to original sources

Ferritin: a cytoprotective antioxidant strategem of endothelium.

Phagocyte-mediated oxidant damage to vascular endothelium is likely involved in various vasculopathies including atherosclerosis and pulmonary leak syndromes such as adult respiratory distress syndrome. We have shown that heme, a hydrophobic iron chelate, is rapidly incorporated into endothelial cells where, after as little as 1 h, it markedly aggravates cytotoxicity engendered by polymorphonuclear leukocyte oxidants or hydrogen peroxide (H2O2). In contrast, however, if cultured endothelial cells are briefly pulsed with heme and then allowed to incubate for a prolonged period (16 h), the cells become highly resistant to oxidant-mediated injury and to the accumulation of endothelial lipid peroxidation products. This protection is associated with the induction within 4 h of mRNAs for both heme oxygenase and ferritin. After 16 h heme oxygenase and ferritin have increased approximately 50-fold and 10-fold, respectively. Differential induction of these proteins determined that ferritin is probably the ultimate cytoprotectant. Ferritin inhibits oxidant-mediated cytolysis in direct relation to its intracellular concentration. Apoferritin, when added to cultured endothelial cells, is taken up in a dose-responsive manner and appears as cytoplasmic granules by immunofluorescence; in a similar dose-responsive manner, added apoferritin protects endothelial cells from oxidant-mediated cytolysis. Conversely, a site-directed mutant of ferritin (heavy chain Glu62----Lys; His65----Gly) which lacks ferroxidase activity and is deficient in iron sequestering capacity, is completely ineffectual as a cytoprotectant. We conclude that endothelium and perhaps other cell types may be protected from oxidant damage through the iron sequestrant, ferritin.

Animals

Heterogeneity in restriction patterns of Gardnerella vaginalis isolates from individuals with bacterial vaginosis.

This study was undertaken to resolve the genetic make up of Gardnerella vaginalis present in bacterial vaginosis (BV). DNA from several G. vaginalis isolates from within and between individual BV patients were compared by BamHI, ClaI and EcoRI restriction endonuclease analysis (REA) followed by a restriction fragment length polymorphism (RFLP) study, utilizing a 5.7-kb BamHI G. vaginalis ATCC14018 DNA probe. Four G. vaginalis isolates from one patient (GVP-062) were composed of 3 different biotypes (biotypes 3, 5 and 8), and while the REA mirrored the biotype, in RFLP studies at least 3 isolates had DNA fragments in common. All of the isolates from 2 other patients (GVP-063 and GVP-072) represented a single biotype (biotype 2), but under REA and in RFLP studies, the isolates GVP-063 differed from GVP-072. An opposite case existed with the isolates GVP-072 (biotype 2) and GVP-065 (biotype 5), which appeared similar under REA and in RFLP studies. Finally, reisolates after 8 weeks (GVP-080) from a BV patient (isolates GVP-065) representing the same biotype (biotype 5) differed under REA and in RFLP studies. Thus, lacking any unique DNA fingerprint, G. vaginalis occurring in BV represents a (genetically) mixed population.

Bacterial Typing Techniques

Hypopituitarism stabilizes the renal and retinal complications of diabetes mellitus.

In 1953, Poulsen described the remarkable case of a woman with type I diabetes mellitus who experienced resolution of her retinopathy following postpartum pituitary necrosis. Since that time, many investigators have pursued the hypothesis that anterior pituitary hormones, particularly growth hormone, play a role in the pathogenesis of the microvascular complications of diabetes mellitus. While most observers have demonstrated the importance of growth hormone in the initiation and progression of diabetic retinopathy, the role of growth hormone in the development of diabetic nephropathy has been more difficult to document. In this case report, we describe a woman with long-standing type I diabetes mellitus complicated by retinopathy and nephropathy whose complications stabilized as she developed growth hormone deficiency.

Adult

Endothelial cell heme oxygenase and ferritin induction by heme proteins: a possible mechanism limiting shock damage.

Acutely, hemin sensitizes endothelial cells to oxidants but chronically protects the endothelium through the induction of ferritin. By releasing its heme, methemoglobin can sensitize endothelial cells in a fashion similar to free hemin. Furthermore, prolonged incubation with the endothelium allows methemoglobin to induce heme oxygenase and ferritin and concomitantly to modulate oxidant-mediated cytotoxicity. Methemoglobin but not hemoglobin, metmyoglobin or cytochrome c induces heme oxygenase and ferritin. Heme needs to be released from methemoglobin, since sodium cyanide, haptoglobin, and hemopexin inhibit the induction of these proteins. Neutrophils can oxidize hemoglobin to methemoglobin, which can subsequently induce both heme oxygenase and ferritin. We speculate that in shock with disseminated intravascular coagulation, marginated PMNs oxidize hemoglobin to heme-releasing methemoglobin. If critical defenses such as haptoglobin and hemopexin are overwhelmed, heme enters the endothelin cells, sensitizing them to oxidant damage. Endothelial cell adaptation via heme-induced heme oxygenase and ferritin production might limit ultimate progression to pulmonary and other vascular leak syndromes.

Animals

The characterization of Gardnerella vaginalis DNA using non-radioactive DNA probes.

DNA restriction profiles of various Gardnerella vaginalis isolates, generated by BamHI, EcoRI, PstI and other restriction enzymes, varied considerably. Only a few DNA fragments were identified as common in ethidium bromide fluorescence profile and Southern-blot hybridization patterns (employing a digoxigenin-labelled G. vaginalis DNA probe and an enzyme-linked immunoassay detection method). While the efficiencies of Southern-blot hybridization appeared inconsistent, in dot-blot assays, DNA from each isolate hybridized readily, enabling the detection of at least 10 ng DNA. A 5.7-kb DNA fragment from G. vaginalis ATCC 14018 genomic library, cloned in the BamHI site of pBR322, could replace the total genomic DNA probe. This specific DNA fragment was present in different sizes in 12 analysed G. vaginalis strains, describing a restriction fragment length polymorphism. In control studies, none of the DNA from bacteria other than G. vaginalis (including some genitourinary tract residents) hybridized with the G. vaginalis total or specific DNA probes. Non-radioactive G. vaginalis DNA probes can thus form the basis of a useful detection method for further studies of this organism.

Blotting, Southern

Ring prosthesis.

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Eye Burns

Effect of dibutyryl cyclic AMP and analogs on the rate of contractions of myocytes in culture.

2O, 6N-butyryl, 3', 5'-cyclic monophosphate (dibu cAMP) when added to fetal rat heart cells in culture inhibits myocyte contraction. This inhibition is 100, 84 and 51% complete when the dibu cAMP concentration used is 2, 0.2 and 0.02 mM, respectively. The potency of dibu cAMP derivatives in myocyte contraction inhibition follows the order, dibu cAMP greater than 6N-bu cAMP greater than 2O-bu cAMP = AMP greater than butyrate. The inhibition caused by the first three chemicals is greater than 70%.

Animals

Relationship between dibutyryl cyclic AMP and microtubule organization in contracting heart muscle cells.

Rhythmic and synchronous contractions of interconnecting myocyte cultures prepared from fetal rat hearts are arrested upon the addition of 0.2--2.0 mM N6, O2'-dibuturyladenosine 3':5'-cyclic monophosphate (Bt2cAMP). The contractions arrested by Bt2cAMP are restored either by diluting the Bt2cAMP from the media or by adding colchicine. While colchicine restores Bt2cAMP-arrested myocyte contractions at concentrations as low as 1.0 micron, the inactive isomer lumicolchicine shows no effect. Morphologically, Bt2cAMP treatment of myocyte cultures results in the appearance of numerous elongated cellular processes not present in control cultures. Ultrastructural examination indicates that in Bt2cAMP-treated cells the intracellular distribution of microtubules is altered such that these organelles appear to accumulate in parallel arrays. In cells not treated with Bt2cAMP, the microtubules appear randomly oriented, while in cells treated with only colchicine, intact microtubules are not observed. The relationship between microtubules an heart cell contraction is discussed.

Animals