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Biomedical subjects

Rashmi Kumari

Publications and source records attributed to Rashmi Kumari.

8 recordsLinked to original sources

Impaired wound healing after cerebral hypoxia-ischemia in the diabetic mouse.

Impaired peripheral wound healing is a hallmark of diabetics pathology and has been attributed to compromised macrophage activation. Stroke is another component of diabetic pathology, with increased tissue infarction and worsened recovery although the mechanisms remain unresolved. In this study, we investigated whether a compromised glial/macrophage response might contribute to cerebral hypoxic-ischemic (H/I) brain damage in diabetic (db/db), relative to their normoglycemic db/+ mice. Hypoxia-ischemia was induced in 8-week-old male db/db and db/+ mice by the ligation of right common carotid artery followed by systemic hypoxia (8% O2: 92% N2) for 17 mins. Mice were killed at specific intervals of reperfusion/recovery and the brains analyzed by in situ hybridization or total RNA isolation. In situ hybridization using bfl-1 (microglia) and glial fibrillary acidic protein (GFAP) (astrocytes) revealed expression of both bfl-1 and GFAP in the ipsilateral hemisphere at 4 h in the db/+ mice, which was delayed and minimal in the db/db mice. RNase protection assays showed a robust increase in expression of the proinflammatory cytokines tumor necrosis factor-alpha (TNFalpha), interleukin-1 IL-1alpha, and IL-1beta mRNA in the db/+ mice at 6 to 8 h of reperfusion peaking at 8 to 12 h; in db/db mice expression was markedly delayed and diminished. Real-time-polymerase chain reaction (RT-PCR) confirmed the reduced and delayed expression TNFalpha, IL-1alpha, IL-1beta, and the growth factors insulin-like growth factor-1 and ciliary neurotrophic factor in the db/db mice; enzyme-linked immunosorbent assays confirmed the reduced and delayed translation of IL-1beta protein. These findings suggest that a compromised inflammatory response may underlie the greater infarct associated with diabetic db/db mice compared with their nondiabetic littermates following a hypoxic/ischemic insult.

Animals↗

Disseminated cutaneous rhinosporidiosis.

Rhinosporidiosis is a chronic granulomatous disorder caused by Rhinosporidium seeberi. It frequently involves the nasopharynx and occasionally affects the skin. We herewith report a 55-year-old man who has disseminated cutaneous rhinosporidiosis. He presents with multiple reddish lesions over the nose of 10 year's duration. In the past year, he develops skin lesions over the right arm and over back. Histopathological examination of the skin biopsy specimen from the representative cutaneous lesions shows hyperplastic epithelium with numerous globular cysts of varying shape, representing sporangia in different stages of development. His serology for HIV infection by ELISA is negative. On the basis of these clinical and histopathological findings, a diagnosis of nasal rhinosporidiosis with cutaneous dissemination is made.

Anti-Inflammatory Agents, Non-Steroidal↗

Protective effect of bradykinin antagonist Hoe-140 during in vivo myocardial ischemic-reperfusion injury in the cat.

The effect of icatibant (Hoe-140), a selective bradykinin receptor (B(2)) antagonist on myocardial ischemic-reperfusion injury was studied in open chest barbiturate anaesthetized cats. The left anterior descending coronary artery was occluded for 15 min, followed by 60 min of reperfusion. Saline or icatibant (200 microg/kg) was administered intravenously slowly over 2 min, 5 min before reperfusion. In the saline-treated group, myocardial ischemic-reperfusion injury was evidenced by depressed MAP, depressed peak positive and negative dP/dt and elevated left ventricular end-diastolic pressure and enhanced oxidative stress [elevated plasma thiobarbituric acid reactive substances (TBARS; a marker for lipid peroxidation), depressed myocardial GSH (reduced glutathione), superoxide dismutase (SOD), catalase] and depletion of adenosine triphosphate (ATP) along with rise in plasma creatine phosphokinase (CPK). Administration of icatibant resulted in complete hemodynamic recovery together with repletion of ATP and reduction in plasma TBARS without any significant change in myocardial SOD, catalase and GSH. The results of the present study suggest a protective role of icatibant in myocardial ischemic-reperfusion injury.

Adenosine Triphosphate↗

Evaluation of Pringle maneuver during liver resection in a rat model of surgical obstructive jaundice.

Temporary portal triad clamping (Pringle maneuver) during liver resection reduces intraoperative blood loss. A normal liver can safely tolerate normothermic ischemia for up to 60 min. However, its safety in patients with surgical obstructive jaundice (SOJ) is not known. Therefore, we investigated the effect of hepatic ischemia in an experimental rat model of SOJ created by ligating the bile duct. Four groups of rats were created: Group I (sham operation, 10 days later, liver resection); Group II (sham operation, 10 days later, liver resection with 5 min of hepatic ischemia); Group III (bile duct ligation, 10 days later, liver resection); and Group IV (bile duct ligation, 10 days later, liver resection with 5 min of hepatic ischemia). The ischemic injury was assessed by the survival of rats, liver tissue malondialdehyde and total glutathione (markers of free radical injury), serum alanine aminotransferase, aspartate aminotransferase, and liver histology. The results showed decreased survival (47.6% vs. 90% [p = .046]), increased liver tissue malondialdehyde (161 +/- 35 vs. 129 +/- 33 microg/gm liver tissue [p = .05]), and decreased liver tissue total glutathione (565 +/- 169 vs. 1075 +/- 276 nmol/gm liver tissue [p = .05]) in rats with SOJ subjected to hepatic ischemia when compared to nonjaundiced rats. The changes in serum aspartate aminotransferase (AST), alanine aminotransferase (ALT), and alkaline phosphatase showed an increasing trend in the SOJ group but were not statistically significant. Ischemic changes in liver histology were seen more often in the SOJ group but were not statistically significant. These data suggest that temporary portal triad clamping in an experimental model of SOJ is detrimental to the outcome of liver resection.

Animals↗