Erythrocyte adenosine deaminase as a marker of reperfusion injury in patients with myocardial infarction.
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Biomedical subjects
Publications and source records attributed to M K Misra.
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Reperfusion injury causes oxidative stress thereby resulting in an imbalance between oxidant-antioxidant systems. In the present communication, the effect of ascorbic acid supplementation has been studied on certain oxidant and antioxidant parameters in the blood of the patients with myocardial infarction before and after thrombolysis. In patients after thrombolysis, the activity of antioxidant enzyme, superoxide dismutase, in the blood was found to be significantly reduced where as the activity of the oxidant enzyme, xanthine oxidase, was found to be significantly increased. Malondialdehyde levels, the index of free radical mediated damage, was also found to be significantly elevated in thrombolysed patients compared to the patients before thrombolysis. Supplementation of vitamin C to the post reperfusion patients restored these parameters back to normal or near normal levels.
Pro-oxidant and anti-oxidant systems and their levels have significant roles in occlusive vascular diseases. In the present communication, we have measured the levels of some representative anti-oxidant enzymes in the blood of the patients of myocardial infarction after reperfusion and compared them to age and sex matched healthy persons. Our findings show that the activities of anti-oxidant enzymes (viz. SOD, catalase and glutathione reductase) are significantly decreased whereas there is significant increase in the levels of malonaldialdehyde (a marker of free radical-mediated damage) in the patients. The findings point out that ischemic myocardial disorders are associated with excessive free radical generation and free radical-mediated damage of lipids.
A comparative study on the levels of erythrocyte adenosine deaminase and lipid peroxidation has been undertaken in patients with myocardial infarction before and after thrombolysis along with matched healthy individuals. Our findings show that adenosine deaminase activity is highly elevated in post-reperfused patients when compared to pre- thrombolysed and healthy persons. Malondialdehyde(MDA) levels are also significantly increased in post-thrombolysed patients. The study reveals an important role of adenosine deaminase in reperfusion injury in patients with myocardial infarction.
The effect of reperfusion of patients with myocardial infarction on the levels of some anti-oxidant enzymes, total thiols, malondialdehyde formation in erythrocytes and plasma ascorbate levels have been investigated. Significantly decreased activities of catalase and superoxide dismutase and decreased levels of total thiols in RBC's and ascorbic acid in plasma suggest that reperfusion of the infarcted myocardium leads to oxidative stress conditions wherein anti-oxidant mechanisms become less effective in coping with the oxidative insult. This view is further supported by the observation that in the post reperfused patients there is a highly significant enhancement in the levels of malondialdehyde.
BACKGROUND: Abscess formation is a common bacterial infection and requires an immediate antimicrobial approach for apposite treatment. Delay in patient treatment is usually a common feature, as the bacterial identification of clinical samples is based on the culture, which is a time-consuming exercise. The current study was aimed at developing an alternative technique with the potential for rapid bacterial group identification. MATERIALS AND METHODS: In the present study we performed ex vivo proton magnetic resonance spectroscopy of 40 pus samples collected from abscesses in different locations and the results have been retrospectively compared with the microorganism identified in the pus culture. In addition, the microbes obtained from the culture have been further subcultured and studied with magnetic resonance spectroscopy to identify the bacterial fingerprint in the pus sample seen on spectroscopy. RESULTS: On reviewing the spectra obtained from the various abscesses, they were found to be qualitatively similar for a particular bacterium. The similar spectral pattern of the pus with obligate aerobes/anaerobes and pure cultures of the same bacteria suggests its strict metabolism under in vivo and in vitro conditions, respectively. CONCLUSIONS: The characteristic metabolite pattern of obligate anaerobes may be used as a prototype for its rapid identification. This information may be of value for more appropriate clinical management of such cases.
The present study has been undertaken to monitor the extent of oxidative stress in mice infected with M tuberculosis and the role of crude green tea extract in repairing the oxidative damage. The mice were divided into three groups of 9 each; normal, infected-untreated and infected-treated. The infected group of animals exhibited significant enhancement of erythrocytic catalase and glutathione peroxidase activities along with elevated levels of erythrocytic total thiols and plasma lipid peroxidation as compared to normal animals. The infected group also exhibited significantly decreased activity of superoxide dismutase and levels of glutathione in erythrocytes. Upon oral administration of green tea extract for seven days the oxidative stress parameters were reverted back to near normal levels as evidenced by a fall in catalase, glutathione peroxidase, total thiol and extent of lipid peroxidation with concomitant increase in the levels of SOD and reduced glutathione in infected animals. The findings thus, portray that there is a high oxidative stress during early stages of tuberculosis and antioxidants such as green tea extract, can play a vital role by reducing stress through adjuvant therapy.
Despite stable genomes of all living organisms, they are subject to damage by chemical and physical agents in the environment (e.g., UV and ionizing. radiations, chemical mutagens, fungal and bacterial toxins, etc.) and by free radicals or alkylating agents endogenously generated in metabolism. DNA is also damaged because of errors during its replication. The DNA lesions produced by these damaging agents could be altered base, missing base, mismatch base, deletion or insertion, linked pyrimidines, strand breaks, intra- and inter-strand cross-links. These DNA lesions could be genotoxic or cytotoxic to the cell. Plants are most affected by the UV-B radiation of sunlight, which penetrates and damages their genome by inducing oxidative damage (pyrimidine hydrates) and cross-links (both DNA protein and DNA-DNA) that are responsible for retarding the growth and development. The DNA lesions can be removed by repair, replaced by recombination, or retained, leading to genome instability or mutations or carcinogenesis or cell death. Mostly organisms respond to genome damage by activating a DNA damage response pathway that regulates cell-cycle arrest, apoptosis, and DNA repair pathways. To prevent the harmful effect of DNA damage and maintain the genome integrity, all organisms have developed various strategies to either reverse, excise, or tolerate the persistence of DNA damage products by generating a network of DNA repair mechanisms. A variety of different DNA repair pathways have been reported that include direct reversal, base excision repair, nucleotide excision repair, photoreactivation, bypass, double-strand break repair pathway, and mismatch repair pathway. The direct reversal and photoreactivation require single protein, all the rest of the repair mechanisms utilize multiple proteins to remove or repair the lesions. The base excision repair pathway eliminates single damaged base, while nucleotide excision repair excises a patch of 25- to 32-nucleotide-long oligomer, including the damage. The double-strand break repair utilizes either homologous recombination or nonhomologous endjoining. In plant the latter pathway is more error prone than in other eukaryotes, which could be an important driving force in plant genome evolution. The Arabidopsis genome data indicated that the DNA repair is highly conserved between plants and mammals than within the animal kingdom, perhaps reflecting common factors such as DNA methylation. This review describes all the possible mechanisms of DNA damage and repair in general and an up to date progress in plants. In addition, various types of DNA damage products, free radical production, lipid peroxidation, role of ozone, dessication damage of plant seed, DNA integrity in pollen, and the role of DNA helicases in damage and repair and the repair genes in Arabidopsis genome are also covered in this review.
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In ischaemic heart conditions we report a remarkable increase in platelet xanthine oxidase activity and rise in the levels of malondialdehyde (MDA) with concomitant decrease in the activities of free radical scavenging enzymes - superoxide dismutase, catalase, glutathione peroxidase and glutathione reductase. The increased levels of free radical generating system and MDA and lowered levels of free radical scavenging systems seem to have critical role in ischaemic heart conditions.
Levels of glutathione peroxidase and glutathione reductase were measured in the platelets of 30 patients, 10 of them affected by unstable angina, 10 of them reperfused after myocardial infarction and 10 matched healthy controls. The specific activities of both the enzymes were lowered in both group of patients. Glutathione reductase activity resulted markedly lowered.
In a period of 2 years, 234 cases of benign breast disorder were studied. Breast pain and modularity was the commonest group (70.1%) followed by fibroadenoma (17.5%). Cyclical mastalgia (61.5%) is more common than non-cyclical mastalgia (38.5%). The age of the patients with cyclical mastalgia was significantly lesser than patients with non-cyclical mastalgia. Cyclical mastalgia was seen only in premenopausal females while non-cyclical mastalgia was also seen in postmenopausal females. Treatment with vitamin E showed 41% response rate with minimal side-effects while treatment with danazol showed 72.1% response rate but was associated with side-effects in one third of the patients.
OBJECTIVE: To assess the results of simplified sutured sacral rectopexy for complete rectal prolapse. DESIGN: Prospective study. SETTING: University hospital, India. SUBJECT: 65 patients with complete rectal prolapse treated by modified sutured sacral rectopexy. MAIN OUTCOME MEASURES: Morbidity, mortality and recurrence. RESULTS: During a follow-up of 2-10 years (mean 5.4 years) none of the patients developed a recurrence of complete prolapse of the rectum but 3(5%) developed mucosal prolapse. The incontinence improved in 12 of 16 patients (75%) and constipation improved in 5 of 6 (83.3%). CONCLUSION: We conclude that the simplified sutured sacral rectopexy is a simple operation for treating complete rectal prolapse in adults, and gives good results.
A prospective study was carried out in a university hospital to evaluate the results of extraperitonealization of the sigmoid colon in non-gangrenous sigmoid volvulus. Eighty-eight patients with non-gangrenous sigmoid volvulus were operated upon using the technique of extraperitonealization of the sigmoid colon. There was no recurrence of the volvulus at 1 to 6 years follow up but 8 patients (9.1%) had constipation and 2 patients (2.2%) had distension of the lower abdomen. Extraperitonealization of the sigmoid colon is a reasonable non-resection alternative for non-gangrenous sigmoid volvulus and has minimal morbidity, mortality and no recurrence in our series.
Serum MDH levels were estimated in 29 consecutive patients of portal hypertension with the objective of ascertaining its diagnostic value as to the cause of portal hypertension and its prognostic significance. Higher levels of serum MDH were found in cirrhotic patients as compared to noncirrhotic ones. There were however no significant differences found in the values when extrahepatic obstruction group was compared with controls. Furthermore, higher MDH activity was found in those patients who died as compared to the surviving ones.
An investigation of the role of blind fine-needle aspiration cytology (FNAC) in the assessment of palpable abdominal masses was carried out on 196 patients: 124 hepatic, 30 retroperitoneal, and 42 other masses. All of the smears were stained either by Papanicolaou stain or by hematoxylin and eosin stain. The results of FNAC were confirmed by further investigations in all cases. FNAC correctly diagnosed 166 (84.6%) cases. Twenty (10.2%) reports were false negative, and 10 (5.1%) smears were unsatisfactory for any diagnosis. Of 124 hepatic masses, the correct diagnosis was obtained in 106 (85.4%), false-negative reports in 14 (11.2%), and unsatisfactory smears in 4 (3.2%). There were no false-positive reports. For all the lesions, the sensitivity of FNAC was 87.8%; specificity, 100%; positive predictive value, 100%; and negative predictive value, 52.4%. Five (2.5%) patients had considerable pain after the procedure.
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