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Biomedical subjects

M Jaiswal

Publications and source records attributed to M Jaiswal.

9 recordsLinked to original sources

Human Ogg1, a protein involved in the repair of 8-oxoguanine, is inhibited by nitric oxide.

NO-mediated inhibition of base excision DNA repair may potentiate oxidativeDNA damage in cells and could be relevant to carcinogenesis associated with chronic inflammation. Because 8-oxoguanine, a ubiquitous oxidative DNA lesion, is repaired predominantly by human 8-oxoguanine glycosylase (hOgg1), our aim was to determine whether NO directly inhibits its repair activity. Neither induction of NO-generating enzyme inducible NO synthase nor treatment with S-nitroso-N-acetyl-D-L-pencillamine altered expression of hOgg1 in a human cholangiocarcinoma cell line (KMBC). In contrast, both treatments completely inhibited activity of hOgg1 immunoprecipitated from KMBC cells overexpressing hOgg1 and in a cell-free system. Both NO and peroxynitrite were capable of inhibiting hOgg1 activity. Inhibition of hOgg1 protein was characterized by formation of S-nitrosothiol adducts and loss/ejection of zinc ions. Our data indicate that NO, an inflammatory mediator, directly inhibits a key base excision repair enzyme (hOgg1) responsible for base excision repair of 8-oxoguanine. These data support the concept that NO-mediated inhibition of DNA contributes to the mutagenic environment of chronic inflammation.

Cholangiocarcinoma↗

Nitric oxide-mediated inhibition of DNA repair potentiates oxidative DNA damage in cholangiocytes.

BACKGROUND & AIMS: Chronic inflammation, a risk factor for the development of bile duct cancer, induces inducible nitric oxide synthase (iNOS) with nitric oxide (NO) generation, which promotes oxidative damage of DNA, a process that probably is important in the initiation and progression of malignancies. Because inhibition of DNA repair is required for accumulation of oxidative DNA lesions, our aim was to determine if NO also inhibits repair of oxidative DNA damage. METHODS: A cholangiocarcinoma cell line and a cholangiocyte cell line were transfected with iNOS. RESULTS: Extracts from transfected but not untransfected cells were unable to repair 8-oxodeoxyguanine (8-oxodG); this effect was irreversible because addition of dithiothreitol to cell extracts had no effect. NO inhibition of 8-oxodG repair was blocked by NO scavengers but not by peroxynitrite scavengers or inhibitors of the soluble guanylyl cyclase/protein kinase G pathway. NO also potentiated hydrogen peroxide-induced DNA damage. Finally, immunohistochemistry in human liver samples uniformly demonstrated de novo expression of iNOS and the presence of 3-nitrotyrosine and 8-oxodG formation in the biliary epithelia of 30 patients with primary sclerosing cholangitis (a premalignant disease of the biliary tract) compared with controls. CONCLUSIONS: Collectively, these data implicate NO-mediated inhibition of 8-oxodG base excision DNA repair processes as a mechanism potentiating DNA damage in human inflammatory diseases involving the biliary tract.

Bile Duct Neoplasms↗

Nitric oxide in gastrointestinal epithelial cell carcinogenesis: linking inflammation to oncogenesis.

Chronic inflammation of gastrointestinal tissues is a well-recognized risk factor for the development of epithelial cell-derived malignancies. Although the inflammatory mediators linking chronic inflammation to carcinogenesis are numerous, current information suggests that nitric oxide (NO) contributes to carcinogenesis during chronic inflammation. Inducible nitric oxide synthase (iNOS), expressed by both macrophages and epithelial cells during inflammation, generates the bioreactive molecule NO. In addition to causing DNA lesions, NO can directly interact with proteins by nitrosylation and nitosation reactions. The consequences of protein damage by NO appear to be procarcinogenic. For example, NO inhibits DNA repair enzymes such as human 8-oxodeoxyguanosine DNA glycosylase 1 and blocks apoptosis via nitrosylation of caspases. These cellular events permit DNA damage to accumulate, which is required for the numerous mutations necessary for development of invasive cancer. NO also promotes cancer progression by functioning as an angiogenesis factor. Strategies to inhibit NO generation during chronic inflammation or to scavenge reactive nitrogen species may prove useful in decreasing the risk of cancer development in chronic inflammatory gastrointestinal diseases.

Animals↗

Inflammatory cytokines induce DNA damage and inhibit DNA repair in cholangiocarcinoma cells by a nitric oxide-dependent mechanism.

Chronic infection and inflammation are risk factors for the development of cholangiocarcinoma, a highly malignant, generally fatal adenocarcinoma originating from biliary epithelia. However, the link between inflammation and carcinogenesis in these disorders is obscure. Because nitric oxide (NO) is generated in inflamed tissues by inducible nitric oxide synthase (iNOS) and because DNA repair proteins are potentially susceptible to NO-mediated nitrosylation, we formulated the hypothesis that inflammatory cytokines induce iNOS and sufficient NO to inhibit DNA repair enzymes leading to the development and progression of cholangiocarcinoma. iNOS and nitrotyrosine were demonstrated in 18/18 cholangiocarcinoma specimens. Furthermore, iNOS and NO generation could be induced in vitro by inflammatory cytokines (mixture of interleukin-1beta, IFN-gamma, and tumor necrosis factor alpha) in three human cholangiocarcinoma cell lines. NO-dependent DNA damage as assessed by the comet assay was demonstrated during exposure of the three cholangiocarcinoma cell lines to cytokines. Moreover, global DNA repair activity was inhibited by 70% by a NO-dependent process after exposure of cells to cytokines. Our data indicate that activation of iNOS and excess production of NO in response to inflammatory cytokines cause DNA damage and inhibit DNA repair proteins. NO inactivation of DNA repair enzymes may provide a link between inflammation and the initiation, promotion, and/or progression of cholangiocarcinoma.

Animals↗

Obstructed labour - a preventable entity.

We present a clinical study of 204 cases of obstructed labour admitted over a period of 5 years between 1991-92 and 1996-97 in a rural institute in central India. They constituted 1.9% of births. Seventy-one per cent of the cases were from the rural area (similar to the overall patient population in this hospital), 31.4% women were primigravidae. Of the subjects, 64.7% were between 20 and 29 years. Malpresentation was the cause in 53.2%, followed by cephalopelvic disproportion, in 41.1%. Intraoperative incomplete rupture was detected in 5.9% cases. The commonest maternal morbidity was intraoperative extension of uterine incision at the time of caesarean section, mostly lateral (14.0%). Of the women, 12.5% had intrapartum or postpartum sepsis. The perinatal mortality was 160/1000. There was no maternal mortality. Timely diagnosis of malpresentation, pelvic contraction and use of a partogram at all levels could have prevented obstructed labour. In these unfortunate situations, judicious selection of subjects for caesarean section is appropriate, avoiding heroic vaginal procedures even with a dead baby. Infection devitalises tissues and attempts at vaginal delivery may be dangerous.

Journal Article↗

Efficient in vitro repair of 7-hydro-8-oxodeoxyguanosine by human cell extracts: involvement of multiple pathways.

To investigate the repair of oxidative damage in DNA, we have established an in vitro assay utilizing human lymphoblastoid whole cell extracts and plasmid DNA damaged by exposure to methylene blue and visible light. This treatment has been shown to produce predominantly 7-hydro-8-oxodeoxyguanosine (8-oxodG) in double-stranded DNA at low levels of modification. DNA containing 1. 6 lesions per plasmid is substrate for efficient repair synthesis by cell extracts. The incorporation of dGMP is 2.7 +/- 0.5 times greater than the incorporation of dCMP, indicating an average repair patch of 3-4 nucleotides. Damage-specific nicking occurs within 15 min, while resynthesis is slower. The incorporation of dGMP increases linearly, while the incorporation of dCMP exhibits a distinct lag. Extracts from xeroderma pigmentosum (XP) complementation groups A and B exhibit 25 and 40%, respectively, of the incorporation of dCMP compared with normal extracts, but extracts from an XP-D cell line exhibit twice the activity. These data suggest that the efficient repair of 8-oxodG lesions observed in human cell extracts involves more than one pathway of base excision repair.

8-Hydroxy-2'-Deoxyguanosine↗

Risk assessment in cervical dysplasia patients by single cell gel electrophoresis assay: a study of DNA damage and repair.

Precancerous lesions of cervix, commonly known as dysplasia, present a complex problem because of their biological behavior. Increased genetic instability, either inherent or induced by some external mutagen, is considered as a primary event or a predisposing factor to neoplastic transformation. The relationship between genetic instability and susceptibility towards cervical cancer was evaluated with the comet or single cell gel electrophoresis (SCGE) assay. Among precancerous individuals, genomic instability was observed in cervical epithelial cells and peripheral blood leukocytes. The mean basal DNA damage and mean susceptibility to DNA damage by the mutagen (MNNG) treatment increased whereas repair capacity decreased with progression of the disease in a stepwise manner. Inter and intra individual variability was maximum in cancerous group. Risk was estimated by giving a predictive value for each precancerous individual. In combination with morphological, biochemical, and cytogenetic parameters, the SCGE assay may serve as a novel tool to predict the fate of cervical dysplasia.

Adolescent↗

Non-surgical palliation of malignant oesophageal obstruction in the elderly.

Fourteen elderly patients with malignant oesophageal obstruction have undergone palliative intubation with a modified Celestin tube inserted under intravenous sedation using a fibreoptic endoscopic technique. Eleven patients surviving the two-week post-insertion period had a mean survival time of five months (range 1--20 months). In the majority, palliation was excellent, most patients being able to eat a virtually normal diet within 36 hours of the procedure. This technique has a much lower mortality and morbidity in the elderly than palliative surgery and allows for early mobilization and discharge. Earlier referral of suitable patients is necessary and the technique deserves wider application.

Adenocarcinoma↗