Search PubMedSearch

Biomedical subjects

J Kaur

Publications and source records attributed to J Kaur.

At least 19 recordsLinked to original sources

P-glycoprotein is positively correlated with p53 in human oral pre-malignant and malignant lesions and is associated with poor prognosis.

P-glycoprotein (Pgp) encoded by the MDR1 gene, a predictor of chemoresistance, may also serve as a prognosticator of clinical outcome in cancer patients. The mutant tumour-suppressor p53 protein has been shown to activate the MDR1 promoter, whereas the wild-type p53 represses this activity in cultured cells. We have described the differential expression of Pgp and p53 proteins in betel- and tobacco-related oral tumorigenesis in the Indian population. Herein, Pgp expression was analysed in relation to p53 protein accumulation in pre-malignant and malignant oral lesions by immunohistochemical and flow-cytometric analyses. The relationship between Pgp and p53 protein accumulation and clinicopathological parameters as well as prognosis was determined. Expression of Pgp was observed in 81% of oral squamous cell carcinomas (SCCs) and 71% of pre-malignant lesions. Sixty-five of 75 p53-positive oral SCCs and 21/24 p53-positive pre-malignant lesions showed expression of Pgp. Significant correlation between Pgp and p53 expression was found not only in oral SCCs but also in pre-malignant lesions. Co-expression of Pgp and p53 proteins was indicative of poor prognosis. Follow-up studies of 35 patients showed that 7 of 10 oral SCCs with accumulation of Pgp and p53 proteins also exhibited shorter disease-free survival (recurrence/metastases). Our findings provide clinical evidence for a significant association between Pgp and p53 protein expression in oral tumorigenesis and may account for the aggressive nature of the tumour and poor prognosis.

ATP Binding Cassette Transporter, Subfamily B, Mem

Antimicrobial activity of spices.

Spices have been shown to possess medicinal value, in particular, antimicrobial activity. This study compares the sensitivity of some human pathogenic bacteria and yeasts to various spice extracts and commonly employed chemotherapeutic substances. Of the different spices tested only garlic and clove were found to possess antimicrobial activity. The bactericidal effect of garlic extract was apparent within 1 h of incubation and 93% killing of Staphylococcus epidermidis and Salmonella typhi was achieved within 3 h. Yeasts were totally killed in 1 h by garlic extract but in 5 h with clove. Some bacteria showing resistance to certain antibiotics were sensitive to extracts of both garlic and clove. Greater anti-candidal activity was shown by garlic than by nystatin. Spices might have a great potential to be used as antimicrobial agents.

Anti-Bacterial Agents

Engineering of pyridine nucleotide specificity of nitrate reductase: mutagenesis of recombinant cytochrome b reductase fragment of Neurospora crassa NADPH:Nitrate reductase.

The cytochrome b reductase fragment of Neurospora crassa NADPH:nitrate reductase (EC 1.6.6.3) was overexpressed in Escherichia coli with a His-tag for purification after mutation of the NADPH binding site. The recombinant enzyme fragment was altered by site-directed mutagenesis guided by the three-dimensional structure of cytochrome b reductase fragment of corn NADH:nitrate reductase (EC 1.6.6.1). Substitution of Asp for Ser920 (using residue numbering for holo-NADPH:nitrate reductase of N. crassa) greatly increased preference for NADH. This mutant had nearly the same NADH:ferricyanide reductase kcat as wild-type with NADPH. Substitutions for Arg921 had little influence on coenzyme specificity, while substitution of Ser or Gln for Arg932 did. The cytochrome b reductase mutant with greatest preference for NADH over NADPH was the doubly substituted form, Asp for Ser920/Ser for Arg932, but it had low activity and low affinity for coenzymes, which indicated a general loss of specificity in the binding site. Steady-state kinetic constants were determined for wild type and mutants with NADPH and NADH. Wild type had a specificity ratio of 1100, which was defined as the catalytic efficiency (kcat/Km) for NADPH divided by catalytic efficiency for NADH, while Asp for Ser920 mutant had a ratio of 0.17. Thus, the specificity ratio was reversed by over 6000-fold by a single mutation. Preference for NADPH versus NADH is strongly influenced by presence/absence of a negatively charged amino acid side chain in the binding site for the 2' phosphate of NADPH in nitrate reductase, which may partially account for existence of bispecific NAD(P)H:nitrate reductases (EC 1.6.6.2).

Amino Acid Sequence

Prognostic significance of p53 protein overexpression in betel- and tobacco-related oral oncogenesis.

We have previously reported overexpression of p53 protein in tobacco-related oral dysplasia and squamous cell carcinoma (SCC) in the Indian population. A follow-up study was carried out to determine the prognostic significance of an accumulation of p53 protein during oral tumorigenesis. One hundred and two of 145 (70%) of oral SCCs and 39/75 (52%) of oral dysplasias showed overexpression of p53 protein, while only 3 of 107 (3%) normal oral tissues showed a detectable level of the protein. Follow-up studies of these patients suggest that an accumulation of p53 protein may be involved in the early phases of oral SCC development and indicate the predisposition of a particular premalignant lesion towards malignancy. In patients with premalignant lesions, the median transition time (premalignancy to malignancy) was significantly shorter in p53 positive cases than in p53 negative cases (p = 0.013). Among the oral cancer patients, univariate analysis showed that alteration in p53 expression was associated with significantly decreased disease-free survival. The p53 positive cases showed decreased median disease-free survival time (no recurrence/metastasis) compared with the p53 negative cases (p = 0.013), indicating that p53 accumulation may serve as a prognostic indicator in oral cancer patients.

Adult

Ethanol effects on lipid peroxidation and glutathione-mediated defense in rat small intestine: role of dietary fats.

The effect of ethanol feeding for 5 weeks on lipid peroxidation status of small intestine was studied in rats maintained on either a rat pellet (RP) or a semisynthetic diet containing coconut oil (CCO), corn oil (CO), or fish oil (FO). Highest rate of iron/ascorbate-induced lipid peroxidation was observed in intestinal mucosa of FO-fed rats, which was further elevated (p < 0.05) upon ethanol administration. Purified brush borders from all the ethanol-treated dietary groups were more susceptible to iron-induced lipid peroxidation. Level of nonprotein thiols was increased by ethanol feeding to rats given CO or FO. FO-fed rats exhibited increased activities of glutathione reductase (GR), glutathione-S-transferase (GST), and catalase (Cat). Glutathione peroxidase (GPx) was the lowest in the CCO group. Ethanol-treated FO group exhibited increased GST and GPx activities compared to controls, whereas in rats fed the RP or CO diet, ethanol feeding significantly decreased GST activity. GR and Cat activities were not affected under these conditions. Thus, ethanol exposes the small intestinal mucosa to oxidative stress. The effects were more pronounced in rats fed n-3 fatty acid-rich (FO) diet. The corresponding rise in GPx and GST levels may reflect the adaptive changes in intestine.

Animals

Cell surface expression of 70 kDa heat shock protein in human oral dysplasia and squamous cell carcinoma: correlation with clinicopathological features.

To understand the role of 70 kDa heat shock protein (HSP70) in the pathogenesis of oral cancer, its expression was studied in human normal, premalignant and malignant oral mucosa. Cell surface expression of HSP70 was assessed in oral tissue specimens by flow cytometric analysis using a mouse monoclonal antibody against HSP70. A significant increase in cell surface expression of HSP70 was observed as the tissue progressed from normal to dysplasia towards carcinoma. Correlation of HSP70 expression with clinicopathological features showed a positive association with the severity of dysplasia. Among the oral tumours assessed, a significantly positive association was observed between HSP70 expression and dedifferentiation of oral squamous cell carcinomas (SCCs). Poorly differentiated tumours showed significantly higher levels of HSP70 expression on the surface of tumour cells, compared with well differentiated carcinomas (P < 0.05). Cell surface expression of HSP70 was observed to be significantly higher in clinically advanced stage tumours (T3/T4), compared with T1/T2 stage tumours (P < 0.05). The variation in cell surface expression of HSP70 in normal, dysplastic and malignant oral lesions suggests that it is differentially expressed during oral tumorigenesis and may play a specific role in the pathogenesis of oral cancer.

Carcinoma, Squamous Cell

Expression of 70-kDa heat shock protein in oral lesions: marker of biological stress or pathogenicity.

We showed differential expression of HSP70 during oral tumorigenesis. The precise functional role of HSP70 overexpression in the pathogenesis of betel and tobacco related oral cancer remains to be determined. To evaluate the utility of HSP70 as an indicator of the biological stress experienced by tumour cells or the malignant potential of oral epithelial lesions and predicting clinical outcome, its expression was assessed in different stages of oral carcinogenesis by immunohistochemical analysis and correlated with clinicopathological parameters. Overexpression of HSP70 protein was observed in 38 of 64 (59%) dysplastic lesions and 92 of 125 (74%) oral squamous cell carcinomas (SCCs) which included 76 of 105 cases (72%) of primary oral SCCs and 16 of 20 (80%) of recurrent oral SCCs. A significant correlation of HSP70 expression was observed with severity of dysplasia (P = 0.0006767), poor histological differentiation of primary tumours (P = 0.0184348), increase primary tumour size (P = 0.0221103) and consumption of betel and tobacco (P < 0.01). Follow-up studies showed that in patients with premalignant lesions the median transition time (premalignancy to malignancy) was significantly shorter in HSP70 overexpressing cases than those showing basal level of HSP70 (P = 0.012). Oral cancer patients with elevated levels of HSP70 showed decreased median disease-free survival time (no recurrence/metastasis) than those showing basal HSP70 immunoreactivity (P = 0.0246). The results suggest that HSP70 expression may not be a mere marker of biological stress but may also be implicated in the pathogenesis of oral cancer.

Areca

Factors affecting the heat resistance of Escherichia coli O157:H7.

Escherichia coli O157:H7 has been reported as being not particularly heat resistant. However, several factors which might increase its heat resistance have been investigated in this study using five strains. Increase in growth temperature to 40 degrees C, as found in the cow gut, heat-shock at sub-lethal temperatures of 42, 45, 48 and 50 degrees C, and variable heating rate (1 degree C min-1 to 23 degrees C min-1) had no dramatic effect on heat resistance. Growth phase had a marked impact on heat resistance; late stationary phase cells were more heat-resistant than were log phase cells. The difference in heat resistance between the two phases of growth became more pronounced when cells were resuspended in fresh nutrient broth; heat resistance of late stationary phase cells increased dramatically whereas no such effect was observed with log phase cells. The addition of polyphosphates to the heating medium did not increase heat resistance. A reduction in water activity of the heating medium from 0.995 to levels between 0.980 and 0.960 also resulted in a marked increase in heat resistance. This effect was more pronounced under conditions of extremely low water activity created by resuspending late stationary phase cells in sunflower oil. Survivors were detected even after a heat treatment at 60 degrees C for 1 h or 70 degrees C for 5 min. It can be confirmed that this serotype has no unusual heat resistance and that the heating environment markedly affects resistance.

Animals

Thermosensitive liposomal taxol formulation: heat-mediated targeted drug delivery in murine melanoma.

Taxol, an antitumour alkaloid which stabilizes microtubules, demonstrates marked activity against several tumours. However, due to its low aqueous solubility, Cremophor EL (polyoxyethylated castor oil) is used as the excipient in pharmaceutical drug preparations of taxol. This has toxic side effects, thereby limiting the clinical use of taxol in cancer therapy. The aim of this study was to design a novel taxol formulation using thermosensitive liposomes in order to eliminate the Cremophor EL vehicle and improve the antitumour activity of taxol by site-specific drug delivery. Temperature-sensitive liposomes encapsulating taxol were prepared using the natural lipids egg phosphatidylcholine and cholesterol in combination with ethanol. The liposomes have a phase transition temperature (Tm) of 43 degrees C. The in vivo efficacy of thermosensitive liposome encapsulated taxol was determined in B16F10 murine melanoma transplanted into C57BI/6 mice in combination with local hyperthermia. A significant reduction in tumour volume and an increase in survival time was observed in tumour-bearing mice treated with a combination of hyperthermia and thermosensitive liposome encapsulated taxol compared with animals treated with an equivalent dose of free taxol with or without hyperthermia. These results suggest that thermosensitive liposome encapsulated taxol in combination with hyperthermia may be useful in improving the therapeutic efficacy of taxol in the treatment of melanoma.

Animals

Regional effects of ageing on Na+,K(+)-ATPase activity in rat brain and correlation with multiple unit action potentials and lipid peroxidation.

Effects of ageing on Na+,K(+)-ATPase activity in crude synaptosomal fractions from the rat brain parietal cortex, hippocampus, striatum and thalamus has been studied. From 12 months to 24 months, a progressive decline in enzyme activity in the parietal cortex, hippocampus and striatum was found which correlated with increase in lipid peroxidation in the three brain regions. In the thalamus, ageing did not affect the enzyme activity and lipid peroxidation. Age-related decline in multiple unit action potentials was also observed in two brain regions, viz. hippocampus and parietal cortex. Statistical correlations calculated by Pearson's correlation coefficient showed that decline in Na+,K(+)-ATPase activity correlated to decline in multiple unit action potentials. There was rise in lipid peroxidation also and the data indicate that age-related changes in lipid peroxidation and Na+,K(+)-ATPase activity contribute to the deterioration of electrophysiological activity.

Action Potentials

Harmaline interactions with yeast invertase.

The effect of harmaline, a plant alkaloid has been studied on yeast invertase activity in the absence and presence of 50mM Na+ as a function of pH. Harmaline (1-3 mM) inhibited the invertase activity at pH 5.2, 6.8 and 8 both in the absence (44-92%) and (22-85%) of Na+ ions. Kinetic analysis revealed that harmaline is a non-competitive inhibitor of invertase, at pH 5.2 and 6.8 but at pH 8, it produced a mixed type of inhibition, Km increased by 450% and 175% and Vmax decreased by 82% and 63% in the absence and presence of 50mM Na ions respectively. The observed inhibition of invertase by harmaline was reversible in nature. These findings suggest that the presence of Na+ site is not a prerequisite for the inhibition of enzyme by harmaline.

Glycoside Hydrolases

Serum p53 antibodies in patients with oral lesions: correlation with p53/HSP70 complexes.

The functional significance of alterations in expression of tumour-suppressor gene p53 and 70-kDa heat-shock protein (HSP70) in eliciting p53-specific humoral response in oral-cancer patients is not yet known. In this study, p53 auto-antibodies were analyzed in sera from oral-cancer patients by immunoblotting and results were correlated with clinicopathological features of the patients as well as with the levels of HSP70, p53 and p53-HSP70 complexes in matched patients' tumour tissue, for determining their diagnostic/prognostic significance and relationship to survival. Circulating anti-p53 antibodies were observed in 7 of 30 cancer patients and 3 of 25 patients with pre-malignant lesions. Over-expression of p53 protein in matched oral lesions was observed in 22 of these 30 cancer patients and 14 of 25 patients with dysplastic lesions. No detectable levels of p53 protein or anti-p53 antibodies were observed in normal subjects (15 cases). Elevated levels of HSP70 were observed in 23 of these 30 oral tumours and 17 of 25 dysplastic lesions. All the anti-p53-antibody-seropositive cases showed elevated levels of p53 and HSP70 proteins, as well as formation of p53-HSP70 complexes, in matched dysplastic or malignant lesions, suggesting that these molecular alterations may be early events in oral tumorigenesis and are implicated in eliciting p53-specific humoral immune response in these patients. Anti-p53-antibody-seropositive cases showed poor prognosis and significantly decreased overall disease-free survival in comparison with the seronegative cases. Detection of circulating anti-p53 antibodies may serve as a useful non-invasive marker for identifying oral tumours having poor prognosis.

Adult

Increased longevity of kinetin-fed Zaprionus fruitflies is accompanied by their reduced fecundity and enhanced catalase activity.

Kinetin, a cytokinin plant growth hormone, retards senescence in plants, delays aging in human cells in culture, slows down development of insects and prolongs their lifespan. We have now observed that the increased longevity of Kn-fed Zaprionus fruitflies was accompanied by an increase in the specific activity of catalase during developmental stages and in adult insects. In addition, the egg laying capacity of Kn-fed fruitflies was reduced drastically as compared with those kept on a normal diet. These results support the view that improved maintenance of the soma and prolongation of its life is achieved at the cost of decreased reproductive activity.

Aging

Role of N-terminal domain of streptokinase in protein transport.

Streptokinase (SK), an extracellular protein of several haemolytic strains of Streptococcus, is utilized as a potent thrombolytic agent for the treatment of various myocardial disorders. Functional properties of SK remain unchanged when the first 13 N-terminal amino acid (aa) residues are removed. At present, role of this segment in protein structure function is unclear. skc gene encoding for the mature SK and its deletion variant, lacking its first 13 aa residues, were cloned and expressed in E. coli. Full length SK, deprived of any leader sequences, was able to translocate slowly, across the cyto-plasmic and outer membranes of E.coli. Whereas, SK derivative, devoid of its first 13 N-terminal aa residues, could not do so. Cell fractionation studies as well as genetic evidences utilizing alkaline phosphatase fusion, point towards the existence of additional information for protein transport, within the N-terminal domain of SK. To further investigate the role of this region in protein secretion, genetic fusions were created in between full length and 13 aa deleted SK with OmpA leader peptide. Studies on kinetics of SK export from E.coli, revealed that translocation of protein is 3-4 times faster when the first 13 N-terminal residues of SK are intact. On the basis of results obtained, it has been proposed that the N-terminus of mature SK maintains the export competent status of protein and, thus, confer speed and efficiency upon the translocation process of streptokinase.

Biological Transport

p53-HSP70 complexes in oral dysplasia and cancer: potential prognostic implications.

We have previously shown overexpression of p53 and 70 kDa heat shock protein (HSP70) in potentially malignant, as well as malignant, oral lesions in an Indian population, suggesting that alterations of p53 and HSP70 expression may occur in the early stages of oral tumorigenesis. Herein we report immunological evidence for the specific association between p53 and HSP70 in potentially malignant and malignant oral lesions. This association was indicated by coimmunoprecipitation of p53 and HSP72/73 proteins observed with either an anti-p53 monoclonal antibody or an anti-HSP72/73 antibody. Furthermore, reciprocal blotting analysis showed that HSP72/73 proteins did not share an epitope with p53, confirming that the coimmunoprecipitation of p53 and HSP72/73 is a physical association of the proteins in potentially malignant lesions (dysplasia) and oral squamous cell carcinomas (SCCs). p53-HSP70 complex formation was observed in 19/52 cases of oral SCCs and 10/53 cases of potentially malignant lesions (leucoplakia). Normal oral mucosa did not show the presence of p53-HSP70 complexes (0/20 cases). p53-HSP70 complex formation may be one of the mechanisms of stabilisation of p53 protein resulting in its increased levels in potentially malignant and malignant oral lesions and may be implicated in oral carcinogenesis.

Adult

Dietary fat effects on brush border membrane composition and enzyme activities in rat intestine.

The effect of dietary fats on the chemical composition and enzyme activities has been studied in intestinal brush border membranes (BBM) or rats. Animals were given commercial rat pellet diet (RP) or semisynthetic diet rich in either saturated [coconut oil (CCO))] or polyunsaturated [n-6, corn oil (CO) or n-3, fish oil (FO)] fat at the 10% level for 5 weeks. The membrane cholesterol/phospholipid ratio was augmented in CO- or RP-fed rats. There was an increase in level of saturated fatty acids in BBM from CCO- or FO-fed animals. n-3 polyunsaturated fatty acid content was raised in FO-fed rats, while the proportion of linoleic acid and arachidonic acid was enhanced in animals given a CO diet. Membrane fluidity was in the order of CCO < RP = CO < FO. The membrane hexose content was high (p < 0.05) in the CCO group. Hexosamines were elevated (p < 0.05) in CCO- or FO-fed rat brush borders. Membrane fucose was unaltered, while sialic acid content was elevated in CO- (p < 0.05) and FO- (p < 0.01) fed vs. CCO-fed rats. Lectin binding to brush borders corroborated these findings. The activities of alkaline phosphatase, sucrase and lactase were augmented (p < 0.001) in CCO-fed animals. Leucine-aminopeptidase and sucrase activities were depressed by FO feeding. The activities of PNP-beta-glycosidases were the highest in FO-fed rats. These results indicate that dietary fat quality markedly affects microvillus membrane lipid composition, glycosylation and enzyme functions in rat intestine.

Alkaline Phosphatase

Novel Taxol formulation: polyvinylpyrrolidone nanoparticle-encapsulated Taxol for drug delivery in cancer therapy.

Taxol is a novel antitumor alkaloid that has shown clinical activity against several tumors. However, due to its low aqueous solubility, Cremophor EL (polyoxyethylated castor oil) and ethanol are used as excipients in the pharmaceutical drug formulations. These agents are implicated in hypersensitivity reactions. Hence the goal of this work was to design a novel Taxol formulation using polymeric nanoparticles to eliminate the Cremophor EL vehicle for drug delivery. Polyvinylpyrrolidone nanoparticles containing Taxol were prepared by a reverse microemulsion method. The size of the nanoparticles as determined by quasielastic light scattering was found to be between 50 and 60 nm. The antitumor effect of Taxol encapsulated nanoparticles was evaluated in B16F10 murine melanoma transplanted in C57B1/6 mice. The in vivo efficacy of Taxol-containing nanoparticles as measured by reduction in tumor volume and increased survival time was significantly greater than that of an equivalent concentration of free Taxol. These results suggest that encapsulation of Taxol in polymeric nanoparticles could be useful in improving its therapeutic efficacy in treatment of solid tumors.

Animals

Changes in tubular membrane glycosylation in diabetic, insulin and thyroxin treated rat kidneys.

The effect of insulin, thyroxine and alloxan induced diabetes has been studied on brush border membrane glycosylation in rat kidneys. Expressed on dry weight basis, the membrane protein was elevated in insulin, thyroxine and diabetic membranes compared to the control group. Sialic acid content of the membranes was significantly reduced in insulin and thyroxine injected animals whereas fucose level was unaffected under these conditions. Brush border fucose content was significantly reduced in diabetic animals but sialic acid content was unaffected. Membrane hexose and hexosamines levels were unaltered by hormone treatments, but in diabetic rats hexosamine level was significantly reduced. The binding of radiolabelled UEA, WGA, PNA to purified brush borders corroborated changes in membrane saccharides. These findings suggest the role of hormones in membrane glycosylation of rat kidney tubules.

Animals