Objective To study the modulatory effect of distillate of Ocimum sanctum (traditionally known as Tulsi) leaf extract (DTLE) on genotoxicants. Methods In the present investigation, we studied the antigenotoxic and ...Objective To study the modulatory effect of distillate of Ocimum sanctum (traditionally known as Tulsi) leaf extract (DTLE) on genotoxicants. Methods In the present investigation, we studied the antigenotoxic and anticlastogenic effect of distillate of Tulsi leaf extract on (i) human polymorphonuclear leukocytes by evaluating the DNA strand break without metabolic activation against mitomycin C (MMC) and hexavalent chromium (Cr^+6) and (ii) human peripheral lymphocytes (in vitro) with or without metabolic activation against mitomycin C (MMC), hexavalent chromium (Cr^+6) and B[a]P by evaluating chromosomal aberration (CA) and micronucleus assay (MN). Three different doses of DTLE, 50 μL/mL, 100 μL/mL, and 200 μL/mL were selected on the basis of cytotoxicity assay and used for studying DNA strand break, chromosomal aberration and micronucleus emergence. The following positive controls were used for inducing genotoxicity and clastogenicity MMC (0.29 μmol/L) for DNA strand break, chromosomal aberration and 0.51 μmol/L for micronucleus assay; Potassium dichromate (Cr^+6) 600 μmol/L for DNA strand break and 5 μmol/L for chromosomal aberration and micronucleus assay; Benzo[a]pyrene (30 μmol/L) for chromosomal aberration and 40 μmol/L for micronucleus assay. The active ingredients present in the distillate of Tulsi leaf extract were identified by HPLC and LC-MS. Results Mitomycin C (MMC) and hexavalent chromium (Cr^+6) induced statistically significant DNA strand break of respectively 69% and 71% (P〈0.001) as revealed by fluorometric analysis of DNA unwinding. Furthermore, the damage could be protected with DTLE (50 μL/mL, 100 μL/mL, and 200 μL/mL) on simultaneous treatment. Chromosomal aberration and micronucleus formation induced by MMC, Cr^+6 and B[a]P were significantly protected (P〈0.001) by DTLE with and without metabolic activation. Conclusion Distillate of Tulsi leaf extract possesses antioxidants contributed mainly by eugenol, luteolin and apigenin as identified by LC-MS. These active ingredients may have the protective effect against genotoxicants.展开更多
目的:探讨儿童单纯性血尿与特发性高钙尿症的关系。方法:对87例单纯性血尿患儿进行24h尿钙定量,并测定午餐后2h尿钙/尿肌酐比(C a/cr);确诊特发性高钙尿症患儿临床分型。结果:87例单纯性血尿中,发现24例患儿24h尿钙定量大于0.1m m oL/kg...目的:探讨儿童单纯性血尿与特发性高钙尿症的关系。方法:对87例单纯性血尿患儿进行24h尿钙定量,并测定午餐后2h尿钙/尿肌酐比(C a/cr);确诊特发性高钙尿症患儿临床分型。结果:87例单纯性血尿中,发现24例患儿24h尿钙定量大于0.1m m oL/kg,尿C a/C r比值大于0.21;临床分型,16例为肠吸收型,8例为肾漏型。结论:特发性高钙尿症临床分型为肠吸收型和肾漏型,以肠吸收型为主。展开更多
文摘Objective To study the modulatory effect of distillate of Ocimum sanctum (traditionally known as Tulsi) leaf extract (DTLE) on genotoxicants. Methods In the present investigation, we studied the antigenotoxic and anticlastogenic effect of distillate of Tulsi leaf extract on (i) human polymorphonuclear leukocytes by evaluating the DNA strand break without metabolic activation against mitomycin C (MMC) and hexavalent chromium (Cr^+6) and (ii) human peripheral lymphocytes (in vitro) with or without metabolic activation against mitomycin C (MMC), hexavalent chromium (Cr^+6) and B[a]P by evaluating chromosomal aberration (CA) and micronucleus assay (MN). Three different doses of DTLE, 50 μL/mL, 100 μL/mL, and 200 μL/mL were selected on the basis of cytotoxicity assay and used for studying DNA strand break, chromosomal aberration and micronucleus emergence. The following positive controls were used for inducing genotoxicity and clastogenicity MMC (0.29 μmol/L) for DNA strand break, chromosomal aberration and 0.51 μmol/L for micronucleus assay; Potassium dichromate (Cr^+6) 600 μmol/L for DNA strand break and 5 μmol/L for chromosomal aberration and micronucleus assay; Benzo[a]pyrene (30 μmol/L) for chromosomal aberration and 40 μmol/L for micronucleus assay. The active ingredients present in the distillate of Tulsi leaf extract were identified by HPLC and LC-MS. Results Mitomycin C (MMC) and hexavalent chromium (Cr^+6) induced statistically significant DNA strand break of respectively 69% and 71% (P〈0.001) as revealed by fluorometric analysis of DNA unwinding. Furthermore, the damage could be protected with DTLE (50 μL/mL, 100 μL/mL, and 200 μL/mL) on simultaneous treatment. Chromosomal aberration and micronucleus formation induced by MMC, Cr^+6 and B[a]P were significantly protected (P〈0.001) by DTLE with and without metabolic activation. Conclusion Distillate of Tulsi leaf extract possesses antioxidants contributed mainly by eugenol, luteolin and apigenin as identified by LC-MS. These active ingredients may have the protective effect against genotoxicants.