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Phytochemical constituents and antibacterial activity of some green leafy vegetables 被引量:2
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作者 Ramesa Shafi Bhat sooad al-daihan 《Asian Pacific Journal of Tropical Biomedicine》 SCIE CAS 2014年第3期189-193,共5页
Objective:To investigate the antibacterial activity and photochemicals of five green leafy vegetables against a panel of five bacteria strains.Methods:Disc diffusion method was used to determine the antibacterial acti... Objective:To investigate the antibacterial activity and photochemicals of five green leafy vegetables against a panel of five bacteria strains.Methods:Disc diffusion method was used to determine the antibacterial activity,while kanamycin was used as a reference antibiotic.The phytochemical screening of the extracts was performed using standard methods.Results:All methanol extracts were found active against all the test bacterial strains.Overall maximum extracts shows antibacterial activity which range from 6 to 15 mm.Proteins and carbohydrates was found in all the green leaves,whereas alkaloid.steroids.saponins,flavonoids.tannins were found in most of the test samples.Conclusions:The obtain result suggests that green leafy vegetables have moderate antibacterial activity and contain various pharmacologically active compounds and thus provide the scientific basis for the traditional uses of the studied vegetables in the treatment of bacterial infections. 展开更多
关键词 Green LEAFY VEGETABLES ANTIBACTERIAL ACTIVITY PHYTOCHEMICAL screening.
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Association between preterm birth risk and polymorphism and expression of the DNA repair genes OGG1 and APE1 in Saudi women
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作者 ARWA OSAMA NEMER MOHAMMAD SAUD AL ANAZI +5 位作者 RAMESA SHAFI BHAT ARJUMAND S.WARSY ZENEB A BABAY MOHAMMAD HADDAR JILANI SHAIK sooad al-daihan 《BIOCELL》 SCIE 2018年第1期1-6,共6页
Genomic instability and mutations caused by increases in oxidative stress during pregnancy can damage the fetoplacental unit and can upshot preterm birth.Oxidative damage to DNA may possibly be involved in etiology of... Genomic instability and mutations caused by increases in oxidative stress during pregnancy can damage the fetoplacental unit and can upshot preterm birth.Oxidative damage to DNA may possibly be involved in etiology of preterm birth(PTB)which can be repaired by DNA repair gene.In the present study,we assessed the association of base excision repair gene family by analyzing the association of single nucleotide polymorphisms and genes expression in 8-oxoguanine glycosylase-1(OGG1)and apurinic-apyrimidinic endonuclease 1(APE1)genes with risk of preterm birth in Saudi women.We analyzed genotypes of four single nucleotide polymorphisms(SNPs)(rs1052133,rs293795,rs2072668 and rs2075747)in OGG1 gene and three SNPs(rs1130409,rs3136814,and rs3136817)in APE1 gene using TaqMan Genotyping assay kits in 50 pairs of preterm cases and individually matched controls.Also,gene expression level was explored by RT-PCR in 10 pairs of preterm placental tissues and individually matched normal placental tissues.Two OGG1 SNP,rs1052133(OR=0.497;c2=1.11;p=0.292)and rs2072668(OR=0.408;c2=1.90;p=0.167)and one APE1 SNP rs3136817(OR=0.458;c2=0.40;p=0.527)showed nonsignificant protective effect against PTB development.The expression of both genes under study was found lower in the PTB patients.Genotype and allele frequencies of both gene SNPs did not show any association with the risk of preterm delivery in Saudi women(P˃0.05).However,synthesis and release of OGG1 and APE1 proteins decreased in preterm placental tissues compared to term delivery reflects the probability of being one of the mechanisms leading to preterm birth. 展开更多
关键词 Preterm birth OGG1 and APE1 genes Oxidative stress SNPS
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