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148篇 您的检索式:作者名="Rengaraj"
    题名 作者 年代 出处 被引量
1Health benefits of black rice——A review显示文摘Rice has been a staple food across the globe since time immemorial.Generally,different types of rice,such as white,purple,red,brown,and black rice,are named following the physical appearance of the rice bran.The color of the rice bran differs due to the presence of pigments in the rice varieties.Apart from general uses like cooking and fodder for cattle,rice has also been extensively involved in the field of medicine,some of which have been scientifically addressed.Although pigmented rice varieties have a history of heritage and are admired all over the world,awareness concerning the benefits of consuming these types of rice is limited.The main theme of this research article is to define the scientifically proven medicinal properties of black rice.The health properties of black rice are experimentally renowned,and gathered empirical data regarding the physiological and pharmacological activity of black rice remarkably supports the use of black rice in nutritional therapy.Balasubramaniam Jaya Prasad Pazhaniyandi Subramania Sharavanan Rengaraj Sivaraj 2019Grain & Oil Science and Technology2019,2,4:7
2花状硫化铟纳米多级结构的液相合成及形貌调控机理显示文摘以C2H5NS和In(NO3)3为前驱物,采用简单的液相法成功制备了In2S3纳米多级结构,C2H5NS作为硫源的同时也起到了模板剂的作用.研究结果表明,前驱物浓度对In2S3形貌控制起着重要作用.随着In(NO3)3/C2H5NS摩尔比从1∶1.5增加到1∶6,In2S3纳米花呈现了不同的形貌和尺寸.XRD谱图显示,In2S3纳米花晶体具有立方结构.SEM和TEM照片显示,制备的In2S3纳米结构呈多级花状结构,这种结构由纳米片堆积组装而成.通过第一性原理计算并结合实验结果对C2H5NS影响纳米片生长的机理进行了分析,结果表明C2H5NS在In2S3(001)晶面上的吸附可以有效降低晶面的表面能,起到稳定晶面的作用;纳米花的形成是在C2H5NS影响In2S3的晶面稳定性及其成核速率之间的一个协同效应.In2S3纳米晶的形貌可以通过调整反应溶液中的C2H5NS浓度来调节.戚克振 王艳 付嘉琦 Rengaraj Selvaraj 王贵昌 2014高等学校化学学报2014,35,12:5
3Acquisition of pluripotency in the chick embryo occurs during intrauterine embryonic development via a unique transcriptional network显示文摘Background: Acquisition of pluripotency by transcriptional regulatory factors is an initial developmental event that is required for regulation of cell fate and lineage specification during early embryonic development. The evolutionarily conserved core transcriptional factors regulating the pluripotency network in fishes, amphibians, and mammals have been elucidated. There are also species-specific maternally inherited transcriptional factors and their intricate transcriptional networks important in the acquisition of pluripotency. In avian species, however, the core transcriptional network that governs the acquisition of pluripotency during early embryonic development is not well understood.Results: We found that chicken NANOG(c NANOG) was expressed in the stages between the pre-ovulatory follicle and oocyte and was continuously detected in Eyal-Giladi and Kochav stage I(EGK.I) to X. However, c POUV was not expressed during fol iculogenesis, but began to be detectable between EGK.V and VI. Unexpectedly, c SOX2 could not be detected during fol iculogenesis and intrauterine embryonic development. Instead of c SOX2, c SOX3 was maternally inherited and continuously expressed during chicken intrauterine development. In addition, we found that the pluripotency-related genes such as c ENS-1, c KIT, c LIN28 A, c MYC, c PRDM14, and c SALL4 began to be dramatical y upregulated between EGK.VI and VII.Conclusion: These results suggest that chickens have a unique pluripotent circuitry since maternally inherited c NANOG and c SOX3 may play an important role in the initial acquisition of pluripotency. Moreover, the acquisition of pluripotency in chicken embryos occurs at around EGK.VI to VI I.Jae Yong Han Hyo Gun Lee Young Hyun Park Young Sun Hwang Sang Kyung Kim Deivendran Rengaraj Byung Wook Cho Jeong Mook Lim 2018Journal of Animal Science and Biotechnology2018,9,3:2
4Efficiency of Oryza punctata extract on glucose regulation: Inhibition of α-amylase and α-glucosidase activities显示文摘Red rice(Oryza punctata) is a type of unpolished rice which has higher nutritional value compared to white rice or even polished rice. Owing to higher nutritive content and metabolites, dieticians strongly advise red rice for peoples with metabolic disorders including diabetics. However, the mechanism of action and contents of secondary metabolites in Indian red rice variety not reported scientifically. Therefore, the present study aimed to evaluate its mechanism of action through inhibitory effect of α-amylase and α-glucosidase. Initially, the whole grain of red rice was macerated with methanol at room temperature for 2 weeks. Then, the dried and powdered, samples at different concentrationfi(2.5, 10, 40, and 80 μg/m L) were employed to nd out in vitro inhibitory effects on α-amylase and α-glucosidase. In addition, an enzyme kinetics of effective extract was calculated by Line-weaver Burk(LWB) plot analysis. Moreover,the valuable metabolites in the efficient methanolic extract were quantified using high performance liquid chromatography(HPLC). The results demonstrated that red rice methanolic extract(RRMEt) possess strong inhibitory activity onα-amylase and α-glucosidase compared with acarbose(P < 0.01). The IC50 values of RRMEt was found to be 29.7 ±7.43 μg/m L for α-amylase and 20.4 ± 0.25 μg/m L for α-glucosidase. LWB indicated that RRMEt is an uncompetitive inhibitor. Further, HPLC analysis revealed protocatechuic acid, catechin, and chlorogenic acids were more abundant in RRMEt among the fourteen metabolites. We conclude, the efficiency of enzyme inhibition through the influence of phenolic compounds in RRMEt.Balasubramaniam Jaya Prasad Pazhaniyandi Subramania Sharavanan Rengaraj Sivaraj 2019Grain & Oil Science and Technology2019,2,2:2
5Enhanced photocatalytic activity of TiO2 by doping with Ag for degradation of 2, 4, 6-trichlorophenol in aqueous suspension显示文摘S Rengaraj X Z Li 2006Journal of Molecular Catalysis A2006,243,1:1
6Kinetics and equilibrium adsorption study of lead(Ⅱ)onto activated carbon prepared from coconut shell显示文摘SEKAR M SAKTHI V RENGARAJ S 2004Journal of Colloid and Interface Science2004,279,2:1
7Regulation of glucose phosphate isomerase by the 3'UTR-specific miRNAs miR-302b and miR-17-5p in chicken primordial germ cells显示文摘Rengaraj D Park T S Lee S I 2013Biol Reprod2013,89,2:1
8Removal of chromium from water and wastewater by ion exchange resins 显示文摘RENGARAJ S YEON K H MOON S H 2001J Hazard Mater2001,87,1:1
9Removal of Clu - omium from Water and Wastewater by Lon Exchange Resins 显示文摘Rengaraj S Kyeong - Ho Yeon Seung - Hyeon Moon 2001Journal of Hazardous Materials2001,,87:1
10Removal of phenol from aqueous solution and resin manufacturing industry wastewater using an agricultural waste: rubber seed coat显示文摘 Seung-Hyeon Noon 2002Journal of Hazardous Materials2002,89,23:1
11Characteristics of a longitudi-nal/ transverse coupling slot in crossed rectangularwaveguides显示文摘RENGARAJ AN S R 1989IEEE Microwave Theory and Tech-niques Society1989,37,8:1
12Studies on adsorptive removal of Co(II), Cr(III) and Ni(II) by IRN77 cation-exchange resin显示文摘S. Rengaraj Kyeong-Ho Yeon So-Young Kang Jong-Un Lee Kyung-Woong Kim Seung-Hyeon Moon 2002Journal of Hazardous Materials2002,,2:1
13Removal of phenol from aqueous solution and resin manufacturing industry wastewater using an agricultural waste: rubber seed coat显示文摘 Moon S H Sivabalan R 2002 2002J Hazard Mater2002,89,:1
14Kinetics of adsorption of Co(H) removal from water and wastewater by ion exchange resins显示文摘RENGARAJ S MOON S H 2002Water Research2002,36,7:1
15Enhanced photocatalytic reduction reactionover Bi3 + -Ti02 nanoparticles in presence of formic acid as a holescavenger显示文摘Rengaraj S Li X Z 2007Chemosphere2007,66,5:1
16Kinetics and equilibrium adsorption study of lead (l/) onto activated carbon pre- pared from coconut shell 显示文摘Sekar M Sakthi V Rengaraj S 2004J Collo lnte~fa Sci2004,27,9:1
17Activated carbon from rubber seed palm seed coats: Preparation and characterization 显示文摘Rengaraj S Arabindoo B Murugesan V 1988Journal of Scientific and Industrial Research1988,57,3:1
18Adsorption characteristics ofcu (ii)onto ion exchange resins 252 h and 1500 h:Kinetics,isotherms and error analysis显示文摘Rengaraj S Yeon J W Kim Y 2007Joumal OfHazardousMaterials2007,143,12:1
19Removal of Chromium from Water and Wastewater by Ion Exchange Resins 显示文摘Rengaraj S Yeon K H Moon S H 2001Journal of Hazardous Materials2001,87,13:1
20Removal of phenol from aqueous solution and resin manufacturing industry wastewater using an agricultural waste: rubber deed coat 显示文摘Rengaraj S Moon S H Sivabalan R 2002Journal of Hazardous Materials2002,89,23:1
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