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29篇 您的检索式:作者名="Reddivari"
    题名 作者 年代 出处 被引量
1Variation in the content of bioactive flavonoids in different brands of orange and grapefruit juices显示文摘Vanamala J Reddivari L Yoo K S 2006Journal of Food Composition and Analysis2006,19,:1
2Resveratrol suppresses IGF-1 induced human colon cancer cell proliferation and elevates apoptosis via suppression of IGF-1R/Wnt and activation of p53 signaling pathways显示文摘Vanamala J Reddivari L Radhakrishnan S 2010BMC Cancer2010,10,:1
3Resveratrol suppresses IGF-1 induced human colon cancer cell proliferation and elevates apoptosis viasuppression of IGF-1R/Wnt and activation of p53 signaling pathways显示文摘Vanamala J Reddivari L Radhakrishnan S 2010BMC Cancer2010,10,:1
4Deteimination of phenolic content, compositon and their contribution to antioxidant activity in specialty potato selections显示文摘Reddivari L Hale A L Miller J C 2007Am J Potato Res2007,84,:1
5The palmitoylation of metastasis suppressor KAI1/CD82 is important for its motility-and invasiveness-inhibitory activity显示文摘Bin Zhou Li Liu Muralidhar Reddivari 2004Cancer Res2004,64,10:1
6Statistical analysis on some critical parameters affecting the formation of protoplasts from the mycclium of Penicillium griseofulvum显示文摘REDDIVARI M SATHYANARNYANA N G VEERANKI V D ct al 2003Biochemical Engineering Journal2003,38,6:1
7Genotype, Location, and Year Influence Antioxidant Activity, Carotenoid Content, Phenolic Con- tent, and Composition in Specialty Potatoes 显示文摘Reddivari L Hale A L Miller J C 2007Journal of Agricul- tural and Food Chemistry2007,55,20:1
8Combined effects of storage and processing on the bioactive compounds and pro-apoptot- ic properties of color-fleshed potatoes in human colon cancer cells显示文摘Madiwale GP Reddivari L Stone M 2012J Agric Food Chem2012,60,11:1
9Anthocyanin fraction from potato extracts is cytotoxic to prostate cancer ceils through activation of caspase-dependent and caspase-independent pathways显示文摘Reddivari L Vanamala J Chintharlapalli S 2007Carcinogenesis2007,28,10:1
10Resveratrol suppresses human colon cancer cell proliferation and induces apoptosis via targeting the pentose phosphate and the ta-lin-FAK signaling pathways-A proteomic approach显示文摘Vanamala J Radhakrishnan S Reddivari L 0,,01:1
11Res- veratrol suppresses IGF-I induced human colon cancer cell proliferation and elevates apoptosis via suppression of IGF-1R/Wnt and activation of p53 signaling pathways 显示文摘Vanamala J Reddivari L Radhakrishuan S 2010BMC Cancer2010,10,:1
12Resveratrol suppresses IGF-1 induced human colon ean- cer cell proliferation and elevates apoptosis via suppres- sion of IGF-1R/Wnt and activation of p53 signaling path- ways显示文摘Vanamala J Reddivari L Radhakrishnan S 2010BMC Caneer2010,10,:1
13Variation in the content of bioactive flavonoids in different brands of orange and grapefruit juices 显示文摘VANAMALA J REDDIVARI L YOO K S 2006Journal of Food Composition and Analysis2006,19,:1
14The palmitoylation of metastasis suppressor KAI1/ CD82 is important for its motility- and invasiveness-inhibitory activity 显示文摘ZHOU B LIU L REDDIVARI M 2004Cancer Res2004,64,20:1
15Resveratrol suppresses IGF-1 induced human colon cancer cell proliferation and elevates apoptosis via suppression of IGF-1R/Wnt and activation of p53 signaling pathways 显示文摘Vanamala J Reddivari L Radhakrishnan S 2010BMC Cancer2010,10,:1
16Variation in the content of bioactive flavonoids in different brands of orange and grapefruit juices显示文摘Vanamala J Reddivari L Yoo K S 2006Journal of Food Composition and Analysis2006,19,23:1
17The palmitoylation of metastasis suppressor KAI1/ CD82 is important for its motility-and invasiveness-inhibitory activity显示文摘Zhou B Liu L Reddivari M 2004Cancer Res2004,64,20:1
18Resveratrol suppresses IGF-1 induced human colon cancer cell proliferation and elevates apoptosis via suppression of IGF-1 R/Wnt and activation of p53 signaling pathways 显示文摘Vanamala J Reddivari L Radhakrishnan S 2010BMC Cancer2010,10,:1
19Combined effects of storage and processing on the bioactive compounds and pro- apoptotic properties of color-fleshed potatoes in human colon cancer cells 显示文摘Madiwale G P Reddivari L Stone M 2012Journal of Agricultural and Food Chemistry2012,60,11:1
20Carbon‐encapsulated anionic‐defective MnO/Ni open microcages: A hierarchical stress‐release engineering for superior lithium storage显示文摘Rational manipulation of multicomponent materials into a sophisticated architecture is a prerequisite for developing lithium‐ion batteries.However,mechanical diffusion‐induced strain accumulation leads to sluggish diffusion kinetics and anomalous structure instability,further resulting in inferior long‐term cyclability and rate performance.Herein,the von Mises stress distribution on open microcages composed of secondary nanoparticles(OCNs)is mechanically investigated by finite element simulation,which elucidates the pronounced stress‐release effect on OCNs architecture.Afterward,a facile metal–organic framework‐derived methodology is proposed for constructing multihierarchical carbon‐encapsulated oxygen vacancy‐enriched MnO/Ni OCNs(OV‐MnO/Ni OCNs).Due to structural and compositional integration,the OV‐MnO/Ni OCNs achieve extraordinary lithium storage performance with excellent reversible capacity(1905.1 mAh g^(−1) at 0.2 A g^(−1)),ultrahigh cycling stability(1653.5 mAh g^(−1) at 2 A g^(−1) up to 600 cycles),and considerable rate capability(463.3 mAh g^(−1) even at 10 A g^(−1)).The primary lithium storage mechanisms are further systematically determined by experimental and theoretical investigations.The enriched oxygen vacancies,metallic Ni configuration,and N‐doped carbonaceous matrix provide more active sites,construct omnidirectional diffusion pathways,suppress volume expansion,and boost electronic conductivity,thus yielding an exceptional diffusivity coefficient and expedited electrochemical kinetics.This study offers profound insights for the elaborate design of multicompositional electrodes into a mechanical stress‐release structure toward advanced energy storage application and development.Jia Lin Yingying Peng Reddivari Chenna Krishna Reddy Akif Zeb Xiaoming Lin Yan-Hui Sun 2023Carbon Energy2023,5,1:1
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