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20篇 您的检索式:作者名="Kini RM"
    题名 作者 年代 出处 被引量
1Sunitinib in patients withmetastatic renal cell carcinoma显示文摘Motzer RJ Kini BI Bukowski RM 2006JAMA2006,295,21:1
2Unique gene organization of colubrid three-finger toxins:complete cDNA and gene sequences of denmotoxin,a bird-specific toxin from colubrid snake Boiga dendrophila(Mangrove Catsnake) 显示文摘Pawlak J Kini RM 2008Biochimiet2008,90,6:1
3Excitement ahead: structure, function and mechanism of snake venom phospholipase A2 enzymes 显示文摘Kini RM 2003Toxicon2003,42,8:1
4Eggs-Only Diet: Its Implications for the Toxin Profile Changes and Ecology of the Marbled Sea Snake (Aipysurus eydouxii)显示文摘M Li BG Fry RM Kini 2005J Mol Evol2005,60,1:1
5Excitement ahead: Structure, function and mechanism of cPLA2 in Human Keratinocytes and in Healthy and Psoriatic Human Skin显示文摘Kini RM 2010Toxicon2010,42,8:1
6Protein complexes in snake venom 显示文摘Doley R Kini RM 2009Cellular and molecular life sciences2009,66,17:1
7Excitement ahead: structure, function and mechanism of snake venom phospholipase A2 enzymes 显示文摘Kini RM 2003Toxicon2003,42,8:1
8Protein complexes in snake venom显示文摘Doley R Kini RM 0,,17:1
9Makatoxin I, a novel toxin isolated from the venom of scorpion Buthus Martensi Karsch exhibits nitrergic actions显示文摘Gong J Kini RM Gwee MC 1997J Biol Chem1997,272,13:1
10The nonenzymatic subunit of pseutarin C,a prothrombin activator from eastern brown snake (Pseudonaja textilis) venom,shows structural similarity to mammalian coagulation factor V显示文摘Rao VS Swarup S Kini RM 2003Blood2003,102,4:1
11Excitement ahead: structure, function and mechanism of snake venom phospholipase A2 enzymes显示文摘Kini RM 2003Toxicon2003,42,8:1
12Excitement ahead:structure,function and mechanism of snake venom phospholipase A2 enzymes 显示文摘 2003Toxicon2003,42,8:1
13A small peptide derived from Flt-1(VEGFR-1) functions as an angiogenic inhibitor显示文摘 Kini RM Jois SDS 2001FEBS Letters2001,494,:1
14Structural domains in venom proteins:evidence that metalloproteinases and nonenzymatic platelet aggregation inhibitors (disintegrins) from snake venoms arederived by proteolysis from a common precursor显示文摘Kini RM Evans HJ 1992Toxicon1992,30,3:1
15A model to explain the pharmacological effects of snake venom phospholipase A2显示文摘Kini RM Evans HJ 1989Toxicon1989,27,6:1
16Structural domains in venom proteins:evidence that metalloproteinases and nonenzymatic platelet aggregation inhibitors (disintegrins) from snake venoms are derived by proteolysis from a common precursor显示文摘Kini RM Evans HJ 1992Toxicon1992,30,:1
17A model to explain the pharmacological effects of snake venom phospholipases A显示文摘Kini RM Evans HJ 1989Tbxieon1989,276,:1
18Structural domains in venom proteins evidence that metalloproteinases and nonenzymatic platelet aggregation inhibitors (disintegrins) from snake venoms are derived by proteolysis from a common precursor显示文摘Kini RM Evans HI 1992Toxicon1992,30,3:1
19A model to explain the pharmacological effects of snake venom phospholipase A2显示文摘Kini RM Evans HJ 1989Toxicon 19891989,613,:1
20Serine proteases affecting blood coagulation and fibrinolysis from snake venoms显示文摘Kini RM 2005Pathophysiol Haemost Thromb2005,34,4:1
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