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4篇 您的检索式:作者名="Nanhu"
    题名 作者 年代 出处 被引量
1Momentum relaxation of a charged particle by small angle coulomb collisions显示文摘Nanhu K 1997Physical Review E1997,39,56:1
2Autoimmunity, Infectious Immunity, and Atherosclerosis显示文摘Eiji Matsuura Kazuko Kobayashi Yukana Matsunami Lianhua Shen Nanhu Quan Marina Makarova Sergey V. Suchkov Kiyoshi Ayada Keiji Oguma Luis R. Lopez 2009Journal of Clinical Immunology2009,,6:1
3Novel paracrine modulation of Notch DLL4 signaling by fibulin-3 promotes angiogenesis in high grade gliomas 显示文摘Nanhu MS Hu B Cole SE 2014Cancer Res2014,74,19:1
4Emergence of resistance to carbocyclic oxetanocin G in herpes simplex virus type 1 and genetic analysis of resistant mutants显示文摘AIM: To elucidate the potentiality of emergence of drug-resistance to carbocyclic oxetanocin G (C.OXT-G ), a new effective antiviral drug for herpetic keratitis during treatment and the mechanism of this drug resistance. METHODS: A C.OXT-G resistant strain (C.OXT-Gr) was established by serially propagating the herpes simplex virus (HSV) -1 in African green monkey kidney (VERO) cells in the presence of C.OXT-G. After the drug sensitiv- ity assay and the thymidine kinase (TK) activity assay, the molecular basis for the drug resistance was studied using polymerase chain reaction-single strand conformation polymorphism (PCR-SSCP) analysis and PCR direct se- quencing technology. RESULTS: After the 10th passage in 10 μm C.OXT-G, the ED50 of the C.OXT-Gr was 17.08-fold greater than that of the original strain on the average and the TK activities of these resistant strains were extremely reduced. PCR-SSCP analysis on TK gene of the wild HSV-1 and the C.OXT-Gr showed altered migration patterns in part 3 and part 4, while PCR-SSCP analysis on DNA polymerase gene showed no difference among the viruses. Sequence analysis revealed a deletion of G at position of 430 that caused frameshift, resulting in premature termination in the TK gene. CONCLUSION: The drug resistance to C.OXT-G may appear during the treatment due to the deficiency of TK activity caused by a single mutation in the TK gene of HSV-1.NanHU HiroshiSHIOTA 2004Acta Pharmacologica Sinica2004,25,7:0
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