日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

A panel of anti-influenza virus nucleoprotein antibodies selected from phage-displayed synthetic antibody libraries with rapid diagnostic capability to distinguish diverse influenza virus subtypes

从噬菌体展示合成抗体库中筛选出的一组抗流感病毒核蛋白抗体,具有快速诊断能力,可区分多种流感病毒亚型

Chung-Ming Yu #, Ing-Chien Chen #, Chao-Ping Tung #, Hung-Pin Peng, Jhih-Wei Jian, Yi-Kai Chiu, Yueh-Liang Tsou, Hong-Sen Chen, Yi-Jen Huang, Wesley Wei-Wen Hsiao, Yong Alison Wang, An-Suei Yang

Antibody-drug conjugates with HER2-targeting antibodies from synthetic antibody libraries are highly potent against HER2-positive human gastric tumor in xenograft models

抗体药物偶联物与来自合成抗体库的 HER2 靶向抗体在异种移植模型中对 HER2 阳性人类胃肿瘤具有很强的疗效

Wei-Ying Kuo, Hung-Ju Hsu, Chun-Yi Wu, Hong-Sen Chen, Yu-Chi Chou, Yueh-Liang Tsou, Hung-Pin Peng, Jhih-Wei Jian, Chung-Ming Yu, Yi-Kai Chiu, Ing-Chien Chen, Chao-Ping Tung, Michael Hsiao, Chia-Lung Lin, Yong Alison Wang, Andrew H-J Wang, An-Suei Yang

Proceedings of the International Cancer Imaging Society (ICIS) 17th Annual Teaching Course: Berlin, Germany. 02 - 04 October 2017

国际癌症影像学会(ICIS)第17届年度教学课程论文集:德国柏林,2017年10月2日至4日

Hu, Chin; Liu, Chun-Peng; Cheng, Jin-Shiung; Chiu, Yu-Li; Chan, Hung-Pin; Peng, Nan-Jing

Predominant structural configuration of natural antibody repertoires enables potent antibody responses against protein antigens

天然抗体库的主要结构配置能够对蛋白质抗原产生强大的抗体反应

Hong-Sen Chen, Shin-Chen Hou, Jhih-Wei Jian, King-Siang Goh, San-Tai Shen, Yu-Ching Lee, Jhong-Jhe You, Hung-Pin Peng, Wen-Chih Kuo, Shui-Tsung Chen, Ming-Chi Peng, Andrew H-J Wang, Chung-Ming Yu, Ing-Chien Chen, Chao-Ping Tung, Tzu-Han Chen, Kuo Ping Chiu, Che Ma, Chih Yuan Wu, Sheng-Wei Lin, An-Su

Discovering neutralizing antibodies targeting the stem epitope of H1N1 influenza hemagglutinin with synthetic phage-displayed antibody libraries

利用合成噬菌体展示抗体库发现针对 H1N1 流感血凝素干表位的中和抗体

Chao-Ping Tung, Ing-Chien Chen, Chung-Ming Yu, Hung-Pin Peng, Jhih-Wei Jian, Shiou-Hwa Ma, Yu-Ching Lee, Jia-Tsrong Jan, An-Suei Yang

Amino acid substitutions of MagA in Klebsiella pneumoniae affect the biosynthesis of the capsular polysaccharide

肺炎克雷伯菌中 MagA 的氨基酸取代影响荚膜多糖的生物合成

Tzu-Lung Lin, Feng-Ling Yang, An-Suei Yang, Hung-Pin Peng, Tsung-Lin Li, Ming-Daw Tsai, Shih-Hsiung Wu, Jin-Town Wang