奥司他韦
病毒学
联合疗法
病毒
氨基酸取代
抗药性
甲型流感病毒
人口
抗病毒治疗
基因
生物
药理学
医学
微生物学
2019年冠状病毒病(COVID-19)
内科学
遗传学
突变
疾病
环境卫生
传染病(医学专业)
慢性肝炎
作者
Jihyun Park,Beomkyu Kim,Khristine Joy C. Antigua,Ju Hwan Jeong,Chang il Kim,Won-Suk Choi,Sol Oh,Chan Hyung Kim,Eung‐Gook Kim,Young Ki Choi,Yun Hee Baek,Min‐Suk Song
标识
DOI:10.1016/j.antiviral.2021.105126
摘要
Baloxavir marboxil (BXM) treatment-emergent polymerase acid (PA) I38X amino acid substitution (AAS) in the resistant variants of influenza viruses raise concerns regarding their emergence and spread. This study investigated the impact of 1 or 5 mg/kg BXM and 25 mg/kg oseltamivir phosphate (OS) (single or combination therapy) on the occurrence of resistance-related substitutions during the sequential lung-to-lung passages of AH1N1)pdm09 virus in mice. Deep sequencing analysis revealed that 67% (n = 4/6) of the population treated with BXM single therapy (1 or 5 mg/kg) possessed the treatment-emergent PA-I38X AAS variants (I38T, I38S, and I38V). Notably, BXM-OS combination therapy impeded PA-I38X AAS emergence. Although the doses utilized in the mouse model may not be directly translated into the clinically equivalent doses of each drugs, these findings offer insights toward alternative therapies to mitigate the emergence of influenza antiviral resistance.
科研通智能强力驱动
Strongly Powered by AbleSci AI