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

Trans amplifying mRNA vaccine expressing consensus spike elicits broad neutralization of SARS CoV 2 variants.

表达共识刺突蛋白的反式扩增 mRNA 疫苗可引起 SARS CoV 2 变种的广泛中和作用

Gontu Abhinay, Misra Sougat, Chothe Shubhada K, Ramasamy Santhamani, Jakka Padmaja, Byukusenge Maurice, LaBella Lindsey C, Nair Meera Surendran, Jayarao Bhushan M, Archetti Marco, Nissly Ruth H, Kuchipudi Suresh V

Serological Assays Reveal No Evidence of Natural SARS-CoV-2 Infection in US Cattle.

血清学检测显示,美国牛群中没有自然感染SARS-CoV-2的证据

Ramasamy Santhamani, Quraishi Meysoon, Mukherjee Swastidipa, Mahajan Sonalika, LaBella Lindsey C, Chothe Shubhada K, Jakka Padmaja, Gontu Abhinay, Misra Sougat, Surendran-Nair Meera, Nissly Ruth H, Kuchipudi Suresh V

The Susceptibility of Chickens to Zika Virus: A Comprehensive Study on Age-Dependent Infection Dynamics and Host Responses

鸡对寨卡病毒的易感性:一项关于年龄依赖性感染动态和宿主反应的综合研究

Nissly, Ruth H; Lim, Levina; Keller, Margo R; Bird, Ian M; Bhushan, Gitanjali; Misra, Sougat; Chothe, Shubhada K; Sill, Miranda C; Kumar, Nagaram Vinod; Sivakumar, A V N; Naik, B Rambabu; Jayarao, Bhushan M; Kuchipudi, Suresh V

Enhanced Diversifying Selection on Polymerase Genes in H5N1 Clade 2.3.4.4b: A Key Driver of Altered Species Tropism and Host Range Expansion

H5N1 2.3.4.4b分支中聚合酶基因的多样化选择增强:物种嗜性改变和宿主范围扩张的关键驱动因素

Misra, Sougat; Gilbride, Elizabeth; Ramasamy, Santhamani; Pond, Sergei L Kosakovsky; Kuchipudi, Suresh V

Loss of selenoprotein W in murine macrophages alters the hierarchy of selenoprotein expression, redox tone, and mitochondrial functions during inflammation

小鼠巨噬细胞中硒蛋白W的缺失会改变炎症期间硒蛋白表达的层级、氧化还原状态和线粒体功能。

Misra, Sougat; Lee, Tai-Jung; Sebastian, Aswathy; McGuigan, John; Liao, Chang; Koo, Imhoi; Patterson, Andrew D; Rossi, Randall M; Hall, Molly A; Albert, Istvan; Prabhu, K Sandeep

Selenium and selenoproteins in prostanoid metabolism and immunity

硒和硒蛋白在类前列腺素代谢和免疫中的作用

Qian, Fenghua; Misra, Sougat; Prabhu, K Sandeep

Selenium induces a multi-targeted cell death process in addition to ROS formation.

硒除了能诱导活性氧(ROS)的生成外,还能诱导多靶点细胞死亡过程

Wallenberg Marita, Misra Sougat, Wasik Agata M, Marzano Cristina, Björnstedt Mikael, Gandin Valentina, Fernandes Aristi P