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

Epitope-focused discovery of SARS-CoV-2 antibodies that potently neutralize Omicron variants.

以表位为导向发现能有效中和 Omicron 变体的 SARS-CoV-2 抗体。

Zost Seth J, Suryadevara Naveenchandra, Williamson Lauren E, Scheaffer Suzanne M, Binshtein Elad, Buchman Cameron D, Johnson Nicole V, Catanzaro Nicholas J, Ravera Silvia, Chapman Nathaniel S, Myers Luke, Ramamohan Ajit R, Handal Laura S, Nguyen Doan C, Trivette Andrew, Martinez James R, Villalobos Eduardo, Rutherford Stacey A, Eun-Hyung Lee F, Schäfer Alexandra, Baric Ralph S, McLellan Jason S, Diamond Michael S, Carnahan Robert H, Crowe James E Jr

One-component ionizable amphiphilic Janus dendrimers as a delivery platform for efficient mRNA vaccine development.

单组分可电离两亲性 Janus 树状聚合物作为高效 mRNA 疫苗开发的递送平台。

Ona Nathan A, Zhang Dapeng, Lindesmith Lisa C, Park Wook-Jin, Meshanni Jaclynn A, Berkihiser Sydni, Vasserman Jessica A, Toshtzar Sepideh, Moore Nathanael C, Williams Blair, Nakagawa Benjamin, Baboo Ishana, Pan Liuyan, Cheng Wanting, Mercado-López Xiomara, Bonilla-Acosta Wendy, Brewer-Jensen Paul D, Zweigart Mark R, Reyes Yaoska I, Mallory Michael L, May Samantha R, Zhou Yongfeng, Percec Virgil, Baric Ralph S, Li Yongsheng, Weissman Drew, Atochina-Vasserman Elena N

Infection of 5xFAD mice with a mouse-adapted SARS-CoV-2 does not alter Alzheimer's disease neuropathology yet induces widespread changes in gene expression across diverse cell types

用小鼠适应性SARS-CoV-2感染5xFAD小鼠不会改变阿尔茨海默病神经病理学,但会诱导多种细胞类型中基因表达的广泛变化。

Furman, Susana; Zayou, Latifa; Tsourmas, Kate Inman; Javonillo, Dominic Ibarra; Olivarria, Gema M; Cheng, Yuting; Pachow, Collin; Fernandez, Kellie; Le, Lucas; Edwards, Robert A; Nicholas, Dequina A; Sanchez, Gabriela Pacheco; Baric, Ralph S; Green, Kim N; Lane, Thomas E

Recurrent SARS-CoV-2 Omicron broadly neutralizing humanized antibodies in different single human V(H)1-2-rearranging mouse models.

在不同的单人类 V(H)1-2 重排小鼠模型中,复发性 SARS-CoV-2 Omicron 广谱中和人源化抗体。

Batra Himanshu, Luo Sai, Saunders Kevin O, Higgins Jaclyn S, Jian Fanchong, Zhang Jun, Kibria Md Golam, Jonaid G M, Zhou Qingchen J, Eaton Amanda, Cronin Kenneth, Mallory Michael L, Mattocks Melissa, Edwards Robert J, Parks Robert, Lee Esther M, Ye Adam Yongxin, Williams Aimee Chapdelaine, Jung Geeyoun, Mansouri Katayoun, Alam S Munir, Montefiori David C, Tian Ming, Baric Ralph S, Cao Yunlong, Haynes Barton F, Chen Bing, Alt Frederick W

Continuous Renal Replacement Therapy for Patients With Sepsis in a Low-Resource Medical Intensive Care Unit (MICU): Incidence, Risk Factors, and Outcomes

低资源医疗重症监护病房(MICU)脓毒症患者的连续性肾脏替代疗法:发生率、危险因素和预后

Jandric, Milka; Momcicevic, Danica; Dragic, Sasa; Zlojutro, Biljana; Kovacevic, Tijana; Baric, Goran; Tomic, Boris; Davogic, Sanja; Malic, Jovana; Kovacevic, Pedja

Cross-coronavirus host susceptibility loci influence disease severity through immune mediators

冠状病毒宿主易感基因位点通过免疫介质影响疾病严重程度

Risemberg, Ellen L; Leist, Sarah R; Schäfer, Alexandra; Kamat, Kalika D; Bell, Timothy A; Hock, Pablo; Jensen, Kara L; Linnertz, Colton L; Miller, Darla R; Shaw, Ginger D; Pardo Manuel de Villena, Fernando; Baric, Ralph S; Ferris, Martin T; Valdar, William

A Novel Adaptive Platform for Rapid, Simple Flow-Based Antibody Detection Devices Predicts NAb Levels to SARS-CoV-2

一种新型自适应平台可用于快速、简便的基于流动的抗体检测装置,预测SARS-CoV-2中和抗体水平。

Markmann, Alena J; Bhowmik, D Ryan; Jiang, Baowei; Vanna, Usaphea P; Van Hoy, Michael; Wang, Frank; Hou, Yixuan J; Margolis, David M; Baric, Ralph S; de Silva, Aravinda M; Bartelt, Luther A

SARS-CoV-2 infection induces pro-fibrotic and pro-thrombotic foam cell formation.

SARS-CoV-2 感染可诱导促纤维化和促血栓形成的泡沫细胞形成。

Battaglia Diana M, Post Claire E, Yao Wenbo, Wahl Angela, Gralinski Lisa E, Liu Hongwei, Dang Hong, Madden Victoria J, White Kristen K, Leist Sarah R, Dinnion Kenneth H 3rd, De la Cruz Gabriela, Midkiff Bentley R, Froggatt Heather M, Gully Kendra, Zweigart Mark, Reader J Rachel, Olstad Katherine J, Everitt Jeffrey I, Van Rompay Koen K A, De Paris Kristina, Sajti Eniko, Pickles Raymond J, Browne Edward P, Jones Corbin D, Boucher Richard C Jr, Baric Ralph S, Garcia J Victor

ACE2 from Pipistrellus abramus bats is a receptor for HKU5 coronaviruses.

来自非洲小蝙蝠的ACE2是HKU5冠状病毒的受体

Catanzaro Nicholas J, Wu Ziyan, Fan Chengcheng, Jefferson Victoria, Abdelgadir Anfal, Schäfer Alexandra, Yount Boyd L, Bjorkman Pamela J, Baric Ralph, Letko Michael

HKU5 bat merbecoviruses engage bat and mink ACE2 as entry receptors.

HKU5 蝙蝠梅尔贝病毒以蝙蝠和水貂的 ACE2 作为入侵受体

Madel Alfajaro Mia, Keeler Emma L, Li Ning, Catanzaro Nicholas J, Teng I-Ting, Zhao Zhe, Grunst Michael W, Yount Boyd, Schäfer Alexandra, Wang Danyi, Kim Arthur S, Synowiec Aleksandra, Peña-Hernández Mario A, Zepeda Samantha, Arinola Ridwan, Kaur Ramandeep, Menasche Bridget L, Wei Jin, Russell Gabriel A, Huck John, Song Jaewon, Ring Aaron, Iwasaki Akiko, Jangra Rohit K, Lee Sanghyun, Martinez David R, Mothes Walther, Uchil Pradeep D, Doench John G, Spaulding Alicen B, Baric Ralph S, Serebryannyy Leonid, Tsybovsky Yaroslav, Zhou Tongqing, Douek Daniel C, Wilen Craig B