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

Development of mouse models with restricted HLA-B∗57:01 presentation for the study of flucloxacillin-driven T-cell activation and tolerance in liver injury

构建HLA-B*57:01表达受限的小鼠模型,用于研究氟氯西林诱导的肝损伤中T细胞活化和耐受性。

Ananthula, Suryatheja; Krishnaveni Sivakumar, Kirthiram; Cardone, Marco; Su, Shan; Roderiquez, Gregory; Abuzeineh, Hanan; Kleiner, David E; Norcross, Michael A; Puig, Montserrat

Alterations in the HLA-B*57:01 Immunopeptidome by Flucloxacillin and Immunogenicity of Drug-Haptenated Peptides

氟氯西林对HLA-B*57:01免疫肽组的改变及药物半抗原化肽的免疫原性

Puig, Montserrat; Ananthula, Suryatheja; Venna, Ramesh; Kumar Polumuri, Swamy; Mattson, Elliot; Walker, Lacey M; Cardone, Marco; Takahashi, Mayumi; Su, Shan; Boyd, Lisa F; Natarajan, Kannan; Abdoulaeva, Galina; Wu, Wells W; Roderiquez, Gregory; Hildebrand, William H; Beaucage, Serge L; Li, Zhihua; Margulies, David H; Norcross, Michael A

A transgenic mouse model for HLA-B*57:01-linked abacavir drug tolerance and reactivity

用于研究HLA-B*57:01相关阿巴卡韦药物耐受性和反应性的转基因小鼠模型

Cardone, Marco; Garcia, Karla; Tilahun, Mulualem E; Boyd, Lisa F; Gebreyohannes, Sintayehu; Yano, Masahide; Roderiquez, Gregory; Akue, Adovi D; Juengst, Leslie; Mattson, Elliot; Ananthula, Suryatheja; Natarajan, Kannan; Puig, Montserrat; Margulies, David H; Norcross, Michael A

Regulation of the receptor specificity and function of the chemokine RANTES (regulated on activation, normal T cell expressed and secreted) by dipeptidyl peptidase IV (CD26)-mediated cleavage

二肽基肽酶IV(CD26)介导的切割对趋化因子RANTES(活化后调节,正常T细胞表达和分泌)的受体特异性和功能进行调节

T Oravecz ,M Pall, G Roderiquez, M D Gorrell, M Ditto, N Y Nguyen, R Boykins, E Unsworth, M A Norcross

Mediation of human immunodeficiency virus type 1 binding by interaction of cell surface heparan sulfate proteoglycans with the V3 region of envelope gp120-gp41

细胞表面硫酸乙酰肝素蛋白聚糖与包膜蛋白gp120-gp41的V3区相互作用介导1型人类免疫缺陷病毒的结合

Roderiquez, G; Oravecz, T; Yanagishita, M; Bou-Habib, D C; Mostowski, H; Norcross, M A

Phorbol ester enhances human immunodeficiency virus-promoted gene expression and acts on a repeated 10-base-pair functional enhancer element

佛波酯可增强人类免疫缺陷病毒促进的基因表达,并作用于重复的10个碱基对的功能性增强子元件。

Kaufman, J D; Valandra, G; Roderiquez, G; Bushar, G; Giri, C; Norcross, M A