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

Multi-assay assessment of cytotoxicity reveals multiple mechanisms of action in 3D microtissues.

多重细胞毒性评估揭示了 3D 微组织中的多种作用机制

Zein-Sabatto Ahbid, St Angelo Katerina, Madnick Samantha J, Hoffman-Kim Diane, Morgan Jeffrey R, Lee Jonghwan

Dual bilateral stimulation of the nucleus accumbens and the centromedian thalamus for treatment of intractable Tourette syndrome

双侧刺激伏隔核和丘脑中央核治疗难治性图雷特综合征

Strelko, Oleksandr; Burritt St Angelo, Maria I; Ghannad, Andrew S; Sloane, Dayna C; Verducci, Chloe; Luy, Diego D; Pecoraro, Nathan C; Cecia, Arba; Simon, Joshua E; Iordanou, Jordan C; Cass, Daryn K; Germanwala, Anand V; Anderson, Douglas E

Lab-grown, 3D extracellular matrix particles improve cardiac function and morphology in myocardial ischemia

实验室培育的3D细胞外基质颗粒可改善心肌缺血时的心脏功能和形态

Broadwin, Mark; St Angelo, Katerina; Petersen, Max; Teixeira, Rayane B; Harris, Dwight D; Stone, Christopher R; Xu, Cynthia; Kanuparthy, Meghamsh; Sellke, Frank W; Morgan, Jeffrey; Abid, M Ruhul

The Primarily Undergraduate Nanomaterials Cooperative: A New Model for Supporting Collaborative Research at Small Institutions on a National Scale

以本科生为主的纳米材料合作项目:一种支持小型机构开展全国性合作研究的新模式

Hughes, Steven M; Hendricks, Mark P; Mullaugh, Katherine M; Anderson, Mary E; Bentley, Anne K; Clar, Justin G; Daly, Clyde A Jr; Ellison, Mark D; Feng, Z Vivian; Gonzalez-Pech, Natalia I; Hamachi, Leslie S; Heinecke, Christine L; Keene, Joseph D; Maley, Adam M; Munro, Andrea M; Njoki, Peter N; Olshansky, Jacob H; Plass, Katherine E; Riley, Kathryn R; Sonntag, Matthew D; St Angelo, Sarah K; Thompson, Lucas B; Tollefson, Emily J; Toote, Lauren E; Wheeler, Korin E

Human Dendritic Cells Mitigate NK-Cell Dysfunction Mediated by Nonselective JAK1/2 Blockade

人类树突状细胞可减轻非选择性JAK1/2阻断介导的NK细胞功能障碍

Curran, Shane A; Shyer, Justin A; St Angelo, Erin T; Talbot, Lillian R; Sharma, Sneh; Chung, David J; Heller, Glenn; Hsu, Katharine C; Betts, Brian C; Young, James W

Langerhans-type and monocyte-derived human dendritic cells have different susceptibilities to mRNA electroporation with distinct effects on maturation and activation: implications for immunogenicity in dendritic cell-based immunotherapy

朗格汉斯型和单核细胞来源的人类树突状细胞对mRNA电穿孔的敏感性不同,对成熟和活化的影响也不同:这对基于树突状细胞的免疫疗法的免疫原性具有重要意义。

Chung, David J; Romano, Emanuela; Pronschinske, Katherine B; Shyer, Justin A; Mennecozzi, Milena; St Angelo, Erin T; Young, James W