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

Synthetic Immunological Niche Reveals Early Immune Dysregulation and Stratifies Therapeutic Response in Type 1 Diabetes

合成免疫学微环境揭示1型糖尿病早期免疫失调并区分治疗反应

Roy, Jyotirmoy; Jiang, Yifei; Mao, Runbo; King, Jessica L; Talekar, Amod; Holman, Lillian; Zeng, Haoxuan; Luo, Xin; Sajjakulnukit, Peter; Ha, Brianna; Liu, Kai; Bealer, Elizabeth J; Rad, Laila M; Sohail, Shahzad; Holmes, Antonio; Wonski, Bryan; Kang, Kathryn; Awad, Dominik; Morris, Aaron H; Lyssiotis, Costas A; Liu, Jie; Shea, Lonnie D

Allergen-Encapsulating Nanoparticles Reprogram Pathogenic Allergen-Specific Th2 Cells to Suppress Food Allergy

包裹过敏原的纳米颗粒可重编程致病性过敏原特异性 Th2 细胞,从而抑制食物过敏

Saunders, Michael N; Rad, Laila M; Williams, Laura A; Landers, Jeffrey J; Urie, Russell R; Hocevar, Sarah E; Quiros, Miguel; Chiang, Ming-Yi; Angadi, Amogh R; Janczak, Katarzyna W; Bealer, Elizabeth J; Crumley, Kelly; Benson, Olivia E; Griffin, Kate V; Ross, Brian C; Parkos, Charles A; Nusrat, Asma; Miller, Stephen D; Podojil, Joseph R; O'Konek, Jessica J; Shea, Lonnie D

Engineered immunological niche directs therapeutic development in models of progressive multiple sclerosis.

工程化免疫微环境指导进行性多发性硬化症模型中的治疗开发

Rad Laila M, Hughes Kevin R, Wheeler Sydney N, Decker Joseph T, Orbach Sophia M, Galvan Angelica, Thornhill Jasmine, Griffin Kate V, Turkistani Hamza, Urie Russell R, Irani David N, Shea Lonnie D, Morris Aaron H

Engineering nanoparticle therapeutics for food allergy

工程纳米颗粒疗法治疗食物过敏

Rad, Laila M; Arellano, Gabriel; Podojil, Joseph R; O'Konek, Jessica J; Shea, Lonnie D; Miller, Stephen D

Immunotherapy with biodegradable nanoparticles encapsulating the oligosaccharide galactose-alpha-1,3-galactose enhance immune tolerance against alpha-gal sensitization in a murine model of alpha-gal syndrome

在α-半乳糖综合征小鼠模型中,采用包裹寡糖半乳糖-α-1,3-半乳糖的可生物降解纳米颗粒进行免疫治疗,可增强对α-半乳糖致敏的免疫耐受性。

Saunders, Michael N; Rival, Claudia M; Mandal, Mahua; Cramton, Kayla; Rad, Laila M; Janczak, Katarzyna W; Williams, Laura A; Angadi, Amogh R; O'Konek, Jessica J; Shea, Lonnie D; Erickson, Loren D

Hydrogel Arrays Enable Increased Throughput for Screening Effects of Matrix Components and Therapeutics in 3D Tumor Models.

水凝胶阵列可提高筛选基质成分和治疗药物在 3D 肿瘤模型中作用的通量

Liang Jesse, Sohrabi Alireza, Epperson Mary, Rad Laila M, Tamura Kelly, Sathialingam Mayilone, Skandakumar Thamira, Lue Philip, Huang Jeremy, Popoli James, Yackly Aidan, Bick Michael, Wang Ze Zhong, Chen Chia-Chun, Varuzhanyan Grigor, Damoiseaux Robert, Seidlits Stephanie K