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

Adipose-driven complement-lipid reprogramming controls nociceptive vulnerability in obesity-associated osteoarthritis

脂肪组织驱动的补体-脂质重编程控制肥胖相关骨关节炎中的伤害感受脆弱性

Welhaven, Hope D; Lesnak, Joseph B; Lenz, Kristin L; Andoko, Bethany; Oesterich, Arin K; Plumb, Ashley N; Sadler, Katelyn E; Springer, Luke E; Brockert, Jacob G; Dumlao, Darren; Akk, Antonina M; Wu, Xiaobo; Yan, Huimin; Zhang, Bo; Messier, Stephen P; Loeser, Richard F; June, Ronald K; Atkinson, John P; Pham, Christine T N; Price, Theodore J; Guilak, Farshid; Collins, Kelsey H

Adipose-derived leptin and complement factor D mediate osteoarthritis severity and pain.

脂肪组织来源的瘦素和补体因子 D 介导骨关节炎的严重程度和疼痛

Collins Kelsey H, Lenz Kristin L, Welhaven Hope D, Ely Erica, Springer Luke E, Paradi Sophie, Tang Ruhang, Braxton Lauryn, Akk Antonina, Yan Huimin, Zhang Bo, Wu Xiaobo, Atkinson John P, Oestreich Arin K, June Ron K, Pham Christine T N, Guilak Farshid

Chondrocyte-specific knockout of Piezo1 and Piezo2 protects against post-traumatic osteoarthritis structural damage and pain in mice.

软骨细胞特异性敲除 Piezo1 和 Piezo2 可保护小鼠免受创伤后骨关节炎的结构损伤和疼痛

Ely Erica V, Lenz Kristin L, Paradi Sophie G, Ack Seth, Behrmann Abraham, Dunivan Sarah, Braxton Lauryn, Liedtke Wolfgang, Chen Yong, Collins Kelsey H, Guilak Farshid

Chondrocyte-Specific Knockout of Piezo1 and Piezo2 Protects Against Post-Traumatic Osteoarthritis Structural Damage and Pain in Mice.

软骨细胞特异性敲除 Piezo1 和 Piezo2 可保护小鼠免受创伤后骨关节炎的结构损伤和疼痛

Ely Erica V, Lenz Kristin L, Paradi Sophie G, Ack Seth, Behrmann Abraham, Dunivan Sarah, Braxton Lauryn, Liedtke Wolfgang, Chen Yong, Collins Kelsey H, Guilak Farshid

Engineered self-regulating macrophages for targeted anti-inflammatory drug delivery.

工程化自调节巨噬细胞用于靶向抗炎药物递送

Klimak Molly, Cimino Amanda, Lenz Kristin L, Springer Luke E, Collins Kelsey H, Harasymowicz Natalia S, Xu Nathan, Pham Christine T N, Guilak Farshid

Adipose tissue is a critical regulator of osteoarthritis

脂肪组织是骨关节炎的关键调节因子

Collins, Kelsey H; Lenz, Kristin L; Pollitt, Eleanor N; Ferguson, Daniel; Hutson, Irina; Springer, Luke E; Oestreich, Arin K; Tang, Ruhang; Choi, Yun-Rak; Meyer, Gretchen A; Teitelbaum, Steven L; Pham, Christine T N; Harris, Charles A; Guilak, Farshid

Taxonomic changes in the gut microbiota are associated with cartilage damage independent of adiposity, high fat diet, and joint injury

肠道菌群的分类学变化与软骨损伤相关,且这种关联独立于肥胖、高脂饮食和关节损伤。

Collins, Kelsey H; Schwartz, Drew J; Lenz, Kristin L; Harris, Charles A; Guilak, Farshid