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

Local decorin delivery via hyaluronic acid microrods improves cardiac performance, ventricular remodeling after myocardial infarction

通过透明质酸微棒局部输送装饰蛋白聚糖可改善心肌梗死后的心脏功能和心室重塑

Priya Mohindra, Justin X Zhong, Qizhi Fang, Darnell L Cuylear, Cindy Huynh, Huiliang Qiu, Dongwei Gao, Bhushan N Kharbikar, Xiao Huang, Matthew L Springer, Randall J Lee, Tejal A Desai

Encapsulation of β-NGF in injectable microrods for localized delivery accelerates endochondral fracture repair

将β-NGF封装在可注射的微棒中进行局部递送,可加速软骨内骨折修复。

Rivera, Kevin O; Cuylear, Darnell L; Duke, Victoria R; O'Hara, Kelsey M; Zhong, Justin X; Elghazali, Nafisa A; Finbloom, Joel A; Kharbikar, Bhushan N; Kryger, Alex N; Miclau, Theodore; Marcucio, Ralph S; Bahney, Chelsea S; Desai, Tejal A

Calcium Phosphate Delivery Systems for Regeneration and Biomineralization of Mineralized Tissues of the Craniofacial Complex

用于颅面复合体矿化组织再生和生物矿化的磷酸钙输送系统

Cuylear, Darnell L; Elghazali, Nafisa A; Kapila, Sunil D; Desai, Tejal A

Local delivery of decorin via hyaluronic acid microrods improves cardiac performance and ventricular remodeling after myocardial infarction

通过透明质酸微棒局部输送核心蛋白聚糖可改善心肌梗死后的心脏功能和心室重塑

Tejal Desai, Priya Mohindra, Justin Zhong, Qizhi Fang, Cindy Huynh, Darnell Cuylear, Huiliang Qiu, Dongwei Gao, Bhushan Kharbikar, Xiao Huang, Matt Springer, Randall Lee

Theranostic biomaterials for tissue engineering

用于组织工程的诊疗一体化生物材料

Kharbikar, Bhushan N; Zhong, Justin X; Cuylear, Darnell L; Perez, Cynthia A; Desai, Tejal A

Non-invasive vagus nerve stimulation reduces blood-brain barrier disruption in a rat model of ischemic stroke

在缺血性卒中大鼠模型中,无创迷走神经刺激可减少血脑屏障的破坏。

Yang, Yirong; Yang, Lisa Y; Orban, Lilla; Cuylear, Darnell; Thompson, Jeffrey; Simon, Bruce; Yang, Yi

Exploring the anomalous cytotoxicity of commercially-available poly(N-isopropyl acrylamide) substrates

探索市售聚(N-异丙基丙烯酰胺)底物的异常细胞毒性

Phuong A H Nguyen, Lyndsay Stapleton, Adrian Ledesma-Mendoza, Darnell L Cuylear, Marta A Cooperstein, Heather E Canavan

The transcriptional repressor GFI-1 antagonizes PU.1 activity through protein-protein interaction.

转录抑制因子 GFI-1 通过蛋白质-蛋白质相互作用拮抗 PU.1 的活性

Dahl Richard, Iyer Sangeeta R, Owens Kristin S, Cuylear Dorothy D, Simon M Celeste