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

Engineering a Bioactive PMMA-Silica Hybrid Scaffold for Enhanced Bone Regeneration

构建生物活性PMMA-二氧化硅混合支架以增强骨再生

Ramanathan, Susaritha; Lin, Yu-Chien; Wang, Huey-Yuan; Tseng, Ching-Li; Li, Siwei; Liu, Wai-Ching; Dhawan, Udesh; Hu, Chih-Chien; Chung, Ren-Jei

Theranostic Angiopep-2-Conjugated FeTaO(x)@Au Core-Shell Magnetic Nanoparticles for Glioma Treatment and Dual Medical Imaging

用于胶质瘤治疗和双重医学成像的诊疗一体化Angiopep-2偶联FeTaO(x)@Au核壳磁性纳米粒子

Muthiah, Kayalvizhi Samuvel; Thirumurugan, Senthilkumar; Ramanathan, Susaritha; Yeh, Ming-Hsuan; Dhawan, Udesh; Lin, Yu-Chien; Lin, Ching-Po; Liu, Wai-Ching; Tseng, Yuan-Yun; Tseng, Ching-Li; Chung, Ren-Jei

NaBC1 Boron Transporter Enables Myoblast Response to Substrate Rigidity via Fibronectin-Binding Integrins.

NaBC1 硼转运蛋白通过纤连蛋白结合整合素使成肌细胞对底物刚性做出反应

Gonzalez-Valdivieso Juan, Ciccone Giuseppe, Dhawan Udesh, Quon Tezz, Barcelona-Estaje Eva, Rodrigo-Navarro Aleixandre, Castillo Rafael R, Milligan Graeme, Rico Patricia, Salmeron-Sanchez Manuel

Near-Infrared Driven Gold Nanoparticles-Decorated g-C(3)N(4)/SnS(2) Heterostructure through Photodynamic and Photothermal Therapy for Cancer Treatment

近红外光驱动金纳米粒子修饰的gC(3)N(4)/SnS(2)异质结构通过光动力和光热疗法用于癌症治疗

Dash, Pranjyan; Thirumurugan, Senthilkumar; Nataraj, Nandini; Lin, Yu-Chien; Liu, Xinke; Dhawan, Udesh; Chung, Ren-Jei

Oral Cancer Theranostic Application of FeAu Bimetallic Nanoparticles Conjugated with MMP-1 Antibody.

FeAu双金属纳米粒子与MMP-1抗体结合在口腔癌诊疗中的应用

Tsai Meng-Tsan, Sun Ying-Sui, Keerthi Murugan, Panda Asit Kumar, Dhawan Udesh, Chang Yung-Hsiang, Lai Chih-Fang, Hsiao Michael, Wang Huey-Yuan, Chung Ren-Jei

The Spatiotemporal Control of Osteoblast Cell Growth, Behavior, and Function Dictated by Nanostructured Stainless Steel Artificial Microenvironments

纳米结构不锈钢人工微环境对成骨细胞生长、行为和功能的时空控制

Dhawan, Udesh; Pan, Hsu-An; Shie, Meng-Je; Chu, Ying Hao; Huang, Guewha S; Chen, Po-Chun; Chen, Wen Liang

Nanochips of Tantalum Oxide Nanodots as artificial-microenvironments for monitoring Ovarian cancer progressiveness.

氧化钽纳米点纳米芯片作为人工微环境用于监测卵巢癌进展

Dhawan Udesh, Wang Ssu-Meng, Chu Ying Hao, Huang Guewha S, Lin Yan Ren, Hung Yao Ching, Chen Wen Liang