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

Soluble Notch agonist enables human ameloblast maturation and enamel-like tissue formation for tooth regeneration.

可溶性 Notch 激动剂能够促进人类成釉细胞成熟和形成类似牙釉质的组织,从而实现牙齿再生。

Patni Anjali P, Mout Rubul, Alghadeer Ammar, Moore Rachel H, Nademi Samera, Ausk Brandon J, Huber Philippe, Keshri Riya, Regier Mary, Cornell Robert A, Gross Ted, Freedman Benjamin S, Daley George Q, Baker David, Mathieu Julie, Ruohola-Baker Hannele

Designed Soluble Notch Agonist Drives Human Ameloblast Maturation for Tooth Regeneration

设计的可溶性 Notch 激动剂可促进人类成釉细胞成熟,从而实现牙齿再生

Patni, Anjali P; Mout, Rubul; Moore, Rachel; Alghadeer, Ammar; Daley, George Q; Baker, David; Mathieu, Julie; Ruohola-Baker, Hannele

Design of multi-scale protein complexes by hierarchical building block fusion

通过分层构建模块融合设计多尺度蛋白质复合物

Hsia, Yang; Mout, Rubul; Sheffler, William; Edman, Natasha I; Vulovic, Ivan; Park, Young-Jun; Redler, Rachel L; Bick, Matthew J; Bera, Asim K; Courbet, Alexis; Kang, Alex; Brunette, T J; Nattermann, Una; Tsai, Evelyn; Saleem, Ayesha; Chow, Cameron M; Ekiert, Damian; Bhabha, Gira; Veesler, David; Baker, David

In Vivo Editing of Macrophages through Systemic Delivery of CRISPR-Cas9-Ribonucleoprotein-Nanoparticle Nanoassemblies.

通过系统性递送 CRISPR-Cas9-核糖核蛋白-纳米颗粒纳米组装体对巨噬细胞进行体内编辑

Lee Yi-Wei, Mout Rubul, Luther David C, Liu Yuanchang, Castellanos-García Laura, Burnside Amy S, Ray Moumita, Tonga Gulen Yeşilbag, Hardie Joseph, Nagaraj Harini, Das Riddha, Phillips Erin L, Tay Tristan, Vachet Richard W, Rotello Vincent M

Rapid phenotyping of cancer stem cells using multichannel nanosensor arrays

利用多通道纳米传感器阵列快速进行癌症干细胞表型分析

Geng, Yingying; Goel, Hira L; Le, Ngoc B; Yoshii, Tatsuyuki; Mout, Rubul; Tonga, Gulen Y; Amante, John J; Mercurio, Arthur M; Rotello, Vincent M

CRISPRed Macrophages for Cell-Based Cancer Immunotherapy

CRISPR 修饰的巨噬细胞用于基于细胞的癌症免疫疗法

Ray, Moumita; Lee, Yi-Wei; Hardie, Joseph; Mout, Rubul; Yeşilbag Tonga, Gulen; Farkas, Michelle E; Rotello, Vincent M

Direct Cytosolic Delivery of CRISPR/Cas9-Ribonucleoprotein for Efficient Gene Editing

将 CRISPR/Cas9 核糖核蛋白直接递送至胞质以实现高效基因编辑

Mout, Rubul; Ray, Moumita; Yesilbag Tonga, Gulen; Lee, Yi-Wei; Tay, Tristan; Sasaki, Kanae; Rotello, Vincent M

Programmed Self-Assembly of Hierarchical Nanostructures through Protein-Nanoparticle Coengineering

通过蛋白质-纳米颗粒协同工程实现分级纳米结构的程序化自组装

Mout, Rubul; Yesilbag Tonga, Gulen; Wang, Li-Sheng; Ray, Moumita; Roy, Trinava; Rotello, Vincent M

General Strategy for Direct Cytosolic Protein Delivery via Protein-Nanoparticle Co-engineering

通过蛋白质-纳米颗粒共工程实现胞质内蛋白质直接递送的通用策略

Mout, Rubul; Ray, Moumita; Tay, Tristan; Sasaki, Kanae; Yesilbag Tonga, Gulen; Rotello, Vincent M

In Vivo Delivery of CRISPR/Cas9 for Therapeutic Gene Editing: Progress and Challenges

CRISPR/Cas9在体内递送用于治疗性基因编辑:进展与挑战

Mout, Rubul; Ray, Moumita; Lee, Yi-Wei; Scaletti, Federica; Rotello, Vincent M