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

Oxygen-Inhibition Driven Compartmentalization of Dextran Microgels: Toward Fusible Colloidal Biomaterial Inks for 3D Printing

氧抑制驱动的葡聚糖微凝胶区室化:迈向用于3D打印的可熔胶体生物材料墨水

Bulut, Selin; Bissing, Thomas; Lile, Tudor; Küttner, Hannah; Günther, Daniel; Bergerbit, Cédric; Demco, Dan Eugen; De Laporte, Laura; Pich, Andrij

Smart dendrimer nanogels boost mRNA-based cancer therapy via synergistic glycolysis inhibition and immune activation

智能树状聚合物纳米凝胶通过协同抑制糖酵解和激活免疫来增强基于mRNA的癌症疗法。

Xiao, Xianghao; Gao, Yue; Li, Aiyu; Jia, Yiyang; Li, Jingjing; Zhang, Mengjiao; Ji, Ruiqi; Shen, Mingwu; Pich, Andrij; Shi, Xiangyang

Light-Gated Amine Exchange in Diarylethene-Crosslinked Microgels

二芳基乙烯交联微凝胶中的光控胺交换

Broi, Kevin; Grabowski, Frédéric; Esser, Sarah; Dörr, Jannick; Pich, Andrij; Hecht, Stefan

Functional Dendrimer Nanogels for DNA Delivery and Gene Therapy of Tumors

用于DNA递送和肿瘤基因治疗的功能性树状聚合物纳米凝胶

Li, Xin; Ouyang, Zhijun; Hetjens, Laura; Ni, Ming; Lin, Kuailu; Hu, Yong; Shi, Xiangyang; Pich, Andrij

Ionic Strength-Induced Compartmentalization for Nanogel-in-Microgel Colloids

离子强度诱导纳米凝胶-微凝胶胶体区室化

Pieper, Maria I; Mathews, Hannah F; Pich, Andrij

Asymmetric Microgels with Tunable Morphologies by Assembly-Guided Polymerization of Liquid Crystalline Monomers.

通过液晶单体的组装引导聚合制备具有可调形貌的不对称微凝胶

Wolter Nadja A, Küttner Hannah, Schmitz Jonas, Karg Matthias, Pich Andrij

Depolymerization of PLA catalyzed by guanidine-modified microgels

胍修饰微凝胶催化PLA解聚

Fink, Fabian; Grabowski, Frédéric; Oden, Sandra; Nisgutski, Paul; Pich, Andrij; Herres-Pawlis, Sonja

Transvascular transport of nanocarriers for tumor delivery

用于肿瘤递送的纳米载体的跨血管运输

Li, Xin; Hu, Yong; Zhang, Xingcai; Shi, Xiangyang; Parak, Wolfgang J; Pich, Andrij

Selective Segregation of Thermo-Responsive Microgels via Microfluidic Technology

利用微流控技术选择性分离热响应微凝胶

Sharma, Anjali; Rohne, Fabian; Vasquez-Muñoz, Daniela; Jung, Se-Hyeong; Lomadze, Nino; Pich, Andrij; Santer, Svetlana; Bekir, Marek

Fibrin-Based Hydrogels with Reactive Amphiphilic Copolymers for Mechanical Adjustments Allow for Capillary Formation in 2D and 3D Environments

基于纤维蛋白和反应性两亲性共聚物的水凝胶可通过机械调节实现二维和三维环境中的毛细管形成。

Wein, Svenja; Schemmer, Carina; Al Enezy-Ulbrich, Miriam Aischa; Jung, Shannon Anna; Rütten, Stephan; Kühnel, Mark; Jonigk, Danny; Jahnen-Dechent, Wilhelm; Pich, Andrij; Neuss, Sabine