返回
Self-directed assembly drives spatial confinement polymerization for controlled capsule engineering
DOI:10.1016/j.nantod.2024.102405.png)
摘要
En 中文
Facile and template-free synthesis of polyphenol-based polymer capsules is highly desired but remains challenging, owing to rapid oxidization of polyphenols and the corresponding uncontrolled assembly. Here, inspired by the natural structure and spontaneous assembly of cell membrane, we for the first time report a one-pot spatial confinement polymerization strategy based on the self-directed assembly of the smart lipid-like phenylboronate-dopamine derivatives (pDA). Both the experimental results and theoretical calculations demonstrate that these amphiphilic pDA molecules can spontaneously assemble into metastable vesicles, providing a spatially confined pre-capsules framework for the later cross-linking polymerization. Strikingly, the ingeniously designed hydrophobic phenylboronate ends not only block the catechol groups from rapid oxidization, but also take off / dissociate / decompose under the polymerization trigger-H2O2, thus enabling a controllable stimuli-responsive polymerization. Particularly, the uniform macroporous cavities with tunable sizes and sufficient cross-linking degree account for acoustic cavitation enhancement, providing a biocompatible sonosensitizer-free therapy platform. The general strategy paves the way toward the template-free synthesis of polyphenol-based capsules and may enlighten chemists to achieve intracellular synthesis of hollow polydopamine.
Keyword:
Self -assembly
Dopamine derivatives
Spatial confinement polymerization
Polydopamine capsules
Acoustic cavitation
期刊
IF:
10.9
论文数:
3.0K
被引数:
2.1W
机构
引用论文
Polydopamine-based nanostructures: A new generation of versatile, multi-tasking, and smart theranostic tools基于聚多巴胺的纳米结构: 新一代多功能,多任务和智能治疗工具
NANO TODAY
IF10.9
Dopamine-Melanin Colloidal Nanospheres: An Efficient Near-Infrared Photothermal Therapeutic Agent for In Vivo Cancer Therapy多巴胺-黑色素胶体纳米球: 一种用于体内癌症治疗的高效近红外光热治疗剂
ADVANCED MATERIALS
IF26.8
Polydopamine and Its Derivative Materials: Synthesis and Promising Applications in Energy, Environmental, and Biomedical Fields聚多巴胺及其衍生材料的合成及其在能源、环境和生物医学领域的应用前景
Comprehensive Insights into the Multi-Antioxidative Mechanisms of Melanin Nanoparticles and Their Application To Protect Brain from Injury in Ischemic Stroke综合了解黑色素纳米颗粒的多种抗氧化机制及其在缺血性脑卒中脑损伤中的应用

