arrow
Return

Water-actuated reversible shape-memory polydimethylsiloxane for potential biomedical applications

delete2023-01-01
delete0
PRE
AI
J
Junge Zhao
Y
Yannong Zhou
J
Jiangnan Xia
M
Ming Yuan
N
Ningning Zhang
赵怀霞 (Huaixia Zhao)
王杨鑫 (Yangxin Wang) *
DOI:10.1039/d2tb02503edelete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Shape memory polymers (SMPs) show great potential in biomedical fields. However, most of the SMPs are not suitable for use in the human body due to their deleteriousness and harsh actuation conditions. It is important to diversify SMPs that could be actuated in the human body environment. Herein, we construct a reversible shape-memory polydimethylsiloxane (RSMPDMS) based on a feasible strategy by deposing the PDMS-salt layer with dynamic micro-creases on the pure PDMS layer. Testing results reveal that it equips with self-expanding, bio-compatibility, drug storage-release and good mechanical toughness. The RSMPDMS could be variously shaped, such as ring, coil, and spiral. The prepared samples present efficient deformation-recovery with high mechanical stability during water absorption-desorption cycles. Moreover, the RSMPDMS is confirmed biocompatible by cell viability analysis and cell fluorescent labeling method, accompanied with efficient drug storage-release. The novel-designed RSMPDMS may contribute to the development of new shape memory biomedical materials.
Keywords:
POLYMER
RECOVERY
TEMPERATURE

Journal

Journal of Materials Chemistry B cover
Journal of Materials Chemistry B
IF:
5.7
Papers:
1.1W
Citations:
4.3W

Organization

L
Leibniz University Hannover
Scholars:
1.0W
Papers: 8.5K
Citations: 1.1W
N
Nanjing Tech University
Scholars:
3.6W
Papers: 2.3W
Citations: 3.9W