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Photoswitchable Microgels for Dynamic Macrophage Modulation

delete2022-11-02
delete4
PRE
AI
Y
Yuri Kim
R
Ramar Thangam
J
Jounghyun Yoo
J
Jeongyun Heo
J
Jung Yeon Park
N
Nayeon Kang
S
Sungkyu Lee
J
Jiwon Yoon
K
Kwang Rok Mun
M
Misun Kang
S
Sunhong Min
S
Seong Yeol Kim
S
Subin Son
J
Ji‐Hwan Kim
H
Hyunsik Hong
G
Gunhyu Bae
K
Kanghyeon Kim
S
Sanghyeok Lee
阳乐涛 (Letao Yang)
J
Ja Yeon Lee
J
Jinjoo Kim
S
Steve Park
D
Dong‐Hyun Kim
K
Ki‐Bum Lee
W
Woo Young Jang
B
Bong Hoon Kim
R
Ramasamy Paulmurugan
S
Seung‐Woo Cho
H
Hyun‐Cheol Song
S
Seok Ju Kang
W
Wujin Sun
Y
Yangzhi Zhu
J
Junmin Lee
H
Han‐Jun Kim
H
Ho Seong Jang
J
Jong Seung Kim
A
Ali Khademhosseini
Y
Yongju Kim
S
Sehoon Kim *
H
Heemin Kang *
DOI:10.1002/adma.202205498delete
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Abstract

Abstract

En 中文
Dynamic manipulation of supramolecular self-assembled structures is achieved irreversibly or under non-physiological conditions, thereby limiting their biomedical, environmental, and catalysis applicability. In this study, microgels composed of azobenzene derivatives stacked via pi-cation and pi-pi interactions are developed that are electrostatically stabilized with Arg-Gly-Asp (RGD)-bearing anionic polymers. Lateral swelling of RGD-bearing microgels occurs via cis-azobenzene formation mediated by near-infrared-light-upconverted ultraviolet light, which disrupts intermolecular interactions on the visible-light-absorbing upconversion-nanoparticle-coated materials. Real-time imaging and molecular dynamics simulations demonstrate the deswelling of RGD-bearing microgels via visible-light-mediated trans-azobenzene formation. Near-infrared light can induce in situ swelling of RGD-bearing microgels to increase RGD availability and trigger release of loaded interleukin-4, which facilitates the adhesion structure assembly linked with pro-regenerative polarization of host macrophages. In contrast, visible light can induce deswelling of RGD-bearing microgels to decrease RGD availability that suppresses macrophage adhesion that yields pro-inflammatory polarization. These microgels exhibit high stability and non-toxicity. Versatile use of ligands and protein delivery can offer cytocompatible and photoswitchable manipulability of diverse host cells.
Keywords:
dynamic hydrogels
macrophage adhesion
macrophage polarization
microgel swelling
photoswitchable microgels

Journal

Advanced Materials cover
Advanced Materials
IF:
26.8
Papers:
3.4W
Citations:
46.0W

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K
Korea University
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3.6W
Papers: 3.8W
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S
sungkyunkwan university (skku)
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Citations: 49
K
korea university medicine (ku medicine)
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R
rutgers university new brunswick
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S
Stanford University
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R
rutgers university system
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F
Feinberg School of Medicine
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Papers: 1.5W
Citations: 34
K
korea institute of science & technology (kist)
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1.2W
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Citations: 23
N
Northwestern University
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Papers: 5.3W
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Y
Yonsei University
Scholars:
4.8W
Papers: 4.6W
Citations: 5.2W
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