Cargando…

Conformational manipulation of scale-up prepared single-chain polymeric nanogels for multiscale regulation of cells

Folded single chain polymeric nano-objects are the molecular level soft material with ultra-small size. Here, we report an easy and scalable method for preparing single-chain nanogels (SCNGs) with improved efficiency. We further investigate the impact of the dynamic molecular conformational change o...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Xiaoyu, Li, Rui, Wong, Siu Hong Dexter, Wei, Kongchang, Cui, Miao, Chen, Huaijun, Jiang, Yuanzhang, Yang, Boguang, Zhao, Pengchao, Xu, Jianbin, Chen, Heng, Yin, Chao, Lin, Sien, Lee, Wayne Yuk-Wai, Jing, Yihan, Li, Zhen, Yang, Zhengmeng, Xia, Jiang, Chen, Guosong, Li, Gang, Bian, Liming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6586678/
https://www.ncbi.nlm.nih.gov/pubmed/31221969
http://dx.doi.org/10.1038/s41467-019-10640-z
_version_ 1783428924503490560
author Chen, Xiaoyu
Li, Rui
Wong, Siu Hong Dexter
Wei, Kongchang
Cui, Miao
Chen, Huaijun
Jiang, Yuanzhang
Yang, Boguang
Zhao, Pengchao
Xu, Jianbin
Chen, Heng
Yin, Chao
Lin, Sien
Lee, Wayne Yuk-Wai
Jing, Yihan
Li, Zhen
Yang, Zhengmeng
Xia, Jiang
Chen, Guosong
Li, Gang
Bian, Liming
author_facet Chen, Xiaoyu
Li, Rui
Wong, Siu Hong Dexter
Wei, Kongchang
Cui, Miao
Chen, Huaijun
Jiang, Yuanzhang
Yang, Boguang
Zhao, Pengchao
Xu, Jianbin
Chen, Heng
Yin, Chao
Lin, Sien
Lee, Wayne Yuk-Wai
Jing, Yihan
Li, Zhen
Yang, Zhengmeng
Xia, Jiang
Chen, Guosong
Li, Gang
Bian, Liming
author_sort Chen, Xiaoyu
collection PubMed
description Folded single chain polymeric nano-objects are the molecular level soft material with ultra-small size. Here, we report an easy and scalable method for preparing single-chain nanogels (SCNGs) with improved efficiency. We further investigate the impact of the dynamic molecular conformational change of SCNGs on cellular interactions from molecular to bulk scale. First, the supramolecular unfoldable SCNGs efficiently deliver siRNAs into stem cells as a molecular drug carrier in a conformation-dependent manner. Furthermore, the conformation changes of SCNGs enable dynamic and precise manipulation of ligand tether structure on 2D biomaterial interfaces to regulate the ligand–receptor ligation and mechanosensing of cells. Lastly, the dynamic SCNGs as the building blocks provide effective energy dissipation to bulk biomaterials such as hydrogels, thereby protecting the encapsulated stem cells from deleterious mechanical shocks in 3D matrix. Such a bottom-up molecular tailoring strategy will inspire further applications of single-chain nano-objects in the biomedical area.
format Online
Article
Text
id pubmed-6586678
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-65866782019-06-24 Conformational manipulation of scale-up prepared single-chain polymeric nanogels for multiscale regulation of cells Chen, Xiaoyu Li, Rui Wong, Siu Hong Dexter Wei, Kongchang Cui, Miao Chen, Huaijun Jiang, Yuanzhang Yang, Boguang Zhao, Pengchao Xu, Jianbin Chen, Heng Yin, Chao Lin, Sien Lee, Wayne Yuk-Wai Jing, Yihan Li, Zhen Yang, Zhengmeng Xia, Jiang Chen, Guosong Li, Gang Bian, Liming Nat Commun Article Folded single chain polymeric nano-objects are the molecular level soft material with ultra-small size. Here, we report an easy and scalable method for preparing single-chain nanogels (SCNGs) with improved efficiency. We further investigate the impact of the dynamic molecular conformational change of SCNGs on cellular interactions from molecular to bulk scale. First, the supramolecular unfoldable SCNGs efficiently deliver siRNAs into stem cells as a molecular drug carrier in a conformation-dependent manner. Furthermore, the conformation changes of SCNGs enable dynamic and precise manipulation of ligand tether structure on 2D biomaterial interfaces to regulate the ligand–receptor ligation and mechanosensing of cells. Lastly, the dynamic SCNGs as the building blocks provide effective energy dissipation to bulk biomaterials such as hydrogels, thereby protecting the encapsulated stem cells from deleterious mechanical shocks in 3D matrix. Such a bottom-up molecular tailoring strategy will inspire further applications of single-chain nano-objects in the biomedical area. Nature Publishing Group UK 2019-06-20 /pmc/articles/PMC6586678/ /pubmed/31221969 http://dx.doi.org/10.1038/s41467-019-10640-z Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Chen, Xiaoyu
Li, Rui
Wong, Siu Hong Dexter
Wei, Kongchang
Cui, Miao
Chen, Huaijun
Jiang, Yuanzhang
Yang, Boguang
Zhao, Pengchao
Xu, Jianbin
Chen, Heng
Yin, Chao
Lin, Sien
Lee, Wayne Yuk-Wai
Jing, Yihan
Li, Zhen
Yang, Zhengmeng
Xia, Jiang
Chen, Guosong
Li, Gang
Bian, Liming
Conformational manipulation of scale-up prepared single-chain polymeric nanogels for multiscale regulation of cells
title Conformational manipulation of scale-up prepared single-chain polymeric nanogels for multiscale regulation of cells
title_full Conformational manipulation of scale-up prepared single-chain polymeric nanogels for multiscale regulation of cells
title_fullStr Conformational manipulation of scale-up prepared single-chain polymeric nanogels for multiscale regulation of cells
title_full_unstemmed Conformational manipulation of scale-up prepared single-chain polymeric nanogels for multiscale regulation of cells
title_short Conformational manipulation of scale-up prepared single-chain polymeric nanogels for multiscale regulation of cells
title_sort conformational manipulation of scale-up prepared single-chain polymeric nanogels for multiscale regulation of cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6586678/
https://www.ncbi.nlm.nih.gov/pubmed/31221969
http://dx.doi.org/10.1038/s41467-019-10640-z
work_keys_str_mv AT chenxiaoyu conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT lirui conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT wongsiuhongdexter conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT weikongchang conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT cuimiao conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT chenhuaijun conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT jiangyuanzhang conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT yangboguang conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT zhaopengchao conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT xujianbin conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT chenheng conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT yinchao conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT linsien conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT leewayneyukwai conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT jingyihan conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT lizhen conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT yangzhengmeng conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT xiajiang conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT chenguosong conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT ligang conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells
AT bianliming conformationalmanipulationofscaleuppreparedsinglechainpolymericnanogelsformultiscaleregulationofcells