Biocompatible pillararene-assembly-based carriers for dual bioimaging

Present research provides a successful example to use biocompatible pillararene-based assemblies for delivering mixed dyes in dual bioimaging. A series of tadpole-like and bola amphiphilic pillararenes 1–4 were synthesized by selectively employing water-soluble ethylene glycols and hydrophobic alkyl...

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Main Authors: Zhang, Huacheng, Ma, Xing, Nguyen, Kim Truc, Zhao, Yanli
Other Authors: School of Physical and Mathematical Sciences
Format: Article
Language:English
Published: 2013
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Online Access:https://hdl.handle.net/10356/99699
http://hdl.handle.net/10220/17500
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-996992020-06-01T10:01:35Z Biocompatible pillararene-assembly-based carriers for dual bioimaging Zhang, Huacheng Ma, Xing Nguyen, Kim Truc Zhao, Yanli School of Physical and Mathematical Sciences School of Materials Science & Engineering General Present research provides a successful example to use biocompatible pillararene-based assemblies for delivering mixed dyes in dual bioimaging. A series of tadpole-like and bola amphiphilic pillararenes 1–4 were synthesized by selectively employing water-soluble ethylene glycols and hydrophobic alkyl units as the starting materials. In comparison with their monomers, these amphiphilic pillararenes not only show improved biocompatibility to cells but also could form homogeneous supramolecular self-assemblies. Interestingly, different types of amphiphilic pillararene-based assemblies exhibit various performances on the delivery of dyes with different aqueous solubility. All assemblies can deliver water-soluble rhodamine B to cells, while only tadpole-like amphiphilic pillararene-based assemblies performed better on delivering hydrophobic fluorescein isothiocyanate for imaging. In addition, pillararene derivatives 1, 3, and 4 could complex with a viologen guest, further forming stable assemblies for bioimaging. In such cases, the assembly formed from the complex of tadpole-like amphiphile pillararene 1 with the viologen guest performed better in delivering mixed dyes. Finally, an anticancer drug, doxorubicin, was successfully delivered to cells by using the pillararene-based assemblies. The current research has determined the capacities of pillararene-based assemblies to deliver different dyes for bioimaging and paves the way for using these biocompatible carriers toward combined cancer therapy. 2013-11-08T06:53:21Z 2019-12-06T20:10:31Z 2013-11-08T06:53:21Z 2019-12-06T20:10:31Z 2013 2013 Journal Article Zhang, H., Ma, X., Nguyen, K. T., & Zhao, Y. (2013). Biocompatible Pillararene-Assembly-Based Carriers for Dual Bioimaging. ACS Nano, 7(9), 7853-7863. https://hdl.handle.net/10356/99699 http://hdl.handle.net/10220/17500 10.1021/nn402777x en ACS nano © 2013 American Chemical Society
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic General
spellingShingle General
Zhang, Huacheng
Ma, Xing
Nguyen, Kim Truc
Zhao, Yanli
Biocompatible pillararene-assembly-based carriers for dual bioimaging
description Present research provides a successful example to use biocompatible pillararene-based assemblies for delivering mixed dyes in dual bioimaging. A series of tadpole-like and bola amphiphilic pillararenes 1–4 were synthesized by selectively employing water-soluble ethylene glycols and hydrophobic alkyl units as the starting materials. In comparison with their monomers, these amphiphilic pillararenes not only show improved biocompatibility to cells but also could form homogeneous supramolecular self-assemblies. Interestingly, different types of amphiphilic pillararene-based assemblies exhibit various performances on the delivery of dyes with different aqueous solubility. All assemblies can deliver water-soluble rhodamine B to cells, while only tadpole-like amphiphilic pillararene-based assemblies performed better on delivering hydrophobic fluorescein isothiocyanate for imaging. In addition, pillararene derivatives 1, 3, and 4 could complex with a viologen guest, further forming stable assemblies for bioimaging. In such cases, the assembly formed from the complex of tadpole-like amphiphile pillararene 1 with the viologen guest performed better in delivering mixed dyes. Finally, an anticancer drug, doxorubicin, was successfully delivered to cells by using the pillararene-based assemblies. The current research has determined the capacities of pillararene-based assemblies to deliver different dyes for bioimaging and paves the way for using these biocompatible carriers toward combined cancer therapy.
author2 School of Physical and Mathematical Sciences
author_facet School of Physical and Mathematical Sciences
Zhang, Huacheng
Ma, Xing
Nguyen, Kim Truc
Zhao, Yanli
format Article
author Zhang, Huacheng
Ma, Xing
Nguyen, Kim Truc
Zhao, Yanli
author_sort Zhang, Huacheng
title Biocompatible pillararene-assembly-based carriers for dual bioimaging
title_short Biocompatible pillararene-assembly-based carriers for dual bioimaging
title_full Biocompatible pillararene-assembly-based carriers for dual bioimaging
title_fullStr Biocompatible pillararene-assembly-based carriers for dual bioimaging
title_full_unstemmed Biocompatible pillararene-assembly-based carriers for dual bioimaging
title_sort biocompatible pillararene-assembly-based carriers for dual bioimaging
publishDate 2013
url https://hdl.handle.net/10356/99699
http://hdl.handle.net/10220/17500
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