Microfluidic-driven ultrafast self-assembly of a dipeptide into stimuli-responsive 0D, 1D, and 2D nanostructures and as hydrolase mimic

被引:3
作者
Singh, Ashmeet [1 ]
Joo, Jeong-Un [1 ]
Kim, Dong-Pyo [1 ]
机构
[1] Pohang Univ Sci & Technol POSTECH, Ctr Intelligent Microproc Pharmaceut Synth, Dept Chem Engn, Pohang 37673, South Korea
基金
新加坡国家研究基金会;
关键词
THIOLS; TRANSITION; NANOTUBES; OXIDATION; PEPTIDES; SHAPE; MILD;
D O I
10.1039/d2nr03092f
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Numerous peptides have been utilized to explore the efficacy of their self-assembly to produce nanostructures to mimic the self-organization capability of biomolecules in nature. Self-assembled nanostructures have significant applicability for a range of diverse applications. While the ability to create self-assembled functional materials has greatly improved, the self-assembly process, which results in ordered 0D, 1D, and 2D nanostructures, is still time-consuming. Moreover, in situ structural transformation from one self-assembled structure to another with different dimensions presents an additional challenge. Therefore, in this report, we demonstrate self-assembly in an ultrafast fashion to access four different nanostructures, namely, twisted bundle (TB), nanoparticle (NP), nanofiber (NF), and nanosheet (NS), from a simple dipeptide with the aid of simple microfluidic reactors by applying different stimuli. Additionally, an integrated microfluidic system enabled rapid structural switchover between two types in an ultrashort period of time. It is interesting to note that the formation of the twisted bundle (TB) morphology enabled the formation of an extended entangled network, which resulted in the formation of a hydrogel (1 w/v%). In addition, the nanostructures obtained using the ultrafast self-assembly process were investigated to study their hydrolase enzyme activity mimicking performance against a model substrate (p-NPA) reaction. Intriguingly, we found that our nanostructures were suitably well ordered, and when taking molecular mass into consideration, showed improved catalytic efficiency as compared to the native enzymes.
引用
收藏
页码:15010 / 15020
页数:11
相关论文
共 58 条
[1]   Emergence of a New Self-Replicator from a Dynamic Combinatorial Library Requires a Specific Pre-Existing, Replicator [J].
Altay, Yigit ;
Tezcan, Meniz ;
Otto, Sijbren .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2017, 139 (39) :13612-13615
[2]   Nanoarchitectonics: a new materials horizon for nanotechnology [J].
Ariga, Katsuhiko ;
Ji, Qingmin ;
Nakanishi, Waka ;
Hill, Jonathan P. ;
Aono, Masakazu .
MATERIALS HORIZONS, 2015, 2 (04) :406-413
[3]   Forming nanomaterials as layered functional structures toward materials nanoarchitectonics [J].
Ariga, Katsuhiko ;
Ji, Qingmin ;
Hill, Jonathan P. ;
Bando, Yoshio ;
Aono, Masakazu .
NPG ASIA MATERIALS, 2012, 4 :e17-e17
[4]   Dynamic microfluidic control of supramolecular peptide self-assembly [J].
Arnon, Zohar A. ;
Vitalis, Andreas ;
Levin, Aviad ;
Michaels, Thomas C. T. ;
Caflisch, Amedeo ;
Knowles, Tuomas P. J. ;
Adler-Abramovich, Lihi ;
Gazit, Ehud .
NATURE COMMUNICATIONS, 2016, 7
[5]   Supramolecular fibrillation of peptide amphiphiles induces environmental responses in aqueous droplets [J].
Booth, Richard ;
Insua, Ignacio ;
Ahmed, Sahnawaz ;
Rioboo, Alicia ;
Montenegro, Javier .
NATURE COMMUNICATIONS, 2021, 12 (01)
[6]   Self-Assembled Peptide Nano-Superstructure towards Enzyme Mimicking Hydrolysis [J].
Chen, Yu ;
Yang, Yuqin ;
Orr, Asuka A. ;
Makam, Pandeeswar ;
Redko, Boris ;
Haimov, Elvira ;
Wang, Yannan ;
Shimon, Linda J. W. ;
Rencus-Lazar, Sigal ;
Ju, Meiting ;
Tamamis, Phanourios ;
Dong, Hao ;
Gazit, Ehud .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2021, 60 (31) :17164-17170
[7]   Dimension switchable auto-fluorescent peptide-based 1D and 2D nano-assemblies and their self-influence on intracellular fate and drug delivery [J].
Chibh, Sonika ;
Kaur, Komalpreet ;
Gautam, Ujjal K. ;
Panda, Jiban Jyoti .
NANOSCALE, 2022, 14 (03) :715-735
[8]   Design and application of stimulus-responsive peptide systems [J].
Chockalingam, Karuppiah ;
Blenner, Mark ;
Banta, Scott .
PROTEIN ENGINEERING DESIGN & SELECTION, 2007, 20 (04) :155-161
[9]   Phase Transition and Crystallization Kinetics of a Supramolecular System in a Microfluidic Platform [J].
Cohen-Gerassi, Dana ;
Arnon, Zohar A. ;
Guterman, Tom ;
Levin, Aviad ;
Ghosh, Moumita ;
Aviv, Moran ;
Levy, Davide ;
Knowles, Tuomas P. J. ;
Shacham-Diamand, Yosi ;
Adler-Abramovich, Lihi .
CHEMISTRY OF MATERIALS, 2020, 32 (19) :8342-8349
[10]  
Das S., 2021, FRONT CHEM, V9, P980