Literature DB >> 31283177

Bioinspired Microfluidic Device by Integrating a Porous Membrane and Heterostructured Nanoporous Particles for Biomolecule Cleaning.

Jun-Bing Fan1, Jing Luo1,2, Zhen Luo1,2, Yongyang Song1,2, Zhao Wang1,2, Jingxin Meng1, Binshuai Wang3, Shudong Zhang3, Zijian Zheng4, Xiaodong Chen5, Shutao Wang1,2.   

Abstract

Mimicking the structures and functions of biological systems is considered as a promising approach to construct artificial materials, which have great potential in energy, the environment, and health. Here, we demonstrate a conceptually distinct design by synergistically combining a kidney-inspired porous membrane and natural sponge-inspired heterostructured nanoporous particles to fabricate a bioinspired biomolecule cleaning device, achieving highly efficient biomolecule cleaning spanning from small molecules to macromolecules. The bioinspired biomolecule cleaning device is a two-layer microfluidic device that integrates a polyamide porous membrane and heterostructured nanoporous poly(acrylic acid)-poly(styrene divinylbenzene) particles. The former as a filtration membrane isolates the upper sample liquid and the latter fixed onto the bottom of the underlying channel acts as an active sorbent, particularly enhancing the clearance of macromolecules. As a proof-of-concept, we demonstrate that typical molecules, including urea, creatinine, lysozyme, and β2-microglobulin, can be efficiently cleaned from simulant liquid and even whole blood. This study provides a method to fabricate a bioinspired biomolecule cleaning device for highly efficient biomolecule cleaning. We believe that our bioinspired synergistic design may expand to other fields for the fabrication of integrated functional devices, creating opportunities in a wide variety of applications.

Entities:  

Keywords:  bioinspired device; biomolecule cleaning; filtration and adsorption; heterostructured nanoporous particles; porous membrane; synergistic design

Year:  2019        PMID: 31283177     DOI: 10.1021/acsnano.9b03918

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  2 in total

1.  Cheerios Effect Inspired Microbubbles as Suspended and Adhered Oral Delivery Systems.

Authors:  Cheng Zhao; Lijun Cai; Min Nie; Luoran Shang; Yongan Wang; Yuanjin Zhao
Journal:  Adv Sci (Weinh)       Date:  2021-02-24       Impact factor: 16.806

2.  Controllable Fabrication of Molecularly Imprinted Microspheres with Nanoporous and Multilayered Structure for Dialysate Regeneration.

Authors:  Hongchi Wu; Shanguo Zhang; Lu Liu; Yukun Ren; Chun Xue; Wenlong Wu; Xiaoming Chen; Hongyuan Jiang
Journal:  Nanomaterials (Basel)       Date:  2022-01-27       Impact factor: 5.076

  2 in total

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