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Bacterial capture efficiency in fluid bloodstream improved by bendable nanowires

Authors :
Sheng Chen
Tie Wang
Zhen Zhang
Lizhi Liu
Dong Han
Xuezhi Qiao
Zongxiu Nie
Jianlong Wang
Zhenjie Xue
Source :
Nature Communications, Vol 9, Iss 1, Pp 1-9 (2018), Nature Communications
Publication Year :
2018
Publisher :
Nature Portfolio, 2018.

Abstract

Bacterial infectious diseases, such as sepsis, can lead to impaired function in the lungs, kidneys, and other vital organs. Although established technologies have been designed for the extracorporeal removal of bacteria, a high flow velocity of the true bloodstream might result in low capture efficiency and prevent the realization of their full clinical potential. Here, we develop a dialyzer made by three-dimensional carbon foam pre-grafted with nanowires to isolate bacteria from unprocessed blood. The tip region of polycrystalline nanowires is bent readily to form three-dimensional nanoclaws when dragged by the molecular force of ligand-receptor, because of a decreasing Young’s moduli from the bottom to the tip. The bacterial capture efficiency was improved from ~10% on carbon foam and ~40% on unbendable single-crystalline nanowires/carbon foam to 97% on bendable polycrystalline nanowires/carbon foam in a fluid bloodstream of 10 cm s−1 velocity.<br />Bacteria and other pathogens entering the blood stream can have serious consequences, which can even lead to death. Here, the authors developed a sieve containing nano-sized claws that capture and hold these intruders, thus aiding their removal from patient’s blood

Details

Language :
English
ISSN :
20411723
Volume :
9
Issue :
1
Database :
OpenAIRE
Journal :
Nature Communications
Accession number :
edsair.doi.dedup.....7daccaf2eea4c67eb9267d8d145f7183