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In situ synthesis of core-shell carbon nanowires as a potent targeted anticoagulant

delete2019-09-01
delete11
PRE
AI
J
Ju‐Yi Mao
F
Fu-Yin Lin
H
Han‐Wei Chu
S
Scott G. Harroun
J
Jui‐Yang Lai
H
H.‐J. Lin
C
Chih‐Ching Huang *
DOI:10.1016/j.jcis.2019.05.086delete
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Abstract

Abstract

En 中文
We have developed a one-pot synthesis of bio-carbon nanowires from the natural product sodium alginate at low temperature, without using any catalyst, for anticoagulation applications. Sodium alginate is carbonized and sulfated/sulfonated in situ by solid state heating of a mixture of sodium alginate and ammonium sulfite. By regulating the heating temperature and the ratio of ammonium sulfite to sodium alginate, we modulated the degree of sulfation/sulfonation and carbonization, as well as the morphology of the carbon nanomaterials. The core-shell sulfated/sulfonated bio-carbon nanowires (CNWs(Alg@sox)) made by the reaction of a mixture of ammonium sulfite and sodium alginate with a mass ratio of 5 (ammonium sulfite to sodium alginate) at 165 degrees C for 3 h, exhibit strong inhibition of thrombin activity due to their ultrahigh binding affinity towards it (dissociation constant (K-d) = 8.7 x 10(-11) M). The possible formation mechanism of the carbon nanowires has been proposed. The thrombin-clotting time delay caused by CNWs(Alg@sox) is similar to 170 times longer than that caused by sodium alginate. Hemolysis and cytotoxicity assays demonstrated the high biocompatibility of CNWs(Alg@sox). Furthermore, the thromboelas-tography of whole-blood coagulation and rat-tail bleeding assays further reveal that CNWs(Alg@sox) have a much stronger anticoagulation activity than sodium alginate and naturally sulfated polysaccharides (e.g., fucoidan). Our results suggest that the low-temperature prepared, cost-effective, and highly biocompatible CNWs(Alg@sox) show great potential as an efficient anticoagulant for the prevention and treatment of diseases associated with thrombosis. (C) 2019 Elsevier Inc. All rights reserved.
Keywords:
Sodium alginate
Ammonium sulfite
Sulfation
Carbon nanowires
Thrombin
Anticoagulation
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Journal

Journal of Colloid and Interface Science cover
Journal of Colloid and Interface Science
IF:
9.7
Papers:
3.7W
Citations:
14.7W

Organization

National Taiwan Ocean University cover
National Taiwan Ocean University
Scholars:
3.8K
Papers: 3.6K
Citations: 3.0K
C
Chang Gung University
Scholars:
1.3W
Papers: 1.2W
Citations: 1.2W
U
universite de montreal
Scholars:
4.6W
Papers: 3.8W
Citations: 46
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