4.7 Article

Systematic studies on blood coagulation mechanisms of halloysite nanotubes-coated PET dressing as superior topical hemostatic agent

期刊

CHEMICAL ENGINEERING JOURNAL
卷 428, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2021.132049

关键词

Clay nanotube; Coagulation; Platelet activation; Hemostasis; Biocompatibility

资金

  1. National Natural Science Foundation China [52073121]
  2. Innovation Team Project of Guangdong Provincial Department of Education [2020KCXTD003]
  3. Natural Science Foundation of Guangdong Province [2019A1515011509]
  4. Local Innovative and Research Teams Project of Guangdong Pearl River Talents Program [2017BT01Y036]
  5. GDUPS (2019)
  6. Science and Technology Planning Project of Guangdong Province [2019A050513004]
  7. Science and Technology Program of Guangzhou [202102010117]
  8. Fundamental Research Funds for the Central Universities [21619102]

向作者/读者索取更多资源

This study reveals the mechanisms by which halloysite nanotubes accelerate hemostasis through various approaches, including water absorption, blood concentration, triggering intrinsic coagulation cascades, and accelerating clot formation.
Halloysite nanotubes (HNTs), a traditional mineral Chinese medicine, have been used to stop bleeding for thousands of years. However, the coagulation mechanisms of HNTs and their practical application potential have not been fully elucidated. In this study, HNTs were found to accelerate hemostasis via multiple dependent approaches: (i) absorbing water and concentrating blood due to their super-hydrophilicity and unique tubular nanostructure; (ii) triggering an intrinsic coagulation cascade by negatively charged surface interaction; and (iii) accelerating clot formation by activating and linking with platelets. To solve the difficulty in the application of powder, a HNT-coated polyester fiber dressing was designed by an impregnation method. The HNT coating enables the dressing to resist massive hemorrhaging of the liver and vessels, as well as epidermal bleeding. Moreover, the HNT-coated fiber dressings are not accompanied by burning or adhesion at the wound sites. In summary, this work provides profound insight into HNT hemostasis through the physical and biological interactions between HNTs and blood, which represents a promising strategy for effective prehospital treatment and civilian needs.

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