Szczegóły publikacji

Opis bibliograficzny

A simple, low-cost and green method for controlling the cytotoxicity of MXenes / A. Rozmysłowska-Wojciechowska, A. Szuplewska, T. Wojciechowski, S. Poźniak, J. Mitrzak, M. Chudy, W. Ziemkowska, L. CHLUBNY, A. Olszyna, A. M. Jastrzębska // Materials Science and Engineering. C, Materials for Biological Applications ; ISSN 0928-4931. — 2020 — vol. 111 art. no. 110790, s. 1–8. — Bibliogr. s. 7–8, Abstr. — Publikacja dostępna online od: 2020-02-29

Autorzy (10)

  • Rozmysłowska-Wojciechowska Anita
  • Szuplewska Aleksandra
  • Wojciechowski Tomasz
  • Poźniak Szymon
  • Mitrzak Joanna
  • Chudy Michał
  • Ziemkowska Wanda
  • AGHChlubny Leszek
  • Olszyna Andrzej
  • Jastrzębska Agnieszka M.

Słowa kluczowe

Ti3C2Ti2Ccollagenzeta potentialbiological activityMXenes

Dane bibliometryczne

ID BaDAP128129
Data dodania do BaDAP2020-04-01
Tekst źródłowyURL
DOI10.1016/j.msec.2020.110790
Rok publikacji2020
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Czasopismo/seriaMaterials Science and Engineering, C, Materials for Biological Applications

Abstract

MXene phases are a member of the intriguing 2D material family, beyond graphene. They are good candidates for many applications, however, their potential toxicity is of crucial importance for future development. Herein, we present a simple, low-cost and fully green approach for controlling the potential cytotoxicity of 2D MXenes after delamination by harnessing the interactions that occur between the surface of MXene phases and natural biomacromolecule – collagen. We also demonstrate that the step-by-step adsorption and desorption of collagen from the surface of 2D MXenes is easily controlled using in situ zeta potential measurements coupled with dynamic light scattering (DLS) method. The obtained results demonstrated that the electrostatically driven unprecedented susceptibility of the MXenes' surfaces to collagen. Surface-modification reduces toxicity of MXenes in vitro i.e. adjust cells' viabilities as well as reduce their oxidative stress. This indicates enhanced biocompatibility of 2D Ti3C2 and Ti2C MXenes surface-modified with collagen, which is involved in many bio-interactions as important building blocks in the human body. The presented study opens new avenues for designing MXenes with defined surface properties and paves the way for their future successful management in nano-medicinal applications. © 2020

Publikacje, które mogą Cię zainteresować

artykuł
#122654Data dodania: 15.7.2019
Surface potential and charges impact on cell responses on biomaterials interfaces for medical applications / Sara METWALLY, Urszula STACHEWICZ // Materials Science and Engineering. C, Materials for Biological Applications ; ISSN 0928-4931. — 2019 — vol. 104, art. no. 109883, s. 1–27. — Bibliogr. s. 22–27, Abstr. — Publikacja dostępna online od: 2019-06-13
artykuł
#121048Data dodania: 24.4.2019
The atomic structure of $Ti_{2}C$ and $Ti_{3}C_{2}$ MXenes is responsible for their antibacterial activity toward $E. coli$ bacteria / Agnieszka Maria Jastrzębska, Ewa Karwowska, Tomasz Wojciechowski, Wanda Ziemkowska, Anita Rozmysłowska, Leszek CHLUBNY, Andrzej Olszyna // Journal of Materials Engineering and Performance ; ISSN 1059-9495. — 2019 — vol. 28 iss. 3 spec. iss. focus: Nanotechnology, s. 1272–1277. — Bibliogr. s. 1276–1277. — Publikacja dostępna online od: 2018-02-23. — ACE-X 2017 : 11th international conference on Advanced Computational Engineering and experimenting : Vienna, 3–6 July 2017 ; DSL 2017 : 13th international conference on Diffusion in Solids and Liquids : Vienna, 26–30 June 2017