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Development of Novel Composite Biocompatible Materials by Surface Modification of Porous Inorganic Compounds Using Bambus[6]Uril.

Gulstan ZhumabayevaPana TurebayevaArthur UkhovDmitry A FedorishinAlexander GubankovVenera LuchshevaKurzina IrinaAbdigali BakibaevRoza RyskaliyevaGulnara AbdullinaSaltanat BolysbekovaRakhmetulla Yerkassov
Published in: Materials (Basel, Switzerland) (2023)
In this present investigation, a novel series of composite materials based on porous inorganic compounds-hydroxyapatite and diatomite-have been innovatively formulated for the first time through surface modification employing the promising macromolecular compound, bambus[6]uril. The process entailed the application of a bambus[6]uril dispersion in water onto the surfaces of hydroxyapatite and diatomite. Extensive characterization was carried out, involving IR spectroscopy and SEM. The materials underwent assessment for hemolytic effects and plasma protein adsorption. The results revealed that materials containing surface-bound bambus[6]uril did not demonstrate inherent hemolytic effects, laying a robust groundwork for their use as biocompatible materials. These findings hold significant promise as an alternative pathway for the development of durable and efficient bio-composites, potentially unveiling supramolecular strategies incorporating encapsulated bambus[6]urils in analogous processes.
Keyphrases
  • tissue engineering
  • ionic liquid
  • escherichia coli
  • mass spectrometry
  • single cell
  • single molecule
  • machine learning
  • highly efficient
  • aqueous solution
  • biofilm formation
  • big data