IAD Index of Academic Documents
  • Home Page
  • About
    • About Izmir Academy Association
    • About IAD Index
    • IAD Team
    • IAD Logos and Links
    • Policies
    • Contact
  • Submit A Journal
  • Submit A Conference
  • Submit Paper/Book
    • Submit a Preprint
    • Submit a Book
  • Contact
  • The European Research Journal
  • Volume:6 Issue:6
  • Micro- and nanoscale characterization of different natural biomaterials for ocular surface regenerat...

Micro- and nanoscale characterization of different natural biomaterials for ocular surface regeneration

Authors : Gamze DERELİ CAN, Atakan TEVLEK, Mehmet Erol CAN, Elif ÖNCÜ, Halil Murat AYDIN, Nurullah CAGİL
Pages : 587-599
Doi:10.18621/eurj.550522
View : 25 | Download : 12
Publication Date : 2020-11-04
Article Type : Research Paper
Abstract :Objectives: This study aims to characterize the widely used biological derived membranes in clinics in terms of micro-nano scale mechanical and morphological properties. Within this scope, advanced platelet-rich fibrin insert ignore into journalissuearticles values(A-PRF);, leucocyte-and platelet-rich fibrin insert ignore into journalissuearticles values(L-PRF); and human amniotic membrane were studied in this research study. Methods: Nano-indentation, optical coherence tomography insert ignore into journalissuearticles values(OCT);, scanning electron microscopy insert ignore into journalissuearticles values(SEM);, and in vitro degradation test were performed for material characterization. Results: The nano-indentation test revealed significantly higher modulus of elasticity and hardness values in A-PRF group, while OCT presented significantly higher thickness measurements when compared L-PRF. A loose 3D architecture formation due to the large pores formed by means of large fiber diameter were observed in A-PRF group. Besides, platelets were observed among the large fibers in A-PRF membranes on the contrary of L-PRF membranes. Low fiber diameter and high cellular separation were recorded in L-PRF group due to the high centrifugal force application. Therefore, it was observed that the platelets were located mostly on the surface of the membranes in L-PRF. The loose 3D architecture of A-PRF membranes is thought to release growth factors for a longer period of time, ensuring cellular integrity. On the other hand, degradation test results indicated that amniotic membranes degrade to about 85% in one week, while L-PRF and A-PRF were lost their initial weights approximately 31% and 40%, respectively. Conclusions: This comparative characterization study of three different natural biomaterials used in a wide range of clinical applications, from dentistry to ophthalmology, was thought to guide surgeons on the selection of site-specific material.
Keywords : Leucocyte and platelet rich fibrin, advanced platelet rich fibrin, amniotic membrane, nano indentation, optical coherence tomography

ORIGINAL ARTICLE URL
VIEW PAPER (PDF)

* There may have been changes in the journal, article,conference, book, preprint etc. informations. Therefore, it would be appropriate to follow the information on the official page of the source. The information here is shared for informational purposes. IAD is not responsible for incorrect or missing information.


Index of Academic Documents
İzmir Academy Association
CopyRight © 2023-2025