Study on the Bioactivity Response of the Newly Developed Zn–Cu–Mn/Mg Alloys for Biodegradable Implant Application

D Palai, T Roy, A De, S Mukherjee… - ACS Biomaterials …, 2024 - ACS Publications
Scaffolds play a crucial role in bone tissue engineering to support the defect area through
bone regeneration and defect reconstruction. Promising tissue regeneration without …

Improving the Bioactivity and Antibiofilm Properties of Metallic Implant Materials via Controlled Surface Microdeformation

F Biçer, SM Toker, MN Soykan, B Türk Yılmaz… - ACS …, 2024 - ACS Publications
Although metallic implants provide most of the required properties for bone-related
applications, especially orthopedic implants, insufficient osseointegration, which may lead to …

Effects of surface micro-deformation on the cellular response to metallic implant materials

F Biçer, SM Toker - Materials Today Communications, 2023 - Elsevier
In the current study, it is aimed to get a comprehensive understanding of how cellular
response to metallic biomaterial surfaces can be controlled via surface parameter specifics …

In vitro contact guidance of glioblastoma cells on metallic biomaterials

B Uzer-Yilmaz - Journal of Materials Science: Materials in Medicine, 2021 - Springer
Cancer cells' ability to sense their microenvironment and interpret these signals for the
regulation of directional adhesion plays crucial role in cancer invasion. Furthermore, given …

Mikrodeformasyon ile Yüzey Özellikleri Değiştirilen 316L Paslanmaz Çeliğin Sentetik Vücut Sıvısı ile Etkileşimi

SM Toker, E Battal, Z Demir, KE Çevik - Düzce Üniversitesi Bilim ve …, 2020 - dergipark.org.tr
Bu çalışmada ortopedik uygulamalarda yaygın olarak kullanılan bir biyomedikal alaşım olan
316L paslanmaz çelik yüzeyinde mikro sertlik ölçüm cihazı kullanılarak mikrodeformasyon …

Surface characteristics evolution of 316L stainless steel induced by tension loading

K ANTANAM, S KUIMALEE… - Journal of Metals …, 2024 - jmmm.material.chula.ac.th
Abstract 316L stainless steel has been employed as a medical implant material owing to its
advantageous biocompatibility and durability. The microstructure and surface characteristics …

Yüzeyinde mikrodeformasyon alanları oluşturulan 316L paslanmaz çeliğin biyomimetik olarak kaplanması

A Sarıkayak, E Koc, M Kalkan, SM Toker - Politeknik Dergisi, 2023 - dergipark.org.tr
Yapılan çalışmada ortopedik implantlarda genellikle tercih edilen biyomedikal bir malzeme
olan 316L paslanmaz çelik yüzeyinde mikrodeformasyon işlemi ile kontrollü olarak …

A preliminary Investigation of Surface Micro Modification Effects on the Biocompatibility of 316L Stainless Steel

SM Toker, E Özbulut, Z Kolçak… - European Mechanical …, 2021 - dergipark.org.tr
Effects of surface properties such as roughness and surface energy are critical for
determining the biocompatibility of all types of biomaterials, as in the case of biomedical …