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SCI-Expanded JCR Q1 Özgün Makale Scopus
Ultrahigh antibacterial response and biochemical activity in Mg-Sn-HA material systems
Materials & Design 2025 Cilt 257
Scopus Eşleşmesi Bulundu
257
Cilt
🔓
Açık Erişim
Scopus Yazarları: Halit Sübütay, Eda Güneş, Fatih Erci, Mustafa Acarer, Emin Salur, Gökhan Arici, S. Bilal Çetinkal, Kemal Doğan, Enver Koray Akdoğan, İlyas Şavklıyıldız
Özet
The effects of metallic tin(Sn) and hydroxyapatite(HA) ceramic particles on metallic magnesium's mechanical properties and antibacterial (S.aureus) response along with bioactivity (toxicity) against D.melanogaster larvae, including the impact on survival, development, sex, longevity, were studied. Three different variations of self-assembled Mg-based materials were synthesized by mechanical alloying and densification of the samples was accomplished by hot press sintering. SEM analysis reveals that the smallest particle morphology was obtained in the Mg-3Sn alloy wherein excessive plastic deformation resulted in a monodisperse particle distribution, enabling uniform distribution of reinforcing elements. The most significant gain in mechanical properties was observed in the Mg-Sn system in which the formation of the Mg<inf>2</inf>Sn intermetallic results Brinell hardness of 184, corresponding ∼ 500 % increase relative to pure Mg. The intermetallic Mg<inf>2</inf>Sn phase and its high-volume fraction in the Mg matrix leads hardening by the Orowan mechanism. In all treatment groups, the overall survival rate is ≥ 80 %, which shows that the produced alloys and composites are not neither toxic nor lethal to the model organisms. According to the survival rate and development time data, it was determined that the sex of the organisms shifted in favor of the first group (males) and the second group (females), while the oxidative stress (OSI) increased in organisms in contact with the first group (males). The Mg-HA and Mg-Sn-HA systems exhibit superb antibacterial properties, showing complete inhibition of S.aureus after 24-h incubation period. Overall, such alloys could have a significant impact on a range of clinical and biomedical applications because of their outstanding antibacterial properties as demonstrated in this study.
Anahtar Kelimeler (Scopus)
Antibacterial activity Biomaterials Longevity Mechanical alloying Mg alloys Oxidative stress Survival and development

Anahtar Kelimeler

Antibacterial activity Biomaterials Longevity Mechanical alloying Mg alloys Oxidative stress Survival and development

Makale Bilgileri

Dergi Materials &amp;amp; Design
ISSN 0264-1275
Yıl 2025 / 9. ay
Cilt / Sayı 257
Makale Türü Özgün Makale
Hakemlik Hakemli
Endeks SCI-Expanded
JCR Quartile Q1
TEŞV Puanı 18,00
Yayın Dili İngilizce
Kapsam Uluslararası
Toplam Yazar 10 kişi
Erişim Türü Basılı+Elektronik
Erişim Linki Makaleye Git
Alan Mühendislik Temel Alanı Malzeme ve Metalurji Mühendisliği

YÖKSİS Yazar Kaydı

Yazar Adı SÜBÜTAY HALİT,GÜNEŞ EDA,ERCİ FATİH,ACARER MUSTAFA,SALUR EMİN,ARICI GÖKHAN,ÇETİNKAL SALİH BİLAL,DOĞAN KEMAL,Akdoğan Enver Koray,ŞAVKLIYILDIZ İLYAS
YÖKSİS ID 9230378

Metrikler

JCR Quartile Q1
TEŞV Puanı 18,00
Yazar Sayısı 10