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akaturk Akademik ölçüm

Makale detayı · 2025

Biocompatible ZnO nanoflower-infused chitosan/alginate/PVA composite for accelerated skin regeneration

Dergi

Journal of Materials Science: Materials in Medicine

ISSN 0739-1102

ISSN kaydı başka bir dergiye işaret ediyor; ad YÖKSİS kaydından.

YÖKSİS OpenAlex Açık erişim · gold SJR Q2 JCR Q3 Atıf 8 Üst %10 Yüzdelik 97.8% FWCI 8.09
Yıl
2025
Tür
article

Veri kaynağı ayrımı

  • YÖKSİS YÖKSİS makale kaydı
  • YÖKSİS dergi adı Journal of Materials Science: Materials in Medicine
  • Katalog eşleşmesi (ISSN) Journal of Biomolecular Structure and Dynamics
  • OpenAlex OpenAlex zenginleştirmesi (özet, atıf, konular)

Özet

OpenAlex · İngilizce

Wound-healing remains a significant challenge in regenerative medicine, necessitating the development of advanced biomaterials with enhanced bioactivity and therapeutic potential. In this study, we synthesized a biocompatible zinc oxide nanoflower (ZnO NF)-infused chitosan/alginate/polyvinyl alcohol (Cs/Alg/PVA) nanocomposite for accelerated skin regeneration. ZnO NFs were synthesized via a green approach using gallic acid and ascorbic acid, yielding nanostructures with high stability and bioactive properties. The physicochemical characterization confirmed the successful formation of ZnO NFs, exhibiting a flower-like morphology. The synthesized ZnO NF-loaded Cs/Alg/PVA nanocomposite demonstrated superior swelling capacity, controlled ZnO NF release, and enhanced mechanical stability. In vitro biocompatibility studies using HDF and L929 cell lines revealed non-cytotoxic behavior and significant proliferation enhancement. Hemocompatibility assessments confirmed very minimal hemolytic activity, indicating excellent blood compatibility. In vivo, wound healing studies in a murine model demonstrated accelerated wound closure, enhanced angiogenesis, reduced inflammation, and improved collagen deposition in ZnO NF-treated groups compared to controls. Histopathological analyses further validated the superior regenerative potential of the nanocomposite. These findings highlight the promising applications of ZnO NFs-based biopolymers in advanced wound dressings, offering a multifunctional platform for tissue engineering and skin regeneration.

Konular

Atıflar

OpenAlex cited_by_count. WoS veya Scopus atıf sayısı değildir; o kaynaklar için ayrı kolon yoktur.

8 atıf

OpenAlex cited_by_count (önbellek / veritabanı)

Yazarlar

  1. Somayeh Reiisi
  2. Norolhoda Khalighi
  3. SENEM AKKOÇ SÜLEYMAN DEMİREL ÜNİVERSİTESİ
  4. Sadegh Shirian