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akaturk Akademik ölçüm

Makale detayı · 2023

Fabrication and optimization of 3D printed gelatin methacryloyl microneedle arrays based on vat photopolymerization

Dergi

Frontiers Media SA

ISSN 2296-4185

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

YÖKSİS OpenAlex Açık erişim · gold SJR Q1 JCR Q1 Atıf 51 Üst %10 Yüzdelik 96.0% FWCI 4.32
Yıl
2023
Tür
article

Veri kaynağı ayrımı

  • YÖKSİS YÖKSİS makale kaydı
  • YÖKSİS dergi adı Frontiers Media SA
  • Katalog eşleşmesi (ISSN) Frontiers in Bioengineering and Biotechnology
  • OpenAlex OpenAlex zenginleştirmesi (özet, atıf, konular)

Özet

OpenAlex · İngilizce

Microneedles (MNs) are micrometer-sized arrays that can penetrate the skin in a minimally invasive manner; these devices offer tremendous potential for the transdermal delivery of therapeutic molecules. Although there are many conventional techniques for manufacturing MNs, most of them are complicated and can only fabricate MNs with specific geometries, which restricts the ability to adjust the performance of the MNs. Herein, we present the fabrication of gelatin methacryloyl (GelMA) MN arrays using the vat photopolymerization 3D printing technique. This technique allows for the fabrication of high-resolution and smooth surface MNs with desired geometries. The existence of methacryloyl groups bonded to the GelMA was verified by 1 H NMR and FTIR analysis. To examine the effects of varying needle heights (1000, 750, and 500 µm) and exposure times (30, 50, and 70 s) on GelMA MNs, the height, tip radius, and angle of the needles were measured; their morphological and mechanical properties were also characterized. It was observed that as the exposure time increased, the height of the MNs increased; moreover, sharper tips were obtained and tip angles decreased. In addition, GelMA MNs exhibited good mechanical performance with no breakage up to 0.3 mm displacement. These results indicate that 3D printed GelMA MNs have great potential for transdermal delivery of various therapeutics.

Konular

Atıflar

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51 atıf

OpenAlex cited_by_count (önbellek / veritabanı)

Yerel katalogda bu makaleye atıf yapan 22 yayın (OpenAlex referans eşleşmesi; tam dünya listesi değildir).

  1. Three-Dimensional-Printed GelMA-KerMA Composite Patches as an Innovative Platform for Potential Tissue Engineering of Tympanic Membrane Perforations 2024 Atıf 21 · OpenAlex
  2. Three-Dimensional-Printed GelMA-KerMA Composite Patches as an Innovative Platform for Potential Tissue Engineering of Tympanic Membrane Perforations 2024 Atıf 21 · OpenAlex
  3. Three-Dimensional-Printed GelMA-KerMA Composite Patches as an Innovative Platform for Potential Tissue Engineering of Tympanic Membrane Perforations 2024 Atıf 21 · OpenAlex
  4. Three-Dimensional-Printed GelMA-KerMA Composite Patches as an Innovative Platform for Potential Tissue Engineering of Tympanic Membrane Perforations 2024 Atıf 21 · OpenAlex
  5. Three-Dimensional-Printed GelMA-KerMA Composite Patches as an Innovative Platform for Potential Tissue Engineering of Tympanic Membrane Perforations 2024 Atıf 21 · OpenAlex
  6. Three-Dimensional-Printed GelMA-KerMA Composite Patches as an Innovative Platform for Potential Tissue Engineering of Tympanic Membrane Perforations 2024 Atıf 21 · OpenAlex
  7. Three-Dimensional-Printed GelMA-KerMA Composite Patches as an Innovative Platform for Potential Tissue Engineering of Tympanic Membrane Perforations 2024 Atıf 21 · OpenAlex
  8. Development of bilayer tissue-engineered scaffolds: combination of 3D printing and electrospinning methodologies 2024 Atıf 15 · OpenAlex
  9. Development of bilayer tissue-engineered scaffolds: combination of 3D printing and electrospinning methodologies 2024 Atıf 15 · OpenAlex
  10. Development of bilayer tissue-engineered scaffolds: combination of 3D printing and electrospinning methodologies 2024 Atıf 15 · OpenAlex

Yazarlar

  1. DİLRUBA BAYKARA
  2. TUBA BEDİR
  3. Elif İlhan
  4. Mehmet Eren Mutlu
  5. OĞUZHAN GÜNDÜZ
  6. Roger Narayan
  7. CEM BÜLENT ÜSTÜNDAĞ YILDIZ TEKNİK ÜNİVERSİTESİ