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Article detail · 2024 · article

Electrospun nanofiber mats caged the mammalian macrophages on their surfaces and prevented their inflammatory responses independent of the fiber diameter

ISSN2045-2322
YÖKSİS OpenAlex Open access · gold
Year2024
Citations15OpenAlex
Citations12Semantic Scholar
Percentile%82.1
FWCI1.691.00 = world average
Scopus (SJR)Q1
WoS (JCR)Q1

Data source split

  • YÖKSİSYÖKSİS article record
  • YÖKSİS venueScientific Reports
  • Catalog match (ISSN)Scientific Reports
  • OpenAlexOpenAlex enrichment (abstract, citations, topics)
  • Semantic Scholarcitation count (not merged with OpenAlex)

Abstract

OpenAlex English

Poly-ε-caprolactone (PCL) has been widely used as biocompatible materials in tissue engineering. They have been used in mammalian cell proliferation to polarization and differentiation. Their modified versions had regulatory activities on mammalian macrophages in vitro. There are also studies suggesting different nanofiber diameters might alter the biological activities of these materials. Based on these cues, we examined the inflammatory activities and adherence properties of mammalian macrophages on electrospun PCL nanofibrous scaffolds formed with PCL having different nanofiber diameters. Our results suggest that macrophages could easily attach and get dispersed on the scaffolds. Macrophages lost their inflammatory cytokine TNF and IL6 production capacity in the presence of LPS when they were incubated on nanofibers. These effects were independent of the mean fiber diameters. Overall, the scaffolds have potential to be used as biocompatible materials to suppress excessive inflammatory reactions during tissue and organ transplantation by caging and suppressing the inflammatory cells.

Topics

Citations

OpenAlex cited_by_count. Not a WoS or Scopus citation count; those sources have no separate column here.

15citationsOpenAlex · cited_by_count (cache / database)

3 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).

  1. 2025 Adjuvant Potential of Diadema Setosum Spine’s Toxin On MacrophagesCitations 0 · OpenAlex
  2. 2025 Adjuvant Potential of Diadema Setosum Spine’s Toxin On MacrophagesCitations 0 · OpenAlex
  3. 2024 Adjuvant Potential of Diadema Setosum Spine’s Toxin On MacrophagesCitations 0 · OpenAlex

Authors

3
  1. FURKAN AYAZ 1
  2. DİDEM DEMİR KARAKUŞ TARSUS ÜNİVERSİTESİ 2
  3. NİMET KARAGÜLLE 3