In the present study, polylactic acid (PLA)-curcumin (Cur)-graphene oxide (GO) wound dressings were fabricated by the electrospinning method. According to the results, the average diameters of PLA, PLA/Cur, PLA/Cur-0.6GO, and PLA/Cur-1GO and PLA/Cur-1.6GO composite nanofibers were about 266.5 ± 55.1, 375.3 ± 62.6, 393.6 ± 47.8, 449.7 ± 45.3, and 482.8 ± 61.9 nm, respectively. Fourier transform infrared analysis showed that all the mentioned compounds were present in the nanofiber scaffolds. Evaluation of the water absorption of wound dressings within 24 h was estimated at 71%, 162%, 140%, 123%, and 105% for PLA, PLA/Cur, PLA/Cur-0.6GO, and PLA/Cur-1GO and PLA/Cur-1.6GO, respectively. The addition of GO has increased the drug release rate so that the PLA/Cur-1.6GO nanofiber scaffold has the highest release rate. Electrospun composite nanofibers have no toxicity and have a high percentage of cell viability. The adhesion of the grown cells to the nanofibers has increased with the addition of GO. As expected, GO had a significant effect on increasing the mechanical properties of the nanofiber scaffolds. Considering that GO enhanced several desirable properties of the PLA/Cur-GO composite nanofibers, further in vivo investigation is recommended.
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27 April 2026
Research Article|
February 19 2026
Electrospun polylactic acid-curcumin-graphene oxide composite nanofibers for wound dressing
Mobina Mohammadi;
Mobina Mohammadi
Department of Biomedical Engineering, CT.C.,
Islamic Azad University
, Tehran, Iran
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Tahmineh Ahmadi;
Department of Biomedical Engineering, CT.C.,
Islamic Azad University
, Tehran, Iran
Corresponding author Tahmineh Ahmadi (tahmadi56@yahoo.com)
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Vahid Nekouie;
Vahid Nekouie
School of Engineering Built Environment,
Sheffield Hallam University
, Sheffield, UK
; Materials and Engineering Research Institute (MERI), Sheffield Hallam University, Sheffield, UK
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Shamim Afshari;
Shamim Afshari
School of Metallurgy and Materials Engineering,
Iran University of Science and Technology
, Tehran, Iran
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Shahrokh Shojaei;
Shahrokh Shojaei
Department of Biomedical Engineering, CT.C.,
Islamic Azad University
, Tehran, Iran
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Hamid Reza Bakhsheshi-Rad
Hamid Reza Bakhsheshi-Rad
Department of Materials Engineering, Na.C.,
Islamic Azad University
, Najafabad, Iran
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Corresponding author Tahmineh Ahmadi (tahmadi56@yahoo.com)
Conflicts of interest The authors declare that they have no competing/financial conflict of interests in this paper.
Publisher: Emerald Publishing
Received:
April 13 2025
Accepted:
January 16 2026
Online ISSN: 2046-0155
Print ISSN: 2046-0147
Funding
Funding Group:
- Funding Statement(s): This research received no external funding.
© 2026 Emerald Publishing Limited
2026
Emerald Publishing Limited
Licensed re-use rights only
Emerging Materials Research (2026) 15 (1): 112–121.
Article history
Received:
April 13 2025
Accepted:
January 16 2026
Citation
Mohammadi M, Ahmadi T, Nekouie V, Afshari S, Shojaei S, Bakhsheshi-Rad HR (2026), "Electrospun polylactic acid-curcumin-graphene oxide composite nanofibers for wound dressing". Emerging Materials Research, Vol. 15 No. 1 pp. 112–121, doi: https://doi.org/10.1680/jemmr.25.00056
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