Curcumin-loaded ZIF-8 nanoparticles-embedded transdermal polymeric patches increase apoptosis and reduce necrosis in a dose-dependent manner in MCF-7 cells

Göster/ Aç
Tarih
2025Yazar
Kıyak Kırmacı, HumeysaAydın, Saliha
Yekeler, Hümeyra Betül
Güler, Ece
Kayacı, Ayşe Beyza
Gürer, Zeynep
Yılmaz Göler, Ayşe Mine
Erkmen, Ziya Engin
Duygulu, Özgür
Sennaroğlu Bostan, Müge
Martins, Diana
Mendes, Fernando
Eroğlu, Mehmet Sayip
Edirisinghe, Mohan
Çam, Muhammet Emin
Üst veri
Tüm öğe kaydını gösterKünye
Kiyak-Kirmaci, H., Aydin, S., Yekeler, H.B., Guler, E., Kayaci, A.B., Gurer, Z., Yilmaz-Goler, A.M., Erkmen, Z.E., Duygulu, O., Sennaroglu Bostan, M., Martins, D., Mendes, F., Eroglu, M.S., Edirisinghe, M. and Cam, M.E. (2025), Curcumins-Loaded ZIF-8 Nanoparticles-Embedded Transdermal Polymeric Patches Increase Apoptosis and Reduce Necrosis in a Dose-Dependent Manner in MCF-7 Cells. Nano Select e70048.Özet
Curcumin(Cur)-loaded zeolitic imidazolate framework-8 (ZIF-8) nanoparticles (Cur@ZIF-8 NPs) were produced to increase the
anticancer activity of Cur. Cur@ZIF-8 NPs were embedded in polycaprolactone (PCL) fibers as transdermal polymeric patches
via a pressured gyration (PG) method to provide controlled release. Cur@ZIF-8 NPs and Cur@ZIF-8 NPs-embedded PCL fibers
were characterized for physical, chemical, mechanical, and thermal properties, also biological activities were examined with in
vitro tests. Cur@ZIF-8 NPs were produced homogeneously with a size of ∼200 nm and a zeta potential of ∼−19 mV. Cur had
better stability inside Cur@ZIF-8 NPs than its powder form. Cur@ZIF-8 NPs were successfully loaded in PCL fibers with a size of
∼7 µm, and Cur@ZIF-8 NPs were dispersed amorphously in fibers. Cur was released in a controlled manner, and its efficiency was
increased in the acidic microenvironment that is characteristic of cancer. Cur@ZIF-8 NPs have more bioavailability than powdered
Cur and can penetrate the cells to deliver their anticancer effects on MCF-7 human breast cancer cells. Cur@ZIF-8 NPs-embedded transdermal polymeric patches promote apoptosis in MCF-7 cells by reducing necrosis, particularly under acidic conditions. This
work presents a release system with synergistic anticancer effects, offering a novel approach for Cur’s clinical application in breast
cancer through enhanced targeting.
Kaynak
Nano SelectBağlantı
https://onlinelibrary.wiley.com/doi/10.1002/nano.70048https://doi.org/10.1002/nano.70048
https://hdl.handle.net/20.500.12780/1240