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The Effect of Hybrosome (Umbilical Cord Blood Exosome-Liposome Hybrid Vesicles) on Human Dermal Cells In Vitro

dc.contributor.authorKocak, Polen
dc.contributor.authorUnsal, Naz
dc.contributor.authorCanikyan, Serli
dc.contributor.authorKul, Yaren
dc.contributor.authorCohen, Steven R.
dc.contributor.authorTiryaki, Tung
dc.contributor.authorDuncan, Diane
dc.contributor.authorSchlaudraff, Kai-Uwe
dc.contributor.authorAscher, Benjamin
dc.contributor.authorTiryaki, Teodor Eren
dc.date.accessioned2026-06-27T14:50:47Z
dc.date.issued2023
dc.description.abstractBackground: Wound healing is a process that involves multiple physiological steps, and despite the availability of various wound treatment methods, their effectiveness is still limited due to several factors, including cost, efficiency, patient-specific requirements, and side effects. In recent years, nanovesicles called exosomes have gained increasing attention as a potential wound care solution due to their unique cargo components which enable cell-to-cell communication and regulate various biological processes. Umbilical cord blood plasma (UCBP) exosomes have shown promise in triggering beneficial signaling pathways that aid in cell proliferation and wound healing. However, there is still very limited information about the wound-healing effect of UCBP exosomes in the literature. Objectives: The primary objective of this study was to investigate the hybrosome technology generated with calf UCBP-derived exosome-liposome combination. Methods: The authors developed hybrosome technology by fusing cord blood exosome membranes with liposomes. Nanovesicle characterization, cell proliferation assay, wound-healing scratch assay, immunohistochemistry analysis, anti-inflammation assay, real-time polymerase chain reaction (RT-PCR), enzyme-linked immunosorbent assay, and cellular uptake studies were performed using the novel hybrid exosomes. Results: Experimental results showed that hybrosome increases cell proliferation and migration by 40% to 50%, depending on the dose, and induces an anti-inflammatory effect on different cell lines as well as increased wound healing-related gene expression levels in dermal cells in vitro. All in all, this research widens the scope of wound-healing therapeutics to the novel hybrosome technology. Conclusions: UCBP-based applications have the potential for wound treatments and are promising in the development of novel therapies. This study shows that hybrosomes have outstanding abilities in wound healing using in vitro approaches.en
dc.description.urihttps://doi.org/10.1093/asjof/ojad039
dc.identifier.doi10.1093/asjof/ojad039
dc.identifier.eissn2631-4797
dc.identifier.pubmed37214180
dc.identifier.urihttps://hdl.handle.net/20.500.14981/65480
dc.identifier.volume5
dc.identifier.wos001133595800049
dc.language.isoeng
dc.publisherOXFORD UNIV PRESS
dc.relation.ispartofAESTHETIC SURGERY JOURNAL OPEN FORUM
dc.rightsopenAccess
dc.subjectNEUROMUSCULAR ELECTRICAL-STIMULATION
dc.subjectMUSCLE STIMULATION
dc.subjectANGIOGENESIS
dc.subjectSTRENGTH
dc.subjectSurgery
dc.titleThe Effect of Hybrosome (Umbilical Cord Blood Exosome-Liposome Hybrid Vesicles) on Human Dermal Cells In Vitro
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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