伤口愈合
番红花苷
体外
化学
活力测定
伤口闭合
成纤维细胞
药理学
下调和上调
真皮成纤维细胞
体外毒理学
传统医学
体内
细胞迁移
慢性伤口
MTT法
细胞生物学
作者
Ehsaneh Azaryan,Akram Ghodousi,Mohammad Yahya Hanafi‐Bojd,Mohsen Naseri
标识
DOI:10.1186/s12906-025-05101-8
摘要
In this study, we investigated the potential of hydroxyapatite nanoparticles (HA-NP) synthesized from Elaeagnus Angustifolia (HAEA-NP) and loaded with crocin (HAEA-NP@CR) to enhance the in vitro wound healing of human dermal fibroblasts (hDF). HAEA-NPs were synthesized using the sol-gel technique and impregnated with crocin (CR) to create the HAEA-NP@CR formulation. The examination of CR loading and release was performed. The assessment of viability of hDFs following exposure to nanoparticles (NPs), CR, and HAEA-NP@CR was assessed. A scratch assay was performed to assess the rate of wound closure. Real-time PCR analysis was utilized to measure the expression levels of genes associated with wound healing. According to our findings, CR had a loading capacity of 46.76%. It was released in a controlled manner from HAEA-NPs. The combination of HAEA-NP and CR significantly promoted the viability of hDFs and accelerated wound closure in an in vitro wound healing model. Furthermore, we observed an upregulation of key wound healing-related genes underlying the enhanced wound healing effect. These findings suggest that the use of HAEA-NP@CR holds promise as a novel approach to promote wound healing and may have potential applications in developing wound healing therapies.
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