Singh Variksha, Marimuthu Thashree, Lesotho Ntlama F, Makatini Maya M, Ntombela Thandokuhle, Van Eyk Armorel, Choonara Yahya E
Wits Advanced Drug Delivery Platform Research Unit, Department of Pharmacy and Pharmacology, School of Therapeutic Sciences, Faculty of Health Sciences, University of the Witwatersrand, 7 York Road, Parktown, Johannesburg 2193, South Africa.
Molecular Sciences Institute, School of Chemistry, University of the Witwatersrand, Private Bag 3, PO WITS, Johannesburg 2050, South Africa.
ACS Appl Bio Mater. 2025 Jun 16;8(6):4657-4672. doi: 10.1021/acsabm.4c01895. Epub 2025 Feb 19.
This study reported the synthesis and formulation of an adamantane-based collagen mimetic peptide (CMP) hydrogel containing the integrin-binding motif -GFOGER, designed to enable the controlled delivery of CMPs with the ability of direct wound healing for the potential treatment of acute wounds. Initially, two adamantane-functionalized CMPs (peptides NL008 and NL010) were synthesized, characterized, and comparatively screened for their in vitro biocompatibility and bioactivity. In vitro evaluations of scratch closure and biocompatibility were assessed on human-derived keratinocytes. Release and permeation of the peptides were evaluated in vitro and ex vivo. Wound closure rates and histological evaluations were performed on male Sprague-Dawley rats over 3, 7, and 14 days for the NL010-HAgel formulation. Peptide NL010 was found to be the most suitable candidate among the adamantane CMPs. For a comparative study, peptide NL010 and its palmitic acid analogue, NL009, were loaded into a hyaluronic acid (HA) hydrogel and lyophilized. The CMP hydrogels exhibited porosity (<30 μm) and were viscoelastic solids. The physicomechanical properties of the formulations showed optimal characteristics for application as wound dressings in terms of textural profile. Peptide NL008 exhibited lower bioactivity and cell viability compared to NL009 and NL010 across various concentrations and cell lines. Peptide release from NL009-HAgel and NL010-HA gel was 74% and 83%, respectively. Across an ex vivo porcine skin membrane, the CMP-HAgel showed good permeation and was retained in the epidermis and superficial dermis. CMP-HAgel at 0.1% (w/v) showed better HaCaT cell viabilities. In vitro assays demonstrated that the NL010-HA gel achieved scratch closure (99.9%) within 24 h, while the NL009-HAgel showed scratch closure (93.7%) within the same time frame. In vivo, NL010-HAgel improved healing by enhancing epithelialization and granulation tissue deposition (via fibroblast and collagen responses). The findings of this study suggested that the CMP cell-instructive hydrogel is a promising platform with the potential to accelerate wound healing.
本研究报道了一种基于金刚烷的含整合素结合基序-GFOGER的胶原模拟肽(CMP)水凝胶的合成与配方,旨在实现CMP的可控递送,并具有直接促进伤口愈合的能力,用于急性伤口的潜在治疗。最初,合成了两种金刚烷功能化的CMP(肽NL008和NL010),对其进行了表征,并对它们的体外生物相容性和生物活性进行了比较筛选。在人源角质形成细胞上评估了划痕闭合和生物相容性的体外评价。对肽的释放和渗透进行了体外和离体评估。对NL010-HAgel配方在雄性Sprague-Dawley大鼠上进行了3、7和14天的伤口闭合率和组织学评估。发现肽NL010是金刚烷CMP中最合适的候选物。为了进行比较研究,将肽NL010及其棕榈酸类似物NL009负载到透明质酸(HA)水凝胶中并冻干。CMP水凝胶表现出孔隙率(<30μm),是粘弹性固体。配方的物理机械性能在质地方面显示出作为伤口敷料应用的最佳特性。在各种浓度和细胞系中,肽NL008与NL009和NL010相比表现出较低的生物活性和细胞活力。肽从NL009-HAgel和NL010-HA凝胶中的释放率分别为74%和83%。在离体猪皮肤膜上,CMP-HAgel表现出良好的渗透性,并保留在表皮和浅表真皮中。0.1%(w/v)的CMP-HAgel表现出更好的HaCaT细胞活力。体外试验表明,NL010-HA凝胶在24小时内实现了划痕闭合(99.9%),而NL009-HAgel在同一时间框架内实现了划痕闭合(93.7%)。在体内,NL010-HAgel通过增强上皮化和肉芽组织沉积(通过成纤维细胞和胶原反应)促进愈合。本研究结果表明,CMP细胞指导性水凝胶是一个有前途的平台,具有加速伤口愈合的潜力。