Evaluation effect of alginate hydrogel containing losartan on wound healing and gene expression.

IF 2.3 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Sepehr Zamani, Majid Salehi, Ghasem Abbaszadeh-Goudarzi, Danial Cheraghali, Arian Ehterami, Samaneh Esmaili, Nariman Rezaei Kolarijani
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引用次数: 0

Abstract

Skin tissue engineering has become an increasingly popular alternative to conventional treatments for skin injuries. Hydrogels, owing to their advantages have become the ideal option for wound dressing, and they are extensively employed in a mixture of different drugs to accelerate wound healing. Sodium alginate is a readily available natural polymer with advantages such as bio-compatibility and a non-toxicological nature that is commonly used in hydrogel form for medical applications such as wound repair and drug delivery in skin regenerative medicine. Losartan is a medicine called angiotensin receptor blocker (ARB) that can prevent fibrosis by inhibiting AT1R (angiotensin II type 1 receptor). In this research, for the first time, three-dimensional scaffolds based on cross-linked alginate hydrogel with CaCl2 containing different concentrations of losartan for slow drug release and exudate absorption were prepared and characterized as wound dressing. Alginate hydrogel was mixed with 10, 1, 0.1, and 0.01 mg/mL of losartan, and their properties such as morphology, chemical structure, water uptake properties, biodegradability, stability assay, rheology, blood compatibility, and cellular response were evaluated. In addition, the therapeutic efficiency of the developed hydrogels was then assessed in an in vitro wound healing model and with a gene expression. The results revealed that the hydrogel produced was very porous (porosity of 47.37 ± 3.76 µm) with interconnected pores and biodegradable (weight loss percentage of 60.93 ± 4.51% over 14 days). All hydrogel formulations have stability under various conditions. The use of CaCl2 as a cross-linker led to an increase in the viscosity of alginate hydrogels. An in vitro cell growth study revealed that no cytotoxicity was observed at the suggested dosage of the hydrogel. Increases in Losartan dosage, however, caused hemolysis. In vivo study in adult male rats with a full-thickness model showed greater than 80% improvement of the primary wound region after 2 weeks of treatment with alginate hydrogel containing 0.1 mg/mL Losartan. RT-PCR and immunohistochemistry analysis showed a decrease in expression level of TGF-β1 and VEGF in treatment groups. Histological analysis demonstrated that the alginate hydrogel containing Losartan can be effective in wound repair by decreasing the size of the scar and tissue remodeling, as evidenced by future in vivo studies.

评估含有洛沙坦的藻酸盐水凝胶对伤口愈合和基因表达的影响。
皮肤组织工程已成为治疗皮肤损伤的一种日益流行的传统替代疗法。水凝胶因其优点已成为伤口敷料的理想选择,被广泛应用于不同药物的混合物中,以加速伤口愈合。海藻酸钠是一种易于获得的天然聚合物,具有生物相容性和无毒性等优点,通常以水凝胶形式用于伤口修复和皮肤再生医学中的药物输送等医疗应用。洛沙坦是一种被称为血管紧张素受体阻滞剂(ARB)的药物,可通过抑制 AT1R(血管紧张素 II 1 型受体)来防止纤维化。本研究首次制备了基于交联藻酸盐水凝胶和 CaCl2 的三维支架,其中含有不同浓度的洛沙坦,可作为伤口敷料用于缓释药物和吸收渗出液。将海藻酸盐水凝胶与 10、1、0.1 和 0.01 mg/mL 的洛沙坦混合,对其形态、化学结构、吸水性、生物降解性、稳定性检测、流变性、血液相容性和细胞反应等特性进行了评估。此外,还在体外伤口愈合模型和基因表达中评估了所开发水凝胶的治疗效果。结果表明,所制备的水凝胶多孔性很强(孔隙率为 47.37 ± 3.76 µm),孔隙之间相互连接,而且可生物降解(14 天内的重量损失率为 60.93 ± 4.51%)。所有水凝胶配方在各种条件下都具有稳定性。使用 CaCl2 作为交联剂可增加海藻酸盐水凝胶的粘度。体外细胞生长研究表明,在水凝胶的建议剂量下,未观察到细胞毒性。然而,增加洛沙坦剂量会引起溶血。在成年雄性大鼠身上进行的全厚皮模型体内研究显示,使用含 0.1 毫克/毫升洛沙坦的藻酸盐水凝胶治疗 2 周后,原发伤口区域的改善程度超过 80%。RT-PCR 和免疫组化分析表明,治疗组中 TGF-β1 和 VEGF 的表达水平有所下降。组织学分析表明,含有洛沙坦的藻酸盐水凝胶可以通过减少疤痕大小和组织重塑来有效修复伤口,这一点在未来的体内研究中可以得到证实。
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来源期刊
Journal of Biomaterials Applications
Journal of Biomaterials Applications 工程技术-材料科学:生物材料
CiteScore
5.10
自引率
3.40%
发文量
144
审稿时长
1.5 months
期刊介绍: The Journal of Biomaterials Applications is a fully peer reviewed international journal that publishes original research and review articles that emphasize the development, manufacture and clinical applications of biomaterials. Peer-reviewed articles by biomedical specialists from around the world cover: New developments in biomaterials, R&D, properties and performance, evaluation and applications Applications in biomedical materials and devices - from sutures and wound dressings to biosensors and cardiovascular devices Current findings in biological compatibility/incompatibility of biomaterials The Journal of Biomaterials Applications publishes original articles that emphasize the development, manufacture and clinical applications of biomaterials. Biomaterials continue to be one of the most rapidly growing areas of research in plastics today and certainly one of the biggest technical challenges, since biomaterial performance is dependent on polymer compatibility with the aggressive biological environment. The Journal cuts across disciplines and focuses on medical research and topics that present the broadest view of practical applications of biomaterials in actual clinical use. The Journal of Biomaterial Applications is devoted to new and emerging biomaterials technologies, particularly focusing on the many applications which are under development at industrial biomedical and polymer research facilities, as well as the ongoing activities in academic, medical and applied clinical uses of devices.
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