负载银的功能化钙[4]烯纳米纤维及其在烧伤创面愈合中的应用评估

IF 4.5 3区 医学 Q1 PHARMACOLOGY & PHARMACY Journal of Drug Delivery Science and Technology Pub Date : 2024-10-11 DOI:10.1016/j.jddst.2024.106268
Esra Maltas Cagil , Fatih Ozcan , Cengizhan Ceylan , Seyma Tetik Rama , Kubra Yilmaz , Zeliha Esin Celik , Abdullah Sivrikaya , Harun Yonar
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引用次数: 0

摘要

使用基因疗法和愈合因子治疗烧伤需要高成本技术。相反,外用制剂(包括植物提取物或药物)可以达到愈合伤口的效果。然而,这些药物的水溶性较低,不能充分吸收到细胞中。为了克服这些弊端,我们需要新的有效治疗方法。本研究旨在利用四种不同的银(I)-霞石衍生物开发基于纳米纤维的伤口覆盖物。这些纳米纤维通过电纺丝方法制成,并在二度烧伤模型大鼠体内进行了评估。通过生化分析,确定了制剂对伤口愈合过程中有效的生长因子和某些细胞因子的影响。此外,还进行了组织病理学分析,以评估肉芽组织的存在和密度、炎症、上皮厚度和纤维化。所有数据都与商业外用药磺胺嘧啶银进行了比较,由于磺胺嘧啶银在烧伤伤口治疗过程中的各种缺点,其使用受到了限制。本研究合成了四种不同的钙烯烃衍生物,并通过电纺丝法制成纳米纤维,在二度烧伤模型大鼠体内评估了其有效性。然后,进行了各种生化和组织病理学分析,以阐明可能的伤口愈合机制。考虑到病理和生化数据,CLX-SAMD-Ag(5,11,17,23-四叔丁基-25,27-双(磺胺嘧啶)-26,28-丙基萼片(Xie 和 Unser,2013 年)[4]炔-Ag)和 CLX-MORF- Ag(5,11,17、23-四叔丁基-25,27-双(3-吗啉丙基)-26,28-二羟基萼片(Xie 和 Unser,2013 年)[4]炔-银)比磺胺嘧啶银-银含量应用更有效,后者也被称为传统烧伤愈合疗法。
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Silver loaded functionalized calix [4]arene nanofibers and evaluation in burn wound healing
Burn treatments with gene therapy and healing factors requires highly cost techniques. Instead, topical formulations including plant extract or pharmaceuticals are offered for wound-healing effect. However, these have low water solubility and cannot uptake into cells sufficiently. To overcome disadvantages, new effective treatment approaches should have been accessible. This study aimed to develop nanofiber-based wound coverings using four different Ag(I)-calixarene derivatives. Their nanofibers were produced by the electrospin method, and evaluated in vivo in rats with a second-degree burn model. Biochemical analysis has been maintained to exmine the effects of formulations on such as growth factors and some cytokines that are effective in wound healing process. In addition, histopathological analyzes has been performed to evaluate the presence and density of granulation tissue, inflammation, epithelial thickness and fibrosis. All data were compared with a commercial topical, silver sulfadiazine, whose usage is limited due to various disadvantages in the treatment processes of burn wounds. In this study, four different calixarene derivatives were synthesized their nanofibers were produced by the electrospin method, and their effectiveness was evaluated in vivo in rats with a second-degree burn model. Then, various biochemical and histopathological analyses were done to elucidate the possible wound-healing mechanism. When considering both pathological and biochemical data, the nanofibers of CLX-SAMD-Ag (5,11,17,23‐tetra‐tert‐butyl‐25,27‐bis(Sulfadiazine)‐26,28‐propylcalix (Xie and Unser, 2013) [4]arene - Ag) and CLX-MORF- Ag (5,11,17,23‐tetra‐tert‐butyl‐25,27‐bis(3-Morpholinopropil)‐26,28‐dihydroxycalix (Xie and Unser, 2013) [4]arene-Ag) were found to be more effective than silver sulfadiazine -silver content application, also known as traditional burn treatment for wound healing.
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来源期刊
CiteScore
8.00
自引率
8.00%
发文量
879
审稿时长
94 days
期刊介绍: The Journal of Drug Delivery Science and Technology is an international journal devoted to drug delivery and pharmaceutical technology. The journal covers all innovative aspects of all pharmaceutical dosage forms and the most advanced research on controlled release, bioavailability and drug absorption, nanomedicines, gene delivery, tissue engineering, etc. Hot topics, related to manufacturing processes and quality control, are also welcomed.
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