优化伤口愈合:通过全面评述纳米水凝胶嵌入纳米粒子在促进再生医学中的应用,审视生物聚合物的影响

IF 1.5 4区 医学 Q3 DERMATOLOGY International Journal of Lower Extremity Wounds Pub Date : 2024-04-15 DOI:10.1177/15347346241244890
Mahsa Ahmadi, Mahdi Sabzini, Shima Rastgordani, Ashkan Farazin
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引用次数: 0

摘要

纳米水凝胶伤口愈合是指使用基于纳米技术的水凝胶材料促进伤口愈合。水凝胶敷料由亲水性聚合物的三维网络组成,可以吸收和保留大量的水或其他液体。纳米水凝胶通过在水凝胶基质中加入纳米级颗粒或结构,进一步发展了这一概念。这些纳米颗粒可以由各种材料制成,如银、氧化锌或从壳聚糖等天然物质中提取的纳米颗粒。纳米粒子的加入可为水凝胶敷料带来更多的特性和优点。纳米水凝胶可以设计成以受控方式释放生物活性物质,如生长因子或药物。这样就能有针对性地向伤口部位输送治疗药物,促进伤口愈合并减轻炎症。纳米粒子可以强化水凝胶的结构,提高其机械强度和稳定性。纳米水凝胶通常含有抗菌纳米粒子,如银或氧化锌。这些纳米粒子对多种细菌、真菌和其他病原体具有有效的抗菌活性。将纳米水凝胶加入水凝胶敷料中,有助于预防或降低伤口感染的风险。纳米水凝胶可被设计成以受控和持续的方式封装和释放生物活性物质,如生长因子、肽或药物。这种定向输送治疗剂的方法可促进细胞增殖、减少炎症反应并支持组织再生,从而促进伤口愈合。纳米水凝胶的独特性能,包括保持湿润环境和输送生物活性剂的能力,有助于加速伤口愈合过程。通过为细胞生长和组织修复创造最佳环境,纳米水凝胶可促进伤口更快、更有效地愈合。
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Optimizing Wound Healing: Examining the Influence of Biopolymers Through a Comprehensive Review of Nanohydrogel-Embedded Nanoparticles in Advancing Regenerative Medicine
Nanohydrogel wound healing refers to the use of nanotechnology-based hydrogel materials to promote the healing of wounds. Hydrogel dressings are made up of a three-dimensional network of hydrophilic polymers that can absorb and retain large amounts of water or other fluids. Nanohydrogels take this concept further by incorporating nanoscale particles or structures into the hydrogel matrix. These nanoparticles can be made of various materials, such as silver, zinc oxide, or nanoparticles derived from natural substances like chitosan. The inclusion of nanoparticles can provide additional properties and benefits to the hydrogel dressings. Nanohydrogels can be designed to release bioactive substances, such as growth factors or drugs, in a controlled manner. This allows for targeted delivery of therapeutics to the wound site, promoting healing and reducing inflammation. Nanoparticles can reinforce the structure of hydrogels, improving their mechanical strength and stability. Nanohydrogels often incorporate antimicrobial nanoparticles, such as silver or zinc oxide. These nanoparticles have shown effective antimicrobial activity against a wide range of bacteria, fungi, and other pathogens. By incorporating them into hydrogel dressings, nanohydrogels can help prevent or reduce the risk of infection in wounds. Nanohydrogels can be designed to encapsulate and release bioactive substances, such as growth factors, peptides, or drugs, in a controlled and sustained manner. This targeted delivery of therapeutic agents promotes wound healing by facilitating cell proliferation, reducing inflammation, and supporting tissue regeneration. The unique properties of nanohydrogels, including their ability to maintain a moist environment and deliver bioactive agents, can help accelerate the wound healing process. By creating an optimal environment for cell growth and tissue repair, nanohydrogels can promote faster and more efficient healing of wounds.
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来源期刊
CiteScore
4.60
自引率
17.60%
发文量
95
审稿时长
>12 weeks
期刊介绍: The International Journal of Lower Extremity Wounds (IJLEW) is a quarterly, peer-reviewed journal publishing original research, reviews of evidence-based diagnostic techniques and methods, disease and patient management, and surgical and medical therapeutics for lower extremity wounds such as burns, stomas, ulcers, fistulas, and traumatic wounds. IJLEW also offers evaluations of assessment and monitoring tools, dressings, gels, cleansers, pressure management, footwear/orthotics, casting, and bioengineered skin. This journal is a member of the Committee on Publication Ethics (COPE).
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