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Carboxymethyl cellulose/Sodium alginate Hydrogel with Anti-inflammatory capabilities for Accelerated Wound healing; In vitro and In vivo study

羧甲基纤维素 体内 伤口愈合 体外 海藻酸钠 纤维素 化学 细菌纤维素 材料科学 生物医学工程 生物化学 医学 免疫学 生物 有机化学 生物技术
作者
Seyed Mohammad Hosseini,Parisa Heydari,Mahtab Namnabat,Reyhaneh Nasr Azadani,Fateme Azimi Gharibdousti,Elmira Mousavi Rizi,Arezoo Khosravi,Atefeh Zarepour,Ali Zarrabi
出处
期刊:European Journal of Pharmacology [Elsevier]
卷期号:976: 176671-176671 被引量:2
标识
DOI:10.1016/j.ejphar.2024.176671
摘要

Recently, managing the chronic skin wounds has become increasingly challenging for healthcare professionals due to the intricate orchestration of cellular and molecular processes involved that lead to the uncontrollable inflammatory reactions which hinder the healing process. Therefore, different types of wound dressings with immunomodulatory properties have been developed in recent years to effectively regulate the immune responses, enhance angiogenesis, promote re-epithelialization, and accelerate the wound healing process. This study aims to develop a new type of immunomodulatory wound dressing utilizing carboxymethyl cellulose (CMC)/sodium alginate (Alg)-simvastatin (SIM) to simultaneously enhance the inflammatory responses and the wound healing ratio. The CMC/Alg-SIM hydrogels exhibited appropriate swelling ratio, water vapor transmission rate, and desirable degradation rate, depending on the SIM content. The fabricated dressing showed sustained release of SIM (during 5 days) that improved the proliferation of skin cells. According to the in vitro findings, the CMC/Alg-SIM hydrogel exhibited controlled pro-inflammatory responses (decreased 2.5- and 1.6-times IL-6 and TNF-α, respectively) and improved secretion of anti-inflammatory cytokines (increased 1.5- and 1.3-times IL-10 and TGF-β, respectively) in comparison with CMC/Alg. Furthermore, the CMC/Alg-SIM hydrogel facilitated rapid wound healing in the rat model with a full-thickness skin defect. After 14 days post-surgery, the wound healing ratio in the CMC/Alg hydrogel group (∼93%) was significantly greater than the control group (∼58%). Therefore, the engineered CMC/Alg-SIM hydrogel with desired immunomodulatory properties possesses the potential to enhance and accelerate skin regeneration for the management of chronic wound healing.
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