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The Role of Chitosan and Graphene Oxide in Bioactive and Antibacterial Properties of Acrylic Bone Cements

机译:壳聚糖和石墨烯氧化物在丙烯酸骨水泥生物活性和抗菌性质中的作用

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摘要

Acrylic bone cements (ABC) are widely used in orthopedics for joint fixation, antibiotic release, and bone defect filling, among others. However, most commercially available ABCs exhibit a lack of bioactivity and are susceptible to infection after implantation. These disadvantages generate long-term loosening of the prosthesis, high morbidity, and prolonged and expensive treatments. Due to the great importance of acrylic bone cements in orthopedics, the scientific community has advanced several efforts to develop bioactive ABCs with antibacterial activity through several strategies, including the use of biodegradable materials such as chitosan (CS) and nanostructures such as graphene oxide (GO), with promising results. This paper reviews several studies reporting advantages in bioactivity and antibacterial properties after incorporating CS and GO in bone cements. Detailed information on the possible mechanisms by which these fillers confer bioactive and antibacterial properties to cements, resulting in formulations with great potential for use in orthopedics, are also a focus in the manuscript. To the best of our knowledge, this is the first systematic review that presents the improvement in biological properties with CS and GO addition in cements that we believe will contribute to the biomedical field.
机译:丙烯酸骨水泥(ABC)广泛用于骨科,用于联合固定,抗生素释放和骨缺损填充等。然而,大多数商业上可获得的ABCs表现出缺乏生物活性,并且植入后易受感染。这些缺点产生了假体,高发病率和长期和昂贵的治疗的长期松动。由于骨髓骨水泥在骨科中的重要性,科学界已经通过几种策略开发了具有抗菌活性的抗菌活性的几次努力,包括使用可生物降解的材料,例如壳聚糖(CS)和纳米氧化物(如石墨烯)(Go ),有希望的结果。本文评论了几项研究在掺入CS并进入骨水泥后的生物活性和抗菌性能的研究。有关这些填料的可能机制的详细信息,这些填料赋予水泥的生物活性和抗菌性能,导致骨科使用具有巨大潜力的配方,也是稿件中的重点。据我们所知,这是第一个系统评论,它呈现了与CS的生物学性质的改善,并在我们认为将为生物医学领域提供贡献的水泥。

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