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Engineered titanium implants for localized drug delivery: recent advances and perspectives of Titania nanotubes arrays

机译:用于局部药物交付的工程钛植入物:钛纳米管阵列的最近进步和视角

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ABSTRACT, Introduction: Therapeutics delivery to bones to treat skeletal diseases or prevent postsurgical infections is challenging due to complex and solid bone structure that limits blood supply and diffusion of therapeutics administered by systemic routes to reach effective concentration. Titanium (Ti) and their alloys are employed as mainstream implant materials in orthopedics and dentistry; having superior mechanical/biocompatibility properties which could provide an alternative solution to address this problem. Areas covered: This review presents an overview of recent development of Ti drug-releasing implants, with emphasis on nanoengineered Titania nanotubes (TNTs) structures, for solving key problems to improve implants osseointegration, overcome inflammation and infection together with providing localized drug delivery (LDD) for bone diseases including cancer. Critical analysis of the advantages/ disadvantages of developed concepts is discussed, their drug loading/releasing performances and specific applications. Expert opinion: LDD to bones can address many disorders and postsurgical conditions such as inflammation, implants rejection and infection. To this end, TNTs-Ti implants represent a potential promise for the development of new generation of multifunctional implants with drug release functions. Even this concept is extensively explored recently, there is a strong need for more preclinical studies using animal models to confirm the long-term safety and stability of TNTs-Ti implants for real-life medical applications
机译:摘要,介绍:治疗骨骼治疗骨骼疾病或预防后勤感染是挑战,由于复杂和固体骨骼结构,限制了通过全身途径给药的血液供应和治疗方法的扩散来达到有效浓度。钛(Ti)及其合金作为骨科和牙科主流植入材料;具有优异的机械/生物相容性性能,可以提供替代解决问题以解决这个问题。涵盖地区:本综述概述了最近的Ti药物释放植入物的发展,重点是纳米工程滴度纳米管(TNT)结构,用于解决改善植入物骨整合,克服炎症和感染以及提供局部药物递送的关键问题(LDD )对于包括癌症的骨疾病。讨论了对发达概念的优点/缺点的关键分析,其药物载入/释放性能和特定应用。专家意见:LDD到骨骼可以解决许多疾病和后勤条件,如炎症,植入抑制和感染。为此,TNTS-TI植入物代表了具有药物释放功能的新一代多功能植入物的潜在承诺。即使是最近这种概念是广泛的探索的,也有强烈需要使用动物模型的更突出的研究,以确认TNTS-TI植入物的长期安全性和稳定性的现实医学应用

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