Programa de Pós-Graduação em Odontologia, Escola de Ciências da Saúde e da Vida, Pontifícia Universidade Católica do Rio Grande do Sul, Porto Alegre, Brazil.
Centro de Pesquisa em Toxicologia e Farmacologia, Escola de Ciências da Saúde e da Vida, Pontifícia Universidade Católica do Rio Grande do Sul, Porto Alegre, Brazil.
Nanotoxicology. 2021 Aug;15(6):721-739. doi: 10.1080/17435390.2021.1915401. Epub 2021 Apr 24.
The current focus of bioengineering for implant devices involves the development of functionalized surfaces, bioactive coatings, and metallic nanoparticles (mNPs) with a controlled release, together with strategies for the application of drugs , aiming at reducing infection rates, with an improvement of clinical outcomes. Controversially, negative aspects, such as cytotoxicity, mNP incorporation, bioaccumulation, acquired autoimmunity, and systemic toxicity have gained attention at the same status of importance, concerning the release of mNPs from these surface systems. The balance between the promising prospects of system releasing mNPs and the undesirable long-term adverse reactions require further investigation. The scarcity of knowledge and the methods of analysis of nanoscale-based systems to control the sequence of migration, interaction, and nanoparticle incorporation with human tissues raise hesitation about their efficacy and safety. Looking ahead, this innovative approach requires additional scientific investigation for permitting an evolution of implants without counterpoints, while updating implant surface technologies to a new level of development. This critical review has explored the promising properties of metals at the nano-scale to promote broad-spectrum bacterial control, allowing for a decrease in using systemic antibiotics. Attempts have also been made to discuss the existing limitations and the future challenges regarding these technologies, besides the negative findings that are explored in the literature.
当前,植入设备的生物工程研究重点在于开发具有功能化表面、生物活性涂层和受控释放的金属纳米粒子(mNPs),并结合药物应用策略,旨在降低感染率,改善临床效果。具有争议的是,这些表面系统中 mNPs 的释放引起了人们对负向方面的关注,如细胞毒性、mNP 掺入、生物累积、获得性自身免疫和全身毒性,其同样重要。mNPs 从这些表面系统中释放所带来的有利前景和不良的长期不良反应之间的平衡,需要进一步研究。基于纳米尺度的系统在控制迁移、相互作用和纳米粒子与人体组织结合的顺序方面的知识和分析方法的缺乏,使得人们对其疗效和安全性产生了疑虑。展望未来,这种创新方法需要进一步的科学研究,以允许植入物在没有副作用的情况下不断发展,同时将植入物表面技术提升到一个新的发展水平。本综述探讨了纳米尺度金属的有前景的特性,以促进广谱细菌控制,减少系统使用抗生素。此外,还探讨了文献中探索到的负面发现,尝试讨论了这些技术目前存在的局限性和未来挑战。