生物医学工程的发展趋势:关注智能生物材料和药物输送。

Maria Cristina Tanzi, Sabrina Bozzini, Gabriele Candiani, Alberto Cigada, Luigi De Nardo, Silvia Farè, Fabio Ganazzoli, Dario Gastaldi, Marinella Levi, Pierangelo Metrangolo, Francesco Migliavacca, Roberto Osellame, Paola Petrini, Giuseppina Raffaini, Giuseppe Resnati, Pasquale Vena, Simone Vesentini, Paolo Zunino
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引用次数: 31

摘要

本文综述了不同的研究方向,即:药物和基因传递,表面修饰/建模,先进材料(形状记忆聚合物和可生物降解支架)的设计,目前在意大利米兰理工大学发展。对于基因传递,非病毒多阳离子支链聚乙烯亚胺(b-PEI)多聚物被阴离子多糖果胶包裹,以提高多聚物的稳定性并降低b-PEI的细胞毒性。全氟材料,特别是全氟醚和全氟聚醚液体被提议作为超声造影剂和药物输送的智能剂。在钛表面开发了无污垢、自组装的聚乙二醇基单层膜,目的是大大减少牙种植体上的龋齿细菌粘附。利用飞秒激光微加工技术对高分子生物材料的润湿性进行了选择性和空间调控,研究了飞秒激光烧蚀对聚甲基丙烯酸甲酯表面性能的影响。创新的功能分级铝钛涂层耐磨铰接表面沉积与PLD和表征手段相结合的实验和计算方法。通过原子计算机模拟研究了蛋白质在具有不同润湿性的生物材料表面的吸附和由预吸附蛋白质引起的表面修饰。研究了多孔形状记忆聚合物结构的制备及其在微创外科手术中的潜在应用。在有限元框架分析中建立了镁合金降解模型,并建立了自下而上的多尺度分析模型来模拟PLA基质的降解机制,旨在为生物可吸收支架的设计提供有价值的工具。
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Trends in biomedical engineering: focus on Smart Bio-Materials and Drug Delivery.

The present article reviews on different research lines, namely: drug and gene delivery, surface modification/modeling, design of advanced materials (shape memory polymers and biodegradable stents), presently developed at Politecnico di Milano, Italy. For gene delivery, non-viral polycationic-branched polyethylenimine (b-PEI) polyplexes are coated with pectin, an anionic polysaccharide, to enhance the polyplex stability and decrease b-PEI cytotoxicity. Perfluorinated materials, specifically perfluoroether, and perfluoro-polyether fluids are proposed as ultrasound contrast agents and smart agents for drug delivery. Non-fouling, self-assembled PEG-based monolayers are developed on titanium surfaces with the aim of drastically reducing cariogenic bacteria adhesion on dental implants. Femtosecond laser microfabrication is used for selectively and spatially tuning the wettability of polymeric biomaterials and the effects of femtosecond laser ablation on the surface properties of polymethylmethacrylate are studied. Innovative functionally graded Alumina-Ti coatings for wear resistant articulating surfaces are deposited with PLD and characterized by means of a combined experimental and computational approach. Protein adsorption on biomaterials surfaces with an unlike wettability and surface-modification induced by pre-adsorbed proteins are studied by atomistic computer simulations. A study was performed on the fabrication of porous Shape Memory Polymeric structures and on the assessment of their potential application in minimally invasive surgical procedures. A model of magnesium (alloys) degradation, in a finite element framework analysis, and a bottom-up multiscale analysis for modeling the degradation mechanism of PLA matrices was developed, with the aim of providing valuable tools for the design of bioresorbable stents.

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来源期刊
Journal of Applied Biomaterials & Biomechanics
Journal of Applied Biomaterials & Biomechanics 生物-材料科学:生物材料
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审稿时长
12 months
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