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Nucleic acid delivery: Where material sciences and bio-sciences meet

机译:核酸输送:材料科学与生物科学相遇的地方

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Advances in biotechnology have led to an accelerated discovery of macromolecular therapeutics such as peptides, proteins and polynucleotides. These macromolecules can be targeted against a variety of diseases, each requiring delivery to a well-defined compartment of the body. As such therapeutics are often prone to degradation before reaching their target site, or do not reach their target site at all, they often require a special formulation. This review focuses on several types of materials that are currently under investigation for the delivery of nucleic acid therapeutics and aims to pinpoint the limitations of these materials with the ultimate goal to identify the material challenges which, in our opinion, will constitute a new generation of 'intelligent' materials for nucleic acid delivery. Such 'intelligent' materials should be able to sense and respond to environmental changes. The generated response to these environmental changes should give the material new properties that favor the intracellular delivery of their payload. Besides dealing with material properties, we especially aim to focus on the biological barriers such intelligent materials will have to deal with when used for the delivery of nucleic acids. Furthermore, we briefly discuss the advanced light microscopy techniques that are often used to visualize and quantify the steps of the delivery process of nucleic acids.
机译:生物技术的进步导致了诸如肽,蛋白质和多核苷酸等大分子疗法的加速发现。这些大分子可以针对多种疾病,每种疾病都需要传递到身体明确的部位。由于此类治疗剂通常在到达其靶位点之前很容易降解,或者根本不到达其靶位点,因此它们通常需要特殊的制剂。这篇综述着重于目前正在研究的用于核酸治疗药物的几种材料,并旨在指出这些材料的局限性,最终目的是确定材料挑战,我们认为这将构成新一代的核酸治疗药物。用于核酸递送的“智能”材料。这种“智能”材料应该能够感知并响应环境变化。对这些环境变化产生的响应应赋予材料新的特性,这些特性有利于其有效载荷的细胞内传递。除了处理材料特性外,我们尤其致力于研究此类智能材料在用于核酸传递时必须应对的生物屏障。此外,我们简要讨论了先进的光学显微镜技术,这些技术通常用于可视化和量化核酸传递过程的步骤。

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