Sharifi Majid, Karim Abdulkarim Yasin, Mustafa Qadir Nanakali Nadir, Salihi Abbas, Aziz Falah Mohammad, Hong Jun, Khan Rizwan Hasan, Saboury Ali Akbar, Hasan Anwarul, Abou-Zied Osama K, Falahati Mojtaba
Faculty of Advanced Sciences and Technology, Department of Nanotechnology, Tehran Medical Sciences, Islamic Azad University, Tehran, Iran.
Department of Biology, College of Science, Salahaddin University-Erbil, Kurdistan Region, Iraq.
J Biomol Struct Dyn. 2020 Jun;38(9):2746-2762. doi: 10.1080/07391102.2019.1643787. Epub 2019 Jul 22.
Enzymes are one of the foundations and regulators for all major biological activities in living bodies. Hence, enormous efforts have been made for enhancing the efficiency of enzymes under different conditions. The use of nanomaterials as novel carriers for enzyme delivery and regulating the activities of enzymes has stimulated significant interests in the field of nano-biotechnology for biomedical applications. Since, all types of nanoparticles (NPs) offer large surface to volume ratios, the use of NPs as enzyme carriers affect the structure, performance, loading efficiency, and the reaction kinetics of enzymes. Hence, the immobilization of enzymes on nanomatrices can be used as a useful approach for direct delivery of therapeutic enzymes to the targeted sites. In other words, NPs can be used as advanced enzyme delivery nanocarriers. In this paper, we present an overview of different binding of enzymes to the nanomaterials as well as different types of nanomatrix supports for immobilization of enzymes. Afterwards, the enzyme immobilization on nanomaterials as a potential system for enzyme delivery has been discussed. Finally, the challenges associated with the enzyme delivery using nano matrices and their future perspective have been discussed.Communicated by Ramasamy H. Sarma.
酶是生物体中所有主要生物活动的基础和调节因子之一。因此,人们为提高酶在不同条件下的效率付出了巨大努力。使用纳米材料作为酶递送的新型载体并调节酶的活性,在生物医学应用的纳米生物技术领域引起了极大兴趣。由于所有类型的纳米颗粒(NPs)都具有较大的表面积与体积比,将NPs用作酶载体时会影响酶的结构、性能、负载效率和反应动力学。因此,将酶固定在纳米基质上可作为将治疗性酶直接递送至靶位点的一种有用方法。换句话说,NPs可作为先进的酶递送纳米载体。在本文中,我们概述了酶与纳米材料的不同结合方式以及用于固定酶的不同类型的纳米基质载体。之后,讨论了将酶固定在纳米材料上作为潜在的酶递送系统。最后,讨论了使用纳米基质进行酶递送相关的挑战及其未来前景。由拉马萨米·H·萨尔马传达。