Department of pharmaceutics, School of pharmacy, Mashhad University of Medical sciences, Mashhad, Iran.
Nanotechnology Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, Iran; Department of Pharmaceutical Nanotechnology, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, Iran.
Int J Biol Macromol. 2024 May;267(Pt 2):131401. doi: 10.1016/j.ijbiomac.2024.131401. Epub 2024 Apr 4.
Oligonucleotide-based nanogels, as nascent biomaterials, possess several unique functional, structural, and physicochemical features with excellent drug-loading capacity and high potential for cancer gene therapy. Ongoing studies utilizing oligonucleotide-based nanogels hold great promise, as these cutting-edge nanoplatforms can be elegantly developed with predesigned oligonucleotide sequences and complementary strands which are self-assembled or chemically crosslinked leading to the development of nanogels with predictable shape and tunable size with the desired functional properties. Current paper provides a summary of the properties, preparation methods, and applications of oligonucleotide-based nanogels in cancer therapy. The review is focused on both conventional and modified forms of oligonucleotide-based nanogels, including targeted nanogels, smart release nanogels (responsive to stimuli such as pH, temperature, and enzymes), as well as nanogels used for gene delivery. Their application in cancer immunotherapy and vaccination, photodynamic therapy, and diagnostic applications when combined with other nanoparticles is further discussed. Despite emerging designs in the development of oligonucleotide based nanogels, this field of study is still in its infancy, and clinical translation of these versatile nano-vehicles might face challenges. Hence, extensive research must be performed on in vivo behavior of such platforms determining their biodistribution, biological fate, and acute/subacute toxicity.
寡核苷酸纳米凝胶作为新兴的生物材料,具有独特的功能、结构和物理化学特性,具有优异的载药能力和癌症基因治疗的巨大潜力。利用寡核苷酸纳米凝胶的研究正在不断进行,这些前沿的纳米平台可以通过预先设计的寡核苷酸序列和互补链进行巧妙地开发,从而自组装或化学交联形成纳米凝胶,具有可预测的形状和可调的尺寸以及所需的功能特性。本文总结了寡核苷酸纳米凝胶在癌症治疗中的性质、制备方法和应用。本综述重点介绍了传统和改良的寡核苷酸纳米凝胶,包括靶向纳米凝胶、智能释放纳米凝胶(对 pH 值、温度和酶等刺激有响应)以及用于基因传递的纳米凝胶。还进一步讨论了它们在癌症免疫治疗和疫苗接种、光动力治疗以及与其他纳米颗粒结合时的诊断应用。尽管在开发寡核苷酸纳米凝胶方面出现了新的设计,但该研究领域仍处于起步阶段,这些多功能纳米载体的临床转化可能面临挑战。因此,必须对这些平台的体内行为进行广泛研究,以确定其生物分布、生物命运和急性/亚急性毒性。