Tiwari Ruchi, Dev Dhruv, Thalla Maharshi, Aher Vaibhav Dagaji, Mundada Anand Badrivishal, Mundada Pooja Anand, Vaghela Krishna
Psit-Pranveer Singh Institute of Technology (Pharmacy), Kanpur-Agra-Delhi National, Kanpur, India.
Department of Pharmacy, Shivalik College of Pharmacy Nangal, Rupnagar, India.
J Biomater Sci Polym Ed. 2025 May;36(7):913-938. doi: 10.1080/09205063.2024.2431426. Epub 2024 Nov 26.
The combination of pharmacogenomics and nanotechnology science of pharmacogenomics into a highly advanced single entity has given birth to personalized medicine known as nano-enabled pharmacogenomics. This review article covers all aspects starting from pharmacogenomics to gene editing tools, how these have evolved or are likely to be evolved for pharmacogenomic application, and how these can be delivered using nanoparticle delivery systems. In this prior work, we explore the evolution of pharmacogenomics over the years, as well as new achievements in the field of genomic sciences, the challenges in drug creation, and application of the strategy of personalized medicine. Particular attention is paid to how nanotechnology helps avoid the problems that accompanied the development of pharmacogenomics earlier, for example, the question of drug resistance and targeted delivery. We also review the latest developments in nano-enabled pharmacogenomics, such as the coupling with other nanobio-technologies, artificial intelligence, and machine learning in pharmacogenomics, and the ethical and regulatory aspects of these developing technologies. The possible uses of nanotechnology in improving the chances of pated and treating drug-resistant cancers are exemplified by case studies together with the current clinical uses of nanotechnology. In the last section, we discuss the future trends and research prospects in this dynamically growing area, stressing the importance of further advancements and collaborations which will advance the nano-enabled pharmacogenomics to their maximum potential.
将药物基因组学与纳米技术科学相结合,形成了一个高度先进的单一实体,从而催生了被称为纳米药物基因组学的个性化医疗。这篇综述文章涵盖了从药物基因组学到基因编辑工具的各个方面,这些技术如何发展或可能如何发展以用于药物基因组学应用,以及如何使用纳米颗粒递送系统进行递送。在这项先前的工作中,我们探讨了多年来药物基因组学的发展历程,以及基因组科学领域的新成就、药物研发中的挑战和个性化医疗策略的应用。特别关注纳米技术如何帮助避免早期药物基因组学发展过程中出现的问题,例如耐药性问题和靶向递送问题。我们还回顾了纳米药物基因组学的最新进展,如与其他纳米生物技术、人工智能和机器学习在药物基因组学中的结合,以及这些新兴技术的伦理和监管方面。通过案例研究举例说明了纳米技术在提高治疗耐药性癌症的可能性方面的潜在用途以及纳米技术目前的临床应用。在最后一部分,我们讨论了这个动态发展领域的未来趋势和研究前景,强调了进一步发展和合作的重要性,这将使纳米药物基因组学发挥出最大潜力。