Institute of Life Sciences, Nalco Square, Bhubaneswar, Odisha, 751023, India.
School of Biotechnology, Kalinga Institute of Industrial Technology (KIIT) University, Bhubaneswar, Odisha, 751024, India.
Int J Nanomedicine. 2021 May 21;16:3509-3540. doi: 10.2147/IJN.S307843. eCollection 2021.
The increasing incidence of bone-related disorders is causing a burden on the clinical scenario. Even though bone is one of the tissues that possess tremendous regenerative potential, certain bone anomalies need therapeutic intervention through appropriate delivery of a drug. Among several nanosystems and biologics that offer the potential to contribute towards bone healing, the exosomes from the class of extracellular vesicles are outstanding. Exosomes are extracellular nanovesicles that, apart from the various advantages, are standing out of the crowd for their ability to conduct cellular communication. The internal cargo of the exosomes is leading to its potential use in therapeutics. Exosomes are being unraveled in terms of the mechanism as well as application in targeting various diseases and tissues. Through this review, we have tried to understand and review all that is already established and the gap areas that still exist in utilizing them as drug delivery vehicles targeting the bone. The review highlights the potential of the exosomes towards their contribution to the drug delivery scenario in the bone microenvironment. A comparison of the pros and cons of exosomes with other prevalent drug delivery systems is also done. A section on the patents that have been generated so far from this field is included.
骨相关疾病发病率的上升给临床带来了负担。尽管骨骼是具有巨大再生潜力的组织之一,但某些骨骼异常需要通过适当的药物输送来进行治疗干预。在为数众多的纳米系统和生物制剂中,外泌体作为细胞外囊泡的一种,具有促进骨愈合的潜力。外泌体是细胞外的纳米囊泡,除了具有多种优势外,由于其能够进行细胞间通讯,因此脱颖而出。外泌体的内部货物使其具有在治疗中的潜在用途。外泌体在机制方面以及在针对各种疾病和组织的靶向应用方面都得到了研究。通过这篇综述,我们试图了解和综述已经建立的所有内容,以及在将其用作针对骨骼的药物输送载体方面仍然存在的空白领域。该综述强调了外泌体在促进其在骨微环境中的药物输送中的潜力。还比较了外泌体与其他流行的药物输送系统的优缺点。还包括该领域迄今为止产生的专利部分。