Tripathi S K, Kaur Gurvir, Khurana Rajneet Kaur, Kapoor Sonia, Singh Bhupinder
Centre of Advanced Study in Physics, Department of Physics, Panjab University, Chandigarh-160014, India.
University Institute of Pharmaceutical Sciences, UGC Centre of Advanced Studies, Panjab University, Chandigarh 160 014, India.
Crit Rev Ther Drug Carrier Syst. 2015;32(6):461-502. doi: 10.1615/critrevtherdrugcarriersyst.2015012360.
The emergence of cancer nanomedicine is the result of fruitful advances in the fields of nanotechnology, bioimaging, formulation development, and molecular biology. Quantum dots (QDs) are the luminescent nanocrystals (NCs) that provide a multifunctional platform for imaging the biosystems following controlled delivery of therapeutic drugs, proteins, peptides, oligonucleotides, and genes. These engineered fluorescent probes with integrated imaging and carrier functionalities have become excellent tools for molecular diagnostics and delivery of therapeutics molecules. Flexible surface chemistry, unique optical properties, high sensitivity, and multiplexing capabilities of QDs certainly make them a most promising tool for personalized medicine. This review focuses on state-of-art advances in synthesizing QDs and highlights the approaches used for functionalization of QDs with desired ligands for targeted carriage to specific sites. Discussed is the role of QDs in antitumor therapy through drug delivery and gene delivery and the recently emerged photodynamic therapy (PDT). We also endeavor to critically address the major impediments in the clinical development of these multifunctional nanoplatforms, with a special focus on plausible advancements for the near future.
癌症纳米医学的出现是纳米技术、生物成像、制剂开发和分子生物学领域取得丰硕进展的结果。量子点(QDs)是发光纳米晶体(NCs),在治疗药物、蛋白质、肽、寡核苷酸和基因的可控递送之后,为生物系统成像提供了一个多功能平台。这些具有集成成像和载体功能的工程化荧光探针已成为分子诊断和治疗分子递送的优秀工具。量子点灵活的表面化学性质、独特的光学性质、高灵敏度和多重检测能力无疑使其成为个性化医疗中最具前景的工具。本综述重点介绍了量子点合成的最新进展,并强调了用所需配体对量子点进行功能化以靶向运送到特定部位的方法。讨论了量子点在通过药物递送和基因递送进行抗肿瘤治疗以及最近出现的光动力疗法(PDT)中的作用。我们还努力批判性地解决这些多功能纳米平台临床开发中的主要障碍,特别关注近期可能取得的进展。