School of Chemistry, Indian Institute of Science Education and Research (IISER) Thiruvananthapuram, Trivandrum-695551, Kerala, India.
Org Biomol Chem. 2021 Mar 28;19(12):2804-2810. doi: 10.1039/d1ob00002k. Epub 2021 Mar 15.
Targeted photodynamic therapy (PDT) is one of the promising approaches for the selective killing of cancerous cells without affecting the normal cells, and hence designing new strategies for targeted PDT is extremely important. Herein we report the design and synthesis of a new class of nanosheets derived from the self-assembly of the iodo-BODIPY-biotin conjugate as a photosensitizer for targeted PDT applications. The nanosheet exhibits a high extinction coefficient in the NIR region, high singlet oxygen efficiency, no toxicity in the dark and cell targeting ligands (biotin) on the surface, which are necessary features required for an ideal photosensitizer. Overexpression of sodium-dependent multivitamin transporters (SMVTs) in HeLa and A549 (biotin receptor positive cell lines) is explored for the selective uptake of the nanophotosensitizer through receptor mediated endocytosis (interaction between biotin and SMVT). Control experiments using a biotin receptor negative cell line (WI-38) are also carried out to confirm that the specific interaction between the SMVTs and biotin is mainly responsible for the selective uptake of the photosensitizer. Efficient killing of cancerous cells is demonstrated upon light irradiation through the generation of singlet oxygen and other reactive oxygen species around the cellular environment.
靶向光动力疗法(PDT)是一种有前途的选择性杀伤癌细胞而不影响正常细胞的方法,因此设计新的靶向 PDT 策略非常重要。本文报道了一类新型纳米片的设计和合成,该纳米片由碘代 BODIPY-生物素缀合物自组装而成,可用作靶向 PDT 的光敏剂。该纳米片在近红外区域具有高消光系数、高光敏化效率、暗毒性和表面的细胞靶向配体(生物素),这是理想光敏剂所必需的特征。在 HeLa 和 A549(生物素受体阳性细胞系)中探索了钠依赖性多种维生素转运蛋白(SMVTs)的过表达,以通过受体介导的内吞作用(生物素与 SMVT 之间的相互作用)选择性摄取纳米光敏剂。还进行了使用生物素受体阴性细胞系(WI-38)的对照实验,以确认 SMVTs 和生物素之间的特异性相互作用主要负责光敏剂的选择性摄取。通过在细胞环境周围产生单线态氧和其他活性氧,光照后可有效杀伤癌细胞。