Ojha Mamata, Banerjee Moumita, Mandal Madhurima, Singha Tara, Ray Souvik, Datta Prasanta K, Mandal Mahitosh, Anoop Anakuthil, Singh N D Pradeep
Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur 721302, India.
Department of School of Medical Science and Technology, Indian Institute of Technology Kharagpur, Kharagpur 721302, India.
ACS Appl Mater Interfaces. 2024 May 1;16(17):21486-21497. doi: 10.1021/acsami.4c00299. Epub 2024 Apr 19.
The combined effects of twisted intramolecular charge transfer (TICT) and aggregation-induced emission (AIE) phenomena have demonstrated a significant influence on excited-state chemistry. These combined TICT and AIE features have been extensively utilized to enhance photodynamic and photothermal therapy. Herein, we demonstrated the synergistic capabilities of TICT and AIE phenomena in the design of the photoremovable protecting group (PRPG), namely, NMe-Napy-BF. This innovative PRPG incorporates TICT and AIE characteristics, resulting in four remarkable properties: (i) red-shifted absorption wavelength, (ii) strong near-infrared (NIR) emission, (iii) viscosity-sensitive emission property, and (iv) accelerated photorelease rate. Inspired by these intriguing attributes, we developed a nanodrug delivery system (nano-DDS) using our PRPG for cancer treatment. In vitro studies showed that our nano-DDS manifested effective cellular internalization, specific staining of cancer cells, high-resolution confocal imaging of cancerous cells in the NIR region, and controlled release of the anticancer drug chlorambucil upon exposure to light, leading to cancer cell eradication. Most notably, our nano-DDS exhibited a substantially increased two-photon (TP) absorption cross section (435 GM), exhibiting its potential for in vivo applications. This development holds promise for significant advancements in cancer treatment strategies.
扭曲分子内电荷转移(TICT)和聚集诱导发光(AIE)现象的联合效应已证明对激发态化学有重大影响。这些TICT和AIE的联合特性已被广泛用于增强光动力和光热疗法。在此,我们展示了TICT和AIE现象在光可去除保护基团(PRPG)即NMe-Napy-BF设计中的协同能力。这种创新的PRPG兼具TICT和AIE特性,产生了四个显著特性:(i)吸收波长红移,(ii)强近红外(NIR)发射,(iii)粘度敏感发射特性,以及(iv)加速的光释放速率。受这些有趣特性的启发,我们开发了一种使用我们的PRPG用于癌症治疗的纳米药物递送系统(nano-DDS)。体外研究表明,我们的nano-DDS表现出有效的细胞内化、癌细胞的特异性染色、近红外区域癌细胞的高分辨率共聚焦成像,以及在光照下抗癌药物苯丁酸氮芥的控释,从而导致癌细胞根除。最值得注意的是,我们的nano-DDS表现出大幅增加的双光子(TP)吸收截面(435 GM),展现了其在体内应用的潜力。这一进展有望在癌症治疗策略方面取得重大进步。