Lakhani Prit Manish, Rompicharla Sri Vishnu Kiran, Ghosh Balaram, Biswas Swati
Birla Institute of Technology and Science Pilani, Hyderabad Campus, Shameerpet, Telangana, 500078, India.
Nanotechnology. 2015 Oct 30;26(43):432001. doi: 10.1088/0957-4484/26/43/432001. Epub 2015 Oct 8.
Photothermal therapy, also referred to as optical hyperthermia or photothermal ablation, is an emerging strategy for treating solid tumours. Colloidal gold converts the absorbed light into localized heat via a non-radiative mechanism, surface plasmon resonance, which ablates the solid tumours. Several plasmon resonating nanostructures, including gold nanoparticles (AuNPs), gold nanorods (AuNRs), gold nanoshells, gold nanocages, copper sulphide and carbon nanotubes, have shown potential for photo-activated cancer therapy. Generally, spherical AuNPs display absorption maxima between 500-550 nm, making them inefficient due to low tissue penetration. On the other hand, AuNRs absorb light in the near-infrared (NIR) region that penetrates deeper with higher spatial precision, and causes no damage to the surrounding healthy tissues due to the low energy absorption of NIR light by normal tissue. Moreover, the absorption range of light can be fine-tuned to the NIR region by adjusting the aspect ratios of AuNRs. However, large-scale synthesis and stability of this colloidal system still poses challenges for clinical translation. In this review, we discuss various strategies applied up to now for the synthesis of AuNRs. Current trends in the pre-clinical development of multifunctional AuNRs with emphasis on preparation and application strategies in cancer therapy have been delineated.
光热疗法,也被称为光热疗或光热消融,是一种治疗实体肿瘤的新兴策略。胶体金通过非辐射机制——表面等离子体共振,将吸收的光转化为局部热量,从而消融实体肿瘤。几种等离子体共振纳米结构,包括金纳米颗粒(AuNPs)、金纳米棒(AuNRs)、金纳米壳、金纳米笼、硫化铜和碳纳米管,已显示出光激活癌症治疗的潜力。一般来说,球形AuNPs的吸收最大值在500-550纳米之间,由于组织穿透性低,使其效率低下。另一方面,AuNRs在近红外(NIR)区域吸收光,该区域具有更高的空间精度且能更深地穿透,并且由于正常组织对近红外光的低能量吸收,不会对周围健康组织造成损害。此外,通过调整AuNRs的纵横比,可以将光的吸收范围微调至近红外区域。然而,这种胶体系统的大规模合成和稳定性仍然是临床转化面临的挑战。在这篇综述中,我们讨论了迄今为止用于合成AuNRs的各种策略。已经描述了多功能AuNRs临床前开发的当前趋势,重点是癌症治疗中的制备和应用策略。