Grupo de Novos Materiais, CINTECX, Universidade de Vigo, Vigo, 36310, Spain.
Galicia Sur Health Research Institute (IIS Galicia Sur), SERGAS-UVIGO, Vigo, 36213, Spain.
J Nanobiotechnology. 2023 Jun 20;21(1):196. doi: 10.1186/s12951-023-01956-6.
Hyperthermia-based therapies have shown great potential for clinical applications such as for the antitumor and antipathogenic activities. Within all strategies, the so-called photothermal therapy proposes to induce the hyperthermia by the remote laser radiation on a photothermal conversion agent, in contact with the target tissue.
This paper reviews the most relevant in vitro and in vivo studies focused on NIR laser-induced hyperthermia due to photoexcitation of graphene oxide (GO) and reduced graphene oxide (rGO). Relevant parameters such as the amount of GO/rGO, the influence of the laser wavelength and power density are considered. Moreover, the required temperature and exposure time for each antitumor/antipathogenic case are collected and unified in a thermal dose parameter: the CEM43.
The calculated CEM43 thermal doses revealed a great variability for the same type of tumor/strain. In order to detect potential tendencies, the values were classified into four ranges, varying from CEM43 < 60 min to CEM43 ≥ 1 year. Thus, a preference for moderate thermal doses of CEM43 < 1 year was detected in antitumor activity, with temperatures ≤ 50 °C and exposure time ≤ 15 min. In case of the antipathogenic studies, the most used thermal dose was higher, CEM43 ≥ 1 year, with ablative hyperthermia (> 60ºC).
The ability of GO/rGO as effective photothermal conversion agents to promote a controlled hyperthermia is proven. The variability found for the CEM43 thermal doses on the reviewed studies reveals the potentiality to evaluate, for each application, the use of lower temperatures, by modulating time and/or repetitions in the doses.
基于热疗的疗法在抗肿瘤和抗病原体等临床应用方面显示出巨大的潜力。在所有策略中,所谓的光热疗法通过将激光辐射远程照射到与目标组织接触的光热转换剂来诱导热疗。
本文综述了最相关的体外和体内研究,这些研究集中在近红外激光诱导的氧化石墨烯(GO)和还原氧化石墨烯(rGO)的光激发引起的热疗上。考虑了相关参数,如 GO/rGO 的用量、激光波长和功率密度的影响。此外,还收集了每种抗肿瘤/抗病原体情况下所需的温度和暴露时间,并统一为热剂量参数:CEM43。
计算出的 CEM43 热剂量对于同一类型的肿瘤/菌株表现出很大的可变性。为了检测潜在的趋势,将这些值分为四个范围,从 CEM43<60 分钟到 CEM43≥1 年不等。因此,在抗肿瘤活性中发现了对 CEM43<1 年的中等热剂量的偏好,温度≤50°C,暴露时间≤15 分钟。在抗病原体研究中,最常用的热剂量更高,CEM43≥1 年,采用消融性热疗(>60°C)。
GO/rGO 作为有效的光热转换剂促进可控热疗的能力得到了证明。在综述研究中,CEM43 热剂量的变异性表明,有可能通过调节剂量的时间和/或重复,为每种应用评估使用较低温度的潜力。