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纳米颗粒介导的光热疗法在疼痛管理临床应用中的局限性

Nanoparticle-Mediated Photothermal Therapy Limitation in Clinical Applications Regarding Pain Management.

作者信息

Salimi Marzieh, Mosca Sara, Gardner Benjamin, Palombo Francesca, Matousek Pavel, Stone Nicholas

机构信息

School of Physics and Astronomy, University of Exeter, Exeter EX4 4QL, UK.

Central Laser Facility, Research Complex at Harwell, The Science and Technology Facilities Council Rutherford Appleton Laboratory, UK Research and Innovation, Didcot OX11 0QX, UK.

出版信息

Nanomaterials (Basel). 2022 Mar 10;12(6):922. doi: 10.3390/nano12060922.

Abstract

The development of new effective cancer treatment methods has attracted much attention, mainly due to the limited efficacy and considerable side effects of currently used cancer treatment methods such as radiation therapy and chemotherapy. Photothermal therapy based on the use of plasmonically resonant metallic nanoparticles has emerged as a promising technique to eradicate cancer cells selectively. In this method, plasmonic nanoparticles are first preferentially uptaken by a tumor and then selectively heated by exposure to laser radiation with a specific plasmonic resonant wavelength, to destroy the tumor whilst minimizing damage to adjacent normal tissue. However, several parameters can limit the effectiveness of photothermal therapy, resulting in insufficient heating and potentially leading to cancer recurrence. One of these parameters is the patient's pain sensation during the treatment, if this is performed without use of anesthetic. Pain can restrict the level of applicable laser radiation, cause an interruption to the treatment course and, as such, affect its efficacy, as well as leading to a negative patient experience and consequential general population hesitancy to this type of therapy. Since having a comfortable and painless procedure is one of the important treatment goals in the clinic, along with its high effectiveness, and due to the relatively low number of studies devoted to this specific topic, we have compiled this review. Moreover, non-invasive and painless methods for temperature measurement during photothermal therapy (PTT), such as Raman spectroscopy and nanothermometry, will be discussed in the following. Here, we firstly outline the physical phenomena underlying the photothermal therapy, and then discuss studies devoted to photothermal cancer treatment concerning pain management and pathways for improved efficiency of photothermal therapy whilst minimizing pain experienced by the patient.

摘要

新型有效癌症治疗方法的开发备受关注,主要是因为目前使用的癌症治疗方法,如放射疗法和化学疗法,疗效有限且副作用较大。基于使用等离子体共振金属纳米颗粒的光热疗法已成为一种有前景的选择性根除癌细胞的技术。在这种方法中,等离子体纳米颗粒首先被肿瘤优先摄取,然后通过暴露于具有特定等离子体共振波长的激光辐射而被选择性加热,以破坏肿瘤,同时将对相邻正常组织的损伤降至最低。然而,几个参数会限制光热疗法的有效性,导致加热不足并可能导致癌症复发。这些参数之一是治疗过程中患者的疼痛感,如果在不使用麻醉剂的情况下进行治疗。疼痛会限制适用激光辐射的水平,导致治疗过程中断,进而影响其疗效,还会给患者带来负面体验,并导致普通人群对这种治疗方法产生犹豫。由于在临床上拥有舒适且无痛的治疗过程是重要的治疗目标之一,同时其有效性高,且针对这一特定主题的研究相对较少,我们撰写了这篇综述。此外,下面将讨论光热疗法(PTT)期间用于温度测量的非侵入性无痛方法,如拉曼光谱法和纳米测温法。在此,我们首先概述光热疗法背后的物理现象,然后讨论致力于光热癌症治疗的研究,涉及疼痛管理以及提高光热疗法效率同时将患者经历的疼痛降至最低的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3340/8951621/a4cc40e1ec28/nanomaterials-12-00922-g001.jpg

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