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用于前列腺癌传感、成像和治疗的纳米诊疗学

Nano-Theranostics for the Sensing, Imaging and Therapy of Prostate Cancers.

作者信息

Calatayud David G, Neophytou Sotia, Nicodemou Eleni, Giuffrida S Giuseppe, Ge Haobo, Pascu Sofia I

机构信息

Department of Chemistry, University of Bath, Bath, United Kingdom.

Department of Electroceramics, Instituto de Ceramica y Vidrio - CSIC, Madrid, Spain.

出版信息

Front Chem. 2022 Apr 12;10:830133. doi: 10.3389/fchem.2022.830133. eCollection 2022.

Abstract

We highlight hereby recent developments in the emerging field of theranostics, which encompasses the combination of therapeutics and diagnostics in a single entity aimed for an early-stage diagnosis, image-guided therapy as well as evaluation of therapeutic outcomes of relevance to prostate cancer (PCa). Prostate cancer is one of the most common malignancies in men and a frequent cause of male cancer death. As such, this overview is concerned with recent developments in imaging and sensing of relevance to prostate cancer diagnosis and therapeutic monitoring. A major advantage for the effective treatment of PCa is an early diagnosis that would provide information for an appropriate treatment. Several imaging techniques are being developed to diagnose and monitor different stages of cancer in general, and patient stratification is particularly relevant for PCa. Hybrid imaging techniques applicable for diagnosis combine complementary structural and morphological information to enhance resolution and sensitivity of imaging. The focus of this review is to sum up some of the most recent advances in the nanotechnological approaches to the sensing and treatment of prostate cancer (PCa). Targeted imaging using nanoparticles, radiotracers and biomarkers could result to a more specialised and personalised diagnosis and treatment of PCa. A myriad of reports has been published literature proposing methods to detect and treat PCa using nanoparticles but the number of techniques approved for clinical use is relatively small. Another facet of this report is on reviewing aspects of the role of functional nanoparticles in multimodality imaging therapy considering recent developments in simultaneous PET-MRI (Positron Emission Tomography-Magnetic Resonance Imaging) coupled with optical imaging and , whilst highlighting feasible case studies that hold promise for the next generation of dual modality medical imaging of PCa. It is envisaged that progress in the field of imaging and sensing domains, taken together, could benefit from the biomedical implementation of new synthetic platforms such as metal complexes and functional materials supported on organic molecular species, which can be conjugated to targeting biomolecules and encompass adaptable and versatile molecular architectures. Furthermore, we include hereby an overview of aspects of biosensing methods aimed to tackle PCa: prostate biomarkers such as Prostate Specific Antigen (PSA) have been incorporated into synthetic platforms and explored in the context of sensing and imaging applications in preclinical investigations for the early detection of PCa. Finally, some of the societal concerns around nanotechnology being used for the detection of PCa are considered and addressed together with the concerns about the toxicity of nanoparticles-these were aspects of recent lively debates that currently hamper the clinical advancements of nano-theranostics. The publications survey conducted for this review includes, to the best of our knowledge, some of the most recent relevant literature examples from the state-of-the-art. Highlighting these advances would be of interest to the biomedical research community aiming to advance the application of theranostics particularly in PCa diagnosis and treatment, but also to those interested in the development of new probes and methodologies for the simultaneous imaging and therapy monitoring employed for PCa targeting.

摘要

在此,我们重点介绍治疗诊断学这一新兴领域的最新进展,该领域将治疗与诊断结合于一个实体中,旨在实现早期诊断、图像引导治疗以及评估与前列腺癌(PCa)相关的治疗效果。前列腺癌是男性中最常见的恶性肿瘤之一,也是男性癌症死亡的常见原因。因此,本综述关注与前列腺癌诊断和治疗监测相关的成像和传感方面的最新进展。有效治疗前列腺癌的一个主要优势是早期诊断,这将为适当的治疗提供信息。目前正在开发几种成像技术来诊断和监测癌症的不同阶段,而患者分层对前列腺癌尤为重要。适用于诊断的混合成像技术结合了互补的结构和形态信息,以提高成像的分辨率和灵敏度。本综述的重点是总结纳米技术在前列腺癌传感和治疗方面的一些最新进展。使用纳米颗粒、放射性示踪剂和生物标志物进行靶向成像可以实现对前列腺癌更具针对性和个性化的诊断和治疗。已有大量文献报道了使用纳米颗粒检测和治疗前列腺癌的方法,但获批临床使用的技术数量相对较少。本报告的另一个方面是回顾功能纳米颗粒在多模态成像治疗中的作用,考虑到正电子发射断层扫描 - 磁共振成像(PET - MRI)与光学成像同时发展的最新情况,同时强调一些可行的案例研究,这些研究有望用于下一代前列腺癌双模态医学成像。可以设想,成像和传感领域的进展总体上可以受益于新合成平台的生物医学应用,如基于有机分子物种的金属配合物和功能材料,它们可以与靶向生物分子共轭,并具有适应性强和通用的分子结构。此外,我们在此还概述了旨在解决前列腺癌的生物传感方法的各个方面:前列腺特异性抗原(PSA)等前列腺生物标志物已被纳入合成平台,并在临床前研究的传感和成像应用背景下进行探索,以早期检测前列腺癌。最后,考虑并解决了围绕纳米技术用于检测前列腺癌的一些社会关注问题,以及对纳米颗粒毒性的担忧——这些是最近激烈辩论的方面,目前阻碍了纳米治疗诊断学的临床进展。就我们所知,本次综述所进行的文献调查包括了一些来自最新技术水平的最新相关文献实例。强调这些进展将引起生物医学研究界的兴趣,他们旨在推进治疗诊断学的应用,特别是在前列腺癌的诊断和治疗方面,也将引起那些对开发用于前列腺癌靶向的同时成像和治疗监测的新探针和方法感兴趣的人的兴趣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aca9/9039169/513138f5fac9/fchem-10-830133-g015.jpg

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