Department of Biomedical Engineering, Pukyong National University, Busan, 48513, Republic of Korea.
J Nanobiotechnology. 2023 Nov 20;21(1):437. doi: 10.1186/s12951-023-02192-8.
Photoacoustic imaging (PAI) is a successful clinical imaging platform for management of cancer and other health conditions that has seen significant progress in the past decade. However, clinical translation of PAI based methods are still under scrutiny as the imaging quality and clinical information derived from PA images are not on par with other imaging methods. Hence, to improve PAI, exogenous contrast agents, in the form of nanomaterials, are being used to achieve better image with less side effects, lower accumulation, and improved target specificity. Nanomedicine has become inevitable in cancer management, as it contributes at every stage from diagnosis to therapy, surgery, and even in the postoperative care and surveillance for recurrence. Nanocontrast agents for PAI have been developed and are being explored for early and improved cancer diagnosis. The systemic stability and target specificity of the nanomaterials to render its theranostic property depends on various influencing factors such as the administration route and physico-chemical responsiveness. The recent focus in PAI is on targeting the lymphatic system and nodes for cancer diagnosis, as they play a vital role in cancer progression and metastasis. This review aims to discuss the clinical advancements of PAI using nanoparticles as exogenous contrast agents for cancer theranostics with emphasis on PAI of lymphatic system for diagnosis, cancer progression, metastasis, PAI guided tumor resection, and finally PAI guided drug delivery.
光声成像是一种成功的临床成像平台,用于癌症和其他健康状况的管理,在过去十年中取得了重大进展。然而,基于光声的方法的临床转化仍在审查中,因为 PA 图像的成像质量和临床信息与其他成像方法并不匹配。因此,为了改善光声成像,以外源纳米材料作为造影剂,用于实现更好的图像,副作用更小、积累更少、靶向特异性更高。纳米医学在癌症管理中已成为必然,因为它在从诊断到治疗、手术,甚至在术后复发的护理和监测的各个阶段都有贡献。已经开发出用于光声成像的纳米造影剂,并正在探索用于早期和改进的癌症诊断。纳米材料的系统稳定性和靶向特异性,以发挥其治疗诊断特性,取决于各种影响因素,如给药途径和物理化学响应性。光声成像的近期焦点是针对淋巴系统和淋巴结进行癌症诊断,因为它们在癌症的进展和转移中起着至关重要的作用。本文旨在讨论使用纳米颗粒作为外源性造影剂进行癌症治疗诊断的光声成像的临床进展,重点是用于诊断、癌症进展、转移、光声引导肿瘤切除,最后是光声引导药物输送的淋巴系统的光声成像。