Institute of Nutrition, Mahidol University, Nakhon Pathom, 73170, Thailand.
Department of Food Science, University of Massachusetts Amherst, Amherst, MA, 01003, USA.
Int J Nanomedicine. 2023 Aug 3;18:4449-4470. doi: 10.2147/IJN.S416737. eCollection 2023.
Radiopharmaceuticals serve as a major part of nuclear medicine contributing to both diagnosis and treatment of several diseases, especially cancers. Currently, most radiopharmaceuticals are based on small molecules with targeting ability. However, some concerns over their stability or non-specific interactions leading to off-target localization are among the major challenges that need to be overcome. Emulsion technology has great potential for the fabrication of carrier systems for radiopharmaceuticals. It can be used to create particles with different compositions, structures, sizes, and surface characteristics from a wide range of generally recognized as safe (GRAS) materials, which allows their functionality to be tuned for specific applications. In particular, it is possible to carry out surface modifications to introduce targeting and stealth properties, as well as to control the particle dimensions to manipulate diffusion and penetration properties. Moreover, emulsion preparation methods are usually simple, economic, robust, and scalable, which makes them suitable for medical applications. In this review, we highlight the potential of emulsion technology in nuclear medicine for developing targeted radionuclide therapies, for use as radiosensitizers, and for application in radiotracer delivery in gamma imaging techniques.
放射性药物是核医学的主要组成部分,可用于诊断和治疗多种疾病,特别是癌症。目前,大多数放射性药物基于具有靶向能力的小分子。然而,一些稳定性问题或非特异性相互作用导致的非靶向定位等问题是需要克服的主要挑战。乳液技术在放射性药物载体系统的制备方面具有巨大的潜力。它可以用于从广泛的公认安全(GRAS)材料中制造具有不同组成、结构、尺寸和表面特性的颗粒,从而可以针对特定应用调整其功能。特别是,可以进行表面修饰以引入靶向和隐形特性,并控制颗粒尺寸以改变扩散和渗透特性。此外,乳液的制备方法通常简单、经济、稳健且可扩展,这使其适用于医学应用。在本文中,我们强调了乳液技术在核医学中用于开发靶向放射性核素疗法、作为放射增敏剂以及应用于伽马成像技术中的放射性示踪剂输送的潜力。