a Biotechnology Center, Nuclear and Energy Research Institute (IPEN/CNEN-SP) , São Paulo , Brazil.
b Biotechnology Center of Amazon, CBA, Manaus - AM , Brazil.
J Microencapsul. 2018 May;35(3):281-291. doi: 10.1080/02652048.2018.1477843. Epub 2018 Jun 14.
Biodegradable polymers containing radioactive isotopes such as Holmium 166 (Ho) have potential applications as beta particle emitters in tumour tissues. It is also a gamma ray emitter, allowing nuclear imaging of any tissue to be acquired. It is frequently used in the form of complexes such as holmium acetylacetonate (HoAcAc), which may cause damages in tissues next to the targets cancer cells, as it is difficult to control its linkage or healthy tissues radiotherapy effects. Poly(d,l-lactic acid), PDLLA, was used to encapsulate holmium acetylacetonate (HoAcAc) using an emulsion solvent extraction/evaporation technique. Microspheres with sizes between 20-53 µm were extensively characterised. HoAcAc release from the microspheres was assessed through studies using Inductively Coupled Plasma - Optical Emission Spectroscopy, and the microspheres showed no holmium leakage after a period of 10 half-lives and following gamma irradiation. Thus, HoAcAc loaded microspheres are here presented as a potential system for brachytherapy and imaging purposes.
含有放射性同位素如钬 166(Ho)的可生物降解聚合物具有作为β粒子发射器在肿瘤组织中应用的潜力。它也是一种伽马射线发射器,允许对任何组织进行核成像。它通常以复合物的形式使用,如钬乙酰丙酮(HoAcAc),由于难以控制其连接或对健康组织的放疗效果,因此可能会对目标癌细胞附近的组织造成损害。聚(D,L-乳酸),PDLLA,用于使用乳液溶剂萃取/蒸发技术包封钬乙酰丙酮(HoAcAc)。对粒径在 20-53µm 之间的微球进行了广泛的表征。通过使用电感耦合等离子体-光发射光谱法评估了微球中 HoAcAc 的释放情况,并且在经过 10 个半衰期和伽马辐射后,微球没有出现钬泄漏。因此,这里提出负载 HoAcAc 的微球作为近距离治疗和成像目的的潜在系统。