Bonelli Joaquín, Velasco-de Andrés María, Isidro Neus, Bayó Cristina, Chumillas Sergi, Carrillo-Serradell Laura, Casadó-Llombart Sergi, Mok Cheryl, Benítez-Ribas Daniel, Lozano Francisco, Rocas Josep, Marchán Vicente
Departament de Química Inorgànica i Orgànica, Secció de Química Orgànica, Institut de Biomedicina de la Universitat de Barcelona (IBUB), Universitat de Barcelona (UB), Martí i Franquès 1-11, E-08028 Barcelona, Spain.
Nanobiotechnological Polymers Division Ecopol Tech, S.L., El Foix Business Park, Indústria 7, L'Arboç del Penedès, E-43720 Tarragona, Spain.
Pharmaceutics. 2022 Dec 24;15(1):58. doi: 10.3390/pharmaceutics15010058.
Encapsulation of water-soluble bioactive compounds for enabling specific accumulation in tumor locations, while avoiding premature clearance and/or degradation in the bloodstream, is one of the main hallmarks in nanomedicine, especially that of NIR fluorescent probes for cancer theragnosis. The herein reported technology furnishes water-dispersible double-walled polyurethane-polyurea hybrid nanocapsules (NCs) loaded with indocyanine green (ICG-NCs), using a versatile and highly efficient one-pot and industrially scalable synthetic process based on the use of two different prepolymers to set up the NCs walls. Flow cytometry and confocal microscopy confirmed that both ICG-loaded NCs internalized in monocyte-derived dendritic cells (moDCs). The in vivo analysis of xenograft A375 mouse melanoma model revealed that amphoteric functionalization of NCs' surface promotes the selective accumulation of ICG-NCs in tumor tissues, making them promising agents for a less-invasive theragnosis of cancer.
将水溶性生物活性化合物封装起来,使其能够在肿瘤部位特异性蓄积,同时避免在血液中过早清除和/或降解,这是纳米医学的主要特征之一,尤其是用于癌症诊疗的近红外荧光探针。本文报道的技术提供了负载吲哚菁绿的水分散性双壁聚氨酯-聚脲杂化纳米胶囊(ICG-NCs),采用了一种通用且高效的一锅法和工业可扩展合成工艺,该工艺基于使用两种不同的预聚物来构建纳米胶囊壁。流式细胞术和共聚焦显微镜证实,负载ICG的纳米胶囊均被单核细胞衍生的树突状细胞(moDCs)内化。对异种移植A375小鼠黑色素瘤模型的体内分析表明,纳米胶囊表面的两性功能化促进了ICG-NCs在肿瘤组织中的选择性蓄积,使其成为有前景的用于癌症微创诊疗的试剂。