Buda Andrea, Facchin Sonia, Dassie Elisa, Casarin Elisabetta, Jepson Mark A, Neumann Helmut, Hatem Giorgia, Realdon Stefano, D'Incà Renata, Sturniolo Giacomo Carlo, Morpurgo Margherita
Department of Surgical, Oncological, and Gastroenterological Sciences, University of Padova, Padova, Italy.
Department of Molecular Medicine, University of Padova, Padova, Italy.
Int J Nanomedicine. 2015 Jan 8;10:399-408. doi: 10.2147/IJN.S70153. eCollection 2015.
Inflammatory bowel diseases are chronic gastrointestinal pathologies causing great discomfort in both children and adults. The pathogenesis of inflammatory bowel diseases is not yet fully understood and their diagnosis and treatment are often challenging. Nanoparticle-based strategies have been tested in local drug delivery to the inflamed colon. Here, we have investigated the use of the novel avidin-nucleic acid nanoassembly (ANANAS) platform as a potential diagnostic carrier in an experimental model of inflammatory bowel diseases. Fluorescent- labeled ANANAS nanoparticles were administered to mice with chemically induced chronic inflammation of the large intestine. Localization of mucosal nanoparticles was assessed in vivo by dual-band confocal laser endomicroscopy. This technique enables characterization of the mucosal microvasculature and crypt architecture at subcellular resolution. Intravascular nanoparticle distribution was observed in the inflamed mucosa but not in healthy controls, demonstrating the utility of the combination of ANANAS and confocal laser endomicroscopy for highlighting intestinal inflammatory conditions. The specific localization of ANANAS in inflamed tissues supports the potential of this platform as a targeted carrier for bioactive moieties in the treatment of inflammatory bowel disease.
炎症性肠病是一种慢性胃肠道疾病,会给儿童和成人带来极大不适。炎症性肠病的发病机制尚未完全明确,其诊断和治疗往往具有挑战性。基于纳米颗粒的策略已在向发炎结肠局部给药中进行了测试。在此,我们研究了新型抗生物素蛋白-核酸纳米组装体(ANANAS)平台在炎症性肠病实验模型中作为潜在诊断载体的用途。将荧光标记的ANANAS纳米颗粒给予化学诱导的大肠慢性炎症小鼠。通过双波段共聚焦激光内镜显微镜在体内评估黏膜纳米颗粒的定位。该技术能够在亚细胞分辨率下对黏膜微血管系统和隐窝结构进行表征。在发炎的黏膜中观察到血管内纳米颗粒分布,但在健康对照中未观察到,这证明了ANANAS与共聚焦激光内镜显微镜相结合用于突出肠道炎症状况的实用性。ANANAS在发炎组织中的特异性定位支持了该平台作为生物活性部分靶向载体用于治疗炎症性肠病的潜力。