Kassem Samr, Piletsky Stanislav S, Yesilkaya Hasan, Gazioglu Ozcan, Habtom Medhanie, Canfarotta Francesco, Piletska Elena, Spivey Alan C, Aboagye Eric O, Piletsky Sergey A
Nanomaterials Research and Synthesis Unit, Animal Health Research Institute, Agricultural Research Centre, Giza 12618, Egypt.
Department of Chemistry, Molecular Sciences Research Hub, White City Campus, Imperial College London, London W12 0BZ, UK.
Polymers (Basel). 2022 Oct 28;14(21):4582. doi: 10.3390/polym14214582.
Molecularly imprinted polymer nanoparticles (nanoMIPs) are high affinity synthetic receptors which show promise as imaging and therapeutic agents. Comprehensive analysis of the in vivo behaviour of nanoMIPs must be performed before they can be considered for clinical applications. This work reports the solid-phase synthesis of nanoMIPs and an investigation of their biodistribution, clearance and cytotoxicity in a rat model following both intravenous and oral administration. These nanoMIPs were found in each harvested tissue type, including brain tissue, implying their ability to cross the blood-brain barrier. The nanoMIPs were cleared from the body via both faeces and urine. Furthermore, we describe an immunogenicity study in mice, demonstrating that nanoMIPs specific for a cell surface protein showed moderate adjuvant properties, whilst those imprinted for a scrambled peptide showed no such behaviour. Given their ability to access all tissue types and their relatively low cytotoxicity, these results pave the way for in vivo applications of nanoMIPs.
分子印迹聚合物纳米颗粒(nanoMIPs)是具有高亲和力的合成受体,有望作为成像和治疗剂。在考虑将nanoMIPs用于临床应用之前,必须对其体内行为进行全面分析。这项工作报道了nanoMIPs的固相合成,并研究了其在大鼠模型中静脉注射和口服给药后的生物分布、清除率和细胞毒性。在包括脑组织在内的每种收获的组织类型中都发现了这些nanoMIPs,这意味着它们能够穿过血脑屏障。nanoMIPs通过粪便和尿液从体内清除。此外,我们描述了一项在小鼠中的免疫原性研究,证明对细胞表面蛋白具有特异性的nanoMIPs表现出中等的佐剂特性,而针对乱序肽印迹的nanoMIPs则没有这种行为。鉴于它们能够进入所有组织类型且细胞毒性相对较低,这些结果为nanoMIPs的体内应用铺平了道路。