Pincela Lins Paula Maria, Ribovski Laís, Corsi Antonio Luana, Altei Wanessa Fernanda, Sobreiro Selistre-de-Araújo Heloisa, Cancino-Bernardi Juliana, Zucolotto Valtencir
Nanomedicine and Nanotoxicology Group, Physics Institute of São Carlos, University of São Paulo, São Carlos, SP, Brazil.
Nanomedicine and Nanotoxicology Group, Physics Institute of São Carlos, University of São Paulo, São Carlos, SP, Brazil.
Eur J Pharm Biopharm. 2022 Jul;176:168-179. doi: 10.1016/j.ejpb.2022.05.018. Epub 2022 May 26.
Extracellular vesicles (EVs) and cell membrane nanoghosts are excellent coatings for nanomaterials, providing enhanced delivery in the target sites and evasion of the immune system. These cell-derived coatings allow the exploration of the delivery properties of the nanoparticles without stimulation of the immune system. Despite the advances reported on the use of EVs and cell-membrane coatings for nanomedicine applications, there are no standards to compare the benefits and main differences between these technologies. Here we investigated macrophage-derived EVs and cell membranes-coated gold nanorods and compared both systems in terms of target delivery in cancer and stromal cells. Our results reveal a higher tendency of EV-coated nanorods to interact with macrophages yet both EV and cell membrane-coated nanorods were internalized in the metastatic breast cancer cells. The main differences between these nanoparticles are related to the presence or absence of CD47 in the coating material, not usually addressed in EVs characterization. Our findings highlight important delivery differences exhibited by EVs- or cell membranes- coated nanorods which understanding may be important to the design and development of theragnostic nanomaterials using these coatings for target delivery.
细胞外囊泡(EVs)和细胞膜纳米幽灵是纳米材料的优良涂层,可增强在靶位点的递送并逃避免疫系统。这些源自细胞的涂层允许在不刺激免疫系统的情况下探索纳米颗粒的递送特性。尽管在将EVs和细胞膜涂层用于纳米医学应用方面已有进展报道,但尚无标准来比较这些技术的优势和主要差异。在此,我们研究了巨噬细胞衍生的EVs和细胞膜包被的金纳米棒,并在癌症细胞和基质细胞的靶向递送方面比较了这两种系统。我们的结果显示,EV包被的纳米棒与巨噬细胞相互作用的趋势更高,但EV和细胞膜包被的纳米棒均被转移性乳腺癌细胞内化。这些纳米颗粒之间的主要差异与涂层材料中CD47的存在与否有关,这在EVs表征中通常未被涉及。我们的研究结果突出了EV或细胞膜包被的纳米棒所表现出的重要递送差异,了解这些差异对于使用这些涂层进行靶向递送的治疗诊断纳米材料的设计和开发可能很重要。