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Archaeosomes Prepared from Aeropyrum Pernix Kl Lipids as an In Vivo Targeted Delivery System for Subsequent Nanosecond Electroporation

机译:从Aernix K1脂质制备的颅内孢子,作为随后的纳秒电穿孔的体内靶向递送系统

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The search for an ideal delivery system capable of targeted delivery of therapeutic molecules to tumor cells after a systemic administration is ongoing. Recently liposomes prepared from archaeal lipids (archaeosomes) emerged as a viable alternative to traditional liposomes. They are highly stable and have low toxicity in vitro. But even once inside the cell, they still do not release their cargo. Thus, when combined with nanosecond electroporation nsEP, which perineabilizes small vesicles inside the cell, presents an attractive delivery system with spatial and temporal control of the therapeutic molecules delivery. Therefore, the aim of our study was to determine the in vivo stability of archaeosomes from Aeropyrum pernix Kl and their extravasation from tumor blood vessels. We used intravital video microscopy to determine the circulation time of archaeosomes in normal and tumor blood vessels and whether they extravasate from tumor blood vessels. Additionally, their stability after exposure to mouse blood in situ was determined. The intravenously injected archaeosomes were circulating for 6 minutes in normal and tumor blood vessels and showed a preference for increased retention in tumor blood vessels. The measured size of archaeosomes in vivo varied from 200 nm up to several thousand urn, due to aggregation of archaeosomes when in contact with blood, which was confirmed in situ. The obtained results elucidate the behavior of archaeosomes from A. pernix in vivo and indicate future steps necessary to make them a viable delivery system potentially combined with nsEP.
机译:在进行全身施用后,寻找能够将治疗分子递送至肿瘤细胞的理想递送系统。最近从古脂质制备的脂质体(archaeosomes)作为传统脂质体的可行替代品。它们非常稳定,体外毒性低。但即使在细胞内,他们仍然没有释放他们的货物。因此,当与纳秒电穿孔NSEP结合时,该纳秒电穿孔NSEPE在细胞内部减少小囊泡时,呈现具有对治疗分子递送的空间和时间控制的吸引力的递送系统。因此,我们的研究目的是从Aeropyrum Pernix KL确定初始骨髓的体内稳定性及其从肿瘤血管的外渗。我们使用流体视频显微镜测定正常和肿瘤血管中的颅内瘤的循环时间,以及它们是否从肿瘤血管前进。另外,确定其原位暴露于小鼠血后的稳定性。静脉内注射的颅内组织在正常和肿瘤血管中循环6分钟,并偏好肿瘤血管的保留增加。由于在与血液接触时,体内测量的弓形素的尺寸从200nm变化到多达数千瓮,这是原位确认的血液的聚集。获得的结果阐明了Vivo中的A.Cernix的初始孢子的行为,并表明了使它们具有可能与NSEPP的可行性递送系统所需的未来步骤。

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