首页> 外文期刊>Biomaterials >Development of non-pyrogenic magnetosome minerals coated with poly-l-lysine leading to full disappearance of intracranial U87-Luc glioblastoma in 100% of treated mice using magnetic hyperthermia
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Development of non-pyrogenic magnetosome minerals coated with poly-l-lysine leading to full disappearance of intracranial U87-Luc glioblastoma in 100% of treated mice using magnetic hyperthermia

机译:涂有聚-L-赖氨酸的非热原磁体矿物的研制导致颅内U87-LUC胶质母细胞瘤在100%使用磁体热疗的治疗小鼠中充分消失

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摘要

Magnetic hyperthermia was reported to increase the survival of patients with recurrent glioblastoma by 7 months. This promising result may potentially be further improved by using iron oxide nanoparticles, called magnetosomes, which are synthesized by magnetotactic bacteria, extracted from these bacteria, purified to remove most endotoxins and organic material, and then coated with poly-L-lysine to yield a stable and non-pyrogenic nanoparticle suspension. Due to their ferrimagnetic behavior, high crystallinity and chain arrangement, these magnetosomes coated with poly-L-lysine (M-PLL) are characterized by a higher heating power than their chemically synthesized counterparts currently used in clinical trials. MPLL-enhanced antitumor efficacy was demonstrated by administering 500-700 mu g in iron of M-PLL to intracranial U87-Luc tumors of 1.5 mm(3) and by exposing mice to 27 magnetic sessions each lasting 30 min, during which an alternating magnetic field of 202 kHz and 27 mT was applied. Treatment conditions were adjusted to reach a typical hyperthermia temperature of 42 degrees C during the first magnetic session. In 100% of treated mice, bioluminescence due to living glioblastoma cells fully disappeared 68 days following tumor cell implantation (D68). These mice were all still alive at D350. Histological analysis of their brain tissues revealed an absence of tumor cells, suggesting that they were fully cured. In comparison, antitumor efficacy was less pronounced in mice treated by the administration of IONP followed by 23 magnetic sessions, leading to full tumor bioluminescence disappearance in only 20% of the treated mice. (C) 2017 Elsevier Ltd. All rights reserved.
机译:据报道,磁体热疗将患者的存活率增加7个月。通过使用由磁体细菌合成的氧化铁纳米颗粒,可以进一步改善该有希望的结果,这些氧化铁纳米颗粒由磁通细菌合成,从这些细菌中提取,纯化以除去大多数内毒素和有机材料,然后用聚-L-赖氨酸涂覆以产生a稳定和非热原纳米粒子悬浮液。由于它们的铁磁性行为,高结晶度和链条布置,涂有聚-L-赖氨酸(M-PLL)的这些磁体的特征在于比目前用于临床试验中使用的化学合成的对应物更高的加热功率。通过将500-700μg的M-PLL熨斗施用为1.5mm(3)的颅内U87-leuc肿瘤,并通过将小鼠持续到27次磁性会话,每次持续30分钟,证明了MPLL增强的抗肿瘤功效。应用202 kHz和27吨的领域。调整治疗条件以在第一磁性会议期间达到42℃的典型高温温度。在100%处理的小鼠中,由于活着的胶质母细胞瘤细胞引起的生物发光完全消失了肿瘤细胞植入后68天后(D68)。这些小鼠仍然在D350中活着。其脑组织的组织学分析显示出没有肿瘤细胞,表明它们是完全固化的。相比之下,抗肿瘤功效在通过给予IONP的给药后处理的小鼠中的效果不太明显,其次是23个磁性会话,导致仅20%治疗的小鼠的全肿瘤生物发光消失。 (c)2017 Elsevier Ltd.保留所有权利。

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