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脂质体靶向周围神经元和施万细胞。

Liposomes to target peripheral neurons and Schwann cells.

机构信息

Department of Neuroscience, College of Medicine, University of Florida, Gainesville, Florida, United States of America.

出版信息

PLoS One. 2013 Nov 11;8(11):e78724. doi: 10.1371/journal.pone.0078724. eCollection 2013.

Abstract

While a wealth of literature for tissue-specific liposomes is emerging, optimal formulations to target the cells of the peripheral nervous system (PNS) are lacking. In this study, we asked whether a novel formulation of phospholipid-based liposomes could be optimized for preferential uptake by microvascular endothelia, peripheral neurons and Schwann cells. Here, we report a unique formulation consisting of a phospholipid, a polymer surfactant and cholesterol that result in enhanced uptake by targeted cells. Using fluorescently labeled liposomes, we followed particle internalization and trafficking through a distinct route from dextran and escape from degradative compartments, such as lysosomes. In cultures of non-myelinating Schwann cells, liposomes associate with the lipid raft marker Cholera toxin, and their internalization is inhibited by disruption of lipid rafts or actin polymerization. In contrast, pharmacological inhibition of clathrin-mediated endocytosis does not significantly impact liposome entry. To evaluate the efficacy of liposome targeting in tissues, we utilized myelinating explant cultures of dorsal root ganglia and isolated diaphragm preparations, both of which contain peripheral neurons and myelinating Schwann cells. In these models, we detected preferential liposome uptake into neurons and glial cells in comparison to surrounding muscle tissue. Furthermore, in vivo liposome administration by intramuscular or intravenous injection confirmed that the particles were delivered to myelinated peripheral nerves. Within the CNS, we detected the liposomes in choroid epithelium, but not in myelinated white matter regions or in brain parenchyma. The described nanoparticles represent a novel neurophilic delivery vehicle for targeting small therapeutic compounds, biological molecules, or imaging reagents into peripheral neurons and Schwann cells, and provide a major advancement toward developing effective therapies for peripheral neuropathies.

摘要

尽管针对组织特异性脂质体的文献层出不穷,但针对周围神经系统 (PNS) 细胞的最佳制剂仍有待开发。在这项研究中,我们探讨了一种新型磷脂基脂质体是否可以通过优先被微血管内皮细胞、外周神经元和雪旺细胞摄取来进行优化。在这里,我们报告了一种独特的制剂,由磷脂、聚合物表面活性剂和胆固醇组成,可增强靶向细胞的摄取。使用荧光标记的脂质体,我们跟踪了颗粒的内化和通过独特途径的运输,该途径可逃避溶酶体等降解性隔室。在非髓鞘形成的雪旺细胞培养物中,脂质体与脂筏标志物霍乱毒素结合,并且其内化可被破坏脂筏或肌动蛋白聚合来抑制。相比之下,网格蛋白介导的内吞作用的药理学抑制对脂质体进入没有显著影响。为了评估脂质体靶向在组织中的功效,我们利用背根神经节的髓鞘外植体培养物和分离的膈膜制剂,这两者都包含周围神经元和髓鞘形成的雪旺细胞。在这些模型中,与周围肌肉组织相比,我们检测到脂质体优先进入神经元和神经胶质细胞。此外,通过肌肉内或静脉内注射进行的体内脂质体给药证实了颗粒被递送到有髓鞘的周围神经。在中枢神经系统中,我们在脉络丛上皮中检测到了脂质体,但在髓鞘化的白质区域或脑实质中没有检测到。所描述的纳米颗粒代表了一种新型的嗜神经递药载体,可将小分子治疗化合物、生物分子或成像试剂递送到周围神经元和雪旺细胞中,并为开发针对周围神经病变的有效疗法提供了重大进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51ff/3823803/0f709b2a5cf3/pone.0078724.g001.jpg

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