Nootropic nanocomplex with enhanced blood-brain barrier permeability for treatment of traumatic brain injury-associated neurodegeneration

被引:16
作者
Park, Jeongmin [1 ,5 ]
Choi, Eunshil [1 ]
Shin, Seulgi [2 ]
Lim, Sungsu [2 ]
Kim, Dohee [2 ]
Baek, Suji [6 ]
Lee, Kang Pa [6 ]
Lee, Jae Jun [7 ]
Lee, Byeong Han [7 ]
Kim, Bokyung [6 ]
Jeong, Keunsoo [1 ]
Baik, Ja-Hyun [5 ]
Kim, Yun Kyung [2 ,3 ]
Kim, Sehoon [1 ,3 ,4 ]
机构
[1] Korea Inst Sci & Technol, Ctr Theragnosis, Seoul 02792, South Korea
[2] Korea Inst Sci & Technol, Convergence Res Ctr Diag Treatment & Care Syst De, Seoul 02792, South Korea
[3] Korea Univ Sci & Technol UST, Div Biomed Sci & Technol, KIST Sch, Seoul 02792, South Korea
[4] Korea Univ, KU KIST Grad Sch Converging Sci & Technol, Seoul 02841, South Korea
[5] Korea Univ, Dept Life Sci, Sch Life Sci & Biotechnol, Seoul 02841, South Korea
[6] Konkuk Univ, Sch Med, Dept Physiol, 120 Neungdong Ro, Seoul 05029, South Korea
[7] Osong Med Innovat Fdn, Lab Anim Ctr, 123 Osongsaengmyeong Ro, Chungbuk 28160, South Korea
基金
新加坡国家研究基金会;
关键词
Methylene blue; Pluronic block copolymer; Blood-brain barrier; Neuroprotection; Traumatic brain injury; PLURONIC BLOCK-COPOLYMERS; METHYLENE-BLUE; DRUG; NANOPARTICLES; DELIVERY; THERAPY; CELLS;
D O I
10.1016/j.jconrel.2018.06.021
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Traumatic brain injury (TBI) is an intracranial injury which can induce immediate neuroinflammation and long-term neurological deficits. Methylene blue (MB) as a nootropic has a great potential to treat neurodegeneration after TBI because of its anti-inflmmatory and neuroprotective functions. However, its limited accumulation to the brain across the blood-brain barrier (BBB) remains a major hurdle to be overcome. In this paper, we present a polymer surfactant-encapsulated nanocomplex of MB as a delivery system with high BBB permeability for efficacious treatment of TBI-induced neurodegeneration. MB was formulated via electrostatically/hydrophobically directed assembly with fatty acid and Pluronic surfactant (F-127 or F-68) to construct nanocomplexes of two different colloidal sizes (< 10 nm and similar to 108 nm in hydrodynamic diameter for NanoMB-127 and NanoMB-68, respectively). Compared to uncomplexed free MB, formulation into the ultrasmall nanocomplex (NanoMB-127) significantly enhanced the uptake of MB by blood-brain vascular endothelial bEnd3 cells in vitro, and indeed improved its BBB penetration upon systemic administration to normal mice in vivo. However, large-size NanoMB-68 showed negligible BBB crossing despite the efficient bEnd3 cell internalization in vitro, probably due to the unfavorable pharmacokinetic profile associated with its large particle size. By virtue of the efficient BBB penetration and cellular uptake, ultrasmall NanoMB-127 was shown to distinctively reduce the expression level of an inflammatory cytokine with no notable toxicity in vitro and also considerably prevent the neurodegeneration after TBI in mice at much lower doses than free MB. Overall, the Pluronic-supported nanocomplexation method allows efficient brain delivery of MB, offering a novel way of enhancing the efficacy of neurotherapeutics to treat brain diseases.
引用
收藏
页码:152 / 159
页数:8
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