Local delivery of minocycline-loaded PLGA nanoparticles from gelatin-coated neural implants attenuates acute brain tissue responses in mice

被引:18
|
作者
Holmkvist, Alexander Dontsios [1 ,2 ]
Agorelius, Johan [1 ,3 ]
Forni, Matilde [1 ]
Nilsson, Ulf J. [2 ]
Linsmeier, Cecilia Eriksson [1 ]
Schouenborg, Jens [1 ,3 ]
机构
[1] Lund Univ, Dept Expt Med Sci, Neuronano Res Ctr, Fac Med, Bldg 404 A2,Scheelevagen 2, S-22381 Lund, Sweden
[2] Lund Univ, Dept Chem, Ctr Anal & Synth, Box 124, S-22100 Lund, Sweden
[3] Lund Univ, NanoLund, Prof Gatan 1, S-22363 Lund, Sweden
基金
瑞典研究理事会;
关键词
Neural interface; Minocycline; Gelatin; PLGA; Nanoparticles; Drug-delivery-systems; Biocompatibility; Tissue responses; Immunohistochemistry; Brain; IN-VIVO; NEUROPROTECTION; ACTIVATION; MICROGLIA; DYNAMICS; SYSTEMS;
D O I
10.1186/s12951-020-0585-9
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background Neural interfaces often elicit inflammatory responses and neuronal loss in the surrounding tissue which adversely affect the function and longevity of the implanted device. Minocycline, an anti-inflammatory pharmaceutics with neuroprotective properties, may be used for reducing the acute brain tissue responses after implantation. However, conventional administration routes require high doses which can cause adverse systemic side effects. Therefore, the aim of this study was to develop and evaluate a new drug-delivery-system for local and sustained administration of minocycline in the brain. Methods Stainless steel needles insulated with Parylene-C were dip-coated with non-crosslinked gelatin and minocycline-loaded PLGA nanoparticles (MC-NPs) were incorporated into the gelatin-coatings by an absorption method and subsequently trapped by drying the gelatin. Parylene-C insulated needles coated only with gelatin were used as controls. The expression of markers for activated microglia (CD68), all microglia (CX3CR1-GFP), reactive astrocytes (GFAP), neurons (NeuN) and all cell nuclei (DAPI) surrounding the implantation sites were quantified at 3 and 7 days after implantation in mice. Results MC-NPs were successfully incorporated into gelatin-coatings of neural implants by an absorption method suitable for thermosensitive drug-loads. Immunohistochemical analysis of the in vivo brain tissue responses, showed that MC-NPs significantly attenuate the activation of microglial cells without effecting the overall population of microglial cells around the implantation sites. A delayed but significant reduction of the astrocytic response was also found in comparison to control implants. No effect on neurons or total cell count was found which may suggest that the MC-NPs are non-toxic to the central nervous system. Conclusions A novel drug-nanoparticle-delivery-system was developed for neural interfaces and thermosensitive drug-loads. The local delivery of MC-NPs was shown to attenuate the acute brain tissue responses nearby an implant and therefore may be useful for improving biocompatibility of implanted neuro-electronic interfaces. The developed drug-delivery-system may potentially also be used for other pharmaceutics to provide highly localized and therefore more specific effects as compared to systemic administration.
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页数:12
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  • [1] Local delivery of minocycline-loaded PLGA nanoparticles from gelatin-coated neural implants attenuates acute brain tissue responses in mice
    Alexander Dontsios Holmkvist
    Johan Agorelius
    Matilde Forni
    Ulf J. Nilsson
    Cecilia Eriksson Linsmeier
    Jens Schouenborg
    Journal of Nanobiotechnology, 18