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趋化因子募集成年神经祖细胞进入多功能水凝胶,提供持续的 SDF-1α 释放和兼容的结构支撑。

Chemotactic recruitment of adult neural progenitor cells into multifunctional hydrogels providing sustained SDF-1α release and compatible structural support.

机构信息

Tissue Engineering Laboratories, VA Boston Healthcare System, Mail Stop 151 Research, 150 S. Huntington Ave., Boston, MA 02130, USA.

出版信息

FASEB J. 2013 Mar;27(3):1023-33. doi: 10.1096/fj.12-221515. Epub 2012 Nov 27.

Abstract

Without chemotactic cues and structural support, cavitary brain lesions typically fail to recruit endogenous neural progenitor cells (NPCs). Toward resolving this, we engineered multifunctional biomaterials comprising injectable gelatin-hydroxyphenylpropionic acid (Gtn-HPA) hydrogels and dextran sulfate/chitosan polyelectrolyte complex nanoparticles (PCNs) that delivered stromal cell-derived factor-1α (SDF-1α). Over 7 d of interface with in vitro tissue simulant containing adult rat hippocampal NPCs (aNPCs) and their neuronal progeny, Gtn-HPA/SDF-1α-PCN hydrogels promoted chemotactic recruitment to enhance infiltration of aNPCs by 3- to 45-fold relative to hydrogels that lacked SDF-1α or vehicles to sustain SDF-1α release. When cross-linked with 0.85-0.95 mM HO, Gtn-HPA/SDF-1α-PCN hydrogels provided optimally permissive structural support for migration of aNPCs. Specific matrix metalloproteinase (MMP) inhibitors revealed that 42, 30, and 55% of cell migration into Gtn-HPA/SDF-1α-PCN hydrogels involved MMP-2, 3, and 9, respectively, demonstrating the hydrogels to be compatible toward homing endogenous NPCs, given their expression of similar MMPs. Interestingly, PCNs utilized FGF-2 found in situ to induce chemokinesis, potentiate SDF-1α chemotactic recruitment, and increase proliferation of recruited cells, which collectively orchestrated a higher number of migrated aNPCs. Overall, Gtn-HPA/SDF-1α-PCN hydrogels prove to be promising biomaterials for injection into cavitary brain lesions to recruit endogenous NPCs and enhance neural tissue repair/regeneration.

摘要

没有趋化因子线索和结构支撑,空洞性脑损伤通常无法招募内源性神经祖细胞 (NPC)。为了解决这个问题,我们设计了多功能生物材料,包括可注射的明胶-对羟基苯丙酸 (Gtn-HPA) 水凝胶和葡聚糖硫酸盐/壳聚糖聚电解质复合物纳米颗粒 (PCN),用于递送基质细胞衍生因子-1α (SDF-1α)。在与含有成年大鼠海马 NPC (aNPC)及其神经元前体的体外组织模拟物界面接触超过 7 天后,Gtn-HPA/SDF-1α-PCN 水凝胶促进趋化性募集,使 aNPC 的浸润增加 3 到 45 倍,而缺乏 SDF-1α 的水凝胶或维持 SDF-1α 释放的载体则没有。当用 0.85-0.95 mM HO 交联时,Gtn-HPA/SDF-1α-PCN 水凝胶为 aNPC 的迁移提供了最佳的许可结构支持。特定基质金属蛋白酶 (MMP) 抑制剂表明,细胞向 Gtn-HPA/SDF-1α-PCN 水凝胶中的 42%、30%和 55%迁移分别涉及 MMP-2、3 和 9,这表明水凝胶与归巢内源性 NPC 兼容,因为它们表达类似的 MMP。有趣的是,PCN 利用原位存在的 FGF-2 诱导趋化运动,增强 SDF-1α 趋化性募集,并增加募集细胞的增殖,这共同协调了更多迁移的 aNPC。总的来说,Gtn-HPA/SDF-1α-PCN 水凝胶被证明是一种有前途的生物材料,可用于注射到空洞性脑损伤中,以招募内源性 NPC 并增强神经组织修复/再生。

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