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首页> 外文期刊>Biomaterials >Sustained local delivery of bioactive nerve growth factor in the central nervous system via tunable diblock copolypeptide hydrogel depots
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Sustained local delivery of bioactive nerve growth factor in the central nervous system via tunable diblock copolypeptide hydrogel depots

机译:通过可调二嵌段共多肽水凝胶贮库在局部神经系统中持续局部递送生物活性神经生长因子

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Biomaterial vehicles that can provide sustained, site-specific molecular delivery in the central nervous system (CNS) have potential for therapeutic and investigative applications. Here, we present in vitro and in vivo proof of principle tests of diblock copolypeptide hydrogels (DCH) to serve as depots for sustained local release of protein effector molecules. We tested two DCH, K 180L 20 and E 180L 20, previously shown to self-assemble into biocompatible, biodegradable deposits that persist four to eight weeks after injection into mouse forebrain. In vitro tests demonstrated sustained release from dialysis cassettes of the representative protein, lysozyme, dissolved in K 180L 20 or E 180L 20 hydrogels. Release time in vitro varied in relation to DCH charge and mechanical properties, and ionic strength of the media. To evaluate bioactive protein delivery in vivo, we used nerve growth factor (NGF) and measured the size of mouse forebrain cholinergic neurons, which respond to NGF with cellular hypertrophy. For in vivo tests, the storage modulus of DCH depots was tuned to just below that of CNS tissue. In comparison with NGF injected in buffer, depots of NGF dissolved in either K 180L 20 or E 180L 20 provided significantly longer delivery of NGF bioactivity, maintaining hypertrophy of local forebrain cholinergic neurons for at least 4 weeks and inducing hypertrophy a further distance away (up to 5 mm) from injection sites. These findings show that depots of DCH injected into CNS can provide sustained delivery within the blood-brain barrier of a bioactive protein growth factor that exerts a predicted, quantifiable effect on local cells over a prolonged subacute time.
机译:可以在中枢神经系统(CNS)中提供持续的,特定于位点的分子传递的生物材料载体具有治疗和研究应用的潜力。在这里,我们介绍了二嵌段共多肽水凝胶(DCH)用作蛋白质效应分子持续局部释放的储库的原理和实验的体外和体内证明。我们测试了两种DCH,即K 180L 20和E 180L 20,先前已证明它们可以自组装成生物相容性,可生物降解的沉积物,并在注入小鼠前脑后四到八周持续存在。体外试验表明,溶解在K 180L 20或E 180L 20水凝胶中的代表性蛋白质溶菌酶从透析盒中持续释放。体外释放时间与DCH电荷和机械性能以及介质的离子强度有关。为了评估体内的生物活性蛋白的传递,我们使用了神经生长因子(NGF)并测量了小鼠前脑胆碱能神经元的大小,该神经元对细胞生长肥大的NGF有反应。对于体内测试,将DCH储库的储能模量调整到恰好低于CNS组织的储能模量。与注入缓冲液中的NGF相比,溶解在K 180L 20或E 180L 20中的NGF贮库提供了更长的NGF生物活性传递,从而维持了局部前脑胆碱能神经元的肥大至少4周,并在距离较远的地方诱发了肥大(向上到5毫米)。这些发现表明,注入中枢神经系统的DCH储库可以在血脑屏障内提供生物活性蛋白生长因子的持续递送,该生物活性蛋白生长因子可在延长的亚急性时间内对局部细胞产生预期的,可量化的作用。

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