Bozza Annalisa, Bordano Valentina, Marengo Arianna, Muntoni Elisabetta, Marini Elisabetta, Lazzarato Loretta, Dianzani Chiara, Monge Chiara, Rosa Arianna Carolina, Cangemi Luigi, Valsania Maria Carmen, Colitti Barbara, Camisassa Ezio, Battaglia Luigi
Department of Drug Science and Technology, University of Turin, Via Pietro Giuria 9, 10125 Turin, Italy.
Department of Chemistry, University of Turin, Via Pietro Giuria 7, 10125 Torino, Italy.
Pharmaceutics. 2024 Aug 8;16(8):1051. doi: 10.3390/pharmaceutics16081051.
Cerebrovascular and neurological diseases are characterized by neuroinflammation, which alters the neurovascular unit, whose interaction with the choroid plexus is critical for maintaining brain homeostasis and producing cerebrospinal fluid. Dysfunctions in such process can lead to conditions such as idiopathic normal pressure hydrocephalus, a common disease in older adults. Potential pharmacological treatments, based upon intranasal administration, are worthy of investigation because they might improve symptoms and avoid surgery by overcoming the blood-brain barrier and avoiding hepatic metabolism. Nasal lipid nanocarriers, such as solid lipid nanoparticles, may increase the nasal retention and permeation of drugs. To this aim, green solid lipid nanoparticles, obtained by coacervation from natural soaps, are promising vehicles due to their specific lipid matrix composition and the unsaponifiable fraction, endowed with antioxidant and anti-inflammatory properties, and thus suitable for restoring the neurovascular unit function. In this experimental work, such green solid lipid nanoparticles, fully characterized from a physico-chemical standpoint, were loaded with a drug combination suitable for reverting hydrocephalus symptoms, allowing us to obtain a non-toxic formulation, a reduction in the production of the cerebrospinal fluid in vitro, and a vasoprotective effect on an isolated vessel model. The pharmacokinetics and biodistribution of fluorescently labelled nanoparticles were also tested in animal models.
脑血管和神经疾病的特征是神经炎症,它会改变神经血管单元,而神经血管单元与脉络丛的相互作用对于维持脑内稳态和产生脑脊液至关重要。这一过程中的功能障碍可导致诸如特发性正常压力脑积水等病症,这是老年人中的常见疾病。基于鼻内给药的潜在药物治疗值得研究,因为它们可能改善症状并通过克服血脑屏障和避免肝脏代谢来避免手术。鼻用脂质纳米载体,如固体脂质纳米颗粒,可能会增加药物在鼻腔内的滞留和渗透。为此,通过天然皂凝聚法获得的绿色固体脂质纳米颗粒因其特定的脂质基质组成和具有抗氧化和抗炎特性的不皂化物部分而成为有前景的载体,因此适合恢复神经血管单元功能。在这项实验工作中,这种从物理化学角度进行了充分表征的绿色固体脂质纳米颗粒负载了一种适合逆转脑积水症状的药物组合,使我们能够获得一种无毒制剂,在体外减少脑脊液的产生,并对离体血管模型产生血管保护作用。还在动物模型中测试了荧光标记纳米颗粒的药代动力学和生物分布。