Bari Elia, Perteghella Sara, Rassu Giovanna, Gavini Elisabetta, Petretto Giacomo Luigi, Bonferoni Maria Cristina, Giunchedi Paolo, Torre Maria Luisa
Department of Pharmaceutical Sciences, University of Piemonte Orientale, Novara, Italy.
Department of Drug Sciences, University of Pavia, Pavia, Italy.
Front Pharmacol. 2023 Mar 10;14:1129882. doi: 10.3389/fphar.2023.1129882. eCollection 2023.
Initiation and progression of intervertebral disk degeneration are linked to oxidative stress, with reactive oxygen species being a key factor. Therefore, as a potentially novel approach able to regenerate the damaged intervertebral disk, this work aimed to prepare an "active per sé" drug delivery system by combining sericin and crocetin: both are bioactive compounds with antioxidant, anti-inflammatory, immunomodulant and regenerative properties. In detail, sericin nanoparticles were prepared using crocetin as a cross-linker; then, the nanoparticle dispersions were dried by spray drying as it is (NP), with an excess of sericin (NPS) or crocin/crocetin (NPMix), obtaining three microparticle formulations. Before drying, the nanoparticles were nanometric (about 250 nm), with a negative surface charge, and appeared spherical and smooth. Following the drying process, spherical and smooth microparticles were obtained, with a mean diameter of about 1.7-2.30 μm. NPMix was the most active in antioxidant and anti-tyrosinase activities, likely due to the excess of crocin/crocetin, while NPS had the best anti-elastase activity, likely due to sericin in excess. Furthermore, all the formulations could prevent oxidative stress damage on nucleus pulposus cells, with NPMix being the best. Overall, the intrinsic anti-tyrosinase and anti-elastase activities and the ability to protect from oxidative stress-induced damages justify future investigations of these "active per sé" formulations in treating or preventing intervertebral disk degeneration.
椎间盘退变的起始和进展与氧化应激相关,活性氧是关键因素。因此,作为一种能够再生受损椎间盘的潜在新方法,本研究旨在通过将丝胶蛋白和藏红花素结合来制备一种“自身活性”药物递送系统:二者均为具有抗氧化、抗炎、免疫调节和再生特性的生物活性化合物。具体而言,以藏红花素作为交联剂制备丝胶蛋白纳米颗粒;然后,将纳米颗粒分散体直接喷雾干燥(NP)、加入过量丝胶蛋白(NPS)或藏红花素/藏红花酸(NPMix)进行干燥,得到三种微粒制剂。干燥前,纳米颗粒呈纳米级(约250nm),表面带负电荷,呈球形且表面光滑。干燥后,得到球形且表面光滑的微粒,平均直径约为1.7 - 2.30μm。NPMix在抗氧化和抗酪氨酸酶活性方面最具活性,可能归因于藏红花素/藏红花酸过量,而NPS具有最佳的抗弹性蛋白酶活性,可能归因于丝胶蛋白过量。此外,所有制剂均能预防对髓核细胞的氧化应激损伤,其中NPMix效果最佳。总体而言,其内在的抗酪氨酸酶和抗弹性蛋白酶活性以及保护细胞免受氧化应激诱导损伤的能力,为进一步研究这些“自身活性”制剂在治疗或预防椎间盘退变方面提供了依据。