Department of Pharmacy, University of Naples «Federico II», Via D. Montesano 49, Naples, Italy.
Department of Pharmacy, University of Pisa, Via B. Pisano 5, Pisa, Italy.
Eur J Med Chem. 2021 Oct 5;221:113517. doi: 10.1016/j.ejmech.2021.113517. Epub 2021 May 5.
Glucocorticoids represent the standard gold treatment of inflammation in asthmatic patients. More recently, HS has been described to exert positive effect on this disease. Bearing in mind that an improved pharmacological activity and a reduced toxicity can be obtained through hybridization of different molecules, simultaneously modulating multiple targets, we designed and synthesized novel betamethasone 17-valerate and triamcinolone acetonide hybrids with well-known HS-donor moieties. Synthesized compounds have been evaluated for the potential HS-releasing profile both in cell-free environment and into the cytosol of bronchial smooth muscle cells (BSMCs). The two hybrids 4b and 5b were investigated by molecular modelling studies and results indicated that the steric accessibility of the isothiocyanate carbon atom can account for their different HS releasing properties. Furthermore, the most promising derivatives 4b and 5b have been tested for inhibitory effect on mast cell degranulation and for the ability to induce cell membrane hyperpolarization in BSMCs. Significant inhibitory effect on mast cell degranulation was assessed, resulting to reduce β-hexosaminidase release more efficiently than the corresponding native drugs. Both compounds determined a massive membrane hyperpolarization of BSMCs and proved to be 4-fold more effective compared to reference compound NS1619. These effects represent an enrichment of the pharmacological activity of the native drugs.
糖皮质激素是治疗哮喘患者炎症的标准金疗法。最近,人们发现 HS 对这种疾病有积极的影响。鉴于通过杂交不同的分子,同时调节多个靶点,可以获得改善的药理活性和降低的毒性,我们设计并合成了具有已知 HS 供体部分的新型倍他米松 17-戊酸酯和曲安奈德杂合体。合成的化合物已经在无细胞环境中和支气管平滑肌细胞 (BSMC) 的细胞质中评估了潜在的 HS 释放特性。通过分子建模研究研究了两种杂合体 4b 和 5b,结果表明异硫氰酸酯碳原子的空间位阻可以解释它们不同的 HS 释放特性。此外,对最有前途的衍生物 4b 和 5b 进行了测试,以评估它们对肥大细胞脱颗粒的抑制作用以及诱导 BSMC 细胞膜超极化的能力。评估了对肥大细胞脱颗粒的显著抑制作用,导致比相应的天然药物更有效地减少 β-己糖胺酶的释放。这两种化合物都导致 BSMC 的大量膜超极化,并被证明比参考化合物 NS1619 有效 4 倍。这些作用代表了天然药物药理活性的增强。