Popovici Violeta, Matei Elena, Cozaru Georgeta Camelia, Bucur Laura, Gîrd Cerasela Elena, Schröder Verginica, Ozon Emma Adriana, Karampelas Oana, Musuc Adina Magdalena, Atkinson Irina, Rusu Adriana, Petrescu Simona, Mitran Raul-Augustin, Anastasescu Mihai, Caraiane Aureliana, Lupuliasa Dumitru, Aschie Mariana, Badea Victoria
Department of Microbiology and Immunology, Faculty of Dental Medicine, Ovidius University of Constanta, 7 Ilarie Voronca Street, 900684 Constanta, Romania.
Center for Research and Development of the Morphological and Genetic Studies of Malignant Pathology, Ovidius University of Constanta, CEDMOG, 145 Tomis Blvd., 900591 Constanta, Romania.
Antioxidants (Basel). 2022 Aug 19;11(8):1601. doi: 10.3390/antiox11081601.
lichens are known for their beneficial pharmacological effects with potential applications in oral medicine. This study aims to investigate the extract of (L.) Weber ex F.H. Wigg from the Călimani Mountains in canola oil as an oral pharmaceutical formulation. In the present work, bioadhesive oral films (F-UBO) with extract in canola oil (UBO) were formulated, characterized, and evaluated, evidencing their pharmacological potential. The UBO-loaded films were analyzed using standard methods regarding physicochemical and pharmacotechnical characteristics to verify their suitability for topical administration on the oral mucosa. F-UBO suitability confirmation allowed for the investigation of antimicrobial and anticancer potential. The antimicrobial properties against ATCC 25923, ATCC 27353, ATCC 10231, and ATCC 22019 were evaluated by a resazurin-based 96-well plate microdilution method. The brine shrimp lethality assay (BSL assay) was the animal model cytotoxicity prescreen, followed by flow cytometry analyses on normal blood cells and oral epithelial squamous cell carcinoma CLS-354 cell line, determining cellular apoptosis, caspase-3/7 activity, nuclear condensation and lysosomal activity, oxidative stress, cell cycle, and cell proliferation. The results indicate that a UBO-loaded bioadhesive film's weight is 63 ± 1.79 mg. It contains 315 µg UBO, has a pH = 6.97 ± 0.01, a disintegration time of 124 ± 3.67 s, and a bioadhesion time of 86 ± 4.12 min, being suitable for topical administration on the oral mucosa. F-UBO showed moderate dose-dependent inhibitory effects on the growth of both bacterial and fungal strains. Moreover, in CLS-354 tumor cells, F-UBO increased oxidative stress, diminished DNA synthesis, and induced cell cycle arrest in G0/G1. All these properties led to considering UBO-loaded bioadhesive oral films as a suitable phytotherapeutic formulation with potential application in oral infections and neoplasia.
地衣以其有益的药理作用而闻名,在口腔医学中具有潜在应用价值。本研究旨在研究来自卡利马尼山脉的(L.)Weber ex F.H. Wigg在菜籽油中的提取物作为一种口腔药物制剂。在当前工作中,制备、表征并评估了含有菜籽油中提取物(UBO)的生物粘附口腔膜(F-UBO),证明了它们的药理潜力。使用关于物理化学和药剂学特性的标准方法分析负载UBO的膜,以验证其在口腔粘膜上局部给药的适用性。F-UBO适用性的确认使得能够研究其抗菌和抗癌潜力。通过基于刃天青的96孔板微量稀释法评估对ATCC 25923、ATCC 27353、ATCC 10231和ATCC 22019的抗菌性能。卤虫致死率测定(BSL测定)是动物模型细胞毒性预筛选,随后对正常血细胞和口腔上皮鳞状细胞癌CLS-354细胞系进行流式细胞术分析,确定细胞凋亡、半胱天冬酶-3/7活性、核浓缩和溶酶体活性、氧化应激、细胞周期和细胞增殖。结果表明,负载UBO的生物粘附膜重量为63±1.79毫克。它含有315微克UBO,pH = 6.97±0.01,崩解时间为124±3.67秒,生物粘附时间为86±4.12分钟,适用于在口腔粘膜上局部给药。F-UBO对细菌和真菌菌株的生长均表现出适度的剂量依赖性抑制作用。此外,在CLS-354肿瘤细胞中,F-UBO增加了氧化应激,减少了DNA合成,并诱导细胞周期停滞在G0/G1期。所有这些特性使得负载UBO的生物粘附口腔膜被认为是一种合适的植物治疗制剂,在口腔感染和肿瘤形成方面具有潜在应用价值。