Cristaldi Martina, Olivieri Melania, Lupo Gabriella, Anfuso Carmelina D, Pezzino Salvatore, Rusciano Dario
a Sooft italia SpA , Catania , Italy.
b BIOMETEC , University of Catania , Catania , Italy.
Cutan Ocul Toxicol. 2018 Mar;37(1):71-76. doi: 10.1080/15569527.2017.1347942. Epub 2017 Jul 18.
Preservatives are used in multi-dose ophthalmic topical medications in order to prevent contamination by bacteria and fungi. However, prolonged use of preserved eye drops, as it may happen in dry eye or glaucoma, may damage cells of the ocular surface. Therefore, an important goal is to find preservatives with low toxicity which are mild to host cells, still able to prevent drug contamination so to maintain their sterility and efficacy. Hence, aim of this study has been to compare the relative toxicity on a rabbit corneal cell line of a new preservative, made by the association of N-hydroxy-methyl-glycinate (NIG) with disodium-ethylene diamine tetra-acetate (EDTA), with other known and widely used eye-drops preservatives.
Rabbit corneal cells (SIRC) were tested either in 96-well plates or in suspension culture. Treatments with preservatives (used at known bacteriostatic concentrations) included: benzalkonium chloride (BAK), polyquaternium-1 (PQ-1), sodium perborate (SP: NaBO HO), and NIG ± EDTA at different concentrations (0.001% and 0.002%), and different treatment times (from 30 minutes to 120 hours). At the end of treatment, cell survival was evaluated by a specific spectrophotometric method through the metabolic conversion of MTT [3-(4,5-dimethylthiazol-2-yl) 2, 5-diphenyltetrazolium bromide] into formazan crystals.
Almost no cell toxicity was evident for NIG and SP at either concentration (0.001% or 0.002%), while a low toxicity was observed for PQ-1 (62% at the highest dose at 120 hours). BAK, as expected, showed the highest toxicity (60-80% at 30 minutes, and over 90% from eight hours onward). EDTA 0.1% alone or in combination with NIG 0.002%, showed no toxicity at 24 hours, and even resulted in cell growth promotion (46% and 38%, respectively), after 48 hours of treatment.
These data show that the new preservative NIG/EDTA, at doses known to have effective antimicrobial properties, has a very low toxicity on corneal cells, and so it can be safely used in multi-dose eye drops.
多剂量眼科局部用药中使用防腐剂是为了防止细菌和真菌污染。然而,在干眼症或青光眼等情况下可能会长期使用含有防腐剂的滴眼液,这可能会损害眼表细胞。因此,一个重要目标是找到对宿主细胞温和、毒性低且仍能防止药物污染以保持其无菌性和有效性的防腐剂。因此,本研究的目的是比较一种由N - 羟甲基甘氨酸(NIG)与乙二胺四乙酸二钠(EDTA)组合而成的新型防腐剂与其他已知且广泛使用的滴眼液防腐剂对兔角膜细胞系的相对毒性。
兔角膜细胞(SIRC)在96孔板或悬浮培养中进行测试。用已知抑菌浓度的防腐剂进行处理,包括:苯扎氯铵(BAK)、聚季铵盐 - 1(PQ - 1)、过硼酸钠(SP:NaBO₃·H₂O)以及不同浓度(0.001%和0.002%)和不同处理时间(30分钟至120小时)的NIG ± EDTA。处理结束时,通过特定的分光光度法,通过将MTT [3 -(4,5 - 二甲基噻唑 - 2 - 基)- 2,5 - 二苯基四氮唑溴盐]代谢转化为甲臜晶体来评估细胞存活率。
NIG和SP在两种浓度(0.001%或0.002%)下几乎均未表现出明显的细胞毒性,而PQ - 1表现出低毒性(在120小时最高剂量时为62%)。正如预期的那样,BAK表现出最高的毒性(30分钟时为60 - 80%,8小时后超过90%)。单独的0.1% EDTA或与0.002% NIG组合使用,在24小时时未表现出毒性,甚至在处理48小时后导致细胞生长促进(分别为46%和38%)。
这些数据表明,新型防腐剂NIG/EDTA在已知具有有效抗菌特性的剂量下,对角膜细胞毒性非常低,因此可安全用于多剂量滴眼液。