Lenzi Monia, Gasperini Sofia, Bilel Sabrine, Corli Giorgia, Rombolà Francesca, Hrelia Patrizia, Marti Matteo
Department of Pharmacy and Biotechnology, Alma Mater Studiorum University of Bologna, 40126 Bologna, Italy.
Department of Translational Medicine, Section of Legal Medicine, LTTA Center and University Center of Gender Medicine, University of Ferrara, 44121 Ferrara, Italy.
Int J Mol Sci. 2025 May 26;26(11):5084. doi: 10.3390/ijms26115084.
Since 2019, a growing number of structurally diverse, non-Fentanyl-related novel synthetic opioids (NSOs) have emerged, but little is still known on the toxic profile of several of the molecules belonging to this class. Regarding long-term toxicity, few studies have investigated the genotoxic potential of NSOs, and no genotoxic data at all are available for the subclass of Brorphine-like benzimidazolone opioids. To deepen and broaden our understanding of their toxicological profile, this study was aimed at evaluating the genotoxicity of Brorphine and four of its analogues (Orphine, Fluorphine, Chlorphine and Iodorphine) on human lymphoblastoid TK6 cells employing a flow cytometric protocol of the "In Vitro Mammalian Cell Micronucleus (MN) test". The results show a statistically significant MNi increase for Fluorphine, Chlorphine and Iodorphine, but not for Brorphine and Orphine, demonstrating for the first three the ability to induce chromosomal damage. Afterwards, Brorphine and Orphine were tested on TK6 cells also in the presence of an exogenous metabolic activation system (S9 mix) to consider the possible genotoxic hazard posed by their metabolites as well. Also, under this experimental condition, no statistically significant increase in the MNi frequency was detected.
自2019年以来,越来越多结构多样、与芬太尼无关的新型合成阿片类物质(NSO)出现,但对于这类物质中几种分子的毒性特征仍知之甚少。关于长期毒性,很少有研究调查NSO的遗传毒性潜力,对于溴啡类苯并咪唑酮阿片类物质这一亚类,根本没有遗传毒性数据。为了加深和拓宽我们对其毒理学特征的理解,本研究旨在采用“体外哺乳动物细胞微核(MN)试验”的流式细胞术方案,评估溴啡及其四种类似物(奥啡、氟啡、氯啡和碘啡)对人淋巴母细胞TK6细胞的遗传毒性。结果显示,氟啡、氯啡和碘啡的微核率有统计学显著增加,而溴啡和奥啡则没有,这表明前三种物质具有诱导染色体损伤的能力。之后,还在存在外源性代谢活化系统(S9混合物)的情况下,对TK6细胞进行了溴啡和奥啡的测试,以考虑其代谢产物可能带来的遗传毒性危害。同样,在这种实验条件下,未检测到微核率有统计学显著增加。