Catalano Alessia, Iacopetta Domenico, Rosato Antonio, Salvagno Lara, Ceramella Jessica, Longo Francesca, Sinicropi Maria Stefania, Franchini Carlo
Department of Pharmacy-Drug Sciences, University of Bari "Aldo Moro", 70126 Bari, Italy.
Department of Pharmacy, Health and Nutritional Sciences, University of Calabria, 87036 Arcavacata, Italy.
Antibiotics (Basel). 2021 Feb 19;10(2):204. doi: 10.3390/antibiotics10020204.
Triclocarban (TCC), a broad-spectrum lipophilic antimicrobial agent, is a diarylurea derivative that has been used for more than 60 years as a major ingredient of toys, clothing, food packaging materials, food industry floors, medical supplies and especially of personal care products, such as soaps, toothpaste and shampoo. In September 2016, the U.S. FDA banned nineteen antimicrobial ingredients, including TCC, in over-the-counter consumer antiseptic wash products, due to their toxicity. Withdrawal of TCC has prompted efforts to search for new antimicrobial compounds. In this paper, we present the synthesis and biological evaluation, as antibiotic and non-cytotoxic agents, of a series of diarylureas, analogues of TCC. These compounds are characterized by an intriguingly simple chemistry and can be easily synthesized. Among the synthesized compounds, and emerge as the most interesting compounds as they show the same activity of TCC (MIC = 16 µg/mL) against and a higher activity than TCC against (MIC = 32 µg/mL versus MIC = 64 µg/mL). Moreover, and show no cytotoxicity towards the human mammary epithelial cells MCF-10A and embryonic kidney epithelial cells Hek-293, in opposition to TCC, which exhibits a marked cytotoxicity on the same cell lines and shows a good antitumor activity on a panel of cell lines tested.
三氯生(TCC)是一种广谱亲脂性抗菌剂,是一种二芳基脲衍生物,60多年来一直用作玩具、服装、食品包装材料、食品工业地板、医疗用品,尤其是个人护理产品(如肥皂、牙膏和洗发水)的主要成分。2016年9月,由于其毒性,美国食品药品监督管理局(FDA)禁止了19种抗菌成分,包括三氯生,用于非处方消费抗菌洗涤产品中。三氯生的停用促使人们努力寻找新的抗菌化合物。在本文中,我们介绍了一系列作为三氯生类似物的二芳基脲的合成及其作为抗生素和非细胞毒性剂的生物学评价。这些化合物的化学性质极其简单,易于合成。在合成的化合物中,[具体化合物名称1]和[具体化合物名称2]最为有趣,因为它们对[细菌名称1]显示出与三氯生相同的活性(最低抑菌浓度MIC = 16 µg/mL),而对[细菌名称2]的活性高于三氯生(MIC = 32 µg/mL对MIC = 64 µg/mL)。此外,[具体化合物名称1]和[具体化合物名称2]对人乳腺上皮细胞MCF - 10A和胚胎肾上皮细胞Hek - 293没有细胞毒性,而三氯生则对相同细胞系表现出明显的细胞毒性,并在一组测试的细胞系中显示出良好的抗肿瘤活性。