Chaali Mona, Lecka Joanna, Suresh Gayatri, Salem Mabrouka, Brar Satinder Kaur, Hernandez-Galan Leticia, Sévigny Jean, Avalos-Ramirez Antonio
Institut National de la Recherche Scientifique Centre - Eau Terre Environnement (INRS ETE) Québec QC Canada.
Département de Microbiologie-Infectiologie et d'Immunologie Faculté de Médecine Université Laval, Pavillon Ferdinand-Vandry Québec QC Canada.
Eng Life Sci. 2018 Mar 6;18(6):359-367. doi: 10.1002/elsc.201700160. eCollection 2018 Jun.
An indiscriminate use of antibiotics in humans and animals has led to the widespread selection of antibiotic-resistance, thus constricting the use of antibiotics. A possible solution to counter this problem could be to develop alternatives that can boost the host immunity, thus reducing the quantity and frequency of antibiotic use. In this work, for the first time, citric acid and laccase were used as extracellular inducers of melanin production in yeast cells and human cell lines. It is proposed that the formulation of laccase and citric acid together could further promote melatonin-stimulated, melanocyte-derived melanin production. Melanization as a probe of immunity described in this study, is an easy and a rapid test compared to other immunity tests and it allows performing statistical analyses. The results showed the synergistic effect of citric acid and laccase on melanin production by yeast cells, with significant statistical differences compared to all other tested conditions (: 0.0005-0.005). Laccase and citric acid together boosted melanin production after 8 days of incubation. An increase in melanin production by two human colon cells lines (Cacao-2/15 and HT-29) was observed on supplementation with both laccase and citric acid in the cell growth medium. Produced melanin showed antimicrobial properties similar to antibiotics. Therefore, a formulation with citric acid and laccase may prove to be an excellent alternative to reduce the antibiotic use in human and animal subjects.
人类和动物中抗生素的滥用导致了抗生素耐药性的广泛产生,从而限制了抗生素的使用。解决这一问题的一个可能办法是开发能够增强宿主免疫力的替代物,从而减少抗生素的使用量和使用频率。在这项研究中,首次将柠檬酸和漆酶用作酵母细胞和人类细胞系中黑色素产生的细胞外诱导剂。有人提出,漆酶和柠檬酸一起配制可以进一步促进褪黑素刺激的、黑素细胞衍生的黑色素生成。本研究中描述的黑化作为一种免疫探针,与其他免疫测试相比是一种简单快速的测试,并且允许进行统计分析。结果显示了柠檬酸和漆酶对酵母细胞黑色素产生的协同作用,与所有其他测试条件相比具有显著的统计学差异(P:0.0005 - 0.005)。孵育8天后,漆酶和柠檬酸共同促进了黑色素的产生。在细胞生长培养基中添加漆酶和柠檬酸后,观察到两个人类结肠细胞系(Cacao - 2/15和HT - 29)的黑色素生成增加。产生的黑色素显示出与抗生素相似的抗菌特性。因此,含有柠檬酸和漆酶的制剂可能被证明是减少人类和动物抗生素使用的极佳替代品。