Polak-Berecka Magdalena, Boguta Patrycja, Cieśla Jolanta, Bieganowski Andrzej, Skrzypek Tomasz, Czernecki Tomasz, Waśko Adam
Department of Biotechnology, Human Nutrition and Science of Food Commodities, University of Life Sciences in Lublin, Lublin, Poland.
Institute of Agrophysics Polish Academy of Sciences, Doświadczalna 4, 20-290, Lublin, Poland.
Appl Microbiol Biotechnol. 2017 Apr;101(8):3415-3425. doi: 10.1007/s00253-016-8048-9. Epub 2016 Dec 21.
Accumulation of toxic metal ions in food and water is nowadays a growing health-related problem. One detoxification method involves the use of microorganisms naturally inhabiting the gastrointestinal tract (GIT). The purpose of this study was to prove that lactic acid bacteria derived from the GIT are able to effectively remove Cd from water solution. Seven strains of lactobacilli, out of 11 examined, showed tolerance to high concentrations of cadmium ions. The metal-removal efficiencies of these seven lactobacilli ranged from 6 to 138.4 μg/h mg. Among these bacteria, Lactobacillus gallinarum and Lactobacillus crispatus belonged to the highest (85%) Cd-removal efficiency class. An analysis of the zeta potential (ζ) indicated that the bacterial cell surface had a negative charge at the pH ranging from 3 to 10. The presence of carboxyl, amide, and phosphate groups was favorable for Cd binding to the cell surface, which found confirmation in FTIR-ATR spectra. Elemental SEM/EDS analysis and TEM imaging not only confirmed the adsorption of Cd on the cell envelope but also gave us a reason to suppose that Lb. crispatus accumulates metal ions inside the cell. Our findings open perspectives for further research on the new biological function of GIT lactobacilli as natural biosorbents.
如今,食品和水中有毒金属离子的积累是一个日益严重的健康相关问题。一种解毒方法涉及使用自然栖息于胃肠道(GIT)的微生物。本研究的目的是证明源自GIT的乳酸菌能够有效去除水溶液中的镉。在11株受试乳酸菌中,有7株对高浓度镉离子具有耐受性。这7株乳酸菌的金属去除效率在6至138.4μg/h mg之间。在这些细菌中,鸡源乳酸菌和卷曲乳杆菌属于镉去除效率最高(85%)的类别。zeta电位(ζ)分析表明,在pH值为3至10的范围内,细菌细胞表面带负电荷。羧基、酰胺基和磷酸基团的存在有利于镉与细胞表面结合,这在傅里叶变换红外衰减全反射光谱(FTIR-ATR)中得到了证实。元素扫描电子显微镜/能谱分析(SEM/EDS)和透射电子显微镜成像不仅证实了镉在细胞包膜上的吸附,还使我们有理由推测卷曲乳杆菌在细胞内积累金属离子。我们的研究结果为进一步研究GIT乳酸菌作为天然生物吸附剂的新生物学功能开辟了前景。