Jacobson Reed, Castonguay Colton, Elias Mikael H
Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, St. Paul, MN, 55108, USA.
Biotechnology Institute, St. Paul, MN, 55108, USA.
Sci Rep. 2025 Jul 28;15(1):27435. doi: 10.1038/s41598-025-12623-1.
Enzymes with industrial potential often face limitations due to stability and longevity constraints. Thermostable quorum quenching lactonases are appealing biotechnology tools for controlling microbial pathogenicity and biofilm formation via the interference of quorum sensing. However, the effective formulation of these enzymes remains a challenge. Here, we evaluate the resistance and activity of two thermostable quorum quenching lactonase enzymes (SsoPox and GcL) across diverse formulations relevant to industrial applications. We systematically tested these enzymes with 16 different crop adjuvants (including oils, an anti-foaming agent, surfactants, deposition aids, a water conditioner, and a sticking agent) over a 210-day period, demonstrating broad compatibility except with oil-based adjuvants. Additionally, both enzymes maintained their activity when incorporated into five different coating bases (acrylic, silicone, polyurethane, epoxy, and latex) with activity levels varying according to polymer type. Further investigation of enzymatic acrylic coating characterized the effects of salt water and temperature on enzyme activity levels. Functionalized coatings maintained remarkable stability over 250 days in both wet and dry conditions. These findings establish a practical demonstration and framework for integrating quorum quenching lactonases into industrial materials and formulations, significantly advancing their potential for 'real-world' applications for microbial control across multiple sectors.
具有工业潜力的酶常常因稳定性和寿命限制而面临局限。热稳定群体淬灭内酯酶是通过干扰群体感应来控制微生物致病性和生物膜形成的有吸引力的生物技术工具。然而,这些酶的有效制剂仍然是一个挑战。在此,我们评估了两种热稳定群体淬灭内酯酶(SsoPox和GcL)在与工业应用相关的各种制剂中的抗性和活性。我们在210天的时间里用16种不同的作物助剂(包括油类、一种消泡剂、表面活性剂、沉积助剂、水质调节剂和粘着剂)系统地测试了这些酶,结果表明除了油基助剂外,它们具有广泛的兼容性。此外,当这两种酶被掺入五种不同的涂料基料(丙烯酸、有机硅、聚氨酯、环氧树脂和乳胶)中时,它们都保持了活性,活性水平因聚合物类型而异。对酶促丙烯酸涂料的进一步研究表征了盐水和温度对酶活性水平的影响。功能化涂料在潮湿和干燥条件下250天内都保持了显著的稳定性。这些发现为将群体淬灭内酯酶整合到工业材料和制剂中建立了一个实际的示范和框架,极大地推动了它们在多个领域用于微生物控制的“实际”应用潜力。