DOI: 10.1021/acssynbio.6c00347 ISSN: 2161-5063

Engineered Calprotectin-Responsive Probiotics for Inflammatory Bowel Disease Treatment

Fan Yang, Lina He, Xian Lin, Xindi Huang, Yuefeng Hu, Min Chen, Zhiyong Wu, Jiayang Xi, Xiaoxiao Lu, Mengke Li, Yangbo Hu

Abstract

Inflammatory bowel disease (IBD) is a complex intestinal disorder for which effective treatment options remain limited. The modulation of gut microbiota balance using probiotics holds promise as a therapeutic approach to restore intestinal microenvironment homeostasis. However, the clinical translation of conventional probiotics is constrained by the suboptimal therapeutic efficacy. Here, we constructed a recombinant Escherichia coli Nissle 1917 strain (EcN-CR-IL2) based on an optimized calprotectin-responsive ykgMO promoter to achieve inflammation-dependent expression of the immunomodulatory cytokine interleukin-2 (IL-2), which selectively expands regulatory T cells to suppress aberrant intestinal inflammation. The optimized promoter achieved approximately 100-fold greater induction than the native ykgMO promoter and responded robustly to calprotectin both in vitro and in a DSS-induced murine colitis model in vivo. Oral administration of EcN-CR-IL2 significantly alleviated colitis symptoms in both prophylactic and therapeutic settings, suppressed proinflammatory cytokine levels, restored intestinal barrier integrity, and shifted gut microbiota composition toward a more homeostatic profile. Importantly, the therapeutic output of EcN-CR-IL2 correlated with local calprotectin levels, enabling on-demand modulation of anti-inflammatory effects in response to disease progression. This study presents a probiotic delivery system that combines real-time sensing of a clinically validated biomarker with autonomous therapeutic production, providing a new approach for the treatment of chronic intestinal inflammatory diseases.