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November 11, 2022Science Advances244 citationsOpen Access

Mucoadhesive probiotic backpacks with ROS nanoscavengers enhance the bacteriotherapy for inflammatory bowel diseases

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JLJun LiuYWYixin WangWHWilliam J. Heelan

Key Points

  • To engineer a probiotic delivery system equipped with reactive oxygen species nanoscavengers and a mucoadhesive coating to improve bacteriotherapy for inflammatory bowel diseases.
  • Synthesized hyaluronic acid-poly(propylene sulfide) (HA-PPS) nanoparticles (HPN) capable of scavenging reactive oxygen species and conjugated them to the probiotic Escherichia coli Nissle 1917 (EcN).
  • Coated the modified EcN with a protective, mucoadhesive poly-norepinephrine (NE) surface layer.
  • Assessed probiotic viability, intestinal retention, gut microbiota modulation, and therapeutic efficacy in dextran sulfate sodium-induced mouse colitis models.
  • The poly-norepinephrine coating protected EcN against environmental degradation and extended intestinal retention through enhanced mucoadhesion.
  • HPN-NE-EcN treatment demonstrated substantially improved prophylactic and therapeutic efficacy against dextran sulfate sodium-induced colitis in mice.
  • Administration of HPN-NE-EcN increased both the abundance and diversity of the gut microbiota, contributing to colitis alleviation.

Abstract

Inflammatory bowel diseases (IBDs) are often associated with elevated levels of reactive oxygen species (ROS) and highly dysregulated gut microbiota. In this study, we synthesized a polymer of hyaluronic acid-poly(propylene sulfide) (HA-PPS) and developed ROS-scavenging nanoparticles (HPN) that could effectively scavenge ROS. To achieve colon tissue targeting effects, the HPN nanoparticles were conjugated to the surface of modified probiotic Escherichia coli Nissle 1917 (EcN). To enhance the bacteriotherapy of EcN, we encapsulated EcN cells with a poly-norepinephrine (NE) layer that can protect EcN against environmental assaults to improve the viability of EcN in oral delivery and prolong the retention time of EcN in the intestine due to its strong mucoadhesive capability. In the dextran sulfate sodium-induced mouse colitis models, HPN-NE-EcN showed substantially enhanced prophylactic and therapeutic efficacy. Furthermore, the abundance and diversity of gut microbiota were increased after treatment with HPN-NE-EcN, contributing to the alleviation of IBDs.

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Cite This Study

Liu et al. (2022) studied this question.

synapsesocial.com/papers/69dc35981eeef32283c0fab0https://doi.org/10.1126/sciadv.abp8798
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