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Published on: July 27, 2022
Mulberry Biomass-Derived Nanomedicines Mitigate Colitis through Improved Inflamed Mucosa Accumulation and Intestinal
Wenjing Yang1,2, Ya Ma1, Haiting Xu1
1State Key Laboratory of Silkworm Genome Biology, College of Sericulture, Textile, and Biomass Sciences, Southwest University, Chongqing 400715, China.
Abstract:
The therapeutic outcomes of conventional oral medications against ulcerative colitis (UC) are restricted by inefficient drug delivery to the colitis mucosa and weak capacity to modulate the inflammatory microenvironment. Herein, a fluorinated pluronic (FP127) was synthesized and employed to functionalize the surface of mulberry leaf-derived nanoparticles (MLNs) loading with resveratrol nanocrystals (RNs). The obtained FP127@RN-MLNs possessed exosome-like morphologies, desirable particle sizes (around 171.4 nm), and negatively charged surfaces (-14.8 mV). The introduction of FP127 to RN-MLNs greatly improved their stability in the colon and promoted their mucus infiltration and mucosal penetration capacities due to the unique fluorine effect. These MLNs could efficiently be internalized by colon epithelial cells and macrophages, reconstruct disrupted epithelial barriers, alleviate oxidative stress, provoke macrophage polarization to M2 phenotype, and down-regulate inflammatory responses. Importantly, in vivo studies based on chronic and acute UC mouse models demonstrated that oral administration of chitosan/alginate hydrogel-embedding FP127@RN-MLNs achieved substantially improved therapeutic efficacies compared with nonfluorinated MLNs and a first-line UC drug (dexamethasone), as evidenced by decreased colonic and systemic inflammation, integrated colonic tight junctions, and intestinal microbiota balance. This study brings new insights into the facile construction of a natural, versatile nanoplatform for oral treatment of UC without adverse effects.
Insights
Fluorinated nanoparticles effectively deliver resveratrol to the colon, improving ulcerative colitis (UC) treatment by reducing inflammation and restoring gut health. This novel nanoplatform offers a promising oral therapy for UC.
Area of Science:
- Biomaterials Science
- Nanotechnology
- Gastroenterology
Background:
- Conventional ulcerative colitis (UC) treatments face challenges with drug delivery and modulating the inflammatory microenvironment.
- Resveratrol shows therapeutic potential but requires effective delivery systems for UC.
Purpose of the Study:
- To develop and evaluate fluorinated pluronic-functionalized mulberry leaf-derived nanoparticles (FP127@RN-MLNs) loaded with resveratrol nanocrystals for oral UC treatment.
Main Methods:
- Synthesis of FP127@RN-MLNs with exosome-like morphology and optimized particle size.
- Assessment of mucus infiltration, mucosal penetration, and cellular uptake in colon epithelial cells and macrophages.
- In vivo evaluation in acute and chronic UC mouse models using chitosan/alginate hydrogel-embedding FP127@RN-MLNs.
Main Results:
- FP127@RN-MLNs demonstrated enhanced stability, mucus penetration, and cellular internalization.
- Treatment reduced colonic and systemic inflammation, integrated tight junctions, and balanced gut microbiota.
- Therapeutic efficacy surpassed non-fluorinated nanoparticles and dexamethasone in UC models.
Conclusions:
- Fluorinated pluronic functionalization enhances nanoparticle performance for UC treatment.
- FP127@RN-MLNs represent a versatile nanoplatform for effective oral delivery in UC therapy.
- This approach offers a safe and efficient alternative for managing ulcerative colitis.
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