Intestinal Macrophage-Mediated Exosomal Repackaging Establishes Bioactive Reservoirs for Long-Acting Oral Peptide Therapy

Abstract Oral peptide delivery systems are conventionally engineered to improve intestinal absorption, but they rarely address the progressive and systemic nature of chronic inflammatory disorders such as type-2 diabetes (T2D), which requires both durable glycemic control and immunometabolic management. Here, we report an oral delivery system based on porous calcium carbonate/sodium alginate (PCC/SA) microparticles loaded with exenatide-chitosan oligosaccharide (EXE-COS). The PCC/SA carrier facilitates the efficient intestinal absorption and transepithelial transport of EXE-COS. Notably, in the lamina propria, EXE-COS can be selectively internalized by intestinal macrophages (ITMs) in vivo, driving their polarization toward anti-inflammatory M2-phenotypes. These M2-macrophages enable endogenous repackaging of exenatide into exosomes through orchestrated modulation of exosome biogenesis and trafficking. Through gut-organ axes, exosomes target diabetes-associated inflamed metabolic sites (pancreas, liver, and adipose tissue), establishing long-lived bioactive reservoirs to precisely restore tissue homeostasis and sustain glycemic control. Critically, a single oral dose of EXE-COS@PCC/SA achieved up to 8 day hypoglycemic effects in db/db mice following long-term administration, while concurrently improving systemic inflammation, lipid metabolism, and insulin resistance. This intestinal macrophage-mediated in situ exosomal biogenesis and endogenous drug repackaging represents a versatile long-acting oral peptide platform, showing promise for durable and safe management of T2D and other chronic inflammatory diseases.

Authors

Institutions

Publication Details

Journal
ACS Nano
Published
2026-09-18
DOI
https://doi.org/10.1021/acsnano.6c08460
Primary Topic
Extracellular vesicles in disease
Type
article
Field-Weighted Citation Impact
0.00

Funders

Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Intestinal Macrophage-Mediated Exosomal Repackaging Establishes Bioactive Reservoirs for Long-Acting Oral Peptide Therapy

Xiaoyan Sun, Min Han, Yi Yang, Linjie Wu et al.
ACS Nano
Extracellular vesicles in disease
article

Intestinal Macrophage-Mediated Exosomal Repackaging Establishes Bioactive Reservoirs for Long-Acting Oral Peptide Therapy

Xiaoyan Sun, Min Han, Yi Yang, Linjie Wu, Xin Tan, Xufang Ying, Zhiqing Ben, Yiqing Shen, Donghang Xu, Yinjun Cui, Xiaoyan Bao, Zhicheng Zhang
article en

Abstract

Abstract Oral peptide delivery systems are conventionally engineered to improve intestinal absorption, but they rarely address the progressive and systemic nature of chronic inflammatory disorders such as type-2 diabetes (T2D), which requires both durable glycemic control and immunometabolic management. Here, we report an oral delivery system based on porous calcium carbonate/sodium alginate (PCC/SA) microparticles loaded with exenatide-chitosan oligosaccharide (EXE-COS). The PCC/SA carrier facilitates the efficient intestinal absorption and transepithelial transport of EXE-COS. Notably, in the lamina propria, EXE-COS can be selectively internalized by intestinal macrophages (ITMs) in vivo, driving their polarization toward anti-inflammatory M2-phenotypes. These M2-macrophages enable endogenous repackaging of exenatide into exosomes through orchestrated modulation of exosome biogenesis and trafficking. Through gut-organ axes, exosomes target diabetes-associated inflamed metabolic sites (pancreas, liver, and adipose tissue), establishing long-lived bioactive reservoirs to precisely restore tissue homeostasis and sustain glycemic control. Critically, a single oral dose of EXE-COS@PCC/SA achieved up to 8 day hypoglycemic effects in db/db mice following long-term administration, while concurrently improving systemic inflammation, lipid metabolism, and insulin resistance. This intestinal macrophage-mediated in situ exosomal biogenesis and endogenous drug repackaging represents a versatile long-acting oral peptide platform, showing promise for durable and safe management of T2D and other chronic inflammatory diseases.

ACS Nano
Jinhua Academy of Agricultural Sciences (CN), Zhejiang University (CN)
Natural Science Foundation of Zhejiang Province
Openalex Percentile: Top 18%
Extracellular vesicles in disease
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.