Fibroblastic Reticular Cell–Derived and CD5L-Enriched Exosomes Remodel Renal Lipid Metabolism in Porcine Sepsis–Associated Acute Kidney Injury

Background: Sepsis-associated AKI is a life-threatening condition associated with profound metabolic dysfunction, including impaired mitochondrial fatty acid handling. Therapies capable of reversing this metabolic dysfunction remain lacking. Using a clinically relevant porcine model, we investigated whether kidney-targeted fibroblastic reticular cell-derived and CD5L-enriched exosomes could ameliorate sepsis-associated AKI. Methods: We generated engineered exosomes derived from fibroblastic reticular cells or CD5L-overexpressing cells and functionalized them with the kidney-targeting LTH peptide. Therapeutic efficacy and safety were evaluated in a porcine model of lipopolysaccharide-induced sepsis-associated AKI. Integrated multiomic and cellular analyses were performed to examine the associated molecular pathways. Results: In septic pigs, both fibroblastic reticular cell-derived and CD5L-enriched exosomes improved systemic hemodynamics, renal microvascular perfusion, and kidney injury indices. Exosome treatment reduced renal lipid-droplet and acylcarnitine accumulation. CD5L interacted with fatty acid synthase, and treatment was associated with changes in short-chain fatty acids and AMPK-ACC-CPT1A signaling. These lipid-metabolic changes were accompanied by improved mitochondrial bioenergetic indices, preserved mitochondrial morphology, and reduced markers of tubular cell pyroptosis. Conclusions: Kidney-targeted fibroblastic reticular cell-derived and CD5L-enriched exosomes produced comparable improvements in kidney injury indices and were associated with renal lipid-metabolic and mitochondrial remodeling in a large-animal model of sepsis-associated AKI.

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Journal
Journal of the American Society of Nephrology
Published
2026-10-08
DOI
https://doi.org/10.1681/asn.0000001266
Primary Topic
Acute Kidney Injury Research
Type
article
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article

Fibroblastic Reticular Cell–Derived and CD5L-Enriched Exosomes Remodel Renal Lipid Metabolism in Porcine Sepsis–Associated Acute Kidney Injury

Xiang Zhou, John A. Kellum, Zhiyong Peng, Jing Wang et al.
Journal of the American Society of Nephrology
Acute Kidney Injury Research
article

Fibroblastic Reticular Cell–Derived and CD5L-Enriched Exosomes Remodel Renal Lipid Metabolism in Porcine Sepsis–Associated Acute Kidney Injury

Xiang Zhou, John A. Kellum, Zhiyong Peng, Jing Wang, Jinmeng Suo, Timothy R. Billiar, 翁小成, Yiming Li, Bo Hu, Wen Wu, Yusheng Chen, Pan Zhai, Chang Hu, Dongxue Xu, Xiaoyu Zhang
article en

Abstract

Background: Sepsis-associated AKI is a life-threatening condition associated with profound metabolic dysfunction, including impaired mitochondrial fatty acid handling. Therapies capable of reversing this metabolic dysfunction remain lacking. Using a clinically relevant porcine model, we investigated whether kidney-targeted fibroblastic reticular cell-derived and CD5L-enriched exosomes could ameliorate sepsis-associated AKI. Methods: We generated engineered exosomes derived from fibroblastic reticular cells or CD5L-overexpressing cells and functionalized them with the kidney-targeting LTH peptide. Therapeutic efficacy and safety were evaluated in a porcine model of lipopolysaccharide-induced sepsis-associated AKI. Integrated multiomic and cellular analyses were performed to examine the associated molecular pathways. Results: In septic pigs, both fibroblastic reticular cell-derived and CD5L-enriched exosomes improved systemic hemodynamics, renal microvascular perfusion, and kidney injury indices. Exosome treatment reduced renal lipid-droplet and acylcarnitine accumulation. CD5L interacted with fatty acid synthase, and treatment was associated with changes in short-chain fatty acids and AMPK-ACC-CPT1A signaling. These lipid-metabolic changes were accompanied by improved mitochondrial bioenergetic indices, preserved mitochondrial morphology, and reduced markers of tubular cell pyroptosis. Conclusions: Kidney-targeted fibroblastic reticular cell-derived and CD5L-enriched exosomes produced comparable improvements in kidney injury indices and were associated with renal lipid-metabolic and mitochondrial remodeling in a large-animal model of sepsis-associated AKI.

Journal of the American Society of Nephrology
China Three Gorges University (CN), University of Pittsburgh (US), Wuhan University (CN), Wuhan College (CN), Integrated Chinese Medicine (China) (HK), ShenZhen People’s Hospital (CN), Hubei University of Arts and Science (CN), Zhongnan Hospital of Wuhan University (CN), Hubei Provincial Women and Children's Hospital (CN), Shenzhen Bao'an District People's Hospital (CN), Yichang Central People's Hospital (CN), Hainan Medical College Hospital (CN), Hubei University (CN)
Openalex Percentile: Top 12%
Acute Kidney Injury Research
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