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February 2, 2026Advanced Healthcare Materials0 citationsOpen Access

Spermidine‐Based Carbon Quantum Dots Alleviate Liver Sinusoidal Endothelial Dysfunction by Inducing LSEC‐Derived NO to Ameliorate Hepatic Fibrosis and Portal Hypertension

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JZJin‐Bo ZhaoGLGu‐Qing LuoZWZheng‐Hao Wu

Key Points

  • The research aims to explore the therapeutic effects of spermidine-based carbon quantum dots on portal hypertension by enhancing nitric oxide signaling in liver cells.
  • Synthesized spermidine-based carbon quantum dots (ST-CQDs).
  • Tested ST-CQDs in human immortalized liver sinusoidal endothelial cells and rat models of portal hypertension.
  • Measured portal pressure, hepatic vascular resistance, and nitric oxide production pre- and post-treatment.
  • ST-CQDs significantly reduced portal pressure in rat models.
  • The treatment improved nitric oxide production in liver sinusoidal endothelial cells.
  • Administration of ST-CQDs inhibited liver fibrosis and reduced liver inflammation without causing toxicity.

Abstract

ABSTRACT Portal hypertension (PHT), a life‐threatening complication of chronic liver disease, is driven by increased hepatic vascular resistance, with liver sinusoidal endothelial cell (LSEC) dysfunction and impaired nitric oxide (NO) signaling as key contributors. This study synthesized spermidine‐based carbon quantum dots (ST‐CQDs) and investigated their therapeutic effects on PHT. ST‐CQDs (average size 2.12 nm) exhibited good biocompatibility and effectively induced NO production in human immortalized LSECs (hiLSECs) by upregulating endothelial NO synthase (eNOS). In BDL and CCl 4 ‐induced PHT rat models, intravenous ST‐CQDs reduced portal pressure by decreasing intrahepatic vascular resistance, reversed LSEC capillarization, inhibited hepatic stellate cell activation and liver fibrosis, and alleviated liver inflammation—without altering systemic hemodynamics or causing organ toxicity. In vitro, ST‐CQDs reversed lipopolysaccharide‐induced LSEC dysfunction by restoring eNOS expression and NO release. These findings demonstrate ST‐CQDs as a potential therapeutic agent for PHT via targeting LSEC‐derived NO signaling.

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Cite This Study

Zhao et al. (2026) studied this question.

synapsesocial.com/papers/6980ff26c1c9540dea811dbahttps://doi.org/10.1002/adhm.202505055
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