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February 16, 2026Regenerative Biomaterials0 citationsOpen Access

Nanoemulsion based on natural components enables oral liver-targeting delivery of schizandrol B to enhance liver regeneration after hepatectomy in hepatocellular carcinoma

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YCYi ChenJXJinzhuan XuJHJing Huang

Key Points

  • To improve the oral bioavailability and liver targeting of schizandrol B for enhancing liver regeneration post-hepatectomy.
  • Developed a nanoemulsion using natural components for liver-targeting delivery of schizandrol B.
  • Evaluated efficacy in 70% partial hepatectomy and in situ hepatocellular carcinoma models.
  • Measured oral bioavailability, liver accumulation, and liver regeneration outcomes.
  • Achieved 2.03-fold higher oral bioavailability and 7.64-fold greater liver accumulation of SCHB.
  • Demonstrated accelerated liver regeneration via upregulated proliferation markers and STAT3/YAP activation.
  • Restored liver mass faster than control following hepatectomy.

Abstract

Abstract Hepatocellular carcinoma (HCC) remains a major cause of cancer-related mortality worldwide, with partial hepatectomy (PHx) serving as the primary curative treatment. Schizandrol B (SCHB) has demonstrated significant efficacy in promoting liver regeneration and restoring hepatic function following PHx. However, the clinical application of SCHB faces two critical challenges: poor oral bioavailability and inadequate liver-specific targeting. Here, this study developed a nanoemulsion based on natural components named SCHB@SPC/Gal-BSA/DHA. It effectively overcame the limitations of SCHB by synergizing Gal-BSA-mediated liver-specific targeting and DHA-enhanced intestinal absorption, achieving prolonged gastrointestinal tract retention, 2.03-fold higher oral bioavailability, and 7.64-fold greater liver accumulation compared to free SCHB. In both 70% PHx and in situ PHx in HCC models, the nanoemulsion robustly accelerated liver regeneration, evidenced by upregulated proliferation markers via STAT3/YAP activation and normalized bile acids metabolism, ultimately restoring liver mass faster than control. This study demonstrates that the dual-targeted nanoemulsion effectively overcomes the key limitations of SCHB by combining enhanced intestinal absorption with liver-specific targeting. The developed nanoemulsion system not only improves drug delivery efficiency but also significantly promotes liver regeneration after PHx, offering a promising therapeutic approach for postoperative recovery in HCC patients while establishing a platform for future liver-targeted oral drug delivery systems.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/69926503eb1f82dc367a0d96https://doi.org/10.1093/rb/rbag019
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