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June 1, 2026ACS Biomaterials Science & Engineering0 citations

Chiral Carbon Dots Differentially Regulate Silkworm Antioxidant Defense and Fibroin Assembly for Stronger Silk

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WLWenwen LiWSWenjing ShiHSH. SHU

Key Points

  • This research aims to understand how different chiral carbon dots affect silkworm physiology and silk properties.
  • Silkworms were fed electrosynthesized chiral carbon dots (L-/D-CDs).
  • Mechanical performance of silk was measured through Young's modulus and fracture strength assessments.
  • Transcriptomic analysis was conducted to evaluate gene expression changes related to C-CDs treatment.
  • D-CDs increased Young's modulus by 47.0% (9904.67 Pa) and fracture strength by 83.4% (526.57 MPa).
  • The β-sheet content increased up to 28.8% in silk from silkworms treated with D-CDs.
  • Glutathione levels in the midgut rose by 20.4% in the D-CDs group, indicating enhanced antioxidant defense.

Abstract

Chirality-dependent biological effects of nanomaterials in vivo remain poorly understood, particularly in complex physiological systems. Here, we investigate this issue by feeding silkworms with electrosynthesized chiral carbon dots (C-CDs: L-/D-CDs) and investigating their impact on both silkworm physiology and silk properties. Our results demonstrate significant chirality-dependent enhancement in silk mechanical performance. D-CDs increased the Young's modulus by approximately 47.0% (9904.67 Pa) and the fracture strength by about 83.4% (526.57 MPa), outperforming L-CDs. This improvement correlates with a substantial increase in the β-sheet content (up to 28.8%). Mechanistically, C-CDs markedly enhanced midgut antioxidant defense, with glutathione levels rising by approximately 20.4% in the D-CDs group. Transcriptomic analysis further revealed altered gene expression with significant enrichment in the endoplasmic reticulum protein processing pathway, providing a molecular link between C-CDs treatment and improved silk performance. This work elucidates the in vivo chirality-specific effects of nanomaterials and establishes a novel strategy for performance-directed engineering of silk.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/6a1d21ba02fbce9130637a12https://doi.org/10.1021/acsbiomaterials.6c00343
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