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March 29, 2026Cell Biochemistry and Function0 citations

Targeting Prion Protein to Overcome Doxorubicin Resistance in SCLC

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FÇFatih ÇöllüHKHayrettin KadinşahZÖZübeyde Öztel

Key Points

  • This research aims to explore whether silencing prion protein can enhance the effects of doxorubicin in small cell lung cancer cells resistant to this drug.
  • Utilized quantitative RT-PCR and immunocytochemistry to analyze gene expression related to drug resistance.
  • Silenced cellular prion protein using siRNA in Adriamycin-resistant H69AR cells.
  • Assessed autophagic activity through MDC staining to evaluate the impact of treatment combinations.
  • PrP knockdown significantly reduced PRNP expression and affected CD44 mRNA levels during doxorubicin treatment.
  • BAX levels increased with doxorubicin and siRNA but not when combined, indicating a separate mechanism.
  • BECN1 expression and Beclin-1 protein levels increased across all treatment groups, most notably in the combined treatment group.
  • MDC staining showed heightened autophagic activity in the siRNA and doxorubicin combination.

Abstract

ABSTRACT Multidrug resistance (MDR) remains a major challenge in small cell lung cancer (SCLC), limiting the efficacy of chemotherapeutics like doxorubicin. This study investigates whether silencing cellular prion protein (PrP), a known MDR‐associated molecule, can enhance doxorubicin‐induced cell death in Adriamycin‐resistant H69AR cells. Quantitative RT‐PCR and immunocytochemistry were used to assess the expression of PRNP , CD44 , BAX , and BECN1 under various treatment conditions, including doxorubicin exposure and PrP knockdown via siRNA. Autophagic activity was evaluated using monodansylcadaverine (MDC) staining. PrP knockdown significantly reduced PRNP expression and modulated CD44 mRNA levels, especially during doxorubicin co‐treatment. However, CD44 protein levels remained unchanged, suggesting post‐transcriptional regulation. BAX expression increased with doxorubicin and siRNA individually, but not in combination, indicating a PrP‐independent mechanism. BECN1 expression and Beclin‐1 protein levels were significantly elevated in all treatment groups, especially in siRNA/doxorubicin combination. MDC staining confirmed increased autophagic vacuole formation in this group, indicating activation of Beclin‐1‐mediated autophagy. In conclusion, PrP knockdown may sensitize resistant SCLC cells to doxorubicin and promote autophagy. These findings support PrP silencing as a promising strategy to reverse chemoresistance in SCLC.

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Cite This Study

Çöllü et al. (2026) studied this question.

synapsesocial.com/papers/69c8c2d1de0f0f753b39d418https://doi.org/10.1002/cbf.70201
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