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February 11, 2026ACS Nano0 citations

Ultrasmall Platinum Nanoclusters Modulating Dysregulated Reactive Oxide Species and Immunity for Psoriasis Therapy and Prevention

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KLKang LiuSFSuqing FengXZXuebin Zhu

Key Points

  • To evaluate the efficacy of ultrasmall platinum nanoclusters in treating psoriasis and preventing relapses.
  • Introduced platinum-nanocluster-based artificial enzyme (Pt NE).
  • Compared antioxidant capacity against gold and copper analogues.
  • Assessed skin penetration and in vivo effects on psoriasis symptoms.
  • Evaluated changes in pro-inflammatory and apoptosis-related gene expression.
  • Achieved complete symptom remission in psoriatic models.
  • Pt NEs showed 5-fold greater antioxidant activity than Au or Cu.
  • Skin penetration was significantly higher than Au and Cu, enhancing effectiveness.
  • Demonstrated excellent biocompatibility with no organ damage or toxicity.

Abstract

Psoriasis is a chronic inflammatory skin disease that affects millions worldwide. Current treatments are often limited by side effects and high relapse rates. This study introduces an ultrasmall platinum-nanocluster-based artificial enzyme (Pt NE) for effective psoriasis therapy and relapse prevention. Pt NEs exhibit multienzyme mimetic activities─superoxide dismutase, catalase, and glutathione peroxidase-like─with an overall antioxidant capacity 5-fold greater than Au or Cu analogues. Their superior skin penetration (69.93% and 14.27% higher than Au and Cu NEs, respectively) enables efficient reactive oxygen species scavenging and modulation of the inflammatory microenvironment. In vivo, Pt NEs achieve complete psoriatic symptom remission, comparable to a commercial calcipotriol/betamethasone ointment but without steroid-associated adverse effects. Mechanistically, Pt NEs modulate immunity by downregulating pro-inflammatory genes and upregulating genes related to proliferation inhibition and apoptosis. Excellent biocompatibility was observed, with no detectable organ damage or systemic toxicity. This work proposes a safe, effective, and cost-efficient nanotherapeutic strategy with strong potential for clinical translation in psoriasis management.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/698c1c53267fb587c655ebf4https://doi.org/10.1021/acsnano.5c18716
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