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Updated: Apr 7, 2026

The Goeckerman Regimen for the Treatment of Moderate to Severe Psoriasis
Published on: July 11, 2013
Reshaping psoriasis topical therapy: Continuous hydrogenation orchestrates 'redox-metabolic homeostasis' for
Lanmei Lin1, Qingqing Guan2, Zhiguang Ding2
1Department of Dermatology, Huashan Hospital, Fudan University, Shanghai, 200040, China.
Abstract:
Psoriasis represents a globally prevalent and chronic dermatological disorder, characterized by persistent hyperkeratosis, self-sustaining inflammatory cycles, and frequent relapse, posing substantial challenges for conventional therapies of compromised efficacy and biosafety. Here, we introduce a transformative strategy of hydrogen-mediated topical psoriasis therapy based on the construction of an in-situ formed, microbubble hydrogel that facilitates significant H2 generation and subsequently prolonged delivery. By fabricating and incorporating MgH2 nanoparticles into an amphiphilic, thermosensitive hydrogel via self-assembly in saline, the hydrogen evolution reaction, generated microbubble morphology and storage can be well controlled, reaching optimized H2 release profile at saturated concentration (∼0.8 mM) over days. We demonstrate marked alleviation of psoriasis-like pathologies with this local hydrogen treatment in vitro and in vivo, revealing superior efficacy compared to both Imiquimod-induced mice model and clinical Calcipotriol drug. Mechanistically, we disclose continuous hydrogenation directly suppresses psoriatic keratinocyte hyperproliferation via anti-Warburg effect and energy metabolic reprogramming through the PKM2-mediated pathway, and meanwhile coordinating redox homeostasis restoration which further disrupts the inflammation-immune feedback loop. We also identify the potency of this H2-regulated energy metabolism strategy in preventing psoriasis recurrence. Collectively, this work delivers a proof-of-concept of hydrogen-mediated psoriasis energy therapy (HPET) with translatable promise for potentiating long-term management.
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