El-Kholy Abdullah I, Fadel Maha, Nasr Maha, El-Sherbiny Ibrahim, Tawfik Abeer, Mosaad Yasser O, Abdel Fadeel Doaa
Department of Medical Applications of Laser, Pharmaceutical Nano-Technology Unit, National Institute of Laser Enhanced Sciences (NILES), Cairo University, Giza 12613, Egypt.
Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Ain Shams University, Cairo 11566, Egypt.
Pharmaceutics. 2022 Oct 15;14(10):2197. doi: 10.3390/pharmaceutics14102197.
This study reports a new protocol for the management of Hidradenitis Suppurativa (HS), depending on the synergistic photodynamic and photothermal effect of eosin yellow-gold-polypyrrole hybrid nanoparticles (E-G-Ppy NPs). E-G-Ppy NPs and gold-polypyrrole NPs (G-Ppy NPs) were synthesized, characterized, and formulated in topical hydrogels. Then, in vivo trans-epidermal permeation study, under both dark and white light-irradiation conditions, was done on albino mice. The E-G-Ppy hydrogel was then applied on a twenty-four years old female with recurrent axillary HS lesions pretreated with fractional CO laser. Thereafter, the treated lesions were irradiated sequentially, using an IPL system, in the visible (~550 nm) and NIR band (630-1100 nm) to activate the synthesized nanoparticles. Results showed that, upon application to mice skin, E-G-Ppy exhibited good tolerance and safety under dark conditions and induced degenerative changes into dermal layers after white-light activation, reflecting deep penetration. Photo-activation of E-G-Ppy hydrogel to a severe Hidradenitis Suppurativa case showed an improvement of 80% of the lesions according to average HS-LASI scores after 4 sessions with no recurrence during a follow-up period of six months. In summary, the dual photodynamic/photothermal activation of E-G-Ppy NPs can represent a promising modality for management of HS. Further expanded clinical studies may be needed.
本研究报告了一种治疗化脓性汗腺炎(HS)的新方案,该方案基于曙红-金-聚吡咯杂化纳米颗粒(E-G-Ppy NPs)的协同光动力和光热效应。合成、表征了E-G-Ppy NPs和金-聚吡咯纳米颗粒(G-Ppy NPs),并将其制成局部水凝胶。然后,在白化小鼠身上进行了黑暗和白光照射条件下的体内经皮渗透研究。随后,将E-G-Ppy水凝胶应用于一名24岁复发性腋窝HS病变的女性患者,该患者之前接受过分层CO激光预处理。此后,使用强脉冲光(IPL)系统在可见光(~550 nm)和近红外波段(630 - 1100 nm)依次照射治疗的病变部位,以激活合成的纳米颗粒。结果表明,应用于小鼠皮肤后,E-G-Ppy在黑暗条件下表现出良好的耐受性和安全性,白光激活后可引起真皮层的退行性变化,反映出其深层渗透能力。对一例严重化脓性汗腺炎病例进行E-G-Ppy水凝胶光激活治疗,根据平均HS-LASI评分,4次治疗后80%的病变得到改善,在6个月的随访期内无复发。总之,E-G-Ppy NPs的双光动力/光热激活可能是一种治疗HS的有前景的方法。可能需要进一步开展扩大的临床研究。