van der Weerden Nicole L, Parisi Kathy, McKenna James A, Hayes Brigitte M, Harvey Peta J, Quimbar Pedro, Wevrett Sean R, Veneer Prem K, McCorkelle Owen, Vasa Shaily, Guarino Rosemary, Poon Simon, Gaspar Yolanda M, Baker Michael J, Craik David J, Turner Rob B, Brown Marc B, Bleackley Mark R, Anderson Marilyn A
La Trobe Institute for Molecular Science, La Trobe University, Melbourne, VIC 3086, Australia.
Hexima Ltd., La Trobe University, Melbourne, VIC 3086, Australia.
J Fungi (Basel). 2023 Nov 17;9(11):1111. doi: 10.3390/jof9111111.
Onychomycosis, or fungal nail infection, causes not only pain and discomfort but can also have psychological and social consequences for the patient. Treatment of onychomycosis is complicated by the location of the infection under the nail plate, meaning that antifungal molecules must either penetrate the nail or be applied systemically. Currently, available treatments are limited by their poor nail penetration for topical products or their potential toxicity for systemic products. Plant defensins with potent antifungal activity have the potential to be safe and effective treatments for fungal infections in humans. The cystine-stabilized structure of plant defensins makes them stable to the extremes of pH and temperature as well as digestion by proteases. Here, we describe a novel plant defensin, Ppdef1, as a peptide for the treatment of fungal nail infections. Ppdef1 has potent, fungicidal activity against a range of human fungal pathogens, including spp., spp., dermatophytes, and non-dermatophytic moulds. In particular, Ppdef1 has excellent activity against dermatophytes that infect skin and nails, including the major etiological agent of onychomycosis . Ppdef1 also penetrates human nails rapidly and efficiently, making it an excellent candidate for a novel topical treatment of onychomycosis.
甲癣,即真菌性指甲感染,不仅会引起疼痛和不适,还会对患者产生心理和社会方面的影响。甲癣的治疗因感染位于甲板下方而变得复杂,这意味着抗真菌分子必须穿透指甲或全身应用。目前,可用的治疗方法受到局部产品指甲穿透性差或全身产品潜在毒性的限制。具有强大抗真菌活性的植物防御素有可能成为治疗人类真菌感染的安全有效方法。植物防御素的胱氨酸稳定结构使其对极端的pH值和温度以及蛋白酶消化具有稳定性。在此,我们描述一种新型植物防御素Ppdef1,作为一种治疗真菌性指甲感染的肽。Ppdef1对一系列人类真菌病原体具有强大的杀真菌活性,包括 属、 属、皮肤癣菌和非皮肤癣菌霉菌。特别是,Ppdef1对感染皮肤和指甲的皮肤癣菌具有优异的活性,包括甲癣的主要病原体 。Ppdef1还能快速有效地穿透人类指甲,使其成为新型甲癣局部治疗的优秀候选药物。