4.8 Review

Sex-biased immunological processes drive hidradenitis suppurativa

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Interleukin-17RA blockade by brodalumab decreases inflammatory pathways in hidradenitis suppurativa skin and serum

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Summary: This study reveals that brodalumab, a human anti-IL-17 receptor A monoclonal antibody, effectively reduces inflammation and improves related pathways in Hidradenitis suppurativa (HS) patients. The response to treatment is best assessed in perilesional skin, and baseline expression levels of LCN2 and IL-17A can be used as predictive biomarkers for treatment response.

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Antimicrobial peptides in hidradenitis suppurativa: a systematic review

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Summary: The review highlights the diversity of AMPs in HS, with consistent findings of dysregulation of AMPs in HS skin. The included studies demonstrate an overexpression of certain AMPs in HS, while others show a decreased expression.

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Summary: A chronic autoinflammatory skin disease called Hidradenitis suppurativa (HS) is characterized by the development of abscesses and nodules in intertriginous anatomical sites. Bacteria play a role in disease pathogenesis. Research found studies examining the cutaneous microbiome and gut microbiome in HS, with potential for further research into the oral microbiome and relationship with co-morbidities. Metagenomics-focused studies may identify new pathways of disease pathogenesis and potential therapeutic targets.

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Single-Cell RNA Sequencing Reveals Cellular and Transcriptional Changes Associated With M1 Macrophage Polarization in Hidradenitis Suppurativa

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Summary: Hidradenitis suppurativa (HS) is a chronic inflammatory skin disease characterized by recurrent abscesses, nodules, and sinus tracts in areas of high hair follicle and sweat gland density. The dysregulation of monocytes/macrophages pathways may serve as therapeutic targets and biomarkers in HS treatment.

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Elia Rosi et al.

Summary: Hidradenitis suppurativa (HS) is a chronic, inflammatory disease primarily affecting apocrine gland-rich areas of the body. The pathogenic mechanisms of HS involve multiple factors, with the terminal follicle being the main target. Research has focused on investigating the role of inflammation, genetics, lifestyle, hormonal status, microbiome, and immune systems in HS pathogenesis to develop potential medical therapies for patients.

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