Baseline IL-22 expression in patients with atopic dermatitis stratifies tissue responses to fezakinumab
JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY
Authors: Brunner, Patrick M.; Pavel, Ana B.; Khattri, Saakshi; Leonard, Alexandra; Malik, Kunal; Rose, Sharon; On, Shelbi Jim; Vekaria, Anjali S.; Traidl-Hoffmann, Claudia; Singer, Giselle K.; Baum, Danielle; Gilleaudeau, Patricia; Sullivan-Whalen, Mary; Fuentes-Duculan, Judilyn; Li, Xuan; Zheng, Xiuzhong; Estrada, Yeriel; Garcet, Sandra; Wen, Huei-Chi; Gonzalez, Juana; Coats, Israel; Cueto, Inna; Neumann, Avidan U.; Lebwohl, Mark G.; Krueger, James G.; Guttman-Yassky, Emma
Abstract
Background: IL-22 is potentially a pathogenic cytokine in patients with atopic dermatitis (AD), but the molecular effects of IL-22 antagonism have not been defined in human subjects. Objective: We sought to evaluate the cellular and molecular effects of IL-22 blockade in tissues from patients with moderate-to-severe AD. Methods: We assessed lesional and nonlesional skin from 59 patients with moderate-to-severe AD treated with anti-IL-22 (fezakinumab) versus placebo (2: 1) using transcriptomic and immunohistochemistry analyses. Results: Greater reversal of the AD genomic profile was seen with fezakinumab versus placebo, namely 25.3% versus 10.5% at 4 weeks (P = 1.7 x 10(-5)) and 65.5% versus 13.9% at 12 weeks (P = 9.5 3 10(-19)), respectively. Because IL-22 blockade showed clinical efficacy only in patients with severe AD, we used baseline median IL-22 mRNA expression to stratify for high (n = 30) and low (n = 29) IL-22 expression groups. Much stronger mean transcriptomic improvements were seen with fezakinumab in the IL-22-high drug-treated group (82.8% and 139.4% at 4 and 12 weeks, respectively) than in the respective IL-22-high placebo-treated group (39.6% and 56.3% at 4 and 12 weeks) or the IL-22-low groups. Significant downregulations of multiple immune pathways, including T(H)1/CXCL9, T(H)2/CCL18/CCL22, T(H)17/CCL20/DEFB4A, and T(H)22/IL22/S100A's, were restricted to the IL-22-high drug group (P <.05). Consistently, tissue predictors of clinical response were mostly genes involved in T-cell and dendritic cell activation and differentiation. Conclusions: This is the first report showing a profound effect of IL-22 blockade on multiple inflammatory pathways in AD. These data, supported by robust effects in patients with high IL-22 baseline expression, suggest a central role for IL-22 in AD, indicating the need for a precision medicine approach for improving therapeutic outcomes in patients with AD.
Petrolatum: Barrier repair and antimicrobial responses underlying this "inert" moisturizer
JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY
Authors: Czarnowicki, Tali; Malajian, Dana; Khattri, Saakshi; da Rosa, Joel Correa; Dutt, Riana; Finney, Robert; Dhingra, Nikhil; Peng Xiangyu; Xu, Hui; Estrada, Yeriel D.; Zheng, Xiuzhong; Gilleaudeau, Patricia; Sullivan-Whalen, Mary; Suarez-Farinas, Mayte; Shemer, Avner; Krueger, James G.; Guttman-Yassky, Emma
Abstract
Background: Petrolatum is a common moisturizer often used in the prevention of skin infections after ambulatory surgeries and as a maintenance therapy of atopic dermatitis (AD). However, the molecular responses induced by petrolatum in the skin have never been assessed. Objective: We sought to define the cutaneous molecular and structural effects induced by petrolatum. Methods: Thirty-six healthy subjects and 13 patients with moderate AD (mean SCORAD score, 39) were studied by using RT-PCR, gene arrays, immunohistochemistry, and immunofluorescence performed on control skin, petrolatum-occluded skin, and skin occluded with a Finn chamber only. Results: Significant upregulations of antimicrobial peptides (S100A8/fold change [FCH], 13.04; S100A9/FCH, 11.28; CCL20/FCH, 8.36; PI3 [elafin]/FCH, 15.40; lipocalin 2/FCH, 6.94, human beta-defensin 2 [DEFB4A]/FCH, 4.96; P < .001 for all) and innate immune genes (IL6, IL8, and IL1B; P < .01) were observed in petrolatum-occluded skin compared with expression in both control and occluded-only skin. Application of petrolatum also induced expression of key barrier differentiation markers (filaggrin and loricrin), increased stratum corneum thickness, and significantly reduced T-cell infiltrates in the setting of "normal-appearing" or nonlesional AD skin, which is known to harbor barrier and immune defects. Conclusions: Petrolatum robustly modulates antimicrobials and epidermal differentiation barrier measures. These data shed light on the beneficial molecular responses of petrolatum in barrier-defective states, such as AD and postoperative wound care.