Papillomavirus can be transmitted through the blood and produce infections in blood recipients: Evidence from two animal models
EMERGING MICROBES & INFECTIONS
Authors: Cladel, Nancy M.; Jiang, Pengfei; Li, Jingwei J.; Peng, Xuwen; Cooper, Timothy K.; Majerciak, Vladimir; Balogh, Karla K.; Meyer, Thomas J.; Brendle, Sarah A.; Budgeon, Lynn R.; Shearer, Debra A.; Munden, Regina; Cam, Maggie; Vallur, Raghavan; Christensen, Neil D.; Zheng, Zhi-Ming; Hu, Jiafen
Abstract
Human papillomaviruses (HPV) contribute to most cervical cancers and are considered to be sexually transmitted. However, papillomaviruses are often found in cancers of internal organs, including the stomach, raising the question as to how the viruses gain access to these sites. A possible connection between blood transfusion and HPV-associated disease has not received much attention. Here we show, in rabbit and mouse models, that blood infected with papillomavirus yields infections at permissive sites with detectable viral DNA, RNA transcripts, and protein products. The rabbit skin tumours induced via blood infection displayed decreased expression of SLN, TAC1, MYH8, PGAM2, and APOBEC2 and increased expression of SDRC7, KRT16, S100A9, IL36G, and FABP9, as seen in tumours induced by local infections. Furthermore, we demonstrate that blood from infected mice can transmit the infection to uninfected animals. Finally, we demonstrate the presence of papillomavirus infections and virus-induced hyperplasia in the stomach tissues of animals infected via the blood. These results indicate that blood transmission could be another route for papillomavirus infection, implying that the human blood supply, which is not screened for papillomaviruses, could be a potential source of HPV infection as well as subsequent cancers in tissues not normally associated with the viruses.
Ichthyosis molecular fingerprinting shows profound T(H)17 skewing and a unique barrier genomic signature
JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY
Authors: Malik, Kunal; He, Helen; Thy Nhat Huynh; Tran, Gary; Mueller, Kelly; Doytcheva, Kristina; Renert-Yuval, Yael; Czarnowicki, Tali; Magidi, Shai; Chou, Margaret; Estrada, Yeriel D.; Wen, Huei-Chi; Peng, Xiangyu; Xu, Hui; Zheng, Xiuzhong; Krueger, James G.; Paller, Amy S.; Guttman-Yassky, Emma
Abstract
Background: Ichthyoses are a group of rare skin disorders lacking effective treatments. Although genetic mutations are progressively delineated, comprehensive molecular phenotyping of ichthyotic skin could suggest much-needed pathogenesis-based therapy. Objective: We sought to profile the molecular fingerprint of the most common orphan ichthyoses. Methods: Gene, protein, and serum studies were performed on skin and blood samples from 29 patients (congenital ichthyosiform erythroderma, n = 9; lamellar ichthyosis, n = 8; epidermolytic ichthyosis, n = 8; and Netherton syndrome, n = 4), as well as age-matched healthy control subjects (n = 14), patients with psoriasis (n = 30), and patients with atopic dermatitis (AD; n = 16). Results: Using criteria of a fold change of greater than 2 and a false discovery rate of less than 0.05, 132 differentially expressed genes were shared commonly among all ichthyoses, including many IL-17 and TNF-alpha-coregulated genes, which are considered hallmarks of psoriasis (defensin beta 4A, kynureninase, and vanin 3). Although striking upregulation of TH17 pathway genes (IL17F and IL36B/G) resembling that seen in patients with psoriasis was common to all patients with ichthyoses in a severity-related manner, patients with Netherton syndrome showed the greatest T-cell activation (inducible costimulator [ICOS]) and a broader immune phenotype with T(H)1/IFN-gamma, OASL, and T(H)2/IL-4 receptor/IL-5 skewing, although less than seen in patients with AD (all P < .05). Ichthyoses lacked the epidermal differentiation and tight junction alterations of patients with AD (loricrin, filaggrin, and claudin 1) but showed characteristic alterations in lipid metabolism genes (ELOVL fatty acid elongase 3 and galanin), with parallel reductions in extracellular lipids and corneocyte compaction in all ichthyoses except epidermolytic ichthyosis, suggesting phenotypic variations. Transepidermal water loss, a functional barrier measure, significantly correlated with IL-17-regulated gene expression (IL17F and IL36A/IL36B/IL36G). Conclusion: Similar to patients with AD and psoriasis, in whom cytokine dysregulation and barrier impairment orchestrate disease phenotypes, psoriasis-like immune dysregulation and lipid alterations characterize the ichthyoses. These data support the testing of IL-17/IL-36-targeted therapeutics for patients with ichthyosis similar to those used in patients with psoriasis.