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1.
Hum Pathol ; 146: 75-85, 2024 Apr.
Article En | MEDLINE | ID: mdl-38640986

INTRODUCTION: Semi-quantitative scoring of various parameters in renal biopsy is accepted as an important tool to assess disease activity and prognostication. There are concerns on the impact of interobserver variability in its prognostic utility, generating a need for computerized quantification. METHODS: We studied 94 patients with renal biopsies, 45 with native diseases and 49 transplant patients with index biopsies for Polyomavirus nephropathy. Chronicity scores were evaluated using two methods. A standard definition diagram was agreed after international consultation and four renal pathologists scored each parameter in a double-blinded manner. Interstitial fibrosis (IF) score was assessed with five different computerized and AI-based algorithms on trichrome and PAS stains. RESULTS: There was strong prognostic correlation with renal function and graft outcome at a median follow-up ranging from 24 to 42 months respectively, independent of moderate concordance for pathologists scores. IF scores with two of the computerized algorithms showed significant correlation with estimated glomerular filtration rate (eGFR) at biopsy but not at the end of follow-up. There was poor concordance for AI based platforms. CONCLUSION: Chronicity scores are robust prognostic tools despite interobserver reproducibility. AI-algorithms have absolute precision but are limited by significant variation when different hardware and software algorithms are used for quantification.


Artificial Intelligence , Kidney , Observer Variation , Humans , Biopsy , Reproducibility of Results , Kidney/pathology , Male , Female , Prognosis , Middle Aged , Microscopy/methods , Image Interpretation, Computer-Assisted/methods , Adult , Algorithms , Glomerular Filtration Rate , Fibrosis/pathology , Predictive Value of Tests , Kidney Diseases/pathology , Kidney Diseases/diagnosis , Kidney Transplantation , Aged , Polyomavirus Infections/pathology
2.
Biomolecules ; 14(3)2024 Mar 14.
Article En | MEDLINE | ID: mdl-38540767

Mitochondria are essential organelles that possess their own DNA. Mitochondrial dysfunction has been revealed in many kidney diseases, including BK polyomavirus-associated nephropathy (BKPyVAN). In this study, we introduce an innovative approach for non-invasive monitoring of mitochondrial impairment through urinary donor-derived cell-free mitochondrial DNA (ddcfmtDNA), addressing the crucial challenge of BKPyVAN diagnosis. Urinary samples were collected at the time of biopsy from a total of 60 kidney transplant recipients, comprising 12 with stable function, 22 with T cell-mediated rejection, and 21 with biopsy-proven BKPyVAN. Our findings reveal that the ddcfmtDNA-to-ddcfDNA ratio exhibits superior capability in distinguishing BKPyVAN from other conditions, with a cutoff value of 4.96% (area under curve = 0.933; sensitivity: 71.4%; and specificity: 97.1%). Notably, an elevation of ddcfmtDNA levels is associated with mitochondrial damage, as visualized through electron microscopy. These results underscore the promise of non-invasive monitoring for detecting subtle mitochondrial damage and its potential utility in BKPyVAN diagnosis. Further investigations are required to advance this field of research.


BK Virus , Kidney Transplantation , Polyomavirus Infections , Tumor Virus Infections , Humans , Kidney Transplantation/adverse effects , BK Virus/genetics , Tumor Virus Infections/diagnosis , Tumor Virus Infections/complications , Tumor Virus Infections/pathology , Graft Rejection , Polyomavirus Infections/diagnosis , Polyomavirus Infections/complications , Polyomavirus Infections/pathology , Mitochondria/genetics , DNA, Mitochondrial/genetics
3.
J Dermatolog Treat ; 35(1): 2328180, 2024 Dec.
Article En | MEDLINE | ID: mdl-38493799

Purpose: Trichodysplasia spinulosa (TS) is a rare, disfiguring skin condition which presents with widespread asymptomatic or pruritic, skin-colored papules with white protruding keratin spiculations in immunocompromised individuals. Due to its rarity, there is little data to guide treatment decisions. The purpose of this article is to report a case of TS that completely resolved after treatment with topical cidofovir.Materials and methods: A 19-year-old immunosuppressed female presented with widespread painful, itchy bumps on the nose and face. Upon examination, there were erythematous papules with hyperkeratinized spicules affecting the central face. Biopsy of the lesions was consistent with TS which was confirmed via PCR analysis. The tenderness of this patient's eruption was highly atypical for TS. Once daily topical application of compounded 1% cidofovir cream was prescribed.Results: The patient's symptoms resolved completely after 4 weeks of therapy with topical cidofovir 1% cream, without reduction of immunosuppression.Conclusions: Topical cidofovir 1% cream may be a valuable treatment for this rare disease.


Polyomavirus Infections , Skin Diseases , Female , Humans , Young Adult , Cidofovir/therapeutic use , Immunocompromised Host , Polyomavirus Infections/diagnosis , Polyomavirus Infections/pathology , Polyomavirus Infections/therapy , Pruritus , Skin Diseases/pathology
4.
Exp Dermatol ; 33(3): e15062, 2024 Mar.
Article En | MEDLINE | ID: mdl-38532566

Merkel cell carcinoma (MCC) is a high-grade skin cancer, but spontaneous regression is observed at a markedly higher frequency than in other carcinomas. Although spontaneous regression is a phenomenon that greatly impacts treatment planning, we still cannot predict it. We previously reported on the prognostic impact of the presence or absence of tertiary lymphoid structures (TLS) and of Merkel cell polyomavirus (MCPyV) infection. To learn more about the spontaneous regression of MCC, detailed analyses were performed focusing on spontaneous regression cases. We collected 71 Japanese patients with MCC including 6 cases of spontaneous regression. Samples were analysed by immunostaining, spatial single-cell analysis using PhenoCycler, and RNA sequencing using the next-generation sequencer (NGS). All 6 cases of spontaneous regression were positive for MCPyV. TLS was positive in all 5 cases analysed. Spatial single-cell analyses revealed that PD-L1-positive tumour cells were in close proximity to CD20-positive B cell and CD3-, 4-positive T cells. Gene set enrichment analysis between MCPyV-positive and TLS-positive samples and other samples showed significantly high enrichment of "B-cell-mediated immunity" gene sets in the MCPyV-positive and TLS-positive groups. In conclusion, TLS may play an important role in the spontaneous regression of MCC.


Carcinoma, Merkel Cell , Merkel cell polyomavirus , Polyomavirus Infections , Skin Neoplasms , Tertiary Lymphoid Structures , Tumor Virus Infections , Humans , Carcinoma, Merkel Cell/pathology , Skin Neoplasms/pathology , Remission, Spontaneous , Tumor Virus Infections/pathology , Polyomavirus Infections/pathology , Merkel cell polyomavirus/genetics
5.
Cytopathology ; 35(3): 390-397, 2024 May.
Article En | MEDLINE | ID: mdl-38353321

OBJECTIVE: Merkel cell carcinoma (MCC) is an aggressive cutaneous neuroendocrine neoplasm that predominantly affects elderly and immunocompromised patients. Merkel cell polyoma virus (MCPyV) is clonally integrated into the majority of MCCs and has been linked to patient outcomes, playing a central role in the pathogenesis of the disease. We aimed to assess the utility of MCPyV immunohistochemistry (IHC) in the diagnosis of MCC in cytology cell block specimens and correlating with clinicopathologic features. METHODS: Fifty-three cytology samples of MCC with sufficient cell block material were stained for MCPyV by IHC and scored semi-quantitatively in extent and intensity. Morphologic mimics of MCC including small cell lung carcinoma (n = 10), non-Hodgkin lymphoma (n = 10), basaloid squamous cell carcinoma (n = 6) and other neuroendocrine carcinomas (n = 8) were stained in parallel. Positive staining was defined as >1% of the tumour cells showing at least moderate staining intensity. RESULTS: The cytologic features of MCC were characterized by high nuclear-cytoplasmic ratios, hyperchromatic nuclei with 'salt and pepper' chromatin, and nuclear moulding. MCPyV was detected in 24 of 53 cases (45%). Staining was strong and diffuse in roughly half of the positive samples. Of the morphologic mimics, one follicular lymphoma showed strong and diffuse staining. In contrast to prior studies, we saw no association between MCPyV status and patient outcomes. CONCLUSION: Merkel cell polyoma virus IHC is highly specific (97%) for the diagnosis of MCC in our cohort, and can serve as a useful diagnostic tool for distinguishing MCC for morphologic mimics.


Carcinoma, Merkel Cell , Lung Neoplasms , Merkel cell polyomavirus , Polyomavirus Infections , Skin Neoplasms , Tumor Virus Infections , Humans , Aged , Skin Neoplasms/diagnosis , Skin Neoplasms/pathology , Polyomavirus Infections/diagnosis , Polyomavirus Infections/pathology , Immunohistochemistry , Cytology , Merkel Cells/pathology , Carcinoma, Merkel Cell/diagnosis , Carcinoma, Merkel Cell/pathology , Merkel cell polyomavirus/genetics , Lung Neoplasms/pathology , Tumor Virus Infections/diagnosis , Tumor Virus Infections/pathology
6.
JAAPA ; 36(11): 11-16, 2023 Nov 01.
Article En | MEDLINE | ID: mdl-37820270

ABSTRACT: Merkel cell carcinoma (MCC) is a rare and aggressive type of metastatic, nonmelanoma skin cancer derived from Merkel cells in the epidermis. MCC can be induced by sun exposure or via Merkel cell polyomavirus (MCV) gene expression. MCV is found in most patients with MCC and is associated with a lower recurrence rate of MCC. MCC has a wide range of clinical presentations that make diagnosis challenging. Histologic examination is performed using unique markers to differentiate it from other diagnoses. This article reviews the pathogenesis, clinical presentation, histopathology, differential diagnosis, and treatment of MCC.


Carcinoma, Merkel Cell , Merkel cell polyomavirus , Polyomavirus Infections , Skin Neoplasms , Tumor Virus Infections , Humans , Carcinoma, Merkel Cell/diagnosis , Carcinoma, Merkel Cell/therapy , Carcinoma, Merkel Cell/pathology , Polyomavirus Infections/complications , Polyomavirus Infections/diagnosis , Polyomavirus Infections/pathology , Tumor Virus Infections/complications , Tumor Virus Infections/diagnosis , Tumor Virus Infections/pathology , Skin Neoplasms/diagnosis , Merkel cell polyomavirus/genetics
8.
Exp Clin Transplant ; 21(7): 568-577, 2023 07.
Article En | MEDLINE | ID: mdl-37584537

OBJECTIVES: Allograft biopsy is the gold standard for diagnosing polyomavirus-associated nephropathy. We aimed to establish the effects of histopathologic findings proposed by the Banff Polyomavirus Working Group on graft outcome. We also aimed to understand the clinical importance of follow-up biopsies for patients with polyomavirus-associated nephropathy. MATERIALS AND METHODS: Our study included 22 patients with polyomavirus-associated nephropathy. All biopsies were classified according to the latest Banff Polyomavirus Working Group classification. Follow-up biopsies of all patients were evaluated in detail. RESULTS: The mean interval between polyomavirus-associated nephropathy and transplant was 10 ± 1.6 months. Of 22 patients, biopsy revealed stage 1 in 3 (13.6%), stage 2 in 17 (77.3%), and stage 3 in 2 patients (9.1%). Fourteen patients (63.6%) had polyomavirus viral load 3, 5 (22.7%) had polyomavirus viral load 2, and 3 had polyomavirus viral load 1. Among patients included in analyses, 18.2% had antibody-mediated rejection and 27.2% had T-cell-mediated rejection simultaneously with polyomavirus-associated nephropathy. Graft loss increased with increasing polyomavirus-associated nephropathy class and polyomavirus viral load (P = .015 and P = .002, respectively). The mean time of graft survival decreased with increasing degree of tubulitis, interstitial inflammation, plasma infiltration, and neutrophil infiltration. Patients with interstitial fibrosis, glomerular polyoma, and cortical plus medullar involvement showed earlier graft loss. Follow-up biopsies showed that diffuse interstitial fibrosis or persistent inflam-mation negatively influenced graft loss. CONCLUSIONS: The Banff Polyomavirus Working Group's schema significantly correlated with graft outcome. Early detection of polyomavirus-associated nephro-pathy and subsequent detection of persistent inflammation and interstitial fibrosis and tubular atrophy in follow-up biopsies and modification of immunosuppressive therapy can successfully prevent graft loss.


Kidney Diseases , Kidney Transplantation , Polyomavirus Infections , Polyomavirus , Humans , Kidney Transplantation/adverse effects , Follow-Up Studies , Kidney/pathology , Kidney Diseases/etiology , Kidney Diseases/complications , Polyomavirus Infections/diagnosis , Polyomavirus Infections/pathology , Biopsy , Fibrosis , Inflammation , Allografts , Graft Rejection/diagnosis , Graft Rejection/pathology
10.
J Cutan Pathol ; 50(9): 835-844, 2023 Sep.
Article En | MEDLINE | ID: mdl-37394808

BACKGROUND: Viral infection is an oncogenic factor in many hematolymphoid malignancies. We sought to determine the diagnostic yield of aligning off-target reads incidentally obtained during targeted hematolymphoid next-generation sequencing to a large database of viral genomes to screen for viral sequences within tumor specimens. METHODS: Alignment of off-target reads to viral genomes was performed using magicBLAST. Localization of Merkel cell polyomavirus (MCPyV) RNA was confirmed by RNAScope in situ hybridization. Integration analysis was performed using Virus-Clip. RESULTS: Four cases of post-cardiac-transplant folliculotropic mycosis fungoides (fMF) and one case of peripheral T-cell lymphoma (PTCL) were positive in off-target reads for MCPyV DNA. Two of the four cases of posttransplant fMF and the case of PTCL showed localization of MCPyV RNA to malignant lymphocytes, whereas the remaining two cases of posttransplant fMF showed MCPyV RNA in keratinocytes. CONCLUSIONS: Our findings raise the question of whether MCPyV may play a role in rare cases of T-lymphoproliferative disorders, particularly in the skin and in the heavily immunosuppressed posttransplant setting.


Carcinoma, Merkel Cell , Merkel cell polyomavirus , Mycosis Fungoides , Polyomavirus Infections , Polyomavirus , Skin Neoplasms , Tumor Virus Infections , Humans , Merkel cell polyomavirus/genetics , Carcinoma, Merkel Cell/pathology , Skin Neoplasms/pathology , Polyomavirus Infections/complications , Polyomavirus Infections/pathology , DNA, Viral/analysis , In Situ Hybridization , Tumor Virus Infections/pathology , Polyomavirus/genetics
11.
Medicine (Baltimore) ; 102(15): e33535, 2023 Apr 14.
Article En | MEDLINE | ID: mdl-37058042

Merkel cell carcinoma (MCC), a rare primary cutaneous neuroendocrine neoplasm, is extremely aggressive and has a higher mortality rate than melanoma. Based on Merkel cell polyomavirus (MCPyV) status and morphology, MCCs are often divided into several distinct subsets: pure MCPyV-positive, pure MCPyV-negative, and combined MCC. MCPyV-positive MCC develops by the clonal integration of viral DNA, whereas MCPyV-negative MCC is induced by frequent ultraviolet (UV)-mediated mutations, that are characterized by a high mutational burden, UV signature mutations, and many mutations in TP53 and retinoblastoma suppressor gene (RB1). Combined MCC consists of an intimate mix of MCC and other cutaneous tumor populations, and is usually MCPyV-negative, with rare exceptions. Based on the existing subsets of MCC, it is speculated that there are at least 4 stages in the natural history of stem cell differentiation: primitive pluripotent stem cells, divergent differentiated stem cells, unidirectional stem cells, and Merkel cells (or epidermal/adnexal cells). In the first stage, MCPyV may integrate into the genome of primitive pluripotent stem cells, driving oncogenesis in pure MCPyV-positive MCC. If MCPyV integration does not occur, the stem cells enter the second stage and acquire the ability to undergo multidirectional neuroendocrine and epidermal (or adnexal) differentiation. At this stage, accumulated UV-mediated mutations may drive the development of combined MCC. In the third stage, the stem cells differentiate into unidirectional neuroendocrine stem cells, UV-mediated mutations can induce carcinogenesis in pure MCPyV-negative MCC. Therefore, it has been speculated that several subsets of MCCs arise from different stages of differentiation of common stem cells.


Carcinoma, Merkel Cell , Merkel cell polyomavirus , Polyomavirus Infections , Skin Neoplasms , Tumor Virus Infections , Humans , Carcinoma, Merkel Cell/pathology , Skin Neoplasms/pathology , Cell Transformation, Neoplastic , Carcinogenesis/genetics , Stem Cells , Cell Differentiation , Merkel cell polyomavirus/genetics , Polyomavirus Infections/genetics , Polyomavirus Infections/pathology , Tumor Virus Infections/complications , Tumor Virus Infections/genetics , Tumor Virus Infections/pathology
12.
Infection ; 51(4): 967-980, 2023 Aug.
Article En | MEDLINE | ID: mdl-36512270

PURPOSE: BK Polyomavirus (BKPyV) infection manifests as renal inflammation and can cause kidney damage. Tumor necrosis factor-α (TNF-α) is increased in renal inflammation and injury. The aim of this study was to investigate the effect of TNF-α blockade on BKPyV infection. METHODS: Urine specimens from 22 patients with BKPyV-associated nephropathy (BKPyVN) and 35 non-BKPyVN kidney transplant recipients were analyzed. RESULTS: We demonstrated increased urinary levels of TNF-α and its receptors, TNFR1 and TNFR2, in BKPyVN patients. Treating BKPyV-infected human proximal tubular cells (HRPTECs) with TNF-α stimulated the expression of large T antigen and viral capsid protein-1 mRNA and proteins and BKPyV promoter activity. Knockdown of TNFR1 or TNFR2 expression caused a reduction in TNF-α-stimulated viral replication. NF-κB activation induced by overexpression of constitutively active IKK2 significantly increased viral replication and the activity of the BKPyV promoter containing an NF-κB binding site. The addition of a NF-κB inhibitor on BKPyV-infected cells suppressed viral replication. Blockade of TNF-α functionality by etanercept reduced BKPyV-stimulated expression of TNF-α, interleukin-1ß (IL-1ß), IL-6 and IL-8 and suppressed TNF-α-stimulated viral replication. In cultured HRPTECs and THP-1 cells, BKPyV infection led to increased expression of TNF-α, interleukin-1 ß (IL-1ß), IL-6 and TNFR1 and TNFR2 but the stimulated magnitude was far less than that induced by poly(I:C). This may suggest that BKPyV-mediated autocrine effect is not a major source of TNFα. CONCLUSION: TNF-α stimulates BKPyV replication and inhibition of its signal cascade or functionality attenuates its stimulatory effect. Our study provides a therapeutic anti-BKPyV target.


BK Virus , Polyomavirus Infections , Humans , BK Virus/genetics , Tumor Necrosis Factor-alpha , Receptors, Tumor Necrosis Factor, Type I , Receptors, Tumor Necrosis Factor, Type II/genetics , NF-kappa B , Interleukin-6 , Polyomavirus Infections/metabolism , Polyomavirus Infections/pathology , Inflammation
13.
Vet Pathol ; 60(2): 267-275, 2023 03.
Article En | MEDLINE | ID: mdl-36537739

Hamster polyomavirus (HaPyV) infection has been associated with lymphomas in Syrian hamsters. In the present study, 14 cases of lymphoma in pet Syrian hamsters were pathologically examined and the involvement of HaPyV was investigated. Among 14 cases, 11 were abdominal and 3 were cutaneous lymphomas. The average ages of hamsters with abdominal lymphoma and cutaneous lymphoma were 7 months (range: 4-12 months) and 14 months (range: 6-23 months), respectively. Histologically, abdominal lymphomas were characterized by the diffuse growth of tumor cells with intermediate or large nuclei, low mitotic rates, the presence of tingible body macrophages, and the T-cell immunophenotype. Furthermore, 4/11 abdominal lymphomas were immunopositive for T-cell intracellular antigen-1, suggesting cytotoxic T-cell lymphomas. Cutaneous lymphomas were diagnosed as nonepitheliotropic T-cell lymphoma. Polymerase chain reaction (PCR) detected HaPyV DNA in 12/14 samples, and a sequence analysis of PCR amplicons confirmed >99% nucleotide identity to the published HaPyV sequences. In situ hybridization (ISH) for HaPyV DNA resulted in diffuse nuclear signals within tumor cells in 10/14 cases. Consistent with previous findings, all HaPyV-associated lymphomas were observed in the abdominal cavity of young hamsters. Polymerase chain reaction and ISH were useful for identifying the involvement of HaPyV in lymphomas, and ISH results indicated the presence of episomal HaPyV in neoplastic lymphocytes. The present study suggests that HaPyV infection is highly involved in abdominal lymphomas in young pet Syrian hamsters in Japan and provides diagnostic information on HaPyV-associated lymphoma.


Lymphoma, T-Cell, Cutaneous , Lymphoma, T-Cell , Polyomavirus Infections , Polyomavirus , Rodent Diseases , Skin Neoplasms , Cricetinae , Animals , Mesocricetus , Polyomavirus/genetics , Polyomavirus Infections/pathology , Polyomavirus Infections/veterinary , Lymphoma, T-Cell/veterinary , Skin Neoplasms/veterinary , Lymphoma, T-Cell, Cutaneous/veterinary
15.
Front Immunol ; 13: 1006970, 2022.
Article En | MEDLINE | ID: mdl-36275762

Graft-derived cell-free DNA (GcfDNA) is a promising non-invasive biomarker for detecting allograft injury. In this study, we aimed to evaluate the efficacy of programmed monitoring of GcfDNA for identifying BK polyomavirus-associated nephropathy (BKPyVAN) in kidney transplant recipients. We recruited 158 kidney transplant recipients between November 2020 and December 2021. Plasma GcfDNA was collected on the tenth day, first month, third month, and sixth month for programmed monitoring and one day before biopsy. ΔGcfDNA (cp/mL) was obtained by subtracting the baseline GcfDNA (cp/mL) from GcfDNA (cp/mL) of the latest programmed monitoring before biopsy. The receiver operating characteristic curve showed the diagnostic performance of GcfDNA (cp/mL) at biopsy time and an optimal area under the curve (AUC) of 0.68 in distinguishing pathologically proven BKPyVAN from pathologically unconfirmed BKPyVAN. In contrast, ΔGcfDNA (cp/mL) had a sensitivity and specificity of 80% and 84.6%, respectively, and an AUC of 0.83. When distinguishing clinically diagnosed BKPyVAN from clinical excluded BKPyVAN, the AUC of GcfDNA (cp/mL) was 0.59 at biopsy time, and ΔGcfDNA (cp/mL) had a sensitivity and specificity of 81.0% and 76.5%, respectively, and an AUC of 0.81. Plasma ΔGcfDNA (cp/mL) was not significantly different between TCMR [0.15 (0.08, 0.24) cp/mL] and pathologically proven BKPyVAN[0.34 (0.20, 0.49) cp/mL]. In conclusion, we recommend programmed monitoring of plasma GcfDNA levels after a kidney transplant. Based on our findings from the programmed monitoring, we have developed a novel algorithm that shows promising results in identifying and predicting BKPyVAN.


BK Virus , Cell-Free Nucleic Acids , Nephritis, Interstitial , Polyomavirus Infections , Tumor Virus Infections , Humans , BK Virus/genetics , Tumor Virus Infections/diagnosis , Graft Rejection/diagnosis , Polyomavirus Infections/diagnosis , Polyomavirus Infections/pathology , Biomarkers , Algorithms
16.
Biochim Biophys Acta Mol Basis Dis ; 1868(12): 166537, 2022 12 01.
Article En | MEDLINE | ID: mdl-36089125

Human polyomaviruses are relatively common in the general population. Polyomaviruses maintain a persistent infection after initial infection in childhood, acting as an opportunistic pathogen in immunocompromised populations and their association has been linked to carcinogenesis. A comprehensive understanding of the underlying molecular mechanisms of carcinogenesis in consequence of polyomavirus infection remains elusive. However, the critical role of viral miRNAs and their potential targets in modifying the transcriptome profile of the host remains largely unknown. Polyomavirus-derived miRNAs have the potential to play a substantial role in carcinogenesis. Employing computational approaches, putative viral miRNAs along with their target genes have been predicted and possible roles of the targeted genes in many significant biological processes have been obtained. Polyomaviruses have been observed to target intracellular signal transduction pathways through miRNA-mediated epigenetic regulation, which may contribute to cancer development. In addition, BKPyV-infected human renal cell microarray data was coupled with predicted target genes and analysis of the downregulated genes indicated that viruses target multiple signaling pathways (e.g. MAPK signaling pathway, PI3K-Akt signaling pathway, PPAR signaling pathway) in the host as well as turning off several tumor suppression genes (e.g. FGGY, EPHX2, CACNA2D3, CDH16) through miRNA-induced mechanisms, assuring cell transformation. This study provides a conceptual framework for the underlying molecular mechanisms involved in the course of carcinogenesis upon polyomavirus infection.


MicroRNAs , Polyomavirus Infections , Polyomavirus , Carcinogenesis/genetics , Epigenesis, Genetic , Humans , MicroRNAs/genetics , MicroRNAs/metabolism , Peroxisome Proliferator-Activated Receptors/genetics , Phosphatidylinositol 3-Kinases/metabolism , Polyomavirus/genetics , Polyomavirus/metabolism , Polyomavirus Infections/genetics , Polyomavirus Infections/pathology , Proto-Oncogene Proteins c-akt/metabolism
17.
Tumour Virus Res ; 14: 200239, 2022 12.
Article En | MEDLINE | ID: mdl-35636683

Human tumor viruses cause various human cancers that account for at least 15% of the global cancer burden. Among the currently identified human tumor viruses, two are small DNA tumor viruses: human papillomaviruses (HPVs) and Merkel cell polyomavirus (MCPyV). The study of small DNA tumor viruses (adenoviruses, polyomaviruses, and papillomaviruses) has facilitated several significant biological discoveries and established some of the first animal models of virus-associated cancers. The development and use of preclinical in vivo models to study HPVs and MCPyV and their role in human cancer is the focus of this review. Important considerations in the design of animal models of small DNA tumor virus infection and disease, including host range, cell tropism, choice of virus isolates, and the ability to recapitulate human disease, are presented. The types of infection-based and transgenic model strategies that are used to study HPVs and MCPyV, including their strengths and limitations, are also discussed. An overview of the current models that exist to study HPV and MCPyV infection and neoplastic disease are highlighted. These comparative models provide valuable platforms to study various aspects of virus-associated human disease and will continue to expand knowledge of human tumor viruses and their relationship with their hosts.


Merkel cell polyomavirus , Neoplasms , Polyomavirus Infections , Polyomavirus , Tumor Virus Infections , Animals , Humans , Merkel cell polyomavirus/genetics , Polyomavirus Infections/pathology , Tumor Virus Infections/complications , Neoplasms/genetics , Oncogenic Viruses/genetics
18.
Clin Chim Acta ; 531: 273-276, 2022 Jun 01.
Article En | MEDLINE | ID: mdl-35469798

The examination of the urinary sediment of a kidney transplant recipient, carried out in blind conditions, showed the presence of a moderate number of cells which were identified as decoy cells. Most frequently these cells are a marker of BK polyomavirus reactivation, which can lead to BK virus nephropathy and graft loss. However, the patient's clinical history, the absence of BK viremia, and the renal biopsy findings excluded this condition. The careful examination of the renal biopsy demonstrated a severe tubular damage with cells resembling those identified in the urine as decoy cells. This paper is the first which demonstrates that damaged renal tubular epithelial cells can be misidentified as decoy cells. In addition, it highlights the importance of supplying adequate clinical information for a correct urinary sediment examination.


BK Virus , Kidney Diseases , Kidney Transplantation , Polyomavirus Infections , Tumor Virus Infections , Epithelial Cells/pathology , Humans , Kidney Diseases/diagnosis , Polyomavirus Infections/diagnosis , Polyomavirus Infections/pathology , Tumor Virus Infections/diagnosis , Tumor Virus Infections/pathology
19.
Malays J Pathol ; 44(1): 61-66, 2022 Apr.
Article En | MEDLINE | ID: mdl-35484887

Merkel cell carcinoma (MCC) is a rare malignant cutaneous neuroendocrine tumour affecting mainly elderly patients and is more common in the West than in Asia. It is associated with Merkel cell polyomavirus (MCPyV), immunosuppression, and ultraviolet light. In this study, we retrospectively investigated the first series of MCC from Taiwan and identified 19 cases from three tertiary centres. All patients were males with a median age of 67.5. Twelve (63%) cases occurred in the extremities, with one unique case presenting initially as nodal metastasis of unknown primary. Immunohistochemically, the great majority of tumours expressed CK20 (89%), synaptophysin (89%), and INSM1 (84%), with none positive for TTF1. Eleven (58%) cases were positive for MCPyV by immunohistochemistry (clone CM2B4). All patients were treated with excision, including four with additional radiotherapy and one with radiotherapy and chemotherapy. Nodal status and treatment modalities significantly affected survival. The median survival time of MCPyV-positive cases was much longer than the negative cases (median 40 vs. 10 months). In summary, we presented the first report on the clinicopathological features of MCC in Taiwan, with 58% cases associated with MCPyV. The prognosis of patients with MCPyV-positive tumours was better than those negative for MCPyV.


Carcinoma, Merkel Cell , Merkel cell polyomavirus , Polyomavirus Infections , Skin Neoplasms , Aged , Carcinoma, Merkel Cell/pathology , Female , Humans , Male , Polyomavirus Infections/complications , Polyomavirus Infections/pathology , Prognosis , Repressor Proteins , Retrospective Studies , Skin Neoplasms/pathology , Taiwan
20.
J Clin Invest ; 132(7)2022 04 01.
Article En | MEDLINE | ID: mdl-35143422

Merkel cell carcinoma (MCC) is an aggressive neuroendocrine skin cancer that frequently carries an integrated Merkel cell polyomavirus (MCPyV) genome and expresses viral transforming antigens (TAgs). MCC tumor cells also express signature genes detected in skin-resident, postmitotic Merkel cells, including atonal bHLH transcription factor 1 (ATOH1), which is required for Merkel cell development from epidermal progenitors. We now report the use of in vivo cellular reprogramming, using ATOH1, to drive MCC development from murine epidermis. We generated mice that conditionally expressed MCPyV TAgs and ATOH1 in epidermal cells, yielding microscopic collections of proliferating MCC-like cells arising from hair follicles. Immunostaining of these nascent tumors revealed p53 accumulation and apoptosis, and targeted deletion of transformation related protein 53 (Trp53) led to development of gross skin tumors with classic MCC histology and marker expression. Global transcriptome analysis confirmed the close similarity of mouse and human MCCs, and hierarchical clustering showed conserved upregulation of signature genes. Our data establish that expression of MCPyV TAgs in ATOH1-reprogrammed epidermal cells and their neuroendocrine progeny initiates hair follicle-derived MCC tumorigenesis in adult mice. Moreover, progression to full-blown MCC in this model requires loss of p53, mimicking the functional inhibition of p53 reported in human MCPyV-positive MCCs.


Carcinoma, Merkel Cell , Merkel cell polyomavirus , Polyomavirus Infections , Skin Neoplasms , Tumor Virus Infections , Animals , Antigens, Viral , Antigens, Viral, Tumor/genetics , Antigens, Viral, Tumor/metabolism , Carcinoma, Merkel Cell/genetics , Carcinoma, Merkel Cell/metabolism , Carcinoma, Merkel Cell/pathology , Cellular Reprogramming , Merkel cell polyomavirus/genetics , Mice , Polyomavirus Infections/genetics , Polyomavirus Infections/pathology , Skin Neoplasms/pathology , Tumor Virus Infections/genetics , Tumor Virus Infections/pathology
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