Response to interferon treatment decreases with epidermal dedifferentiation in condylomas

After interferon (IFN) treatment of patients with condyloma acuminatum, groups clinically proven to be responders or nonresponders were selected, and cellular parameters that might influence the clinical response were studied in pretreatment biopsies by reverse transcription polymerase chain reactio...

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Published inAntiviral research Vol. 32; no. 1; pp. 19 - 26
Main Authors Arany, Istvan, Brysk, Miriam M., Brysk, Henry, Tyring, Stephen K.
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier B.V 01.08.1996
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Abstract After interferon (IFN) treatment of patients with condyloma acuminatum, groups clinically proven to be responders or nonresponders were selected, and cellular parameters that might influence the clinical response were studied in pretreatment biopsies by reverse transcription polymerase chain reaction (RT-PCR). The nonresponders were found to express higher amounts of cellular proliferative markers, such as proliferating cell nuclear antigen (PCNA), cyclin A, and cdc2 kinase, but lower levels of growth suppressor genes (TGF-β1, TGF-β2 and p53) before IFN treatment. The responders retained the epidermal keratinization, except for some signs of hyperproliferation (K6, K16 cytokeratins). In addition, the nonresponders showed a shift in the keratinization pattern to a mucosal or fetal type, as evidenced by high expression of the K18, K6, K16 and K13 cytokeratins but decreased K5, K14 and K10 levels before treatment. The expression of the human papillomavirus (HPV) genes is consistent with these differentiation patterns. The crucial conclusion to be drawn from this study is that those condylomas whose pretreatment phenotype most closely resembles that of normal epidermis respond to IFN treatment, whereas those more akin to nonkeratinizing epithelia fail to respond, i.e. the resistance of condylomas to IFN treatment is correlated with dedifferentiation.
AbstractList After interferon (IFN) treatment of patients with condyloma acuminatum, groups clinically proven to be responders or nonresponders were selected, and cellular parameters that might influence the clinical response were studied in pretreatment biopsies by reverse transcription polymerase chain reaction (RT-PCR). The nonresponders were found to express higher amounts of cellular proliferative markers, such as proliferating cell nuclear antigen (PCNA), cyclin A, and cdc 2 kinase, but lower levels of growth suppressor genes (TGF-beta 1, TGF-beta 2 and p53) before IFN treatment. The responders retained the epidermal keratinization, except for some signs of hyperproliferation (K6, K16 cytokeratins). In addition, the nonresponders showed a shift in the keratinization pattern to a mucosal or fetal type, as evidenced by high expression of the K18, K6, K16 and K13 cytokeratins but decreased K5, K14 and K10 levels before treatment. The expression of the human papillomavirus (HPV) genes is consistent with these differentiation patterns. The crucial conclusion to be drawn from this study is that those condylomas whose pretreatment phenotype most closely resembles that of normal epidermis respond to IFN treatment, whereas those more akin to nonkeratinizing epithelia fail to respond, i.e. the resistance of condylomas to IFN treatment is correlated with dedifferentiation.
After interferon (IFN) treatment of patients with condyloma acuminatum, groups clinically proven to be responders or nonresponders were selected, and cellular parameters that might influence the clinical response were studied in pretreatment biopsies by reverse transcription polymerase chain reaction (RT-PCR). The nonresponders were found to express higher amounts of cellular proliferative markers, such as proliferating cell nuclear antigen (PCNA), cyclin A, and cdc2 kinase, but lower levels of growth suppressor genes (TGF- beta 1, TGF- beta 2 and p53) before IFN treatment. The responders retained the epidermal keratinization, except for some signs of hyperproliferation (K6, K16 cytokeratins). In addition, the nonresponders showed a shift in the keratinization pattern to a mucosal or fetal type, as evidenced by high expression of the K18, K6, K16 and K13 cytokeratins but decreased K5, K14 and K10 levels before treatment. The expression of the human papillomavirus (HPV) genes is consistent with these differentiation patterns. The crucial conclusion to be drawn from this study is that those condylomas whose pretreatment phenotype most closely resembles that of normal epidermis respond to IFN treatment, whereas those more akin to nonkeratinizing epithelia fail to respond, i.e. the resistance of condylomas to IFN treatment is correlated with dedifferentiation.
After interferon (IFN) treatment of patients with condyloma acuminatum, groups clinically proven to be responders or nonresponders were selected, and cellular parameters that might influence the clinical response were studied in pretreatment biopsies by reverse transcription polymerase chain reaction (RT-PCR). The nonresponders were found to express higher amounts of cellular proliferative markers, such as proliferating cell nuclear antigen (PCNA), cyclin A, and cdc2 kinase, but lower levels of growth suppressor genes (TGF-β1, TGF-β2 and p53) before IFN treatment. The responders retained the epidermal keratinization, except for some signs of hyperproliferation (K6, K16 cytokeratins). In addition, the nonresponders showed a shift in the keratinization pattern to a mucosal or fetal type, as evidenced by high expression of the K18, K6, K16 and K13 cytokeratins but decreased K5, K14 and K10 levels before treatment. The expression of the human papillomavirus (HPV) genes is consistent with these differentiation patterns. The crucial conclusion to be drawn from this study is that those condylomas whose pretreatment phenotype most closely resembles that of normal epidermis respond to IFN treatment, whereas those more akin to nonkeratinizing epithelia fail to respond, i.e. the resistance of condylomas to IFN treatment is correlated with dedifferentiation.
Author Brysk, Henry
Tyring, Stephen K.
Brysk, Miriam M.
Arany, Istvan
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Issue 1
Keywords Human papillomavirus
Epidermal differentiation
Gene expression
Interferon treatment
Condyloma
Human
Treatment efficiency
Cytokine
Keratinization
Epidermis
Histology
Papovaviridae
Cell differentiation
Genital diseases
Infection
Papillomavirus
Virus
Chemotherapy
Sexually transmitted disease
Viral disease
Antiviral
Condyloma acuminatum
Interferon
Language English
License CC BY 4.0
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Snippet After interferon (IFN) treatment of patients with condyloma acuminatum, groups clinically proven to be responders or nonresponders were selected, and cellular...
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SubjectTerms Antibiotics. Antiinfectious agents. Antiparasitic agents
Antiviral agents
Base Sequence
Biological and medical sciences
Biomarkers
Cell Differentiation - genetics
Condyloma
Condylomata Acuminata - pathology
Condylomata Acuminata - therapy
Condylomata Acuminata - virology
DNA Primers - genetics
Epidermal differentiation
Gene expression
Gene Expression Regulation, Viral
Genes, Viral
Human papillomavirus
Humans
Interferon treatment
Interferons - therapeutic use
Keratins - genetics
Medical sciences
Papillomaviridae - genetics
Pharmacology. Drug treatments
Polymerase Chain Reaction
RNA, Messenger - genetics
RNA, Messenger - metabolism
RNA, Viral - genetics
RNA, Viral - metabolism
Skin Diseases, Viral - pathology
Skin Diseases, Viral - therapy
Skin Diseases, Viral - virology
Title Response to interferon treatment decreases with epidermal dedifferentiation in condylomas
URI https://dx.doi.org/10.1016/0166-3542(95)00970-1
https://www.ncbi.nlm.nih.gov/pubmed/8863992
https://search.proquest.com/docview/15608251
https://search.proquest.com/docview/78428212
Volume 32
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