Hepatitis B surface antigen genetic elements critical for immune escape correlate with hepatitis B virus reactivation upon immunosuppression
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- Romina Salpini
- Department of Experimental Medicine and Surgery,University of Rome Tor Vergata,Rome,Italy
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- Luna Colagrossi
- Department of Experimental Medicine and Surgery,University of Rome Tor Vergata,Rome,Italy
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- Maria Concetta Bellocchi
- Department of Experimental Medicine and Surgery,University of Rome Tor Vergata,Rome,Italy
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- Matteo Surdo
- Department of Experimental Medicine and Surgery,University of Rome Tor Vergata,Rome,Italy
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- Christina Becker
- Institute of Virology,University of Cologne,Cologne,Germany
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- Claudia Alteri
- Department of Experimental Medicine and Surgery,University of Rome Tor Vergata,Rome,Italy
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- Marianna Aragri
- Department of Experimental Medicine and Surgery,University of Rome Tor Vergata,Rome,Italy
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- Alessandra Ricciardi
- Infectious Diseases Unit,Tor Vergata University Hospital,Rome,Italy
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- Daniele Armenia
- Department of Experimental Medicine and Surgery,University of Rome Tor Vergata,Rome,Italy
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- Michela Pollicita
- Department of Experimental Medicine and Surgery,University of Rome Tor Vergata,Rome,Italy
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- Fabiola Di Santo
- Department of Experimental Medicine and Surgery,University of Rome Tor Vergata,Rome,Italy
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- Luca Carioti
- Department of Experimental Medicine and Surgery,University of Rome Tor Vergata,Rome,Italy
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- Yoram Louzoun
- Department of Mathematics and Gonda Brain Research Center,Bar‐Ilan University,Ramat Gan,Israel
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- Claudio Maria Mastroianni
- Sapienza University,Polo Pontino,Latina,Italy
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- Miriam Lichtner
- Sapienza University,Polo Pontino,Latina,Italy
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- Maurizio Paoloni
- Infectious Disease Unit,“S.S. Filippo e Nicola” Hospital,Avezzano,Italy
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- Mariarosaria Esposito
- Hematology Unit,San Gennaro Hospital of Naples,Naples,Italy
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- Chiara D'Amore
- Internal Medicine and Hepatology Unit,Second University of Naples,Naples,Italy
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- Aldo Marrone
- Internal Medicine and Hepatology Unit,Second University of Naples,Naples,Italy
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- Massimo Marignani
- S. Andrea” Hospital,Rome,Italy
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- Cesare Sarrecchia
- Infectious Diseases Unit,Tor Vergata University Hospital,Rome,Italy
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- Loredana Sarmati
- Infectious Diseases Unit,Tor Vergata University Hospital,Rome,Italy
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- Massimo Andreoni
- Infectious Diseases Unit,Tor Vergata University Hospital,Rome,Italy
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- Mario Angelico
- Hepatology Unit,Tor Vergata University Hospital,Rome,Italy
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- Jens Verheyen
- Institute of Virology,University Hospital Essen, University Duisburg-Essen,Essen,Germany
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- Carlo‐Federico Perno
- Department of Experimental Medicine and Surgery,University of Rome Tor Vergata,Rome,Italy
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- Valentina Svicher
- Department of Experimental Medicine and Surgery,University of Rome Tor Vergata,Rome,Italy
書誌事項
- 公開日
- 2015-01-28
- 権利情報
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- http://onlinelibrary.wiley.com/termsAndConditions#vor
- http://doi.wiley.com/10.1002/tdm_license_1.1
- DOI
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- 10.1002/hep.27604
- 公開者
- Ovid Technologies (Wolters Kluwer Health)
この論文をさがす
説明
<jats:p>Hepatitis B virus (HBV) reactivation during immunosuppression can lead to severe acute hepatitis, fulminant liver failure, and death. Here, we investigated hepatitis B surface antigen (HBsAg) genetic features underlying this phenomenon by analyzing 93 patients: 29 developing HBV reactivation and 64 consecutive patients with chronic HBV infection (as control). HBsAg genetic diversity was analyzed by population‐based and ultradeep sequencing (UDS). Before HBV reactivation, 51.7% of patients were isolated hepatitis B core antibody (anti‐HBc) positive, 31.0% inactive carriers, 6.9% anti‐HBc/anti‐HBs (hepatitis B surface antibody) positive, 6.9% isolated anti‐HBs positive, and 3.4% had an overt HBV infection. Of HBV‐reactivated patients, 51.7% were treated with rituximab, 34.5% with different chemotherapeutics, and 13.8% with corticosteroids only for inflammatory diseases. In total, 75.9% of HBV‐reactivated patients (vs. 3.1% of control patients; <jats:italic toggle="yes">P</jats:italic> < 0.001) carried HBsAg mutations localized in immune‐active HBsAg regions. Of the 13 HBsAg mutations found in these patients, 8 of 13 (M103I‐L109I‐T118K‐P120A‐Y134H‐S143L‐D144E‐S171F) reside in a major hydrophilic loop (target of neutralizing antibodies [Abs]); some of them are already known to hamper HBsAg recognition by humoral response. The remaining five (C48G‐V96A‐L175S‐G185E‐V190A) are localized in class I/II–restricted T‐cell epitopes, suggesting a role in HBV escape from T‐cell‐mediated responses. By UDS, these mutations occurred in HBV‐reactivated patients with a median intrapatient prevalence of 73.3% (range, 27.6%‐100%) supporting their fixation in the viral population as a predominant species. In control patients carrying such mutations, their median intrapatient prevalence was 4.6% (range, 2.5%‐11.3%; <jats:italic toggle="yes">P</jats:italic> < 0.001). Finally, additional N‐linked glycosylation (NLG) sites within the major hydrophilic loop were found in 24.1% of HBV‐reactivated patients (vs. 0% of chronic patients; <jats:italic toggle="yes">P</jats:italic> < 0.001); 5 of 7 patients carrying these sites remained HBsAg negative despite HBV reactivation. NLG can mask immunogenic epitopes, abrogating HBsAg recognition by Abs. <jats:italic toggle="yes">Conclusion</jats:italic>: HBV reactivation occurs in a wide variety of clinical settings requiring immune‐suppressive therapy, and correlates with HBsAg mutations endowed with enhanced capability to evade immune response. This highlights the need for careful patient monitoring in all immunosuppressive settings at reactivation risk and of establishing a prompt therapy to prevent HBV‐related clinical complications. (H<jats:sc>epatology</jats:sc> 2015;61:823–833)</jats:p>
収録刊行物
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- Hepatology
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Hepatology 61 (3), 823-833, 2015-01-28
Ovid Technologies (Wolters Kluwer Health)

