Purpose of review Serious non-AIDS events or noninfectious complications of HIV infection far outnumber AIDS events in the current combination antiretroviral therapy (ART) era and are attributed to chronic inflammation. Thus, a better understanding of why inflammation persists on ART will assist in developing better therapeutic strategies, including optimal timing of ART initiation. Recent findings Markers of inflammation and coagulation, such as D-dimer, interleukin-6, C-reactive protein, soluble CD14, and soluble CD163, predict end-organ disease and mortality, whereas markers of T-cell activation appear more predictive of CD4 T-cell decline, AIDS events, or response to therapy. Initiating ART at high CD4 T-cell counts can result in less inflammation as supported by studies in acute and early HIV infection, but antiretroviral drugs may differentially affect inflammatory pathways. Decreasing inflammation in HIV-uninfected individuals may decrease morbidity, but long-term outcomes studies in HIV-infected individuals are lacking. Summary Circulating biomarkers of inflammation are among the strongest predictors of non-AIDS outcomes in treated HIV infection. With additional investigation, they may serve in the future as specific end-organ disease surrogate endpoints and may help identify those patients at highest risk of non-AIDS events who may benefit from either early ART and/or potential adjuvant anti-inflammatory therapies.
The timing of type I interferon signalling determines the disease course of SIV infection. Type I interferon (IFN-I) is shown here to have dual effects in rhesus macaques exposed to simian immunodeficiency virus (SIV): it is beneficial at the onset of infection but as infection progresses it becomes detrimental. IFN signaling was manipulated in two ways. IFN-I receptor blockade results in increased plasma viraemia, accelerated CD4 T cell loss and progression to AIDS. In contrast, IFN-α2a administration prior to high-dose intrarectal SIV challenge increases resistance to systemic infection. However, continued IFN-α2a treatment induces IFN-I desensitization and facilitates SIV infection. Overall, the benefits of early antiviral activity appear to outweigh the detrimental effects of immune activation during acute SIV infection. Inflammation in HIV infection is predictive of non-AIDS morbidity and death1, higher set point plasma virus load2 and virus acquisition3; thus, therapeutic agents are in development to reduce its causes and consequences. However, inflammation may simultaneously confer both detrimental and beneficial effects. This dichotomy is particularly applicable to type I interferons (IFN-I) which, while contributing to innate control of infection4,5,6,7,8,9,10, also provide target cells for the virus during acute infection, impair CD4 T-cell recovery, and are associated with disease progression6,7,11,12,13,14,15,16,17,18,19. Here we manipulated IFN-I signalling in rhesus macaques (Macaca mulatta) during simian immunodeficiency virus (SIV) transmission and acute infection with two complementary in vivo interventions. We show that blockade of the IFN-I receptor caused reduced antiviral gene expression, increased SIV reservoir size and accelerated CD4 T-cell depletion with progression to AIDS despite decreased T-cell activation. In contrast, IFN-α2a administration initially upregulated expression of antiviral genes and prevented systemic infection. However, continued IFN-α2a treatment induced IFN-I desensitization and decreased antiviral gene expression, enabling infection with increased SIV reservoir size and accelerated CD4 T-cell loss. Thus, the timing of IFN-induced innate responses in acute SIV infection profoundly affects overall disease course and outweighs the detrimental consequences of increased immune activation. Yet, the clinical consequences of manipulation of IFN signalling are difficult to predict in vivo and therapeutic interventions in human studies should be approached with caution.
UNLABELLEDAbnormal levels of inflammation are associated with cardiovascular disease and mortality in human immunodeficiency virus (HIV)-infected patients. Microbial translocation, which may cause inflammation, is decreased by sevelamer in patients undergoing hemodialysis. In this single-arm study, we evaluated the effects of 8 weeks of sevelamer therapy on 36 HIV-infected subjects who were not receiving antiretroviral therapy. Sevelamer did not significantly change markers of microbial translocation, inflammation, or T-cell activation. During sevelamer treatment, however, levels of soluble tissue factor, low-density lipoprotein (LDL) cholesterol, and oxidized LDL cholesterol decreased significantly, whereas D-dimer levels increased. Thus, in this study population, sevelamer did not reduce microbial translocation but may have yielded cardiovascular benefits.CLINICAL TRIALS REGISTRATIONNCT 01543958.
641. Acute Retroviral Syndrome is Associated with Gut Mucosal CD4 Depletion, Inflammation and High Viral and Proviral Burden in Systemic and Tissue Compartments Trevor Crowell, MD; James L.K. Fletcher, BMBCh; Eugene Kroon, MD; Suteeraporn Pinyakorn, MSc; Alexandra Schuetz, PhD; Irini Sereti, MD, MHS; Shelly J. Krebs, PhD; Bonnie M. Slike, MSc; Nicolas Chomont, PhD; Linda L. Jagodzinski, PhD; Netanya Sandler, MD; Robin Dewar, PhD; Rungsun Rerknimitr, MD; Somprartthana Rattanamanee, RN, MSc; Rapee Trichavaroj, MSc; Victor G. Valcour, MD, PhD; Serena Spudich, MD; Merlin L. Robb, MD; Jerome H. Kim, MD, FACP, FIDSA; Nelson L. Michael, MD, PhD; Nittaya Phanuphak, MD, PhD; Jintanat Ananworanich, MD, PhD; the RV 254/SEARCH 010 Study Group; Division of Infectious Diseases, Johns Hopkins University School of Medicine, Baltimore, MD; U.S. Military HIV Research Program, Walter Reed Army Institute of Research, Silver Spring, MD; Henry M. Jackson Foundation for the Advancement of Military Medicine, Bethesda, MD; SEARCH, Thai Red Cross AIDS Research Centre, Bangkok, Thailand; Department of Retrovirology, Armed Forces Research Institute of Medical Sciences – United States Component, Bangkok, Thailand; National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD; Vaccine and Gene Therapy Institute of Florida, Port St. Lucie, FL; Division of Infectious Diseases, University of Texas Medical Branch, Galveston, TX; Virus Isolation and Serological Lab, National Cancer Institute at Frederick, Frederick, MD; Department of Medicine, Faculty of Medicine, Chulalongkorn University, Bangkok, Thailand; Department of Neurology, University of California San Francisco School of Medicine, San Francisco, CA; Department of Neurology, Yale University School of Medicine, New Haven, CT Session: 97. HIV Related Inflammation, Complications and Comorbidities Friday, October 10, 2014: 10:30 AM
ABSTRACT While simian immunodeficiency viruses (SIVs) are generally nonpathogenic in their natural hosts, dramatic increases in pathogenicity may occur upon cross-species transmission to new hosts. Deciphering the drivers of these increases in virulence is of major interest for understanding the emergence of new human immunodeficiency viruses (HIVs). We transmitted SIVsab from the sabaeus species of African green monkeys (AGMs) to pigtailed macaques (PTMs). High acute viral replication occurred in all SIVsab-infected PTMs, yet the outcome of chronic infection was highly variable, ranging from rapid progression to controlled infection, which was independent of the dynamics of acute viral replication, CD4+ T cell depletion, or preinfection levels of microbial translocation. Infection of seven PTMs with plasma collected at necropsy from a rapid-progressor PTM was consistently highly pathogenic, with high acute and chronic viral replication, massive depletion of memory CD4+ T cells, and disease progression in all PTMs. The plasma inoculum used for the serial passage did not contain adventitious bacterial or viral contaminants. Single-genome amplification showed that this inoculum was significantly more homogenous than the inoculum directly derived from AGMs, pointing to a strain selection in PTMs. In spite of similar peak plasma viral loads between the monkeys in the two passages, immune activation/inflammation levels dramatically increased in PTMs infected with the passaged virus. These results suggest that strain selection and a massive cytokine storm are major factors behind increased pathogenicity of SIV upon serial passage and adaptation of SIVs to new hosts following cross-species transmission. IMPORTANCE We report here that upon cross-species transmission and serial passage of SIVsab from its natural host, the sabaeus African green monkey (AGM), to a new host, the pigtailed macaque (PTM), viral adaptation and increased pathogenicity involve strain selection and a massive cytokine storm. These results permit the design of strategies aimed at preventing cross-species transmission from natural hosts of SIVs to humans in areas of endemicity. Furthermore, our study describes a new animal model for SIV infection. As the outcomes of SIVsab infection in PTMs, African green monkeys, and rhesus macaques are different, the use of these systems enables comparative studies between pathogenic, nonpathogenic, and elite-controlled infections, to gain insight into the mechanisms of SIV immunodeficiency and comorbidities.
Idiopathic CD4 lymphocytopenia (ICL) is a syndrome of unknown etiology characterized by low peripheral CD4 T cell counts and susceptibility to opportunistic infections. One hypothesis for its etiology is trapping of T cells in effector sites. 11 ICL patients and 16 healthy controls (HC) underwent colonic biopsies for CD3, CD4, and CD8 T cell enumeration by flow cytometry (FC) and immunohistochemistry (IHC) in lamia propria (LP). Mucosal IL17+ CD4 T cells were assessed after PMA/ionomycin stimulation. Plasma levels of LPS (for microbial translocation), I-FABP (for gut epithelial integrity), sCD14 (for monocyte activation), D-dimer (for coagulation) and CRP, IL-6 and TNFalpha (for inflammation) were tested in 33 ICL patients and 44 HC. ICL patients had fewer CD3 (2.84-fold, P=0.0080), CD4 (3.04-fold, P=0.013) and CD8 (2.28-fold, P=0.043) T cells in the colonic mucosa compared to HC by FC and fewer CD3 (2.31-fold, P=0.036) and CD4 (3.81-fold, P=0.0003) T cells in LP by IHC. The proportion of IL-17+ CD4 T cells was higher in ICL compared to HC (6.04 vs 3.35%, P=0.013). Levels of sCD14 levels were slightly higher in ICL than in HC (1.42 vs 1.21 µg/ml, P=0.003). Levels of LPS, I-FABP, IL-6, TNFalpha, D-Dimer, and CRP levels were not significantly different between ICL and HC (all P>0.05). These data suggest that colonic mucosal lymphopenia accompanies peripheral T cell lymphopenia in ICL, albeit with preserved gut epithelial integrity and a lack of systemic inflammation.
Mucosal Th17 cells play an important role in maintaining gut epithelium integrity and thus prevent microbial translocation. Chronic HIV infection is characterized by mucosal Th17 cell depletion, microbial translocation and subsequent immune-activation, which remain elevated despite antiretroviral therapy (ART) correlating with increased mortality. However, when Th17 depletion occurs following HIV infection is unknown. We analyzed mucosal Th17 cells in 42 acute HIV infection (AHI) subjects (Fiebig (F) stage I-V) with a median duration of infection of 16 days and the short-term impact of early initiation of ART. Th17 cells were defined as IL-17+ CD4+ T cells and their function was assessed by the co-expression of IL-22, IL-2 and IFNγ. While intact during FI/II, depletion of mucosal Th17 cell numbers and function was observed during FIII correlating with local and systemic markers of immune-activation. ART initiated at FI/II prevented loss of Th17 cell numbers and function, while initiation at FIII restored Th17 cell numbers but not their polyfunctionality. Furthermore, early initiation of ART in FI/II fully reversed the initially observed mucosal and systemic immune-activation. In contrast, patients treated later during AHI maintained elevated mucosal and systemic CD8+ T-cell activation post initiation of ART. These data support a loss of Th17 cells at early stages of acute HIV infection, and highlight that studies of ART initiation during early AHI should be further explored to assess the underlying mechanism of mucosal Th17 function preservation.
ABSTRACT T helper 17 (Th17) cells play an important role in mucosal immune homeostasis and maintaining the integrity of the mucosal epithelial barrier. Loss of Th17 cells has been extensively documented during human immunodeficiency virus (HIV) and simian immunodeficiency virus (SIV) infections. The lack of effective repopulation of Th17 cells has been associated with chronic immune activation mediated by the translocation of microbial products. Using ex vivo analysis of purified peripheral blood CD4 T cells from SIV-infected rhesus macaques, we show that the suppression of interleukin-17 (IL-17) expression correlated with upregulated expression of negative regulatory genes PIAS3, SHP2, and SOCS3 in CD4 T cells. Suppressed Th17 expression was accompanied by elevated levels of soluble CD14 (sCD14) and lipopolysaccharide binding protein (LBP) in the plasma during early stages of infection. Plasma viral loads rather than sCD14 or LBP levels correlated with acute immune activation. Additionally, we observed a significant increase in the expression of CD14 on peripheral blood monocytes that correlated with IL-23 expression and markers of microbial translocation. Taken together, our results provide new insights into the early events associated with acute SIV pathogenesis and suggest additional mechanisms playing a role in suppression of Th17 cells.
Nontyphoidal Salmonella (NTS) serovars are a common cause of acute food-borne gastroenteritis worldwide and can cause invasive systemic disease in young infants, the elderly, and immunocompromised hosts, accompanied by high case fatality. Vaccination against invasive NTS disease is warranted where the disease incidence and mortality are high and multidrug resistance is prevalent, as in sub-Saharan Africa. Live-attenuated vaccines that mimic natural infection constitute one strategy to elicit protection. However, they must particularly be shown to be adequately attenuated for consideration of immunocompromised subjects. Accordingly, we examined the safety and tolerability of an oral live attenuated Salmonella typhimurium vaccine candidate, CVD 1921, in an established chronic simian immunodeficiency virus (SIV)-infected rhesus macaque model. We evaluated clinical parameters, histopathology, and measured differences in mucosal permeability to wild-type and vaccine strains. Compared to the wild-type S. typhimurium strain I77 in both SIV-infected and SIV-uninfected nonhuman primate hosts, this live-attenuated vaccine shows reduced shedding and systemic spread, exhibits limited pathological disease manifestations in the digestive tract, and induces low levels of cellular infiltration in tissues. Furthermore, wild-type S. typhimurium induces increased intestinal epithelial damage and permeability, with infiltration of neutrophils and macrophages in both SIV-infected and SIV-uninfected nonhuman primates compared to the vaccine strain. Based on shedding, systemic spread, and histopathology, the live-attenuated S. typhimurium strain CVD 1921 appears to be safe and well-tolerated in the nonhuman primate model, including chronically SIV-infected rhesus macaques.
Purpose of reviewThe dramatic increase in the number and type of immune biomarkers that can be measured, particularly those assessing immune activation, has led to numerous investigations in HIV-infected individuals to explore pathogenesis and to assess therapeutic interventions that aim to attenuate immune activation. An overview is provided on study designs and related statistical and operational issues relevant to these investigations.Recent findingsCohort studies and nested case-control studies within these cohorts have identified multiple biomarkers that are associated with an increased risk of disease. Early-stage clinical trials of therapies to address these risks in HIV-infected individuals with viral suppression on antiretroviral therapy are a substantial focus of current HIV research.SummaryAppropriate study design is essential in biomarker research.
Type I interferons (IFNs) are critical for the innate defense against viruses. However, long-term or chronic production of Type I IFNs may promote autoimmune diseases such as systemic lupus erythematosus (SLE; lupus). Data also suggest that Type I IFN may contribute to the persistence of some viral infections. There is a need for robust Type I IFN antagonists for understanding the in vivo role(s) of Type I IFNs, and to potentially block IFN when it causes or exacerbates a pathologic condition. We previously described an interferon analogue, “IFN-Ant1” (IFN-α2[Arg120Glu]-8CT) that was derived from human IFN-α2. IFN-Ant1 lacks most biological activity and acts in vitro as a partial competitive antagonist. We now report that IFN-Ant1 functions in vivo in primates. The efficacy of this antagonist was tested in rhesus macaques ( N = 6) challenged with simian immunodeficiency virus (SIVmac251), and treated during the acute infection stage (4 weeks) with daily injections of IFN-Ant1 or placebo. Macaques were analyzed for IFN-related and immunological markers during this acute phase (4 weeks) and then for an additional 6 months. Treatment of the macaques with the antagonist during the acute phase of SIV infection was well tolerated and led to significant changes in several immune and virologic parameters. Among these: (1) macaques treated with IFN-Ant1 had significantly higher serum viral loads than placebo-treated; and (2) treated animals rapidly progressed to AIDS. Various molecular and immune parameters were monitored during the acute and chronic phases of the infection. These data contribute to our understanding of the role of endogenous Type I IFN during SIV infection of macaques, and provide evidence for efficacy of the antagonist in primates.
Objectives:To examine the impact of serum-derived bovine immunoglobulin, an oral medical food known to neutralize bacterial antigen and reduce intestinal inflammation, on restoration of mucosal immunity and gastrointestinal function in individuals with HIV enteropathy.Design:Open-label trial with intensive 8-week phase of bovine serum immunoglobulin (SBI) 2.5g twice daily with a 4-week washout period and an optional 9-month extension study.Methods:HIV enteropathy was defined as chronic gastrointestinal symptoms including frequent loose or watery stools despite no identifiable, reversible cause. Upper endoscopy for tissue immunofluorescent antibody assay and disaccharide gut permeability/absorption studies were performed before and after 8 weeks of SBI to test mucosal immunity and gastrointestinal function. Blood was collected for markers of microbial translocation, inflammation, and collagen kinetics. A validated gastrointestinal questionnaire assessed changes in symptoms.Results:All eight participants experienced profound improvement in symptoms with reduced bowel movements/day (P=0.008) and improvements in stool consistency (P=0.008). Gut permeability was normal before and after the intervention, but d-xylose absorption increased in seven of eight participants. Mucosal CD4(+) lymphocyte densities increased by a median of 139.5cells/mm(2) from 213 to 322cells/mm(2) (P=0.016). Intestinal-fatty acid binding protein (I-FABP), a marker of enterocyte damage, initially rose in seven of eight participants after 8 weeks (P=0.039), and then fell below baseline in four of five who continued receiving SBI (P=0.12). Baseline serum I-FABP levels were negatively correlated with subsequent rise in mucosal CD4(+) lymphocyte densities (r=-0.74, P=0.046).Conclusion:SBI significantly increases intestinal mucosal CD4(+) lymphocyte counts, improves duodenal function, and showed evidence of promoting intestinal repair in the setting of HIV enteropathy.
Innate immune activation was a strong predictor of HIV acquisition in women at risk for HIV in CAPRISA 004. Identifying the cause(s) of activation could enable targeted prevention interventions. In this study, plasma concentrations of lipopolysaccharide, soluble CD14, and intestinal fatty acid-binding protein did not differ between subjects who did or did not subsequently acquire HIV nor were these levels correlated with plasma cytokines or natural killer cell activation. There was no difference between HIV acquirers and non-acquirers in the chemokine and cytokine responses of peripheral blood mononuclear cells stimulated with TLR2, 4, or 7/8 agonists. Further studies are required.
ABSTRACTA hallmark of pathogenic simian immunodeficiency virus (SIV) and human immunodeficiency virus (HIV) infections is the rapid and near-complete depletion of mucosal CD4+T lymphocytes from the gastrointestinal tract. Loss of these cells and disruption of epithelial barrier function are associated with microbial translocation, which has been proposed to drive chronic systemic immune activation and disease progression. Here, we evaluate in rhesus macaques a novel attenuated variant of pathogenic SIVmac239, termed ΔGY, which contains a deletion of a Tyr and a proximal Gly from a highly conserved YxxØ trafficking motif in the envelope cytoplasmic tail. Compared to SIVmac239, ΔGY established a comparable acute peak of viremia but only transiently infected lamina propria and caused little or no acute depletion of mucosal CD4+T cells and no detectable microbial translocation. Nonetheless, these animals developed T-cell activation and declining peripheral blood CD4+T cells and ultimately progressed with clinical or pathological features of AIDS. ΔGY-infected animals also showed no infection of macrophages or central nervous system tissues even in late-stage disease. Although the ΔGY mutation persisted, novel mutations evolved, including the formation of new YxxØ motifs in two of four animals. These findings indicate that disruption of this trafficking motif by the ΔGY mutation leads to a striking alteration in anatomic distribution of virus with sparing of lamina propria and a lack of microbial translocation. Because these animals exhibited wild-type levels of acute viremia and immune activation, our findings indicate that these pathological events are dissociable and that immune activation unrelated to gut damage can be sufficient for the development of AIDS.
BACKGROUND & AIMS:Autosomal recessive polycystic kidney disease (ARPKD), the most common ciliopathy of childhood, is characterized by congenital hepatic fibrosis and progressive cystic degeneration of kidneys. We aimed to describe congenital hepatic fibrosis in patients with ARPKD, confirmed by detection of mutations in PKHD1. METHODS:Patients with ARPKD and congenital hepatic fibrosis were evaluated at the National Institutes of Health from 2003 to 2009. We analyzed clinical, molecular, and imaging data from 73 patients (age, 1-56 years; average, 12.7 ± 13.1 years) with kidney and liver involvement (based on clinical, imaging, or biopsy analyses) and mutations in PKHD1. RESULTS:Initial symptoms were liver related in 26% of patients, and others presented with kidney disease. One patient underwent liver and kidney transplantation, and 10 others received kidney transplants. Four presented with cholangitis and one with variceal bleeding. Sixty-nine percent of patients had enlarged left lobes on magnetic resonance imaging, 92% had increased liver echogenicity on ultrasonography, and 65% had splenomegaly. Splenomegaly started early in life; 60% of children younger than 5 years had enlarged spleens. Spleen volume had an inverse correlation with platelet count and prothrombin time but not with serum albumin level. Platelet count was the best predictor of spleen volume (area under the curve of 0.88905), and spleen length corrected for patient's height correlated inversely with platelet count (R(2) = 0.42, P < .0001). Spleen volume did not correlate with renal function or type of PKHD1 mutation. Twenty-two of 31 patients who underwent endoscopy were found to have varices. Five had variceal bleeding, and 2 had portosystemic shunts. Forty-percent had Caroli syndrome, and 30% had an isolated dilated common bile duct. CONCLUSIONS:Platelet count is the best predictor of the severity of portal hypertension, which has early onset but is underdiagnosed in patients with ARPKD. Seventy percent of patients with ARPKD have biliary abnormalities. Kidney and liver disease are independent, and variability in severity is not explainable by type of PKHD1 mutation; ClinicalTrials.gov number, NCT00068224.
Systemic immune activation is increased in HIV-infected individuals, even in the setting of virus suppression with antiretroviral therapy. Although numerous factors may contribute, microbial products have recently emerged as potential drivers of this immune activation. In this Review, we describe the intestinal damage that occurs in HIV infection, the evidence for translocation of microbial products into the systemic circulation and the pathways by which these products activate the immune system. We also discuss novel therapies that disrupt the translocation of microbial products and the downstream effects of microbial translocation.
CD4 T follicular helper (TFH) cells interact with and stimulate the generation of antigen-specific B cells. TFH cell interaction with B cells correlates with production of SIV-specific immunoglobulins. However, the fate of TFH cells and their participation in SIV-induced antibody production is not well understood. We investigated the phenotype, function, location, and molecular signature of TFH cells in rhesus macaques. Similar to their human counterparts, TFH cells in rhesus macaques represented a heterogeneous population with respect to cytokine function. In a highly differentiated subpopulation of TFH cells, characterized by CD150lo expression, production of Th1 cytokines was compromised while IL-4 production was augmented, and cells exhibited decreased survival, cycling, and trafficking capacity. TFH cells exhibited a distinct gene profile that was markedly altered by SIV infection. TFH cells were infected by SIV; yet, in some animals, these cells actually accumulated during chronic SIV infection. Generalized immune activation and increased IL-6 production helped drive TFH differentiation during SIV infection. Accumulation of TFH cells was associated with increased frequency of activated germinal center B cells and SIV-specific antibodies. Therefore, chronic SIV does not disturb the ability of TFH cells to help B cell maturation and production of SIV-specific immunoglobulins.
Purpose: In patients with HBeAg-positive chronic hepatitis B (CHB), one of the primary endpoints of therapy is HBeAg seroconversion; however, there is inconsistent data on the durability of HBeAg seroconversion following consolidation therapy.Our goal is to investigate the rate of recurrent HBV viremia in CHB patients after HBeAg seroconversion.Methods: We retrospectively studied 88 consecutive CHB patients who achieved treatment-induced HBeAg seroconversion among the 458 HBeAg-positive patients treated with various antiviral regimens at 3 GI and liver clinics in the U.S. between 3/1998 and 9/2010.HBeAg seroconversion was defined as loss of HBeAg and development of hepatitis B e antibody (anti-HBe).Recurrent HBV viremia was defined as reappearance of detectable HBV DNA (>100 IU/mL) from nadir in two consecutive laboratory tests.Results: Patients were stratified into two groups: Group I -49 patients who remained on therapy, and Group II -39 patients who discontinued therapy following HBeAg seroconversion.In both groups, the majority of patients were Asian (94-95%) and male (62-69%).Antiviral medications in which patients achieved HBeAg seroconversion included: lamivudine (23%), adefovir (34%), entecavir (36%), tenofovir (4%), adefovir+lamivudine (1%), and entecavir+tenofovir (2%).Median treatment duration before HBeAg seroconversion was similar in Group I and Group II (18 [1-86] vs. 21 [5-63] months, p=0.99).At the time of HBeAg seroconversion, compared to Group I, Group II was younger (37±10 vs. 41±12 years), had lower mean HBV DNA levels (0.27±0.78 vs. 0.95±1.69log10 IU/mL), and median ALT levels (24 [8-60] vs. 30 [5-93] U/L).In Group II, the median duration of consolidation therapy before treatment discontinuation was 12 months (range, 1-55), in which 10 completed <6 months, 10 completed 6-11 months, and 19 completed ≥12 months.At time of treatment discontinuation, all patients in Group II had undetectable HBV DNA.The rate of recurrent HBV viremia was significantly higher in Group II compared to Group I (90% vs. 0%, p<0.0001).After a median of 3 (1-42) months off therapy, the mean HBV DNA level detected at time of recurrent HBV viremia was 4.11±1.92log10 IU/mL.Conclusion: The majority of patients (90%) who discontinued therapy after achieving HBeAg seroconversion with undetectable HBV DNA by PCR experienced recurrent HBV viremia.Patients who remained on therapy achieved and maintained undetectable level of HBV DNA.Patients should be monitored closely for recurrent HBV when therapy is discontinued, despite achieving HBeAg seroconversion.