Abstract Background The prevalence of Mycobacterium abscessus (Mab) infection is rising, with immunocompromised individuals being especially susceptible. While treatment success for the subspecies abscessus has been as low as 33%, recent studies and case reports suggest potential efficacy of select dual β-lactam (Dβ). This study evaluated the efficacy and tolerability of select Dβ in treating MDR-Mab infections, guided by in-vitro susceptibility results. Methods We reviewed the treatment of 19 adults with Mab infection at the University of Florida Hospital, Gainesville, who underwent Dβ synergy testing between January 2019 and March 2023. Medical histories, laboratory results, and clinical outcomes were reviewed. We summarized patient and infection characteristics and compared the time from diagnosis to Dβs initiation across outcomes Results Of the 19 patients (mean age: 54 years; 68% females), 11 (58%) had undergone solid organ transplantation or had cancer, and 6 (32%) were on immunosuppressants for autoimmune diseases. Pulmonary infections predominated (68%), with 47% of isolates were macrolide resistant. 11 patients (58%) were due to subspecies abscessus. The Dβs most frequently used for treatment were imipenem combined with either amoxicillin (31%) or ceftaroline (26%). Successful clinical cure or stable culture conversion with ongoing treatment was observed in 9 (47%) cases. 4 patients died during treatment. We observed a trend towards shorter times before initiation of Dβ treatment among patients who were cured. Time to initiation of Dβ therapy exceeded 90 days in 3 of 4 patients who died. Eighteen of 19 patients tolerated dual β-lactams therapy well. Among the 5 who discontinued treatment, the multi-drug regimen, not specifically the dual β-lactams, was the likely cause Conclusion Treatment with Dβ-containing regimens was associated with higher cure rates in this cohort of severely ill, immunocompromised patients. Earlier treatment correlated with better outcomes. Given the poor response to current treatment regimens and the initial promising results of Dβ therapy, clinical trials are planned. Finally, the chosen Dβs may not fully represent the optimal selection due to patient-driven preferences, possibly underscoring a conservative rather than optimal treatment outcome. Disclosures All Authors: No reported disclosures
BACKGROUND:Differences in absolute neutrophil count (ANC) between African and non-African populations have been reported. Neutropenia has also been reported during rifamycin use. ANC values in current tables that assign severity grades to clinical or laboratory events (National Cancer Institute Common Terminology Criteria for Adverse Events [CTCAE] and the National Institute of Allergy and Infectious Diseases Division of AIDS [DAIDS]) might not consistently be applicable among different populations. METHODS:During 2 international tuberculosis treatment trials, 337 participants received 10 mg/kg of rifampin, and 3 groups of 361, 81, and 81 participants received 10, 15, and 20 mg/kg of rifapentine, respectively, for 2 months of daily treatment. ANC was measured at baseline and after 2, 4, 6, 8, and 12 weeks of treatment. CTCAE versions 2.0-4.0 and DAIDS version 2.0 define neutropenia grade 3 as ANC 500-999 cells/μL and ANC 400-599 cells/μL, respectively. We analyzed factors associated with neutropenia. RESULTS:Baseline median ANC was lower in Black African participants than in Black non-African participants (P = .004). CTCAE-defined grade 3 or higher neutropenia occurred in 32 (28 in Africa) participants. Proportions did not differ between rifapentine doses. Only 4 events would have been reported by DAIDS criteria. All neutropenia events resolved spontaneously without interrupting treatment. Enrollment in an African country was an independent factor associated with the development of neutropenia. CONCLUSIONS:Differences in baseline median ANC can result in misclassification of adverse events or inappropriate clinical management. Development and use of population-specific normal values of ANC could improve guidance for research and clinical management.
ABSTRACT Treatment of Mycobacterium abscessus infection presents significant challenges, exacerbated by the emergence of macrolide-resistant strains that necessitate the use of multiple antimicrobials in combination and carry the potential for significant toxic effects. Select dual beta-lactam combinations, with or without beta-lactamase inhibitors, have been shown to be highly active in vitro . Herein, we describe a 6-year-old child with underlying mild bilateral lower lobe cylindrical bronchiectatic lung disease who developed pulmonary Mycobacterium abscessus infection and was treated with a multi-drug regimen including two β-lactam antibiotics, achieving both early clinical and microbiological cure. This case highlights the potential benefit of dual β-lactam therapy for the treatment of drug-resistant Mycobacterium abscessus infection.
Background: There is a need for new tools for monitoring of the response to TB treatment. Such tools may allow for tailored treatment regimens, and stratify patients initiating TB treatment into different risk groups. We evaluated combinations between previously published host biomarkers and new candidates, as tools for monitoring TB treatment response, and prediction of relapse. Methods: Serum samples were collected at multiple time points, from patients initiating TB treatment at research sites situated in South Africa (ActionTB study), Brazil and Uganda (TBRU study). Using a multiplex immunoassay platform, we evaluated the concentrations of selected host inflammatory biomarkers in sera obtained from clinically cured patients with and without subsequent relapse within 2 years of TB treatment completion. Results: A total of 130 TB patients, 30 (23%) of whom had confirmed relapse were included in the study. The median time to relapse was 9.7 months in the ActionTB study (n = 12 patients who relapsed), and 5 months (n = 18 patients who relapsed) in the TBRU study. Serum concentrations of several host biomarkers changed during TB treatment with IL-6, IP-10, IL-22 and complement C3 showing potential individually, in predicting relapse. A sixmarker signature comprising of TTP, BMI, sICAM-1, IL-22, IL-1 beta and complement C3, predicted relapse, prior to the onset of TB treatment with 89% sensitivity and 94% specificity. Furthermore, a 3-marker signature (Apo-CIII, IP-10 and sIL-6R) predicted relapse in samples collected at the end of TB treatment with sensitivity of 71% and specificity of 74%. A previously identified baseline relapse prediction signature (TTP, BMI, TNF-beta, sIL-6R, IL-12p40 and IP-10) also showed potential in the current study. Conclusion: Serum host inflammatory biomarkers may be useful in predicting relapse in TB patients prior to the initiation of treatment. Our findings have implications for tailored patient management and require prospective evaluation in larger studies. (c) 2024 The Author(s). Published by Elsevier Ltd on behalf of The British Infection Association. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
AbstractThe Phase 3 randomized controlled trial, TBTC Study 31/ACTG A5349 (NCT02410772) demonstrated that a 4-month rifapentine-moxifloxacin regimen for drug-susceptible pulmonary tuberculosis was safe and effective. The primary efficacy outcome was 12-month tuberculosis disease free survival, while the primary safety outcome was the proportion of grade 3 or higher adverse events during the treatment period. We conducted an analysis of demographic, clinical, microbiologic, radiographic, and pharmacokinetic data and identified risk factors for unfavorable outcomes and adverse events. Among participants receiving the rifapentine-moxifloxacin regimen, low rifapentine exposure is the strongest driver of tuberculosis-related unfavorable outcomes (HR 0.65 for every 100 µg∙h/mL increase, 95%CI 0.54–0.77). The only other risk factors identified are markers of higher baseline disease severity, namely Xpert MTB/RIF cycle threshold and extent of disease on baseline chest radiography (Xpert: HR 1.43 for every 3-cycle-threshold decrease, 95%CI 1.07–1.91; extensive disease: HR 2.02, 95%CI 1.07–3.82). From these risk factors, we developed a simple risk stratification to classify disease phenotypes as easier-, moderately-harder, or harder-to-treat TB. Notably, high rifapentine exposures are not associated with any predefined adverse safety outcomes. Our results suggest that the easier-to-treat subgroup may be eligible for further treatment shortening while the harder-to-treat subgroup may need higher doses or longer treatment.
BACKGROUND:Tuberculosis (TB) Trials Consortium Study 31/AIDS Clinical Trials Group A5349, an international randomized open-label phase 3 noninferiority trial showed that a 4-month daily regimen substituting rifapentine for rifampin and moxifloxacin for ethambutol had noninferior efficacy and was safe for the treatment of drug-susceptible pulmonary TB (DS-PTB) compared with the standard 6-month regimen. We explored results among the prespecified subgroup of people with human immunodeficiency virus (HIV) (PWH). METHODS:PWH and CD4+ counts ≥100 cells/μL were eligible if they were receiving or about to initiate efavirenz-based antiretroviral therapy (ART). Primary endpoints of TB disease-free survival 12 months after randomization (efficacy) and ≥ grade 3 adverse events (AEs) on treatment (safety) were compared, using a 6.6% noninferiority margin for efficacy. Randomization was stratified by site, pulmonary cavitation, and HIV status. PWH were enrolled in a staged fashion to support cautious evaluation of drug-drug interactions between rifapentine and efavirenz. RESULTS:A total of 2516 participants from 13 countries in sub-Saharan Africa, Asia, and the Americas were enrolled. Among 194 (8%) microbiologically eligible PWH, the median CD4+ count was 344 cells/μL (interquartile range: 223-455). The rifapentine-moxifloxacin regimen was noninferior to control (absolute difference in unfavorable outcomes -7.4%; 95% confidence interval [CI] -20.8% to 6.0%); the rifapentine regimen was not noninferior to control (+7.5% [95% CI, -7.3% to +22.4%]). Fewer AEs were reported in rifapentine-based regimens (15%) than the control regimen (21%). CONCLUSIONS:In people with HIV-associated DS-PTB with CD4+ counts ≥100 cells/μL on efavirenz-based ART, the 4-month daily rifapentine-moxifloxacin regimen was noninferior to the 6-month control regimen and was safe. CLINICAL TRIALS REGISTRATION:NCT02410772.
Arboviruses, including dengue, Zika, chikungunya, yellow fever, and West Nile, are a leading cause of systemic human infections worldwide. These illnesses are transmitted to humans through the bite of arthropod vectors, such as mosquitoes and ticks. Diseases caused by arboviruses are important causes of morbidity and mortality globally. While some diseases can cause a mild flu-like illness, others can cause severe life-threatening bleeding and neurologic disease. Ocular manifestations of flaviviruses can present with a wide array of findings, from conjunctivitis to retinitis to optic nerve disease. The goal of this chapter is to describe the ocular manifestations of arboviruses in order to help familiarize healthcare providers with ocular findings and improve treatment and recovery.
Rationale: We developed a standardized method, possible poor treatment response (PPTR), to help ascertain efficacy endpoints in Study S31/A5349 (NCT 02410772), an open-label trial comparing two 4-month rifapentine-based regimens with a standard 6-month regimen for the treatment of pulmonary tuberculosis (TB). Objectives: We describe the use of the PPTR process and evaluate whether the goals of minimizing bias in efficacy endpoint assessment and attainment of relevant data to determine outcomes for all participants were achieved. Methods: A PPTR event was defined as the occurrence of one or more prespecified triggers. Each PPTR required initiation of a standardized evaluation process that included obtaining multiple sputum samples for microbiology. Measurements and Main Results: Among 2,343 participants with culture-confirmed drug-susceptible TB, 454 individuals (19.4%) had a total of 534 individual PPTR events, of which 76.6% were microbiological (positive smear or culture at or after 17 wk). At least one PPTR event was experienced by 92.4% (133 of 144) of participants with TB-related unfavorable outcome and between 13.8% and 14.7% of participants with favorable and not-assessable outcomes. A total of 75% of participants with TB-related unfavorable outcomes had microbiological confirmation of failure to achieve a disease-free cure. Conclusions: Standardized methodologies, such as our PPTR approach, could facilitate unbiased efficacy outcome determinations, improve discrimination between outcomes that are related and unrelated to regimen efficacy, and enhance the ability to conduct pooled analyses of contemporary trials.
This study sought to assess perceptions towards and reasons for participation in research bronchoscopy studies in a high TB burden urban setting. Additionally, the study aimed to identify areas of pre- and post-procedural concern among healthy adults approached to participate in research bronchoscopy. A cross sectional qualitative study was undertaken at the Uganda-Case Western Reserve University Collaboration Tuberculosis Research Project Clinic at Mulago National Referral Hospital in Kampala, Uganda. In-depth interviews were conducted with participants at their pre-bronchoscopy visit (n = 17) and after they had undergone bronchoscopy (n = 23) to examine their perceptions and experiences with the procedure. Following consent, all interviews were audio recorded and later transcribed and typed in MS WORD. Local language interviews were translated into English by the social science interviewers. Qualitative analysis was performed manually following an inductive and emergent approach typical in thematic analysis. This study was approved by the Makerere University School of Social Sciences Research Ethics Committee (MAKSS REC 09.18.220) and registered with the Uganda National Council for Science and Technology (UNCST SS4785). Overall willingness to participate in bronchoscopy was high as many participants viewed the study as primarily a means of getting free health checks and determining their health status. Notably, despite extensive face to face counseling for this study coupled with the fact that our participants had been involved in prior research at the site, therapeutic misconception still played a pivotal role in willingness to participate in research bronchoscopy. Therapeutic misconception has important ethical and research implications in clinical research, which requires strategies to tackle it, even among a pool of potential participants who are knowledgeable about a disease or clinical care procedures. Continuous awareness and knowledge building about the difference between being a trial participant and therapeutic misconception must become a mainstay in trials to improve the process of informed consent for future research bronchoscopy studies.
Mycobacterium bovis bacille Calmette-Guérin (BCG) has been used for 100 years and prevents disseminated tuberculosis and death in young children. However, it shows only partial efficacy against pulmonary tuberculosis (TB) in adults, so new vaccines are urgently needed. The protective efficacy of BCG depends on T cells, which are typically activated by pathogen-derived protein antigens that bind to highly polymorphic major histocompatibility complex (MHC) molecules. Some T cells recognize non-protein antigens via antigen presenting systems that are independent of genetic background, leading to their designation as donor-unrestricted T (DURT) cells. Whether live whole cell vaccines, like BCG, can induce durable expansions of DURT cells in humans is not known. We used combinatorial tetramer staining, multi-parameter flow cytometry, and immunosequencing to comprehensively characterize the effect of BCG on activation and expansion of DURT cell subsets. We examined peripheral blood mononuclear cells (PBMC) derived from a Phase I study of South African adults in which samples were archived at baseline, 3 weeks, and 52 weeks post-BCG revaccination. We did not observe a change in the frequency of total mucosal-associated invariant T (MAIT) cells, invariant natural killer T (iNKT) cells, germline encoded mycolyl-reactive (GEM) T cells, or γδ T cells at 52 weeks post-BCG. However, immunosequencing revealed a set of TCR-δ clonotypes that were expanded at 52 weeks post-BCG revaccination. These expanded clones expressed the Vδ2 gene segment and could be further defined on the basis of biochemical similarity into several 'meta-clonotypes' that likely recognize similar epitopes. Our data reveal that BCG vaccination leads to durable expansion of DURT cell clonotypes despite a limited effect on total circulating frequencies in the blood and have implications for defining the immunogenicity of candidate whole cell TB vaccines.
Background A 4-month regimen containing rifapentine and moxifloxacin has noninferior efficacy compared to the standard 6-month regimen for drug-sensitive tuberculosis. We evaluated the effect of regimens containing daily, high-dose rifapentine on efavirenz pharmacokinetics and viral suppression in patients with human immunodeficiency virus (HIV)-associated tuberculosis (TB). Methods In the context of a Phase 3 randomized controlled trial, HIV-positive individuals already virally suppressed on efavirenz--containing antiretroviral therapy (ART) (EFV1), or newly initiating efavirenz (EFV2) received TB treatment containing rifapentine (1200 mg), isoniazid, pyrazinamide, and either ethambutol or moxifloxacin. Mid-interval efavirenz concentrations were measured (a) during ART and TB cotreatment (Weeks 4, 8, 12, and 17, different by EFV group) and (b) when ART was taken alone (pre- or post-TB treatment, Weeks 0 and 22). Apparent oral clearance (CL/F) was estimated and compared. Target mid-interval efavirenz concentrations were > 1 mg/L. Co-treatment was considered acceptable if > 80% of participants had mid-interval efavirenz concentrations meeting this target. Results EFV1 and EFV2 included 70 and 41 evaluable participants, respectively. The geometric mean ratio comparing efavirenz CL/F with vs without TB drugs was 0.79 (90% confidence interval [CI] .72-.85) in EFV1 and 0.84 [90% CI .69-.97] in EFV2. The percent of participants with mid-interval efavirenz concentrations > 1mg/L in EFV1 at Weeks 0, 4, 8, and 17 was 96%, 96%, 88%, and 89%, respectively. In EFV2, at approximately 4 and 8 weeks post efavirenz initiation, the value was 98%. Conclusions TB treatment containing high-dose daily rifapentine modestly decreased (rather than increased) efavirenz clearance and therapeutic targets were met supporting the use of efavirenz with these regimens, without dose adjustment. The use of rifamycin antibiotics is often complicated by clinically relevant drug-drug interactions. We characterized the modest impact of rifapentine-based tuberculosis (TB) treatment on the pharmacokinetics and human immunodeficiency virus type 1 (HIV-1) viral suppression of efavirenz-based antiretroviral therapy.
T-bet-expressing B cells (a.k.a. Age-Associated B cells or atypical B cells) directly contribute to antiviral and autoimmune responses and thus represent a promising target for immunomodulatory therapies. T-bet+ memory B cells (MBCs) form and persist long term in the spleen as a resident subset; however, the functional role of this tissue-based population and mechanisms for its maintenance are poorly understood. Here, we use T-bet reporter and fate mapping mouse models to investigate the homeostasis and fate of T-bet+ B cell subsets. We identified an elevated turnover rate of T-bet+ MBCs, with ~1.5% of the population labeling with BrdU per day and 5–10% of T-bet+ MBCs in cell cycle (G1 or S) at any given time. T-bet+ MBCs also displayed resistance to sub-lethal irradiation. Fate mapping and adoptive transfer studies demonstrate that splenic T-bethigh B cells (Tbet++ CD11c+) spontaneously give rise to T-betlow (Tbet+ CD11c−) and ultimately a variety of effector B cell subsets, including GCB-like cells, plasma cells, and T-bet− memory-like B cells, absent exogenous challenge or stimulation. T-bet+ MBCs preferentially give rise to short-lived (CD138+ B220+) versus long-lived (CD138+ B220−) bone marrow and splenic plasma cells, and adoptively transferred T-bet+ MBCs are sufficient to generate plasma IgG2c titers in IgG2a-haptolype naïve recipients. Considering their long-term maintenance in the spleen, these findings suggest T-bet+ MBCs represent a self-renewing, stem-like pool that contribute to the maintenance of antibody titers by constitutive differentiation into antibody-secreting cells.
Inappropriately high breakpoints have resulted in systematic false-susceptible AST results to anti-TB drugs. MIC, PK/PD and clinical outcome data should be combined when setting breakpoints to minimise the emergence and spread of antimicrobial resistance.https://bit.ly/3i43wb6
Background Non-protein antigen classes can be presented to T cells by near-monomorphic antigen-presenting molecules such as CDI, MRI, and butyrophilin 3AI. Such T cells, referred to as donor unrestricted T (DURT) cells, typically express stereotypic T cell receptors. The near-unrestricted nature of DURT cell antigen recognition is of particular interest for vaccine development, and we sought to define the roles of DURT cells, including MRI-restricted MAIT cells, CDth-restricted glucose monomycolate (GMM)-specific T cells, CDth-restricted NKT cells, and gamma delta T cells, in vaccination against Mycobacterium tuberculosis. Methods We compared and characterized DURT cells following primary bacille Calmette-Guerin (BCG) vaccination in a cohort of vaccinated and unvaccinated infants, as well as before and after BCG-revaccination in adults. Findings BCG (re)vaccination did not modulate peripheral blood frequencies, T cell activation or memory profiles of MAIT cells, CDth-restricted GMM-specific and germline-encoded mycolyl-reactive (GEM) cells or CDId-restricted NKT cells. By contrast, primary BCG vaccination was associated with increased frequencies of gamma delta T cells as well as a novel subset of CD26(+)CDI6I(+)TRAVI-2(-) IFN-gamma-expressing CD4(+) T cells in infants. Interpretation Our findings, that most DURT cell populations were not modulated by BCG, do not preclude a role of BCG in modulating other qualitative aspects of DURT cells. More studies are required to understand the full potential of DURT cells in new TB vaccine strategies. Copyright (C) 2022 The Authors. Published by Elsevier B.V.
BACKGROUND Tuberculosis (TB) Trials Consortium Study 31/AIDS Clinical Trials Group A5349, an international randomized open-label phase 3 non-inferiority trial showed that a 4-month daily regimen substituting rifapentine for rifampin and moxifloxacin for ethambutol had non-inferior efficacy and was safe for the treatment of drug-susceptible pulmonary TB (DS-PTB) compared with the standard 6-month regimen. We explored results among the pre-specified subgroup of people with HIV (PWH). METHODS PWH and CD4 + counts ≥100 cells/μL were eligible if they were receiving or about to initiate efavirenz-based antiretroviral therapy (ART). Primary endpoints of TB disease-free survival 12 months post-randomization (efficacy) and ≥ grade 3 adverse events (AEs) on treatment (safety) were compared, using a 6.6% non-inferiority margin for efficacy. Randomization was stratified by site, pulmonary cavitation, and HIV-status. PWH were enrolled in a staged fashion, to support cautious evaluation of drug-drug interactions between rifapentine and efavirenz. RESULTS 2,516 participants from 13 countries in sub-Saharan Africa, Asia, and the Americas were enrolled. Among 194 (8%) microbiologically eligible PWH, the median CD4 + count was 344 cells/μL (interquartile range: 223-455). The rifapentine-moxifloxacin regimen was non-inferior to control (absolute difference in unfavorable outcomes -7.4% [95% CI -20.8% to +6.0%]); the rifapentine regimen was not non-inferior to control (+7.5% [95% CI -7.3% to +22.4%]). Fewer AEs were reported in rifapentine-based regimens (15%) than the control regimen (21%). CONCLUSIONS In people with HIV-associated DS-PTB with CD4 + counts ≥100 cells/μL on efavirenz-based ART, the 4-month daily rifapentine-moxifloxacin regimen was non-inferior to the 6-month control regimen and was safe.
Exhausted CD8 T cells (TEX) are a distinct state of T cell differentiation associated with failure to clear chronic viruses and cancer. Immunotherapies such as PD-1 blockade can reinvigorate TEX cells, but reinvigoration is not durable. A major unanswered question is whether TEX cells differentiate into functional durable memory T cells (TMEM) upon antigen clearance. Here, using a mouse model, we found that upon eliminating chronic antigenic stimulation, TEX cells partially (re)acquire phenotypic and transcriptional features of TMEM cells. These 'recovering' TEX cells originated from the T cell factor (TCF-1+) TEX progenitor subset. Nevertheless, the recall capacity of these recovering TEX cells remained compromised as compared to TMEM cells. Chromatin-accessibility profiling revealed a failure to recover core memory epigenetic circuits and maintenance of a largely exhausted open chromatin landscape. Thus, despite some phenotypic and transcriptional recovery upon antigen clearance, exhaustion leaves durable epigenetic scars constraining future immune responses. These results support epigenetic remodeling interventions for TEX cell-targeted immunotherapies.
BACKGROUND A four-month regimen containing rifapentine and moxifloxacin has non-inferior efficacy compared to the standard 6-month regimen for drug-sensitive tuberculosis. We evaluated the effect of regimens containing daily, high-dose rifapentine on efavirenz pharmacokinetics and viral suppression in patients with HIV-associated TB. METHODS In the context of a Phase 3 randomized controlled trial, HIV-positive individuals already virally suppressed on efavirenz--containing ART (EFV1), or newly initiating efavirenz (EFV2) received TB treatment containing rifapentine (1200mg), isoniazid, pyrazinamide, and either ethambutol or moxifloxacin. Mid-interval efavirenz concentrations were measured (a) during ART and TB co-treatment (Weeks 4, 8, 12 and 17, different by EFV group) and (b) when ART was taken alone (pre- or post-TB treatment, Weeks 0 and 22). Apparent oral clearance (CL/F) was estimated and compared. Target mid-interval efavirenz concentrations were > 1 mg/L. Co-treatment was considered acceptable if >80% of participants had mid-interval efavirenz concentrations meeting this target. RESULTS EFV1 and EFV2 included 70 and 41 evaluable participants, respectively. The geometric mean ratio comparing efavirenz CL/F with vs. without TB drugs was 0.79 [90% CI 0.72-0.85] in EFV1 and 0.84 [90% CI 0.69-0.97] in EFV2. The percent of participants with mid-interval efavirenz concentrations >1mg/L in EFV1 at Weeks 0, 4, 8, and 17 was 96%, 96%, 88%, and 89%, respectively. In EFV2, at approximately 4 and 8 weeks post efavirenz initiation, the value was 98%. CONCLUSIONS TB treatment containing high-dose daily rifapentine modestly decreased (rather than increased) efavirenz clearance and therapeutic targets were met supporting the use of efavirenz with these regimens, without dose adjustment.
Adjuvants are critical for improving the quality and magnitude of adaptive immune responses to vaccination. Lipid nanoparticle (LNP)-encapsulated nucleoside-modified mRNA vaccines have shown great efficacy against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), but the mechanism of action of this vaccine platform is not well-characterized. Using influenza virus and SARS-CoV-2 mRNA and protein subunit vaccines, we demonstrated that our LNP formulation has intrinsic adjuvant activity that promotes induction of strong T follicular helper cell, germinal center B cell, long-lived plasma cell, and memory B cell responses that are associated with durable and protective antibodies in mice. Comparative experiments demonstrated that this LNP formulation outperformed a widely used MF59-like adjuvant, AddaVax. The adjuvant activity of the LNP relies on the ionizable lipid component and on IL-6 cytokine induction but not on MyD88- or MAVS-dependent sensing of LNPs. Our study identified LNPs as a versatile adjuvant that enhances the efficacy of traditional and next-generation vaccine platforms.
SummaryAntigen classes other than proteins can be presented to T cells by near-monomorphic antigen-presenting molecules such as CD1, MR1, and butyrophilin 3A1. We sought to define the roles of donor unrestricted T (DURT) cells, including MR1-reactive MAIT cells, CD1b-reactive glucose monomycolate (GMM)-specific T cells, CD1d-reactive NKT cells, and γδ T cells, in vaccination againstMycobacterium tuberculosis. We characterized DURT cells following primary bacille Calmette-Guerin (BCG) vaccination in infants or BCG-revaccination in adults. BCG (re)vaccination did not modulate peripheral blood frequencies, T cell activation or memory profiles of MAIT cells, CD1b-restricted GMM-specific and germline-encoded mycolyl-reactive (GEM) cells or CD1d- restricted NKT cells. By contrast, BCG vaccination was associated with increased frequencies of γδ T cells as well as a novel subset of IFN-γ-expressing CD4+T cells with a CD26+CD161+TRAV1-2−phenotype in infants. More studies are required to understand the full potential of DURT cells in new TB vaccine strategies.