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1.
Immunity ; 45(4): 861-876, 2016 10 18.
Article in English | MEDLINE | ID: mdl-27760340

ABSTRACT

Mycobacterium tuberculosis infection in humans triggers formation of granulomas, which are tightly organized immune cell aggregates that are the central structure of tuberculosis. Infected and uninfected macrophages interdigitate, assuming an altered, flattened appearance. Although pathologists have described these changes for over a century, the molecular and cellular programs underlying this transition are unclear. Here, using the zebrafish-Mycobacterium marinum model, we found that mycobacterial granuloma formation is accompanied by macrophage induction of canonical epithelial molecules and structures. We identified fundamental macrophage reprogramming events that parallel E-cadherin-dependent mesenchymal-epithelial transitions. Macrophage-specific disruption of E-cadherin function resulted in disordered granuloma formation, enhanced immune cell access, decreased bacterial burden, and increased host survival, suggesting that the granuloma can also serve a bacteria-protective role. Granuloma macrophages in humans with tuberculosis were similarly transformed. Thus, during mycobacterial infection, granuloma macrophages are broadly reprogrammed by epithelial modules, and this reprogramming alters the trajectory of infection and the associated immune response.


Subject(s)
Epithelium/immunology , Macrophages/immunology , Mycobacterium marinum/immunology , Animals , Cadherins/immunology , Epithelium/microbiology , Granuloma/immunology , Granuloma/microbiology , Macrophages/microbiology , Mycobacterium tuberculosis/immunology , Zebrafish
2.
J Immunol ; 208(6): 1406-1416, 2022 03 15.
Article in English | MEDLINE | ID: mdl-35181640

ABSTRACT

Mycobacterium bovis bacillus Calmette-Guérin (BCG) immunization still remains the best vaccination strategy available to control the development of active tuberculosis. Protection afforded by BCG vaccination gradually wanes over time and although booster strategies have promise, they remain under development. An alternative approach is to improve BCG efficacy through host-directed therapy. Building upon prior knowledge that blockade of IL-10R1 during early Mycobacterium tuberculosis infection improves and extends control of M. tuberculosis infection in mice, we employed a combined anti-IL-10R1/BCG vaccine strategy. An s.c. single vaccination of BCG/anti-IL10-R1 increased the numbers of CD4+ and CD8+ central memory T cells and reduced Th1 and Th17 cytokine levels in the lung for up to 7 wk postvaccination. Subsequent M. tuberculosis challenge in mice showed both an early (4 wk) and sustained long-term (47 wk) control of infection, which was associated with increased survival. In contrast, protection of BCG/saline-vaccinated mice waned 8 wk after M. tuberculosis infection. Our findings demonstrate that a single and simultaneous vaccination with BCG/anti-IL10-R1 sustains long-term protection, identifying a promising approach to enhance and extend the current BCG-mediated protection against TB.


Subject(s)
Mycobacterium bovis , Mycobacterium tuberculosis , Tuberculosis , Animals , BCG Vaccine , Mice , Receptors, Interleukin-10 , Tuberculosis/prevention & control , Vaccination
3.
Int J Mol Sci ; 23(2)2022 Jan 17.
Article in English | MEDLINE | ID: mdl-35055170

ABSTRACT

Tuberculosis (TB) infection, caused by the airborne pathogen Mycobacterium tuberculosis (M.tb), resulted in almost 1.4 million deaths in 2019, and the number of deaths is predicted to increase by 20% over the next 5 years due to the COVID-19 pandemic. Upon reaching the alveolar space, M.tb comes into close contact with the lung mucosa before and after its encounter with host alveolar compartment cells. Our previous studies show that homeostatic, innate soluble components of the alveolar lining fluid (ALF) can quickly alter the cell envelope surface of M.tb upon contact, defining subsequent M.tb-host cell interactions and infection outcomes in vitro and in vivo. We also demonstrated that ALF from 60+ year old elders (E-ALF) vs. healthy 18- to 45-year-old adults (A-ALF) is dysfunctional, with loss of homeostatic capacity and impaired innate soluble responses linked to high local oxidative stress. In this study, a targeted transcriptional assay shows that M.tb exposure to human ALF alters the expression of its cell envelope genes. Specifically, our results indicate that A-ALF-exposed M.tb upregulates cell envelope genes associated with lipid, carbohydrate, and amino acid metabolism, as well as genes associated with redox homeostasis and transcriptional regulators. Conversely, M.tb exposure to E-ALF shows a lesser transcriptional response, with most of the M.tb genes unchanged or downregulated. Overall, this study indicates that M.tb responds and adapts to the lung alveolar environment upon contact, and that the host ALF status, determined by factors such as age, might play an important role in determining infection outcome.


Subject(s)
Bacterial Capsules/genetics , Bacterial Capsules/metabolism , Mycobacterium tuberculosis/genetics , Mycobacterium tuberculosis/metabolism , Adolescent , Adult , Age Factors , Aged , Bronchoalveolar Lavage Fluid , Cellular Structures , Female , Gene Expression Regulation, Bacterial , Humans , Lipopolysaccharides/biosynthesis , Lipopolysaccharides/genetics , Male , Mannosides/biosynthesis , Mannosides/genetics , Mannosyltransferases/biosynthesis , Mannosyltransferases/genetics , Middle Aged , Young Adult
4.
J Immunol ; 203(8): 2252-2264, 2019 10 15.
Article in English | MEDLINE | ID: mdl-31511357

ABSTRACT

The elderly population is more susceptible to pulmonary infections, including tuberculosis. In this article, we characterize the impact of aging on the phenotype of mouse alveolar macrophages (AMs) and their response to Mycobacterium tuberculosis. Uninfected AMs were isolated from bronchoalveolar lavage of young (3 mo) and old (18 mo) C57BL/6 mice. AMs from old mice expressed higher mRNA levels of CCL2, IFN-ß, IL-10, IL-12p40, TNF-α, and MIF than young mice, and old mice contained higher levels of CCL2, IL-1ß, IFN-ß, and MIF in their alveolar lining fluid. We identified two distinct AM subpopulations, a major CD11c+ CD11b- population and a minor CD11c+ CD11b+ population; the latter was significantly increased in old mice (4-fold). Expression of CD206, TLR2, CD16/CD32, MHC class II, and CD86 was higher in CD11c+ CD11b+ AMs, and these cells expressed monocytic markers Ly6C, CX3CR1, and CD115, suggesting monocytic origin. Sorted CD11c+ CD11b+ AMs from old mice expressed higher mRNA levels of CCL2, IL-1ß, and IL-6, whereas CD11c+ CD11b- AMs expressed higher mRNA levels of immune-regulatory cytokines IFN-ß and IL-10. CD11c+ CD11b+ AMs phagocytosed significantly more M. tuberculosis, which expressed higher RNA levels of genes required for M. tuberculosis survival. Our studies identify two distinct AM populations in old mice: a resident population and an increased CD11c+ CD11b+ AM subpopulation expressing monocytic markers, a unique inflammatory signature, and enhanced M. tuberculosis phagocytosis and survival when compared with resident CD11c+ CD11b- AMs, which are more immune regulatory in nature.


Subject(s)
Inflammation/immunology , Macrophages, Alveolar/immunology , Tuberculosis/immunology , Animals , Cytokines/immunology , Female , Inflammation/pathology , Macrophages, Alveolar/pathology , Mice , Mice, Inbred C57BL , Tuberculosis/pathology
5.
Immun Ageing ; 18(1): 16, 2021 Apr 07.
Article in English | MEDLINE | ID: mdl-33827617

ABSTRACT

Individuals over the age of 65 are highly susceptible to infectious diseases, which account for one-third of deaths in this age group. Vaccines are a primary tool to combat infection, yet they are less effective in the elderly population. While many groups have aimed to address this problem by studying vaccine-induced peripheral blood responses in the elderly, work from our lab and others demonstrate that immune responses to vaccination and infectious challenge may differ between tissue sites and the periphery. In this pilot study, we established an in vivo delayed-type hypersensitivity model of Mycobacterium bovis BCG vaccination and tuberculin skin test in two adult and two aged baboons. Vaccination generates BCG-specific immune cells that are recruited to the skin upon tuberculin challenge. We tested short term recall responses (8 weeks post-vaccination) and long term recall responses (25 weeks post-vaccination) by performing skin punch biopsies around the site of tuberculin injection. In short term recall responses, we found increased oxidation and decreased production of immune proteins in aged baboon skin at the site of TST challenge, in comparison to adult skin. Differences between adult and aged animals normalized in the long term response to tuberculin. In vitro, aged peripheral blood mononuclear cells had increased migration and functional responses to antigen-specific stimulation, suggesting that age-related changes in the tissue in vivo impairs aged immune recall responses to antigenic challenge. These findings highlight the impact of age-associated changes in the local tissue environment in memory recall responses, which may be more broadly applied to the study of other tissues. Moreover, these findings should be considered in future studies aimed at understanding and improving aging immune responses to vaccination and tissue challenge.

6.
J Nurs Care Qual ; 36(1): 57-61, 2021.
Article in English | MEDLINE | ID: mdl-32032337

ABSTRACT

BACKGROUND: There is limited research addressing how to optimize both staffing and patient outcomes with the use of technology to reduce falls during hospitalization. PURPOSE: We compared the effects of 2 staffing patterns in conjunction with the use of an electronic surveillance system on patient falls on an inpatient medical unit. METHODS: Study participants were randomized to receive electronic surveillance system monitoring with a dedicated rounder or electronic surveillance system without a dedicated rounder. Falls during the study period were analyzed. RESULTS: Of 1032 patients, there were 8 falls during the 3-month study. Six falls occurred in the intervention group, with no rounder, and 2 occurred in the group with a dedicated rounder. The data showed no statistical significance but had clinical implications. CONCLUSION: In response to our findings, the dedicated rounder will function as a mobility technician, providing support to our nursing staff and a resource for fall risk patients.


Subject(s)
Accidental Falls , Hospitalization , Electronics , Humans , Inpatients , Video Recording , Workforce
7.
Proc Natl Acad Sci U S A ; 114(1): 119-124, 2017 01 03.
Article in English | MEDLINE | ID: mdl-27994145

ABSTRACT

Zika, a mosquito-borne viral disease that emerged in South America in 2015, was declared a Public Health Emergency of International Concern by the WHO in February of 2016. We developed a climate-driven R0 mathematical model for the transmission risk of Zika virus (ZIKV) that explicitly includes two key mosquito vector species: Aedes aegypti and Aedes albopictus The model was parameterized and calibrated using the most up to date information from the available literature. It was then driven by observed gridded temperature and rainfall datasets for the period 1950-2015. We find that the transmission risk in South America in 2015 was the highest since 1950. This maximum is related to favoring temperature conditions that caused the simulated biting rates to be largest and mosquito mortality rates and extrinsic incubation periods to be smallest in 2015. This event followed the suspected introduction of ZIKV in Brazil in 2013. The ZIKV outbreak in Latin America has very likely been fueled by the 2015-2016 El Niño climate phenomenon affecting the region. The highest transmission risk globally is in South America and tropical countries where Ae. aegypti is abundant. Transmission risk is strongly seasonal in temperate regions where Ae. albopictus is present, with significant risk of ZIKV transmission in the southeastern states of the United States, in southern China, and to a lesser extent, over southern Europe during the boreal summer season.


Subject(s)
El Nino-Southern Oscillation , Models, Statistical , Zika Virus Infection/epidemiology , Zika Virus Infection/transmission , Zika Virus , Aedes , Animals , Haplorhini , Humans , Mosquito Vectors , Risk , Uganda , Zika Virus Infection/mortality
8.
J Infect Dis ; 220(3): 514-523, 2019 07 02.
Article in English | MEDLINE | ID: mdl-30923818

ABSTRACT

As we age, there is an increased risk for the development of tuberculosis (TB) caused by Mycobacterium tuberculosis (Mtb) infection. Few studies consider that age-associated changes in the alveolar lining fluid (ALF) may increase susceptibility by altering soluble mediators of innate immunity. We assessed the impact of adult or elderly human ALF during Mtb infection in vitro and in vivo. We identified amplification of pro-oxidative and proinflammatory pathways in elderly ALF and decreased binding capability of surfactant-associated surfactant protein A (SP-A) and surfactant protein D (SP-D) to Mtb. Human macrophages infected with elderly ALF-exposed Mtb had reduced control and fewer phagosome-lysosome fusion events, which was reversed when elderly ALF was replenished with functional SP-A/SP-D. In vivo, exposure to elderly ALF exacerbated Mtb infection in young mice. Our studies demonstrate how the pulmonary environment changes as we age and suggest that Mtb may benefit from declining host defenses in the lung mucosa of the elderly.


Subject(s)
Lung/immunology , Lung/microbiology , Respiratory Mucosa/immunology , Respiratory Mucosa/microbiology , Tuberculosis/immunology , Adolescent , Adult , Aged , Aged, 80 and over , Female , Humans , Immunity, Innate/immunology , Inflammation/immunology , Inflammation/microbiology , Lysosomes/immunology , Lysosomes/microbiology , Macrophages/immunology , Macrophages/microbiology , Male , Middle Aged , Mycobacterium tuberculosis/immunology , Phagosomes/immunology , Phagosomes/microbiology , Pulmonary Surfactant-Associated Protein A/immunology , Pulmonary Surfactant-Associated Protein D/immunology , Tuberculosis/microbiology , Young Adult
9.
Infect Immun ; 84(11): 3243-3251, 2016 Nov.
Article in English | MEDLINE | ID: mdl-27600501

ABSTRACT

Salmonella enterica serovar Typhi, the causative agent of typhoid fever in humans, forms biofilms encapsulated by an extracellular matrix (ECM). Biofilms facilitate colonization and persistent infection in gallbladders of humans and mouse models of chronic carriage. Individual roles of matrix components have not been completely elucidated in vitro or in vivo To examine individual functions, strains of Salmonella enterica serovar Typhimurium, the murine model of S Typhi, in which various ECM genes were deleted or added, were created to examine biofilm formation, colonization, and persistence in the gallbladder. Studies show that curli contributes most significantly to biofilm formation. Expression of Vi antigen decreased biofilm formation in vitro and virulence and bacterial survival in vivo without altering the examined gallbladder pro- or anti-inflammatory cytokines. Oppositely, loss of all ECM components (ΔwcaM ΔcsgA ΔyihO ΔbcsE) increased virulence and bacterial survival in vivo and reduced gallbladder interleukin-10 (IL-10) levels. Colanic acid and curli mutants had the largest defects in biofilm-forming ability and contributed most significantly to the virulence increase of the ΔwcaM ΔcsgA ΔyihO ΔbcsE mutant strain. While the ΔwcaM ΔcsgA ΔyihO ΔbcsE mutant was not altered in resistance to complement or growth in macrophages, it attached and invaded macrophages better than the wild-type (WT) strain. These data suggest that ECM components have various levels of importance in biofilm formation and gallbladder colonization and that the ECM diminishes disseminated disease in our model, perhaps by reducing cell attachment/invasion and dampening inflammation by maintaining/inducing IL-10 production. Understanding how ECM components aid acute disease and persistence could lead to improvements in therapeutic treatment of typhoid fever patients.


Subject(s)
Biofilms/growth & development , Extracellular Matrix/metabolism , Gallbladder/microbiology , Salmonella typhimurium/physiology , Animals , Cell Survival/physiology , Cytokines/metabolism , Disease Models, Animal , Interleukin-10/metabolism , Macrophages/microbiology , Mice , Mice, Transgenic , Salmonella typhimurium/metabolism , Salmonella typhimurium/pathogenicity , Tumor Necrosis Factor-alpha/metabolism , Virulence/physiology
10.
J Infect Dis ; 212(6): 948-58, 2015 Sep 15.
Article in English | MEDLINE | ID: mdl-25748325

ABSTRACT

We have shown that human alveolar lining fluid (ALF) contains homeostatic hydrolases capable of altering the Mycobacterium tuberculosis cell wall and subsequently its interaction with human macrophages. Neutrophils are also an integral part of the host immune response to M. tuberculosis infection. Here we show that the human lung mucosa influences M. tuberculosis interaction with neutrophils, enhancing the intracellular killing of ALF-exposed M. tuberculosis and up-regulating the expression of tumor necrosis factor and interleukin 8. In contrast, ALF-exposed M. tuberculosis does not induce neutrophil apoptosis or necrosis, degranulation, or release of extracellular traps, and it decreases the oxidative response. These results suggest an important role for the human alveolar mucosa: increasing the innate capacity of the neutrophil to recognize and kill M. tuberculosis by favoring the use of intracellular mechanisms, while at the same time limiting neutrophil extracellular inflammatory responses to minimize their associated tissue damage.


Subject(s)
Body Fluids/metabolism , Lung/metabolism , Mycobacterium tuberculosis/immunology , Neutrophils/physiology , Respiratory Mucosa/physiology , Apoptosis , Bacteriological Techniques , Cells, Cultured , Gene Expression Regulation , Humans , Tumor Necrosis Factor-alpha/genetics , Tumor Necrosis Factor-alpha/metabolism
11.
J Immunol ; 190(6): 2778-90, 2013 Mar 15.
Article in English | MEDLINE | ID: mdl-23396944

ABSTRACT

Protective immunity and latent Mycobacterium tuberculosis infection in humans are associated with the formation of mature protective granulomas within the lung. Unfortunately, understanding the importance of such structures has been hindered by the lack of small-animal models that can develop mature granulomas. In this article, we describe for the first time, to our knowledge, the formation of mature, fibrotic M. tuberculosis-containing pulmonary granulomas in a mouse model of IL-10 deficiency (CBA/J IL-10(-/-)). Long-term control of M. tuberculosis infection in the absence of IL-10 was also associated with an early and enhanced capacity for Ag presentation and a significant increase in the generation of multifunctional T cells. Although IL-10 deficiency is known to enhance Th1 immune responses in general, we demonstrate in this study using transient anti-IL-10R treatment that it is the presence of IL-10 in vivo during the first month of M. tuberculosis infection that plays a definitive role in the inhibition of optimum protective immunity that can establish the environment for mature granuloma formation. Although the importance of IL-10 during M. tuberculosis infection has been debated, our data demonstrate that in CBA/J mice, IL-10 plays a significant early inhibitory role in preventing the development of protective immunity associated with containment of M. tuberculosis infection.


Subject(s)
Granuloma, Respiratory Tract/immunology , Granuloma, Respiratory Tract/prevention & control , Interleukin-10/physiology , Mycobacterium tuberculosis/immunology , Tuberculosis, Pulmonary/immunology , Tuberculosis, Pulmonary/prevention & control , Animals , Bacterial Load , Disease Models, Animal , Fibrosis/prevention & control , Granuloma, Respiratory Tract/microbiology , Interleukin-10/deficiency , Interleukin-10/genetics , Lung/immunology , Lung/microbiology , Lung/pathology , Lymph Nodes/immunology , Lymph Nodes/microbiology , Lymph Nodes/pathology , Mice , Mice, Inbred C3H , Mice, Inbred CBA , Mice, Knockout , Spleen/immunology , Spleen/microbiology , Spleen/pathology , Tuberculosis, Pulmonary/microbiology
12.
BMC Biol ; 12: 91, 2014 Nov 05.
Article in English | MEDLINE | ID: mdl-25371237

ABSTRACT

BACKGROUND: Palmitoylation is a 16-carbon lipid post-translational modification that increases protein hydrophobicity. This form of protein fatty acylation is emerging as a critical regulatory modification for multiple aspects of cellular interactions and signaling. Despite recent advances in the development of chemical tools for the rapid identification and visualization of palmitoylated proteins, the palmitoyl proteome has not been fully defined. Here we sought to identify and compare the palmitoylated proteins in murine fibroblasts and dendritic cells. RESULTS: A total of 563 putative palmitoylation substrates were identified, more than 200 of which have not been previously suggested to be palmitoylated in past proteomic studies. Here we validate the palmitoylation of several new proteins including Toll-like receptors (TLRs) 2, 5 and 10, CD80, CD86, and NEDD4. Palmitoylation of TLR2, which was uniquely identified in dendritic cells, was mapped to a transmembrane domain-proximal cysteine. Inhibition of TLR2 S-palmitoylation pharmacologically or by cysteine mutagenesis led to decreased cell surface expression and a decreased inflammatory response to microbial ligands. CONCLUSIONS: This work identifies many fatty acylated proteins involved in fundamental cellular processes as well as cell type-specific functions, highlighting the value of examining the palmitoyl proteomes of multiple cell types. S-palmitoylation of TLR2 is a previously unknown immunoregulatory mechanism that represents an entirely novel avenue for modulation of TLR2 inflammatory activity.


Subject(s)
Lipoylation , Proteomics/methods , Toll-Like Receptor 2/metabolism , Acylation , Animals , B7-2 Antigen/genetics , B7-2 Antigen/metabolism , Cell Membrane/metabolism , Cells, Cultured , Click Chemistry , Computational Biology , Dendritic Cells/metabolism , Fibroblasts/metabolism , HEK293 Cells , Humans , Interferon-alpha/metabolism , Ligands , Mice , NF-kappa B/genetics , NF-kappa B/metabolism , Protein Processing, Post-Translational , Proteome/genetics , Proteome/metabolism , Toll-Like Receptor 2/genetics
13.
J Immunol ; 189(11): 5206-11, 2012 Dec 01.
Article in English | MEDLINE | ID: mdl-23089397

ABSTRACT

In response to pathogen insult, CD8 T cells undergo expansion and a dynamic differentiation process into functionally different subpopulations. In this study, we show that during the effector response to influenza virus infection lung CD8 T cell subsets expressing killer cell lectin-like receptor G1 (KLRG1)(high) or KLRG1(low) had similar effector functions and immediate recall efficacy. The KLRG1 expression profile of lung CD8 T cells was not permanent after adoptive transfer and recall. Airway CD8 T cells exhibited a unique phenotype expressing low levels of KLRG1 together with high levels of markers of cellular activation. We investigated the functional characteristics of these cells by analyzing their capacity to survive and to respond to a secondary challenge outside of the airway environment. KLRG1(high) CD8 T cells isolated from the lung during the peak of the effector T cell response could survive for more than a month in the absence of cognate viral Ags after systemic adoptive transfer, and these "rested" CD8 T cells proliferated and participated in a recall response to influenza virus infection. These data highlight the unique phenotype and plasticity of effector CD8 T cell responses in the lung.


Subject(s)
CD8-Positive T-Lymphocytes/immunology , Immunologic Memory/genetics , Influenza A Virus, H3N2 Subtype/immunology , Lung/immunology , Orthomyxoviridae Infections/immunology , Receptors, Immunologic/immunology , Adoptive Transfer , Antigens, Viral/immunology , Biomarkers/metabolism , CD8-Positive T-Lymphocytes/metabolism , CD8-Positive T-Lymphocytes/transplantation , Cell Differentiation , Cell Proliferation , Gene Expression Regulation/immunology , Lectins, C-Type , Lung/pathology , Lung/virology , Orthomyxoviridae Infections/genetics , Orthomyxoviridae Infections/pathology , Orthomyxoviridae Infections/virology , Primary Cell Culture , Receptors, Immunologic/genetics , Signal Transduction , T-Lymphocyte Subsets/immunology , T-Lymphocyte Subsets/metabolism
14.
Geroscience ; 46(3): 2901-2913, 2024 06.
Article in English | MEDLINE | ID: mdl-38388916

ABSTRACT

Coronavirus disease 2019 (COVID-19) caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is still an ongoing global health crisis. Clinical data indicate that the case fatality rate (CFR) is age dependent, with a higher CFR percentage in the elderly population. We compared the pathogenesis of SARS-CoV-2 in young and aged K18-hACE2 transgenic mice. We evaluated morbidity, mortality, viral titers, immune responses, and histopathology in SARS-CoV-2-infected young and old K18-hACE2 transgenic mice. Within the limitation of having a low number of mice per group, our results indicate that SARS-CoV-2 infection resulted in slightly higher morbidity, mortality, and viral replication in the lungs of old mice, which was associated with an impaired IgM response and altered cytokine and chemokine profiles. Results of this study increase our understanding of SARS-CoV-2 infectivity and immuno-pathogenesis in the elderly population.


Subject(s)
Angiotensin-Converting Enzyme 2 , COVID-19 , SARS-CoV-2 , Aged , Animals , Humans , Mice , COVID-19/immunology , COVID-19/metabolism , Cytokines , Disease Models, Animal , Mice, Transgenic , SARS-CoV-2/pathogenicity , Angiotensin-Converting Enzyme 2/genetics , Immunoglobulin M
15.
bioRxiv ; 2024 Jan 27.
Article in English | MEDLINE | ID: mdl-38328206

ABSTRACT

Tuberculosis (TB), caused by the bacterium Mycobacterium tuberculosis (M.tb), remains a significant health concern worldwide, especially in populations with weakened or compromised immune systems, such as the elderly. Proper adaptive immune function, particularly a CD4+ T cell response, is central to host immunity against M.tb. Chronic infections, such as M.tb, as well as aging promote T cell exhaustion and senescence, which can impair immune control and promote progression to TB disease. Mitochondrial dysfunction contributes to T cell dysfunction, both in aging and chronic infections and diseases. Mitochondrial perturbations can disrupt cellular metabolism, enhance oxidative stress, and impair T-cell signaling and effector functions. This study examined the impact of mitochondrial transplantation (mito-transfer) on CD4+ T cell differentiation and function using aged mouse models and human CD4+ T cells from elderly individuals. Our study revealed that mito-transfer in naïve CD4+ T cells promoted the generation of protective effector and memory CD4+ T cells during M.tb infection in mice. Further, mito-transfer enhanced the function of elderly human T cells by increasing their mitochondrial mass and modulating cytokine production, which in turn reduced exhaustion and senescence cell markers. Our results suggest that mito-transfer could be a novel strategy to reestablish aged CD4+ T cell function, potentially improving immune responses in the elderly and chronic TB patients, with a broader implication for other diseases where mitochondrial dysfunction is linked to T cell exhaustion and senescence.

16.
Adv Sci (Weinh) ; 11(36): e2401077, 2024 Sep.
Article in English | MEDLINE | ID: mdl-39039808

ABSTRACT

Tuberculosis (TB), caused by Mycobacterium tuberculosis (M.tb), is a major global health concern, particularly affecting those with weakened immune systems, including the elderly. CD4+ T cell response is crucial for immunity against M.tb, but chronic infections and aging can lead to T cell exhaustion and senescence, worsening TB disease. Mitochondrial dysfunction, prevalent in aging and chronic diseases, disrupts cellular metabolism, increases oxidative stress, and impairs T-cell functions. This study investigates the effect of mitochondrial transplantation (mito-transfer) on CD4+ T cell differentiation and function in aged mouse models and human CD4+ T cells from elderly individuals. Mito-transfer in naïve CD4+ T cells is found to promote protective effector and memory T cell generation during M.tb infection in mice. Additionally, it improves elderly human T cell function by increasing mitochondrial mass and altering cytokine production, thereby reducing markers of exhaustion and senescence. These findings suggest mito-transfer as a novel approach to enhance aged CD4+ T cell functionality, potentially benefiting immune responses in the elderly and chronic TB patients. This has broader implications for diseases where mitochondrial dysfunction contributes to T-cell exhaustion and senescence.


Subject(s)
CD4-Positive T-Lymphocytes , Disease Models, Animal , Mitochondria , Mycobacterium tuberculosis , Tuberculosis , CD4-Positive T-Lymphocytes/immunology , Humans , Mice , Animals , Mitochondria/immunology , Mitochondria/metabolism , Mycobacterium tuberculosis/immunology , Tuberculosis/immunology , Aged , Cellular Senescence/immunology , Male , Female , Mice, Inbred C57BL , Aging/immunology
17.
Geroscience ; 46(6): 6395-6417, 2024 Dec.
Article in English | MEDLINE | ID: mdl-38969861

ABSTRACT

With devastating health and socioeconomic impact worldwide, much work is left to understand the Coronavirus Disease 2019 (COVID-19), with emphasis in the severely affected elderly population. Here, we present a proteomics study of lung tissue obtained from aged vs. young rhesus macaques (Macaca mulatta) and olive baboons (Papio Anubis) infected with severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Using age as a variable, we identified common proteomic profiles in the lungs of aged infected non-human primates (NHPs), including key regulators of immune function, as well as cell and tissue remodeling, and discuss the potential clinical relevance of such parameters. Further, we identified key differences in proteomic profiles between both NHP species, and compared those to what is known about SARS-CoV-2 in humans. Finally, we explored the translatability of these animal models in the context of aging and the human presentation of the COVID-19.


Subject(s)
COVID-19 , Disease Models, Animal , Lung , Macaca mulatta , Proteomics , SARS-CoV-2 , Animals , COVID-19/metabolism , Lung/metabolism , Lung/virology , Proteomics/methods , Aging/metabolism , Papio anubis , Humans , Proteome/metabolism , Age Factors
18.
Adv Sci (Weinh) ; 11(5): e2303664, 2024 Feb.
Article in English | MEDLINE | ID: mdl-37990641

ABSTRACT

Mitochondrial dysfunction alters cellular metabolism, increases tissue oxidative stress, and may be principal to the dysregulated signaling and function of CD4+ T lymphocytes in the elderly. In this proof of principle study, it is investigated whether the transfer of functional mitochondria into CD4+ T cells that are isolated from old mice (aged CD4+ T cells), can abrogate aging-associated mitochondrial dysfunction, and improve the aged CD4+ T cell functionality. The results show that the delivery of exogenous mitochondria to aged non-activated CD4+ T cells led to significant mitochondrial proteome alterations highlighted by improved aerobic metabolism and decreased cellular mitoROS. Additionally, mito-transferred aged CD4+ T cells showed improvements in activation-induced TCR-signaling kinetics displaying markers of activation (CD25), increased IL-2 production, enhanced proliferation ex vivo. Importantly, immune deficient mouse models (RAG-KO) showed that adoptive transfer of mito-transferred naive aged CD4+ T cells, protected recipient mice from influenza A and Mycobacterium tuberculosis infections. These findings support mitochondria as targets of therapeutic intervention in aging.


Subject(s)
Aging , Mitochondrial Diseases , Humans , Aged , Mice , Animals , CD4-Positive T-Lymphocytes , T-Lymphocytes, Regulatory , Mitochondria
19.
Mucosal Immunol ; 17(2): 155-168, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38185331

ABSTRACT

The elderly population is highly susceptible to developing respiratory diseases, including tuberculosis, a devastating disease caused by the airborne pathogen Mycobacterium tuberculosis (M.tb) that kills one person every 18 seconds. Once M.tb reaches the alveolar space, it contacts alveolar lining fluid (ALF), which dictates host-cell interactions. We previously determined that age-associated dysfunction of soluble innate components in human ALF leads to accelerated M.tb growth within human alveolar macrophages. Here we determined the impact of human ALF on M.tb infection of alveolar epithelial type cells (ATs), another critical lung cellular determinant of infection. We observed that elderly ALF (E-ALF)-exposed M.tb had significantly increased intracellular growth with rapid replication in ATs compared to adult ALF (A-ALF)-exposed bacteria, as well as a dampened inflammatory response. A potential mechanism underlying this accelerated growth in ATs was our observation of increased bacterial translocation into the cytosol, a compartment that favors bacterial replication. These findings in the context of our previous studies highlight how the oxidative and dysfunctional status of the elderly lung mucosa determines susceptibility to M.tb infection, including dampening immune responses and favoring bacterial replication within alveolar resident cell populations, including ATs, the most abundant resident cell type within the alveoli.


Subject(s)
Mycobacterium tuberculosis , Tuberculosis , Aged , Adult , Humans , Alveolar Epithelial Cells , Cytosol , Lung/microbiology , Macrophages, Alveolar
20.
Nat Med ; 2024 Aug 28.
Article in English | MEDLINE | ID: mdl-39198710

ABSTRACT

Lassa fever is a zoonotic disease identified by the World Health Organization (WHO) as having pandemic potential. This study estimates the health-economic burden of Lassa fever throughout West Africa and projects impacts of a series of vaccination campaigns. We also model the emergence of 'Lassa-X'-a hypothetical pandemic Lassa virus variant-and project impacts of achieving 100 Days Mission vaccination targets. Our model predicted 2.7 million (95% uncertainty interval: 2.1-3.4 million) Lassa virus infections annually, resulting over 10 years in 2.0 million (793,800-3.9 million) disability-adjusted life years (DALYs). The most effective vaccination strategy was a population-wide preventive campaign primarily targeting WHO-classified 'endemic' districts. Under conservative vaccine efficacy assumptions, this campaign averted $20.1 million ($8.2-$39.0 million) in lost DALY value and $128.2 million ($67.2-$231.9 million) in societal costs (2021 international dollars ($)). Reactive vaccination in response to local outbreaks averted just one-tenth the health-economic burden of preventive campaigns. In the event of Lassa-X emerging, spreading throughout West Africa and causing approximately 1.2 million DALYs within 2 years, 100 Days Mission vaccination averted 22% of DALYs given a vaccine 70% effective against disease and 74% of DALYs given a vaccine 70% effective against both infection and disease. These findings suggest how vaccination could alleviate Lassa fever's burden and assist in pandemic preparedness.

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