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T Cell/B Cell Interactions in the Establishment of Protective Immunity

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Vitamin A controls the allergic response through T follicular helper cell as well as plasmablast differentiation

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Summary: Vitamin A signaling via RAR alpha impacts allergen-specific immunoglobulin response by directly affecting B cell differentiation and indirectly by promoting T follicular helper cells.

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Tissue-Specific Immunopathology in Fatal COVID-19

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Summary: In fatal COVID-19 cases, abnormal immune responses were found primarily in the lung and reticuloendothelial system, which were not clearly associated with the virus. Tissue-specific immunopathology in COVID-19 implicates a significant role of immune-mediated, virus-independent mechanisms in severe disease.

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Defective STING expression potentiates IL-13 signaling in epithelial cells in eosinophilic chronic rhinosinusitis with nasal polyps

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Summary: The study showed that reduced STING expression in eosinophilic nasal polyps impairs STING-dependent type I interferon production and amplifies IL-13 signaling, highlighting the importance of STING in the pathogenesis of CRSwNP.

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Article Immunology

Tissue-resident CD4+ T helper cells assist the development of protective respiratory B and CD8+ T cell memory responses

Young Min Son et al.

Summary: The study reveals a population of tissue-resident helper T cells in the lung, termed as T-RH cells, which play a critical role in promoting the development of protective B cell and CD8(+) T cell responses. These T-RH cells are dependent on transcription factors BCL6 and Bhlhe40 and deliver local help to CD8(+) T cells through IL-21-dependent mechanisms.

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T resident helper cells promote humoral responses in the lung

Nivedya Swarnalekha et al.

Summary: Following influenza infection, long-lived T-RH cells are established in the lung, dependent on B cells in iBALT, for rapid response to subsequent infections. Deletion of Bcl6 in CD4(+) T cells results in redistribution of T cells and impaired local antibody production.

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Dynamic regulation of TFH selection during the germinal centre reaction

Julia Merkenschlager et al.

Summary: The germinal centre is a dynamic microenvironment where B cells expressing high-affinity antibody variants are selected for clonal expansion by limiting the number of T follicular helper cells. T follicular helper cells undergo antigen-dependent selection throughout the germinal centre reaction, resulting in differential proliferative expansion and contraction. Competition between T follicular helper cell clones is mediated by the affinity of T cell receptors for peptide-major-histocompatibility-complex ligands.

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Status and risks of selenium deficiency in a traditional selenium-deficient area in Northeast China

Chenmeng Yang et al.

Summary: Research in Northeast China found that soil selenium deficiency has significantly decreased, but crop products still have low selenium levels due to weak soil-plant transfer. Climate conditions and soil properties were identified as key factors influencing soil selenium distribution, and the challenge remains in ensuring sufficient selenium content in agricultural products for residents in selenium-deficient areas, particularly in China's growing agricultural production environment.

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Polymeric Pathogen-Like Particles-Based Combination Adjuvants Elicit Potent Mucosal T Cell Immunity to Influenza A Virus

Brock Kingstad-Bakke et al.

Summary: The study demonstrates the successful induction of durable and protective T cell-mediated immunity in the respiratory mucosa of mice using PLGA-based pathogen-like particles (PLPs) loaded with TLR agonists. This has important implications for the development of universal influenza and SARS-CoV-2 vaccines.

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Cyclic Di-Adenosine Monophosphate: A Promising Adjuvant Candidate for the Development of Neonatal Vaccines

Dario Lirussi et al.

Summary: The immature immune system in neonates poses a high risk of infection-related mortality. The use of CDA as a vaccine adjuvant shows superior immune response in neonates, leading to higher antibody levels.

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Broad Severe Acute Respiratory Syndrome Coronavirus 2 Cell Tropism and Immunopathology in Lung Tissues From Fatal Coronavirus Disease 2019

Suzane Ramos da Silva et al.

Summary: In fatal COVID-19 lungs, a broad SARS-CoV-2 cell tropism was observed, infecting various lung cells and leading to severe tissue damage, excessive inflammation, and thromboembolism. Extensive infiltration of innate immune cells, activation and depletion of adaptive immune cells were also found, contributing to compromised immune responses.

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The Pathogenic Role of CD4+ Tissue-Resident Memory T Cells Bearing T Follicular Helper-Like Phenotype in Pemphigus Lesions

Yaru Zou et al.

Summary: The study found an accumulation of CD4(+) tissue-resident memory T cells in pemphigus skin lesions, which expressed a specific set of costimulatory molecules associated with T follicular helper cells and produced IL-17A and IL-21. These cells were found to support autoantibody production and could be a potential target for pemphigus treatment, with the transcription factor IRF4 identified as a key player in autoantibody production.

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The spatial landscape of lung pathology during COVID-19 progression

Andre F. Rendeiro et al.

Summary: Recent studies using high-parameter imaging mass cytometry have provided insights into the cellular composition and spatial architecture of acute lung injury in humans, including injuries derived from SARS-CoV-2 infection. It was found that SARS-CoV-2 predominantly infects alveolar epithelial cells and induces a localized hyperinflammatory cell state associated with lung damage. As COVID-19 progresses, there is increased macrophage extravasation, along with increased numbers of mesenchymal cells and fibroblasts, possibly indicating attempts to repair the damaged lung tissue. The data generated help in developing a biologically interpretable landscape of lung pathology at both macroscopic and single-cell levels, providing a basis for understanding COVID-19 and lung pathology.

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Emerging concepts in the science of vaccine adjuvants

Bali Pulendran et al.

Summary: Adjuvants are vaccine components that enhance the immune response. Recent advances in understanding the molecular mechanisms and systems vaccinology have revitalized the science and development of novel adjuvants for use in vaccines against COVID-19 and future pandemics.

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SARS-CoV-2 in severe COVID-19 induces a TGF-β-dominated chronic immune response that does not target itself

Marta Ferreira-Gomes et al.

Summary: The study found that in severe COVID-19 patients, plasmablasts shift from IFN to TGF-beta instruction to produce IgA antibodies that are not specific to dominant SARS-CoV-2 antigens.

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Article Immunology

Exploiting albumin as a mucosal vaccine chaperone for robust generation of lung-resident memory T cells

Kavya Rakhra et al.

Summary: Utilizing natural albumin transport to enhance mucosal T-RM generation through vaccination can significantly boost lung immune responses, increase the number of cellular responses, and improve protection against viral or tumor challenges.

SCIENCE IMMUNOLOGY (2021)

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Squalene-Based Influenza Vaccine Adjuvants and Their Impact on the Hemagglutinin-Specific B Cell Response

Phuong Nguyen-Contant et al.

Summary: Squalene-based emulsion adjuvants enhance immune responses and antibody production of influenza vaccines, as well as increasing the diversity and affinity of antibodies against influenza hemagglutinin. These adjuvants are widely used and can provide broad protection against influenza virus clades.

PATHOGENS (2021)

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Follicular Helper-like T Cells in the Lung Highlight a Novel Role of B Cells in Sarcoidosis

Laura Bauer et al.

Summary: Pulmonary sarcoidosis is driven not only by T-helper type 1 cells and macrophages, but also by T follicular helper-like cells and germinal center-like reactions in the inflamed lung tissue. This new pathomechanism of active T-cell/B-cell cooperation and local production of potentially pathogenic antibodies should be taken into consideration for diagnosis and treatment.

AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE (2021)

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Inclusion of cGAMP within virus-like particle vaccines enhances their immunogenicity

Lise Chauveau et al.

Summary: Research has shown that loading cGAMP into viral vaccine vectors enhances their immunogenicity, boosting T-cell responses and specific antibody titres in mice immunization experiments. Additionally, cGAMP-loaded vaccines showed significant protection in virus challenge experiments.

EMBO REPORTS (2021)

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Philip C. Calder

Summary: The immune system protects individuals from pathogenic organisms, with good nutrition supporting immune response. Older people, individuals living with obesity, and those who are malnourished are at higher risk of impaired immunity, especially after infection with SARS-CoV-2. Studies suggest that individual micronutrients like vitamin D and zinc may play a role in reducing the severity of infection with SARS-CoV-2.

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The magnitude of germinal center reactions is restricted by a fixed number of preexisting niches

Patricia Avancena et al.

Summary: Antibody affinity maturation occurs in the germinal center, where follicular dendritic cells form a predetermined number of clusters essential for the GC architecture. The magnitude of the GC reaction is restricted by the occupancy of GC niches by GC B cells.

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The metabolic hormone leptin promotes the function of TFH cells and supports vaccine responses

Jun Deng et al.

Summary: Leptin levels are associated with reduced vaccine responses, as it promotes T-FH differentiation and IL-21 production. Leptin deficiency impairs T-FH generation and antibody responses, increasing the risk of vaccine failure.

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Antibody avidity, persistence, and response to antigen recall: comparison of vaccine adjuvants

Sonia Budroni et al.

Summary: Differences in innate immune 'imprinting' between vaccine adjuvants may mediate dissimilar effects on the quantity and quality of persisting adaptive responses. Specific combinations of immunoenhancers in the adjuvant systems increase antibody persistence and avidity maturation. Different adjuvants have varied effects on the duration and maturity of adaptive immune responses.

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Lung-resident memory B cells protect against bacterial pneumonia

Kimberly A. Barker et al.

Summary: The study found that lung-resident memory B cells play a crucial role in lung immunity, quickly producing antibodies after infection to help clear pathogens. These cells are elicited in mice after pneumococcal infections, are present in human lungs, and are involved in pulmonary antibacterial immunity.

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Article Cell Biology

Protein/AS01B vaccination elicits stronger, more Th2-skewed antigen-specific human T follicular helper cell responses than heterologous viral vectors

Carolyn M. Nielsen et al.

Summary: The study compared the effects of two malaria vaccine delivery platforms on specific Tfh cell responses, showing that the protein/AS01(B) platform induces a higher magnitude of cTfh cell response, which correlates more strongly with antibody production. In contrast to viral vectors, the protein/AS01(B) vaccine shows a greater Th2 bias in antibody production.

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David Masopust et al.

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