Interferon gamma (IFNγ), a type II interferon, augments tissue inflammation following infections, leading to lethal acute lung injury (ALI), yet the mechanisms controlling IFNγ generation in the lungs remain elusive. Here, we identified regulator of G protein signaling 2 (RGS2) as a gatekeeper of the lung's IFNγ levels during infections. Deletion of RGS2 sustained an increase in IFNγ levels in macrophages, leading to unresolvable inflammatory lung injury. This response was not seen in RGS2 null chimeric mice receiving wild-type (WT) bone marrow or the RGS2 gene in alveolar macrophages (AMs) or IFNγ-blocking antibody. RGS2 functioned by suppressing Gαq-mediated IFNγ generation and AM inflammatory signaling. Thus, the inhibition of Gαq blocked IFNγ generation in AMs and rewired AM transcriptomes from an inflammatory to a reparative phenotype in RGS2 null mice, pointing to the RGS2-Gαq axis as a potential target for suppressing inflammatory injury.
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http://dx.doi.org/10.1016/j.isci.2025.111878 | DOI Listing |
Clin Transl Allergy
March 2025
Department of Pediatrics, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, South Korea.
Background: This study aimed to comprehensively characterize the gut microbiome and identify individual and grouped gut microbes associated with food allergy (FA) using 16S rRNA gene sequencing.
Methods: Fecal samples were collected from children with IgE-mediated FA and from sex- and age-matched controls. The V3-V4 variable regions of the 16S rRNA gene of the gut microbiome were profiled using next-generation sequencing (Illumina, USA).
Ann Med
December 2025
Department of Pulmonary and Critical Care Medicine, the Second Xiangya Hospital, Central South University, Changsha, Hunan, China.
Background: Chronic Obstructive Pulmonary Disease (COPD) is a heterogeneous condition with different risk factors, including family history. This study aimed to explore association between a family history of chronic airway disease and features and outcomes of COPD.
Methods: Participants were obtained from the RealDTC study between December 2016 and December 2022.
J Cell Mol Med
March 2025
Hepatobiliary Center, the First Affiliated Hospital of Nanjing Medical University & Research Unit of Liver Transplantation and Transplant Immunology, Chinese Academy of Medical Sciences, Nanjing, Jiangsu, China.
The global incidence of biliary tract cancer (BTC) is on the rise, presenting a substantial healthcare challenge. The integration of immune checkpoint inhibitors (ICIs) with molecularly targeted therapies is emerging as a strategy to enhance immune responses. However, the efficacy and underlying mechanisms of these treatments in BTC are still largely unexplored.
View Article and Find Full Text PDFChempluschem
March 2025
Shanghai University, Chemistry, Shangda Road 99, 200444, Shanghai, CHINA.
Electrochemiluminescence (ECL) combines electrochemical redox processes with photochemical light emission, offering exceptional sensitivity, spatial control, and stability. Widely applied in biosensing, medical diagnostics, and environmental monitoring, its efficiency often depends on advanced catalytic materials. Single-atom catalysts (SACs), featuring isolated metal atoms dispersed on a support, have emerged as promising candidates due to their unique electronic structures, high atom utilization, and tunable catalytic properties.
View Article and Find Full Text PDFChemistry
March 2025
Henan Normal University, School of chenistry and chemical engineering, 46# East of Construction Road, 453007, Xinxiang, CHINA.
Here,we disclose a halogen α-nucleophilic addition via photocatalytic oxidation of the in-situ generated α-carbonyl radical of amides or esters to corresponding α-carbonyl cation. The α-carbon radical is generated by the β-addition of difluoroalkyl radical, formed by the photocatalytic reduction of BrCF2CO2R, to the α,β-unsaturated amides/esters. This umpolung strategy enables an efficient three-component difluoroalkyl-halogenation of α,β-unsaturated amides or esters with BrCF2CO2R and Cl/F-nucleophiles to produce diverse biologically important CF2-containing α-halo-1,5-dicarboxylic derivatives under mild conditions.
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