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Search Results (748)

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17 pages, 5433 KB  
Article
Kidney Cyst Epithelia in Tuberous Sclerosis Complex (TSC) Exhibit Propagation and Expansion of A-Intercalated, but Loss of B-Intercalated and Principal Cells: The Role of FOXI1, FOXP1, and DMRT2 Transcription Factors
by Manoocher Soleimani, Kamyar Zahedi, Marybeth Brooks, Julie G. In and Sharon Barone
Int. J. Mol. Sci. 2026, 27(17), 7515; https://doi.org/10.3390/ijms27177515 (registering DOI) - 22 Aug 2026
Abstract
Kidney cystic epithelium primarily comprises proliferating A-intercalated (A-IC) cells in humans and mouse models of TSC. These studies explored the expression of transcription factors (TF) that drive the development of A-IC cells and the downregulation of B-intercalated (B-IC) cells, as well as the [...] Read more.
Kidney cystic epithelium primarily comprises proliferating A-intercalated (A-IC) cells in humans and mouse models of TSC. These studies explored the expression of transcription factors (TF) that drive the development of A-IC cells and the downregulation of B-intercalated (B-IC) cells, as well as the status and localization of Tsc1 and Tsc2 in epithelial cells lining the cysts. Transcriptome studies indicated enhanced expression of the following TFs: DMRT2, FOXI1, and FOXP1 in young TSC mice, and DMRT2 and FOXI1 in aged mice. The expression of Hmx2 decreased in TSC mice of all ages. Our studies further demonstrated: (1) distinct and predominant DMRT2 and FOXP1 localization in the cystic epithelium of in TSC mouse models; and (2) expression of Foxi1, Tsc1, and Tsc2 in epithelial cells lining the kidney cysts. Expression of DMRT2, FOXI1, and FOXP1 is enhanced in the A-IC cells lining the kidney cysts of TSC mouse models. In the same models, the expression of Hmx2 mRNA is decreased and is accompanied by the loss of B-IC cells in cyst epithelia. Both DMRT2 and FOXP1 localized to the nucleus of A-IC cells of the renal cysts, suggesting that TSC kidney cystogenesis is driven by factors that exclusively promote A-IC expansion. Full article
(This article belongs to the Section Molecular Biology)
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16 pages, 20971 KB  
Article
Targeting Glycolysis May Bridge Innate and Adaptive Immune Regulation in Experimental Peri-Implantitis
by Shudan Deng, Xingchen Liu, Feiyang Wu, Shoucheng Chen and Zhuofan Chen
Int. J. Mol. Sci. 2026, 27(17), 7513; https://doi.org/10.3390/ijms27177513 (registering DOI) - 22 Aug 2026
Viewed by 53
Abstract
Peri-implantitis is characterized by progressive tissue destruction accompanied by dysregulated innate and adaptive immune responses. This study evaluated whether systemic treatment with 2-deoxy-D-glucose (2-DG) could attenuate experimental peri-implantitis and alter inflammatory markers associated with macrophage- and T-cell-mediated responses in a rat model. Experimental [...] Read more.
Peri-implantitis is characterized by progressive tissue destruction accompanied by dysregulated innate and adaptive immune responses. This study evaluated whether systemic treatment with 2-deoxy-D-glucose (2-DG) could attenuate experimental peri-implantitis and alter inflammatory markers associated with macrophage- and T-cell-mediated responses in a rat model. Experimental peri-implantitis was induced in Sprague–Dawley rats by Porphyromonas gingivalis-inoculated silk ligation around the implant neck. After disease induction, animals received intraperitoneal injections of 2-DG or normal saline for six weeks while ligature-associated challenge was maintained. Peri-implant tissues were assessed by micro-computed tomography (micro-CT), hematoxylin and eosin staining, immunohistochemistry (IHC), and reverse transcription-quantitative PCR (RT-qPCR). 2-DG treatment significantly reduced peri-implant bone resorption and was associated with less pronounced bone-resorptive morphology. RT-qPCR showed lower expression of M1-associated genes (CD86, iNOS, TNF-α, IL-6, and IL-18) and the Th17-associated genes IL-17 and RORγT, whereas IL-21, M2-associated genes, and the Treg-associated gene FOXP3 were not significantly changed. IHC showed qualitative trends toward lower iNOS- and IL-17-positive signals. These findings provide proof-of-concept evidence that 2-DG treatment reduces peri-implant bone loss and is associated with attenuated inflammatory changes and lower expression of M1- and Th17-associated inflammatory markers in experimental peri-implantitis. This study supports further investigation of 2-DG as a potential immunometabolic adjunct for peri-implantitis management. Full article
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21 pages, 5204 KB  
Article
CREM Marks TCR-Driven T-Cell Activation and Associates with Favorable Prognosis in Papillary Thyroid Carcinoma: A Single-Cell and Bulk Transcriptomic Study
by Hao Ling, Peiyu Qiu, Yanzhu Hu and Yan Sun
Int. J. Mol. Sci. 2026, 27(16), 7387; https://doi.org/10.3390/ijms27167387 - 18 Aug 2026
Viewed by 156
Abstract
Although papillary thyroid carcinoma (PTC) is widely considered an immunologically cold tumor, detectable T-cell infiltration can influence disease progression in selected patients. Previous bulk analyses have linked cAMP-responsive element modulator (CREM) expression to a favorable progression-free interval and an inverse correlation with regulatory [...] Read more.
Although papillary thyroid carcinoma (PTC) is widely considered an immunologically cold tumor, detectable T-cell infiltration can influence disease progression in selected patients. Previous bulk analyses have linked cAMP-responsive element modulator (CREM) expression to a favorable progression-free interval and an inverse correlation with regulatory T-cell infiltration but have not resolved the cellular origin or functional state. In this study, we integrate single-cell RNA-sequencing data from a 23-sample PTC atlas with bulk Cancer Genome Atlas Thyroid Carcinoma (TCGA–THCA) validation. We show that CREM marks a T-cell receptor (TCR)-driven immediate early gene activation state in tumor-infiltrating T cells rather than a cAMP program; this state is consistently and modestly enriched within the FOXP3+ regulatory T-cell compartment, challenging the interpretation that bulk inverse Treg–CREM correlations reflect Treg-intrinsic repression. CREM-high T cells upregulate ANXA1, and permutation-controlled analysis identifies a candidate paracrine axis from CD4/CD8 T cells to the epithelial epidermal growth factor receptor (EGFR). At the bulk level, CREM expression correlates with reduced proliferation programs and is associated with a prolonged progression-free interval (multivariate HR 0.56, 95% CI 0.31–1.00, p = 0.050), with the effect direction preserved after immune and sex adjustment. Genome-wide differential expression and gene-set enrichment in an independent cohort (GSE193581) confirm that CREM-detected T cells are enriched for a TCR-driven immediate early transcriptional program, supporting the reinterpretation of CREM as a marker of TCR-driven IEG activation. Full article
(This article belongs to the Section Molecular Informatics)
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18 pages, 2767 KB  
Review
Regulatory T Cell (Treg): Central Orchestrator of Immune Homeostasis
by Md. Abdus Salam, Md. Yusuf Al-Amin, Kasireddy Sudarshan, Nadia Whalen, Faith Chapman, Campbell Gideon and Annabella Cordovez
Cells 2026, 15(16), 1462; https://doi.org/10.3390/cells15161462 - 15 Aug 2026
Viewed by 362
Abstract
Regulatory T cells (Tregs) play a pivotal role in maintaining immune homeostasis by exerting precise control over immune activation, suppressing excessive responses, and facilitating tissue repair. These specialized CD4+ T cells, characterized by FOXP3 expression, function as key regulators that prevent pathogen-directed immune [...] Read more.
Regulatory T cells (Tregs) play a pivotal role in maintaining immune homeostasis by exerting precise control over immune activation, suppressing excessive responses, and facilitating tissue repair. These specialized CD4+ T cells, characterized by FOXP3 expression, function as key regulators that prevent pathogen-directed immune responses from progressing to deleterious autoimmunity or chronic inflammation. Tregs mediate suppression via secretion of cytokines such as IL-10 and TGF-β, metabolic disruption, and direct modulation of effector immune cells, thereby maintaining equilibrium between protective immunity and peripheral tolerance. Both thymically derived natural Tregs (nTregs) and peripherally induced Tregs (pTregs) exhibit phenotypic plasticity, adapting to diverse inflammatory milieus and tissue microenvironments through an array of suppressive mechanisms that orchestrate immune regulation and facilitate tissue repair. This functional heterogeneity manifests across lymphoid and non-lymphoid tissues, wherein Tregs dynamically adapt to distinct microenvironments to mount tailored responses to infection, tissue injury, and inflammatory insults. Conversely, Tregs may promote disease progression in malignancies and persistent infections by attenuating antitumor and antimicrobial immune effector responses. Treg activity is essential for averting autoimmune pathologies, tempering inflammatory cascades, and fostering tissue regeneration, thereby rendering them indispensable for upholding both systemic and tissue-specific immune homeostasis. Elucidation of Treg immunobiology unveils substantial therapeutic prospects across a diverse array of pathologies; targeted modulation of Treg frequency and functionality offers promise for ameliorating autoimmunity, mitigating transplant rejection, and combating malignancy. This narrative review delineates the multifaceted roles of Tregs in immune homeostasis, elucidates emerging insights into their mechanistic underpinnings, and evaluates prospective applications in next-generation immunotherapeutic interventions. Full article
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25 pages, 54035 KB  
Article
A CXCR4/PD-L1 Bispecific Nanobody Engineered for Tumor Microenvironment Retention Mediates Sustained Synergy with Chemotherapy via Remodeling Immunity in TNBC
by Shuyi Xu, Hai Hu, Yifan Li, Jiawei Zhang, Lei Wang, Pameila Paerhati, Wenxin Bao, Yanlin Bian, Jianwei Zhu and Mingyuan Wu
Pharmaceuticals 2026, 19(8), 1288; https://doi.org/10.3390/ph19081288 - 14 Aug 2026
Viewed by 227
Abstract
Background: The efficacy of chemotherapy in triple-negative breast cancer (TNBC) is limited by intrinsic resistance and the tumor microenvironment (TME). Accumulating evidence reveals a mechanistic connection between programmed death-ligand 1 (PD-L1) and c-x-c motif chemokine receptor 4 (CXCR4), which dominate stroma barriers, [...] Read more.
Background: The efficacy of chemotherapy in triple-negative breast cancer (TNBC) is limited by intrinsic resistance and the tumor microenvironment (TME). Accumulating evidence reveals a mechanistic connection between programmed death-ligand 1 (PD-L1) and c-x-c motif chemokine receptor 4 (CXCR4), which dominate stroma barriers, immune escape, and cancer metastasis. Earlier studies have shown that dual suppression of c-x-c motif ligand 12 (CXCL12)/CXCR4 and programmed cell death-1 (PD-1)/PD-L1 pathways regulates extracellular matrix (ECM) deposition, activation of cancer-associated fibroblasts (CAFs), and epithelial–mesenchymal transition (EMT) of pancreatic cancer cells. Methods: We combined BsNb PX4, a bispecific nanobody targeting PD-L1 and CXCR4, with paclitaxel or gemcitabine in multiple tumor cell lines and human peripheral blood mononuclear cell (hPBMC)-reconstituted xenograft mouse models. Antitumor activity was assessed by CCK-8, flow cytometry, and ELISA, and immune cell infiltration and TME remodeling were examined by immunofluorescence, immunohistochemistry, cytokine assays, and RNA-seq. Results: In MDA-MB-231 cells, BsNb PX4 synergistically enhanced paclitaxel-induced growth inhibition and apoptosis via G2/M cycle arrest. This combinatorial strategy profoundly remodeled tumor immunity by expanding CD8+ T cells and depleting Foxp3+ CD4+ regulatory T cells (Tregs), while concurrently restoring T-cell cytotoxicity and skewing the cytokine balance toward an antitumor state, with elevated IFN-γ and reduced TGF-β1. Notably, compared with paclitaxel monotherapy, the combination significantly elevated intratumoral CD8+ T-cell infiltration, decreased Treg abundance, and exerted robust inhibitory effects on tumor growth and metastasis in humanized TNBC xenografts. Conclusions: These findings reveal that dual blockade of PD-L1 and CXCR4 acts synergistically with chemotherapy by triggering tumor cell apoptotic effects and reversing the immunosuppressive microenvironment, thereby emerging as a promising therapeutic strategy for TNBC. Full article
(This article belongs to the Special Issue Tumor Immunopharmacology, 2nd Edition)
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16 pages, 2806 KB  
Review
CD47 and FOXP3+ Regulatory Immunity in Colorectal Cancer: A Conceptual Framework for Coordinated Immunosuppression
by Qijie Li, Anello Marcello Poma, Donghao Tang, Paola Vignali, Rossella Bruno, Elisabetta Macerola, Beatrice Fuochi and Clara Ugolini
Cancers 2026, 18(16), 2614; https://doi.org/10.3390/cancers18162614 - 13 Aug 2026
Viewed by 226
Abstract
In colorectal cancer (CRC), tumor progression is influenced by immunosuppressive tumor microenvironment (TME), in which innate immunity and adaptive immunity play an important role. CD47 is one of the key molecules in the process. It sends a “don’t eat me” signal to macrophages [...] Read more.
In colorectal cancer (CRC), tumor progression is influenced by immunosuppressive tumor microenvironment (TME), in which innate immunity and adaptive immunity play an important role. CD47 is one of the key molecules in the process. It sends a “don’t eat me” signal to macrophages by binding to signal regulatory protein alpha (SIRPα), thus helping tumor cells escape immune clearance. Forkhead box P3 (FOXP3)+ regulatory immune cells further suppress antitumor T-cell responses. Here, based on a review of the literature and publicly available transcriptomic data, we propose that CD47 expression and FOXP3+ regulatory T cells in CRC are interconnected components of a broader myeloid–regulatory immunosuppressive phenotype, rather than a simple linear CD47–FOXP3 pathway. Evidence from cancer studies and exploratory GEPIA3/TIMER3.0 analyses supports a weak and method-dependent association between CD47 expression, FOXP3 transcripts, and estimated Treg infiltration. Hippo/Yes-associated protein/transcriptional coactivator with PDZ-binding motif (YAP/TAZ) signaling serves as a potential upstream program contributing to this immune context. Full article
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26 pages, 1618 KB  
Review
Fatty Acid Metabolism Rewires Glioblastoma Progression and Treg-Mediated Immune Resistance
by Nowreen Islam Chowdhury, Hebatollah Ewida, Mahmoud Salama Ahmed and Heidi Villalba
Cancers 2026, 18(16), 2573; https://doi.org/10.3390/cancers18162573 - 11 Aug 2026
Viewed by 363
Abstract
Glioblastoma (GBM) is one of the most aggressive and treatment-resistant cancers, shaped by a tumor microenvironment (TME) that is both metabolically demanding and strongly immunosuppressive. GBM relies heavily on fatty acid (FA) metabolism to sustain growth of rapidly dividing tumor cells and survive [...] Read more.
Glioblastoma (GBM) is one of the most aggressive and treatment-resistant cancers, shaped by a tumor microenvironment (TME) that is both metabolically demanding and strongly immunosuppressive. GBM relies heavily on fatty acid (FA) metabolism to sustain growth of rapidly dividing tumor cells and survive metabolic stress. GBM cells enhance lipid uptake, activate sterol regulatory element-binding protein 1 (SREBP-1)-driven lipogenesis, store excess lipids in droplets to prevent toxicity, and depend on fatty acid oxidation (FAO) to generate adenosine triphosphate (ATP) and maintain redox balance, particularly under nutrient-limited conditions. GBM TME is also consistently enriched with regulatory T cells (Tregs), which maintain suppressive activity despite the nutrient restrictions that impair effector T cells (Teffs). In hypoxia and nutrient limitation within the TME, Tregs can adapt by using FAO, lactate oxidation, and OXPHOS, supported by forkhead box P3 (Foxp3)-dependent metabolic programming, cluster of differentiation 36 (CD36)-mediated FA uptake, and hypoxia-related signals. At the same time, programmed cell death protein 1 (PD-1)/programmed death-ligand 1 (PD-L1) signaling reduces glycolytic activity in Teffs and contributes to metabolic dysfunction, while also supporting the stability of oxidative metabolism in Tregs. Evidence from pre-clinical and clinical studies suggests a possible association between Treg enrichment in GBM and reduced responsiveness to immune checkpoint inhibitors (ICIs), although this relationship is not yet fully defined. Overall, current findings point to FA metabolism as a shared metabolic axis that supports both tumor progression and Treg-mediated immune resistance. Targeting lipid-driven pathways may offer an opportunity to disrupt these advantages and improve the effectiveness of existing immunotherapies for GBM. Full article
(This article belongs to the Special Issue Novel Insights into Glioblastoma and Brain Metastases (2nd Edition))
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14 pages, 2142 KB  
Article
Celiac Disease: Cytokine Profile of Intraepithelial Gamma Delta T Cells in Disease Severity
by Giuseppe Mazzarella, Giuseppe Iacomino, Gaetano Iaquinto, Alessandra Camarca, Errico Picariello, Raffaele Melina and Vera Rotondi Aufiero
Cells 2026, 15(15), 1424; https://doi.org/10.3390/cells15151424 - 6 Aug 2026
Viewed by 322
Abstract
γδ+ intraepithelial lymphocytes (IELs) are persistently expanded in the intestinal epithelium of patients with active celiac disease (ACeD), but their functional profile during active inflammation remains poorly defined. This study investigated the expression of pro- and anti-inflammatory cytokines in γδ+ IELs [...] Read more.
γδ+ intraepithelial lymphocytes (IELs) are persistently expanded in the intestinal epithelium of patients with active celiac disease (ACeD), but their functional profile during active inflammation remains poorly defined. This study investigated the expression of pro- and anti-inflammatory cytokines in γδ+ IELs isolated from the intestinal epithelium of ACeD patients at different stages of mucosal damage. Frozen jejunum sections were obtained from 14 ACeD patients (7 Marsh II and 7 Marsh III) and 10 treated celiac disease (CeD) patients. γδ+ IELs from ACeD biopsies and intestinal enterocytes (IEs) from treated CeD biopsies were isolated by laser capture microdissection on mirror sections, followed by RNA extraction and quantitative real-time RT-PCR analysis of IL-15, IL-17A, IL-21, IFN-γ, TNF-α, IL-10, and TGF-β. Foxp3 expression was assessed by immunohistochemistry. γδ+ IELs from Marsh III biopsies showed significantly increased mRNA levels of IL-15, IL-17A, IL-21, IFN-γ, and TGF-β compared with IEs, whereas IL-10 expression was significantly higher in Marsh II γδ+ IELs compared with Marsh III and IEs. IL-21 and TGF-β were also higher in Marsh III than Marsh II γδ+ IELs. All γδ+ IELs were Foxp3. These findings indicate a stage-dependent functional polarization of γδ+ IELs in ACeD, with an IL-10–associated regulatory profile in Marsh II and a predominant pro-inflammatory cytokine signature in Marsh III. Full article
(This article belongs to the Section Cellular Immunology)
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22 pages, 1891 KB  
Review
Protein-Level and Proteomics-Supported Signatures of Human CD4+ Regulatory T Cells: Evidence, Tissue Context, and Translational Readiness in Aging and Age-Associated Disease
by Ekaterina A. Botchkova, Alexey V. Churov and Mikhail S. Arbatskiy
Immuno 2026, 6(3), 49; https://doi.org/10.3390/immuno6030049 - 31 Jul 2026
Viewed by 361
Abstract
Regulatory CD4+ T cells (Tregs) are essential for immune tolerance, tissue repair, and control of inflammation, but functional human Tregs cannot be identified reliably by a single protein. This targeted narrative review evaluates protein-level and proteomics-supported Treg signatures with explicit attention to species, [...] Read more.
Regulatory CD4+ T cells (Tregs) are essential for immune tolerance, tissue repair, and control of inflammation, but functional human Tregs cannot be identified reliably by a single protein. This targeted narrative review evaluates protein-level and proteomics-supported Treg signatures with explicit attention to species, sample source, analytical platform, validation strategy, and intended use. Primary human LC-MS/MS studies reveal pathway-level differences involving T-cell receptor signaling, metabolism, lysosomal activity, and lineage protection, whereas murine proteomic studies provide mechanistic candidates such as Themis1 but do not establish human biomarkers. CyTOF, functional single-cell protein profiling, spatially resolved protein imaging, and multi-omics further resolve phenotypic and tissue heterogeneity. Established CD25high/CD127low/FOXP3-based panels support enrichment and phenotyping; CTLA-4, ICOS, TIGIT, GITR, PD-1, chemokine receptors, suppressive enzymes, metabolic proteins, and emerging candidates report functional or tissue states but are not Treg-exclusive. Cancer currently provides the strongest tissue-level and prognostic evidence, whereas data in healthy aging, cardiovascular and metabolic disease, osteoarthritis, and neurodegeneration remain heterogeneous and mainly exploratory. Across contexts, validated diagnostic sensitivity, specificity, reference ranges, prospective clinical utility, and inter-laboratory reproducibility are largely absent. Treg immunoproteomics is therefore best regarded as a discovery and stratification framework rather than a standardized clinical diagnostic test. Full article
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9 pages, 597 KB  
Communication
Establishment of an HSV-1 Mouse Model with Cutaneous Lesions
by Hye-Myung Ryu, Bushra Riaz and Seonghyang Sohn
Pathogens 2026, 15(8), 787; https://doi.org/10.3390/pathogens15080787 - 24 Jul 2026
Viewed by 273
Abstract
Herpes simplex virus type 1 (HSV-1) causes recurrent mucocutaneous lesions, yet existing animal models incompletely recapitulate characteristic skin manifestations. Here, we established a mouse model of cutaneous HSV-1 infection by combining epithelial barrier disruption with localized viral inoculation. Superficial scarification of the ear [...] Read more.
Herpes simplex virus type 1 (HSV-1) causes recurrent mucocutaneous lesions, yet existing animal models incompletely recapitulate characteristic skin manifestations. Here, we established a mouse model of cutaneous HSV-1 infection by combining epithelial barrier disruption with localized viral inoculation. Superficial scarification of the ear followed by HSV-1 exposure resulted in consistent lesion formation. Administration of hydrocortisone further increased the incidence of lesions, highlighting the critical roles of epithelial integrity and host immune regulation in the pathogenesis of HSV-1 infection. Using this model, we evaluated the antiviral efficacy of Acyclovir. Treatment significantly reduced lesion severity, lesion size, and viral gene expression, indicating partial suppression of viral replication. Notably, acyclovir treatment was associated with increased expression of T-bet and Foxp3 in lymphoid tissues, suggesting modulation of both effector and regulatory immune responses. Collectively, this model successfully reproduces localized HSV-1 skin lesions, serving as a useful platform for investigating viral pathogenesis and evaluating antiviral therapies. However, further studies, including direct viral quantification and histopathological analysis, are required. Full article
(This article belongs to the Special Issue Pathogen–Host Interactions: Death, Defense, and Disease)
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11 pages, 2532 KB  
Article
Intervention with Polyvalent Bacterial Lysate Modulates T Helper Cell Subsets in Polish Children with Grass Pollen-Induced Allergic Rhinitis
by Kamil Janeczek, Wioleta Grzegorzewska, Michał Zarobkiewicz, Dorota Suszczyk, Marek Mikołajczyk, Ewa Markut-Miotła, Izabela Morawska-Michalska, Adrian Bakiera, Aleksandra Chmielewska, Andrzej Emeryk, Jacek Roliński, Marta Rachel and Krystyna Piotrowska-Weryszko
Biomedicines 2026, 14(7), 1623; https://doi.org/10.3390/biomedicines14071623 - 19 Jul 2026
Viewed by 586
Abstract
Background: Allergic rhinitis (AR) is a chronic condition that affects children’s quality of life. Studies show that adding bacterial lysates (BLs) to treatment can improve outcomes, but their effects on the immune system are still not fully understood. Objectives: This study aimed to [...] Read more.
Background: Allergic rhinitis (AR) is a chronic condition that affects children’s quality of life. Studies show that adding bacterial lysates (BLs) to treatment can improve outcomes, but their effects on the immune system are still not fully understood. Objectives: This study aimed to evaluate the immunomodulatory impact of sublingually administered polyvalent mechanical BL (PMBL) on the expression of T helper (Th) cell-associated transcription factors and cytokines in children with grass pollen-induced AR. Methods: Immunological analyses were performed on blood samples collected during a previously conducted randomised, double-blind, placebo-controlled clinical trial (NCT04802616). Children aged 5–17 years with grass pollen-induced AR received either sublingual PMBL or placebo in three 10-day treatment cycles, each followed by a 20-day break. Peripheral blood mononuclear cells were collected at baseline before the grass pollen season (V1) and after completion of the study treatment during natural peak pollen exposure (V2) and analysed by flow cytometry to assess the expression of transcription factors and cytokines associated with Th1, Th2, Th10, Th17, and Treg-like immune responses. Results: In the PMBL group, there was a significant increase in the expression of T-bet, E4BP4, FoxP3, IFN-γ, and IL-10, along with a reduction in GATA3 and IL-4 expression (p < 0.001). The placebo group exhibited increased expression of GATA3 (p < 0.001), RORγT (p < 0.001), and IL-4 (p = 0.004) and a reduction in T-bet expression (p = 0.007). Between-group comparisons at V2 revealed significantly higher expression of Th1-, Th10-, and Treg-associated markers, and lower Th2- and Th17-associated markers in the PMBL group compared to placebo. Conclusions: Sublingual PMBL administration modulates the expression of Th cell-associated transcription factors and cytokines in children with grass pollen-induced AR, consistent with enhanced Th1-, Th10-, and Treg-like immune responses and reduced Th2-associated activity. Full article
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20 pages, 3838 KB  
Article
Targeting CDK4/6 in Combination with Phage-Based Anti-HER2 Vaccination Overcomes Immune Evasion and Enhances the Anticancer Response in Breast Cancer
by Junbiao Wang, Alessia Lamolinara, Daniele Tomassoni, Laura Conti, Chiara Cossu, Antonino Di Lorenzo, Mara Giangrossi, Daniela Lufrano, Varshini Vaithianathan, Fiorenza Orlando, Fabiola Olivieri, Serena Marcozzi, Daniela Beghelli, Barbara Belletti, Augusto Amici, Maurizio Falconi, Federica Cavallo, Manuela Iezzi and Cristina Marchini
Pharmaceutics 2026, 18(7), 881; https://doi.org/10.3390/pharmaceutics18070881 - 18 Jul 2026
Viewed by 1169
Abstract
Background/Objectives: Cancer vaccines represent the next frontier in immunotherapy, aiming to elicit long-lasting protective anti-tumor immune responses. Human epidermal growth factor receptor 2 (HER2) is a well-established therapeutic target in breast cancer. Active immunization with HER2-displaying M13 bacteriophages can induce a therapeutic [...] Read more.
Background/Objectives: Cancer vaccines represent the next frontier in immunotherapy, aiming to elicit long-lasting protective anti-tumor immune responses. Human epidermal growth factor receptor 2 (HER2) is a well-established therapeutic target in breast cancer. Active immunization with HER2-displaying M13 bacteriophages can induce a therapeutic immune response against HER2-positive breast cancer, offering a promising alternative to trastuzumab. However, the duration of anticancer immune protection triggered by anti-HER2 phage-based vaccines is limited by tumor-immune suppressive mechanisms. Methods: In this study, two vaccination cycles with ECTM phages displaying the extracellular (EC) and transmembrane (TM) domains of human HER2 were combined with palbociclib, a CDK4/6 inhibitor, to enhance antitumor immunity in the clinically relevant Δ16HER2 transgenic preclinical model of breast cancer. Results: The proposed combination treatment resulted in a better and long-lasting control of tumor growth rate and multiplicity than either palbociclib or phage vaccination alone, correlating with a significantly stronger anti-HER2 humoral response (IgG2a isotype). Analysis of the tumor immune infiltrate revealed an increased presence of CD8+ T cells concomitant with a reduction in FoxP3+ regulatory T cells (Tregs) in tumors explanted from mice receiving the combination therapy. Conclusions: These preclinical results provide a rationale for the clinical translation of CDK4/6 inhibitors combined with anti-HER2 active immunotherapies in breast cancer, as they may yield sustained antitumor responses by reverting the immunosuppressive tumor environment. Full article
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20 pages, 2607 KB  
Review
Halo Nevus as a Self-Limited Model of Melanocyte Autoimmunity: Bridging Vitiligo, Immune Resolution, and Tumor Immunology—A Narrative Review
by Giulio Tosti
Dermatopathology 2026, 13(3), 33; https://doi.org/10.3390/dermatopathology13030033 - 16 Jul 2026
Viewed by 877
Abstract
Halo nevus (HN), also known as Sutton nevus or leukoderma acquisitum centrifugum, is a melanocytic lesion characterized by a depigmented halo surrounding a central nevus. Although HN is a benign dermatological condition, increasing evidence indicates that HN represents a dynamic in vivo model [...] Read more.
Halo nevus (HN), also known as Sutton nevus or leukoderma acquisitum centrifugum, is a melanocytic lesion characterized by a depigmented halo surrounding a central nevus. Although HN is a benign dermatological condition, increasing evidence indicates that HN represents a dynamic in vivo model of melanocyte-directed immune response with relevant implications for autoimmunity, pigmentary disorders, melanoma regression, and tumor immunosurveillance. The pathogenesis is primarily mediated by CD8+ cytotoxic T lymphocytes via interferon-γ-driven pathways, leading to targeted destruction of melanocytes. However, recent studies have highlighted the importance of immune regulatory mechanisms, including PD-L1-expressing neutrophils and FOXP3+ regulatory T cells, which limit excessive immune-mediated damage and may contribute to the self-limited course and repigmentation observed in some lesions. Additional cytotoxic mediators, particularly granulysin, appear to strengthen melanocyte-directed cytotoxicity, while dendritic cells, macrophages, Langerhans cells, neutrophils, and natural killer cells contribute to antigen presentation, tissue remodeling, and immune resolution. HN shares key immunopathogenic features with vitiligo and melanoma regression but differs from both conditions due to its localized, tightly regulated behavior. Moreover, the halo phenomenon is not restricted to melanocytic lesions, supporting the view that it reflects a broader immune pattern rather than a disease-specific entity. This review provides a comprehensive synthesis of the clinical, histopathological, immunological, diagnostic, and translational aspects of halo nevus. Based on the available evidence, we propose a self-limited melanocyte autoimmunity model to explain the characteristic balance between melanocyte destruction, immune regulation, and spontaneous resolution observed in halo nevi. Full article
(This article belongs to the Section Molecular Dermatopathology)
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13 pages, 2746 KB  
Article
IL-27-Dependent Lag3 Regulates CD4+ Foxp3+ Regulatory T Cells to Alleviate Airway Inflammation in Allergic Asthma
by Miaojuan Zhu, Rongyao Feng, Nishan Deng, Yifei Chen, Jiong Yang and Hanxiang Nie
Int. J. Mol. Sci. 2026, 27(14), 6260; https://doi.org/10.3390/ijms27146260 - 14 Jul 2026
Viewed by 365
Abstract
Allergic asthma is associated with a reduction in the number of regulatory T cells (Tregs). Although interleukin-27 (IL-27) has been shown to modulate Tregs potentially through the Lymphocyte-activation gene 3 (Lag3) pathway, the underlying mechanism remains incompletely defined. Objective: This study [...] Read more.
Allergic asthma is associated with a reduction in the number of regulatory T cells (Tregs). Although interleukin-27 (IL-27) has been shown to modulate Tregs potentially through the Lymphocyte-activation gene 3 (Lag3) pathway, the underlying mechanism remains incompletely defined. Objective: This study sought to determine whether IL-27 ameliorates airway inflammation in asthma by modulating Tregs in a Lag3-dependent manner. Acute asthma was induced in wild-type (WT) and Lag3 knockout (Lag3−/−) mice through sensitization and challenge with house dust mite (HDM). A treatment group received intranasal recombinant IL-27 prior to challenges. In WT mice, IL-27 administration significantly attenuated airway inflammation, goblet cell hyperplasia, and total cell counts in bronchoalveolar lavage fluid (BALF), along with reduced levels of Th2 cytokines (IL-4, IL-5). It also upregulated T-bet (Th1) mRNA expression, downregulated GATA-3 (Th2) and RORγt (Th17) levels, and increased the proportions of CD4+ Foxp3+ Tregs, CTLA4+ Tregs, and Lag3+ Tregs in lung tissue. Conversely, in Lag3−/− mice, the protective effects of IL-27 were completely abrogated, with no observed increases in Treg populations or suppression of Th2/Th17 immune responses. The anti-asthmatic effect of exogenous IL-27 is associated with increased Treg frequency and upregulation of inhibitory markers, with Lag3 serving as a pivotal target on Tregs. Full article
(This article belongs to the Special Issue Allergic Diseases: Molecular Insights into Immunotherapy)
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Review
CT-Based Radiomics for Prediction of Molecular Markers in Clear Cell Renal Cell Carcinoma: A Comprehensive Review
by Ekaterini Boukali, Petros Koumpis, Eleni Romeo, Eyrysthenis Vartholomatos, George A. Alexiou, Maria I. Argyropoulou and Athina C. Tsili
Medicina 2026, 62(7), 1349; https://doi.org/10.3390/medicina62071349 - 12 Jul 2026
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Abstract
Background and Objectives: Clear cell renal cell carcinoma (ccRCC) demonstrates substantial molecular and clinical heterogeneity, limiting the prognostic accuracy of conventional staging system and complicating treatment selection. CT-based radiomics and radiogenomics have emerged as promising non-invasive approaches for predicting molecular biomarkers. This review [...] Read more.
Background and Objectives: Clear cell renal cell carcinoma (ccRCC) demonstrates substantial molecular and clinical heterogeneity, limiting the prognostic accuracy of conventional staging system and complicating treatment selection. CT-based radiomics and radiogenomics have emerged as promising non-invasive approaches for predicting molecular biomarkers. This review aimed to evaluate the current evidence regarding CT-based radiogenomics for the prediction of molecular markers in ccRCC, with emphasis on methodological approaches, predictive performance, and clinical applicability. Materials and Methods: A comprehensive literature search of PubMed/MEDLINE, Scopus, and Cochrane Library databases was performed for original studies published between January 2012 and December 2025. Eligible studies included patients with histopathologically confirmed ccRCC, performed CT-based radiomics feature extraction, and investigated molecular or genetic biomarkers using machine learning (ML) methods. Data regarding CT acquisition phase, segmentation strategy, radiomics features, ML algorithms, investigated biomarkers, and model performance metrics were extracted. Results and Discussion: Twenty-five retrospective studies were included. CT-based radiomics demonstrated promising performance in predicting gene mutations, including Von Hippel–Lindau (VHL), Polybromo 1 (PBRM1), BRCA1-associated protein 1 (BAP1), SET domain containing 2 (SETD2), and Lysine demethylase 5C (KDM5C), with reported area under the curve (AUC) values reaching 0.987. Radiogenomic models also showed utility in assessing hypoxia-related pathways, lipid metabolism signatures, programmed cell death profiles, immune-related markers, and tumor microenvironment characteristics, including programmed death-ligand 1 (PD-L1), Cluster of Differentiation 68 (CD68+) tumor-associated macrophages (TAMs), Cytotoxic T-Lymphocyte–Associated Protein 4 (CTLA-4), Forkhead Box P3 (FOXP3), and Ki-67 proliferation index. Predictive performance varied across biomarkers, with AUCs generally ranging from 0.68 to 0.91. Random Forest (RF), Logistic Regression (LR), Support Vector Machine (SVM), Adaptive Boosting (AdaBoost), and Gradient Boosting algorithms were most commonly applied. Conclusions: CT-based radiogenomics represents a promising non-invasive tool for molecular characterization and risk stratification in ccRCC. Standardized multicenter prospective studies, methodological homogeneity, and external validation are required before routine clinical implementation. Full article
(This article belongs to the Special Issue Interventional Radiology and Imaging in Cancer Diagnosis)
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