Sign in to use this feature.

Years

Between: -

Subjects

remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline

Journals

remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline

Article Types

Countries / Regions

remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline

Search Results (1,046)

Search Parameters:
Keywords = epithelial populations

Order results
Result details
Results per page
Select all
Export citation of selected articles as:
23 pages, 14849 KB  
Article
Intravenous Administration of Stromal Vascular Fraction Attenuates Early Busulfan-Induced Testicular Injury in Rats: An Alternative Cell-Based Approach for Spermatogenic Impairment
by Tiantian Li, Zhuojie Liu, Feng Yang, Linshu Ding, Qiuju Yuan, Kwok-Fai So, Yan Zhang and Wutian Wu
Biology 2026, 15(15), 1312; https://doi.org/10.3390/biology15151312 - 5 Aug 2026
Abstract
Stromal vascular fraction (SVF), an uncultured adipose-derived cell population, exerts regenerative effects primarily through paracrine mechanisms. While local intratesticular injection of SVF alleviates busulfan-induced testicular injury, the intravenous route remains unexplored. This study investigated whether intravenous SVF administration could mitigate busulfan-induced spermatogenic impairment. [...] Read more.
Stromal vascular fraction (SVF), an uncultured adipose-derived cell population, exerts regenerative effects primarily through paracrine mechanisms. While local intratesticular injection of SVF alleviates busulfan-induced testicular injury, the intravenous route remains unexplored. This study investigated whether intravenous SVF administration could mitigate busulfan-induced spermatogenic impairment. Adult male Sprague-Dawley rats received busulfan (15 mg/kg, intraperitoneal) or vehicle; the busulfan + SVF group received 2 × 106 allogeneic SVF cells intravenously immediately after busulfan injection. Two weeks later, we evaluated sperm parameters, testicular histopathology (Johnsen’s score, seminiferous tubule diameter, germinal epithelial thickness), and immunohistochemical expression of SOX9 (Sertoli cells), CYP11A1 (Leydig cells), and DDX4 (germ cells). Busulfan alone induced severe spermatogenic defects, including reduced sperm count and motility, increased abnormal morphology, marked histopathological damage, and decreased expression of SOX9, CYP11A1, and DDX4. In contrast, intravenous SVF treatment significantly improved sperm count, motility, and testicular architecture, and restored the expression of SOX9, CYP11A1, and DDX4 within two weeks. This is the first demonstration that intravenous SVF attenuates early busulfan-induced testicular injury, providing preliminary evidence for a rapid, culture-free approach as a less invasive alternative to local injection. However, longer follow-up and fertility studies are needed to confirm sustained spermatogenic restoration. Full article
(This article belongs to the Section Developmental and Reproductive Biology)
Show Figures

Figure 1

15 pages, 1229 KB  
Review
Stem Cell-Based Regenerative Therapy for Genitourinary Syndrome of Menopause (GSM): Current Evidence and Future Perspectives
by Khanisyah Erza Gumilar, Riska Wahyuningtyas, Ching-Pei Tsai, Nurul Hikmah Mat Noh, Anggi Wilis Prihazty, Cornelia Valerie Genika Loveita Sugoro, Eighty Mardiyan Kurniawati and Fedik Abdul Rantam
Biologics 2026, 6(3), 24; https://doi.org/10.3390/biologics6030024 - 5 Aug 2026
Abstract
Genitourinary syndrome of menopause (GSM) is a common hypoestrogenic condition marked by vulvovaginal atrophy and lower urinary tract symptoms that significantly impair quality of life in peri- and postmenopausal women. Although local estrogen therapy remains the standard of care, its use is constrained [...] Read more.
Genitourinary syndrome of menopause (GSM) is a common hypoestrogenic condition marked by vulvovaginal atrophy and lower urinary tract symptoms that significantly impair quality of life in peri- and postmenopausal women. Although local estrogen therapy remains the standard of care, its use is constrained by contraindications, adherence challenges, and concerns regarding long-term safety, particularly in women with estrogen-sensitive conditions. As a result, interest has grown in regenerative, non-hormonal alternatives. Stem cell-based therapy, particularly using mesenchymal stem cells (MSCs), has emerged as a potential therapeutic strategy for restoring urogenital tissue structure and function. The current body of evidence largely consists of preclinical studies, small clinical case series, and investigations in related but distinct conditions, which provide potential mechanistic insights. Preclinical studies suggest that MSCs from adipose tissue, bone marrow, and umbilical cord promote vaginal epithelial regeneration through paracrine mechanisms, including angiogenesis, immunomodulation, extracellular matrix remodeling, and restoration of local estrogen signaling and vaginal microbiota. To date, current clinical studies have not provided direct evidence on the efficacy of characterized MSC-based therapies specifically in GSM populations. Early clinical evidence, primarily involving adipose-derived tissue products such as micro-fragmented adipose tissue, reports improvements in symptoms overlapping with GSM, including vaginal dryness, dyspareunia, urinary symptoms, and sexual function, with benefits lasting up to two to three years after a single treatment and no serious adverse events reported. However, available data are limited by small cohorts, the absence of randomized trials, and regulatory variability. This review summarizes current evidence and outlines key scientific, ethical, and regulatory challenges that must be addressed to guide future research and clarify the therapeutic potential of MSC-based approaches in GSM, ultimately enabling translation. Full article
(This article belongs to the Section Protein Therapeutics)
Show Figures

Figure 1

23 pages, 26767 KB  
Article
Reactivity of Gill and Intestinal Mucosal Barriers in Common Bream (Abramis brama): A Comparative Histological and Ultrastructural Study of Natural Populations
by Jamilya Gusseinova, Sabir Nurtazin, Steven G. Pueppke, Adel Bakieva and Irina Zharkova
Diversity 2026, 18(8), 465; https://doi.org/10.3390/d18080465 - 1 Aug 2026
Viewed by 135
Abstract
Fish mucosal barriers are sensitive interfaces between the organism and the aquatic environment and may reflect integrated tissue responses in natural populations. This study assessed the reactivity of the gill and intestinal mucosal barriers in common bream, Abramis brama, from the Ile–Balkhash [...] Read more.
Fish mucosal barriers are sensitive interfaces between the organism and the aquatic environment and may reflect integrated tissue responses in natural populations. This study assessed the reactivity of the gill and intestinal mucosal barriers in common bream, Abramis brama, from the Ile–Balkhash Basin and Lake Alakol, Kazakhstan. A total of 50 individuals were examined using light microscopy, transmission electron microscopy, quantitative cell counting, and semi-quantitative histopathological assessment. Background hydrochemical parameters of the studied waters were within guideline values and were used as environmental context rather than as a control condition for tissue normality. Histopathological alterations were recorded in both organs. The gills showed epithelial desquamation, respiratory epithelial edema, deformation and fusion of secondary lamellae, epithelial hyperplasia, and vascular abnormalities, with a median Gill Lesion Score of 2.00 (IQR 1.86–2.29). The intestine showed epithelial sloughing, intestinal fold disruption, brush-border damage, cellular infiltration, fibrosis/collagenization, and vascular changes, with a median Intestinal Lesion Score of 2.14 (IQR 1.86–2.57). Rodlet cells were more abundant in the gills, whereas mast/eosinophilic granular cells occurred at comparable densities in both organs. These findings indicate shared but organ-specific patterns of mucosal reactivity and support paired gill–intestine analysis as an informative morphological approach for assessing wild fish populations under natural multifactorial conditions. Full article
(This article belongs to the Special Issue Advances in Freshwater Diversity and Ecology)
Show Figures

Graphical abstract

27 pages, 955 KB  
Review
Cellular Responses at the Zirconia Dental Implant Interface: A Comprehensive Review
by Marija S. Milic, Jelena Simonovic and Vladimir S. Todorovic
J. Funct. Biomater. 2026, 17(8), 372; https://doi.org/10.3390/jfb17080372 - 1 Aug 2026
Viewed by 229
Abstract
Titanium remains the gold standard in dental implantology; however, its clinical drawbacks, such as hypersensitivity reactions, metallic particle release, and aesthetically compromising discoloration, have driven interest in metal-free alternatives. Yttria-stabilized tetragonal zirconia polycrystal (Y-TZP) has emerged as a promising bioceramic candidate, offering favorable [...] Read more.
Titanium remains the gold standard in dental implantology; however, its clinical drawbacks, such as hypersensitivity reactions, metallic particle release, and aesthetically compromising discoloration, have driven interest in metal-free alternatives. Yttria-stabilized tetragonal zirconia polycrystal (Y-TZP) has emerged as a promising bioceramic candidate, offering favorable aesthetics, mechanical strength, and reduced bacterial plaque affinity. Its pristine surface is nonetheless bioinert, prompting extensive research into surface modification strategies, including sandblasting, acid-etching, femtosecond laser texturing, and bioactive coatings, to enhance osteoconductivity. This comprehensive narrative review synthesizes in vitro evidence on the behavior of key host cell populations—macrophages, mesenchymal stem cells, osteoblasts, fibroblasts, and epithelial cells in response to Y-TZP surface and its modifications, relevant to osseointegration and soft-tissue sealing. A literature search was conducted across PubMed, Scopus, Web of Science, and the Cochrane Library, supplemented by Google Scholar, concluding in March 2026. By integrating findings across multiple cell lineages, this review aims to clarify how engineered zirconia topographies modulate cell-specific pathways, thereby informing the development of next-generation implants optimized for biological integration. Full article
(This article belongs to the Special Issue Biomaterials in Dentistry: Current Status and Advances)
Show Figures

Figure 1

40 pages, 26578 KB  
Article
Identification of a CSC-Associated miRNA Signature in NSCLC and Functional Characterization of hsa-let-7a-3p
by Ángela Y. García Fonseca, Carlos Javier Alméciga-Díaz and Andrés F. Aristizábal-Pachón
Biomedicines 2026, 14(8), 1737; https://doi.org/10.3390/biomedicines14081737 - 31 Jul 2026
Viewed by 243
Abstract
Background: Metastasis is the leading cause of mortality in lung cancer and is regulated by multiple molecular mechanisms, including microRNAs (miRNAs). Although cancer stem cells (CSCs) and epithelial–mesenchymal transition (EMT) contribute to metastatic progression, the miRNA networks underlying these phenotypes remain poorly [...] Read more.
Background: Metastasis is the leading cause of mortality in lung cancer and is regulated by multiple molecular mechanisms, including microRNAs (miRNAs). Although cancer stem cells (CSCs) and epithelial–mesenchymal transition (EMT) contribute to metastatic progression, the miRNA networks underlying these phenotypes remain poorly characterized in non-small cell lung cancer (NSCLC). Aim: To identify miRNA signatures associated with CSCs and EMT in NSCLC and functionally characterize hsa-let-7a-3p. Methods: EMT was induced in A549 and NCI-H1975 cells by dCas9-mediated activation of TWIST, whereas CSC-enriched populations were generated by CD133-based sorting and stem cell culture conditions. Small RNA sequencing, bioinformatic analyses, qPCR validation, and functional assays were performed to identify and characterize phenotype-associated miRNAs. Results: Small RNA sequencing identified distinct miRNA expression profiles associated with EMT and CSC enrichment. Comparative analysis identified 13 commonly downregulated and 13 commonly upregulated miRNAs shared by CSCs from A549 and H1975 cells, suggesting conserved post-transcriptional regulatory mechanisms. Functional enrichment and miRNA–target interaction network analyses linked the miRNA signatures to pathways involved in epithelial plasticity, stemness, and tumor progression, including Wnt, TGF-β, mTOR, focal adhesion, adherens junction, and regulation of the actin cytoskeleton. Among the dysregulated miRNAs, hsa-let-7a-3p was consistently upregulated in CD133+ CSC-enriched cells from both NSCLC cell lines. Functional assays showed that hsa-let-7a-3p overexpression significantly reduced clonogenic capacity and showed a trend toward decreased invasion without affecting proliferation. Conclusion: This study identifies miRNA signatures associated with CSC-enriched and EMT-associated phenotypes in NSCLC and demonstrates that these signatures represent coordinated post-transcriptional regulatory programs involved in epithelial plasticity, stemness, and metastatic progression. Functional validation of hsa-let-7a-3p further supports its role as a context-dependent regulator of CSC biology and highlights the potential of miRNA signatures as diagnostic biomarkers in NSCLC. Full article
(This article belongs to the Section Cancer Biology and Oncology)
Show Figures

Figure 1

54 pages, 7996 KB  
Review
Functional Foods and Micro- and Nanoplastics: Advances in Precision Nutritional Medicine for Oral–Gut–Brain Axis Health
by Scuto Maria Concetta, Lombardo Cinzia, Zerbo Giulia, Ledda Caterina, Isola Gaetano, Musso Nicolò and Trovato Salinaro Angela
Antioxidants 2026, 15(8), 951; https://doi.org/10.3390/antiox15080951 - 30 Jul 2026
Viewed by 359
Abstract
Microplastics and nanoplastics (MNPs) are emerging environmental pollutants due to their persistence and bodily accumulation. Recently, functional foods have received much attention for their ability to reverse or block MNP damage for therapeutic purposes and the potential risk of developing oral–gut–brain axis disorders. [...] Read more.
Microplastics and nanoplastics (MNPs) are emerging environmental pollutants due to their persistence and bodily accumulation. Recently, functional foods have received much attention for their ability to reverse or block MNP damage for therapeutic purposes and the potential risk of developing oral–gut–brain axis disorders. Among these, artichoke, spirulina algae, Opuntia ficus-indica, pterostilbene, hydroxycinnamic acids, and quinic acid are rich sources of polyphenols. These bioactive ingredients, especially when combined with probiotics and prebiotics, exhibit significant antioxidant and anti-inflammatory potential by activating nuclear factor erythroid 2-related factor 2 (Nrf2) signaling and cellular resilience enzymes. Nrf2 activation enhances cellular resilience response, and it may preserve oral epithelial barrier (OEB), intestinal epithelial barrier (IEB), and blood–brain barrier (BBB) integrity, while modulating oral pathogens, gut microbial dysbiosis, and neuroinflammatory processes. However, most of the available evidence supporting these mechanisms derives from in vitro and animal studies, whereas clinical evidence in humans remains limited. Perturbations of Nrf2 due to circulating MNPs may exacerbate selective susceptibility to oral, gut, and nervous system disorders, including Alzheimer’s disease (AD). Although these findings are biologically plausible, the causal relationships and their clinical relevance have not yet been fully established. This review discusses the role of functional foods in maintaining oral–gut–brain health through Nrf2-mediated mechanisms that may mitigate MNP-induced inflammation and reactive oxygen species (ROS). The review also examines emerging concepts in precision nutritional medicine, including individual variability in dietary responses, microbiome-related factors, and future personalized strategies for populations exposed to MNPs. Finally, current knowledge gaps, the scarcity of human studies, and the challenges in translating preclinical findings into clinical practice are highlighted, emphasizing the need for further translational and clinical research. Full article
(This article belongs to the Special Issue Redox Biomarkers in Inflammatory Diseases)
Show Figures

Figure 1

39 pages, 8632 KB  
Review
Molecular Systems Architecture of Fibrotic Lung Microenvironment in Idiopathic Pulmonary Fibrosis
by V. A. Shiva Ayyadurai, Yamuna Manoharan and Prabhakar Deonikar
Cells 2026, 15(15), 1364; https://doi.org/10.3390/cells15151364 - 29 Jul 2026
Viewed by 344
Abstract
Background: Idiopathic pulmonary fibrosis (IPF) is a progressive and irreversible fibrosing interstitial lung disease characterized by excessive extracellular matrix (ECM) accumulation, disruption of lung architecture, and progressive loss of pulmonary function. IPF is frequently accompanied by comorbid conditions that exacerbate disease progression and [...] Read more.
Background: Idiopathic pulmonary fibrosis (IPF) is a progressive and irreversible fibrosing interstitial lung disease characterized by excessive extracellular matrix (ECM) accumulation, disruption of lung architecture, and progressive loss of pulmonary function. IPF is frequently accompanied by comorbid conditions that exacerbate disease progression and negatively impact prognosis. To address the biological complexity of IPF, this study presents a comprehensive molecular systems architecture that enables a system-level understanding of biomolecular interactions within the fibrotic lung microenvironment in response to external and physiological triggers. Methods: A literature search is conducted using the Medical Subject Headings (MeSH) keywords in PubMed and MEDLINE to identify relevant peer-reviewed articles published from April 2008 to June 2025, with Google Scholar used solely to retrieve full-text versions of articles identified through this search. The systems biology tool CytoSolve® was used to perform the systematic review and to support the curation and development of the molecular systems architecture of IPF pathogenesis. Full-length articles that contained Medical Subject Headings keywords relevant to IPF pathogenesis were selected for a comprehensive review. A total of 150 studies published between April 2008 and June 2025 met the inclusion criteria and were included in the systematic analysis. This systematic review was not registered. Results: Findings were synthesized qualitatively into a multilayered molecular interactome rather than through statistical meta-analysis. The architecture integrates interactions across sixteen lung-associated cell types, including epithelial, endothelial, mesenchymal, immune, and stromal populations. Key external triggers—such as bleomycin (BLM), asbestos, silica, radiation, cigarette smoke, Herpes virus, and genetic mutations (SFTPC I73T), along with hypoxia associated with comorbidities—initiate coordinated cellular responses that converge on three fundamental pathological processes: inflammation, myofibroblast differentiation, and tissue remodeling. These interconnected processes collectively drive the initiation and progression of IPF. Conclusions: This molecular systems architecture unifies triggers, cellular components, molecular pathways, and biological processes into a multilayered framework for identifying therapeutic targets, biomarkers, and rational single- and combination-treatment strategies in IPF. Full article
Show Figures

Figure 1

21 pages, 6020 KB  
Article
CAF-Driven EMT and ECM Remodeling Programs Promote Mesothelioma Progression
by Licun Wu, Hana Yun, Hamed Yasavoli Sharahi, Fatemeh Zaeimi and Marc de Perrot
Cancers 2026, 18(15), 2424; https://doi.org/10.3390/cancers18152424 - 28 Jul 2026
Viewed by 203
Abstract
Background: The aggressive progression of mesothelioma is driven not only by intrinsic tumor cell plasticity but also by dynamic interactions between tumor cells and the surrounding stromal microenvironment; however, the mechanisms by which stromal populations regulate epithelial–mesenchymal transition (EMT), tumor evolution, and therapeutic [...] Read more.
Background: The aggressive progression of mesothelioma is driven not only by intrinsic tumor cell plasticity but also by dynamic interactions between tumor cells and the surrounding stromal microenvironment; however, the mechanisms by which stromal populations regulate epithelial–mesenchymal transition (EMT), tumor evolution, and therapeutic resistance remain unclear. Methods: We integrated longitudinal transcriptomic profiling with single-cell RNA sequencing in a murine intraperitoneal mesothelioma model spanning disease progression from week 0 to week 8 to identify stromal-EMT programs associated with tumor progression. In vitro fibroblast–tumor co-culture systems were used to assess how different fibroblast-to-tumor cell ratios influence transcriptional reprogramming and mesenchymal transition. Results: Single-cell analysis revealed marked stromal heterogeneity, identifying eight distinct cancer-associated fibroblast (CAF) subtypes: myCAF, mCAF, iCAF, TGF-βCAF, vCAF, plCAF, apCAF, and meCAF. These subsets showed specialized transcriptional programs associated with developmental signaling and metabolic adaptation. Functional analyses demonstrated coordinated intercellular communication across six interconnected modules, including mesenchymal transition, fibrotic remodeling, TGF-β/metabolic adaptation, adhesion signaling, WNT activation, and inflammatory crosstalk. Notably, mCAF, TGF-βCAF, and plCAF populations showed transcriptional convergence, suggesting cooperative formation of a desmoplastic, immunoregulatory niche. Co-culture experiments confirmed that fibroblast-derived signaling induces ratio-dependent transcriptional changes, promoting a shift from epithelioid to mesenchymal phenotypes. Conclusions: These findings highlight stromal regulation of EMT as a key driver of mesothelioma progression, sarcomatoid transition, and therapy resistance, and identify tumor–stroma signaling networks as potential therapeutic targets. Full article
(This article belongs to the Special Issue Cytoskeleton in Tumor Growth and Progression)
Show Figures

Figure 1

17 pages, 964 KB  
Review
Cytokine Networks and Clinical Heterogeneity in Sjögren’s Disease: From Glandular Inflammation to Therapeutic Stratification
by Eui-Jong Kwon, Bongwoo Lee and Ji Hyeon Ju
Int. J. Mol. Sci. 2026, 27(15), 6638; https://doi.org/10.3390/ijms27156638 - 25 Jul 2026
Viewed by 350
Abstract
Sjögren’s disease (SjD) is a chronic autoimmune disease characterized by lymphocytic infiltration and dysfunction of the exocrine glands, with manifestations extending beyond glandular sicca symptoms to multiple extraglandular systems. Although the pathogenesis of SjD remains incompletely understood, growing evidence indicates that a complex [...] Read more.
Sjögren’s disease (SjD) is a chronic autoimmune disease characterized by lymphocytic infiltration and dysfunction of the exocrine glands, with manifestations extending beyond glandular sicca symptoms to multiple extraglandular systems. Although the pathogenesis of SjD remains incompletely understood, growing evidence indicates that a complex cytokine network involving both innate and adaptive immune pathways plays a central role in disease development. This narrative review summarizes recent updates on cytokine signaling in SjD across three clinically relevant domains. In glandular inflammation, activation of salivary gland epithelial cells through Toll-like receptor pathways triggers type I interferon (IFN) signaling via plasmacytoid dendritic cells, while IFN-γ, Th17-related cytokines (IL-6, IL-17, IL-22), BAFF/APRIL, and chemokines (CXCL10, CXCL12, CXCL13) collectively sustain local inflammation and ectopic lymphoid organization. The BAFF/APRIL axis, a systemic type I IFN signature, and IL-21–follicular helper T cell–B cell interactions primarily drive systemic immune activation, which together underlie autoantibody production, hypergammaglobulinemia, and a lymphoma-prone phenotype. In contrast, constitutional symptoms such as fatigue, pain, and dryness frequently dissociate from classical inflammatory activity and are better explained by neuroimmune–metabolic mechanisms, including the IFN-γ–IDO–kynurenine pathway and symptom-associated proteomic signatures. Collectively, these findings underscore the heterogeneous nature of SjD, in which glandular inflammation, systemic immune activation, and constitutional symptoms are driven by distinct yet partially overlapping cytokine pathways. Recognizing this heterogeneity has direct implications for cytokine-targeted therapy, suggesting that future trials should stratify patients by disease phenotype (IFN-high, B cell-dominant, and symptom-dominant) rather than treating SjD as a uniform population. Full article
Show Figures

Figure 1

19 pages, 13732 KB  
Article
Effect of Epigallocatechin-3-Gallate on Growth Performance and Intestinal Epithelial Function in Weaned Pigs Exposed to Oxidative Stress
by Qiming Duan, Xiang Li, Kunhong Xie, Aibing Yu, Yuheng Luo, Ping Zheng, Xiangbing Mao, Hui Yan and Jun He
Agriculture 2026, 16(14), 1567; https://doi.org/10.3390/agriculture16141567 - 22 Jul 2026
Viewed by 211
Abstract
Oxidative stress is a major challenge in weaned piglet production because it impairs intestinal health, nutrient utilization, and growth performance; however, the effects of dietary epigallocatechin-3-gallate (EGCG) on intestinal dysfunction under oxidative stress conditions have not been fully elucidated. This study examined whether [...] Read more.
Oxidative stress is a major challenge in weaned piglet production because it impairs intestinal health, nutrient utilization, and growth performance; however, the effects of dietary epigallocatechin-3-gallate (EGCG) on intestinal dysfunction under oxidative stress conditions have not been fully elucidated. This study examined whether dietary EGCG supplementation could improve intestinal function in weaned pigs subjected to Diquat-induced oxidative stress. Thirty-two weaned piglets were allocated to four treatments according to a 2 × 2 factorial arrangement involving dietary EGCG supplementation (0 or 50 mg/kg) and exposure to saline or Diquat (50 mg/kg body weight). Diquat exposure impaired intestinal morphology and antioxidant status and altered the transcription of genes associated with epithelial barrier integrity and redox regulation. Dietary EGCG supplementation partially attenuated these alterations, as reflected by improvements in villus architecture, intestinal antioxidant indices, and the mRNA expression of barrier- and antioxidant-related genes. These findings indicate that dietary EGCG supplementation was associated with improved intestinal function in weaned pigs exposed to oxidative stress. These beneficial effects may be related, at least in part, to changes in redox status, inflammatory responses, epithelial barrier-related gene expression, and selected gut microbial populations. This study supports EGCG as a potential bioactive dietary factor for maintaining intestinal health under oxidative stress conditions. Full article
(This article belongs to the Section Farm Animal Production)
Show Figures

Graphical abstract

27 pages, 10431 KB  
Article
TGFβ-Dependent Epithelial–Mesenchymal Plasticity in Immortalized Human Atrial Epicardial Cells: An mRNA Profiling Study
by Katja Nowak, René Schramm, Barbara Kaltschmidt, Christian Kaltschmidt, Cornelius Knabbe and Anna L. Höving
Cells 2026, 15(14), 1313; https://doi.org/10.3390/cells15141313 - 22 Jul 2026
Viewed by 447
Abstract
The adult mammalian heart exhibits limited regenerative capacity. Although the epicardium contributes to cardiac injury responses and remodeling, expandable adult human in vitro models for investigating epicardial activation and epithelial-to-mesenchymal (EMT)-associated cellular responses remain limited. Here, we isolated human epicardium-derived cells from the [...] Read more.
The adult mammalian heart exhibits limited regenerative capacity. Although the epicardium contributes to cardiac injury responses and remodeling, expandable adult human in vitro models for investigating epicardial activation and epithelial-to-mesenchymal (EMT)-associated cellular responses remain limited. Here, we isolated human epicardium-derived cells from the adult heart auricle, expressing WT1+/MSLN+/CRIP1+ and generated an expandable immortalized epicardium-derived cell (iEPDC) population, allowing the investigation of intercellular dynamics upon EMT activation. TGFβ signaling was modulated using SB431542 or TGFβ3. Morphological, immunocytochemical, transcriptomic and functional analyses were performed to investigate treatment-dependent responses. SB431542-treated iEPDCs displayed epithelial-like characteristics and elevated WT1, MSLN and CRIP1 expression, with CRIP1 detected at both transcript and protein levels. TGFβ3-treated cells expressed the mesenchymal markers VIM and CD105 and exhibited spindle-shaped morphology, increased migratory behavior and upregulation of mesenchymal- and remodeling-associated markers. Transcriptomic analyses revealed distinct treatment-dependent profiles, enrichment of ‘focal adhesion’, ‘ECM-receptor interaction’ and cytoskeleton-associated pathways in TGFβ3-treated iEPDCs and intermediate transcriptional characteristics in untreated cells. Together, these findings establish adult iEPDCs as an expandable in vitro model for investigating TGFβ-dependent epicardial activation and EMT-associated processes in the adult human heart. Furthermore, the integration of phenotypic, transcriptomic and functional findings revealed the treatment-responsive plasticity of adult human iEPDCs, supporting future studies of injury-associated epicardial activation. Full article
(This article belongs to the Special Issue Molecular Mechanisms of Cardiac Repair and Regeneration)
Show Figures

Figure 1

14 pages, 636 KB  
Review
Tezepelumab in Chronic Rhinosinusitis with Nasal Polyps: Pathophysiology, Clinical Evidence, and Therapeutic Perspectives
by Bayan Aigozhina, Rais Tulebaeyv, Talapbek Azhenov, Serik Dzhandayev, Nataliya Papulova, Rano Zhankina and Kalamkas Sagandykova
Medicina 2026, 62(7), 1423; https://doi.org/10.3390/medicina62071423 - 22 Jul 2026
Viewed by 359
Abstract
Background and Objectives: Chronic rhinosinusitis with nasal polyps (CRSwNP) is a heterogeneous inflammatory disease of the nasal and paranasal sinus mucosa, associated with significant impairment in quality of life, frequent postoperative recurrence, and repeated need for systemic glucocorticosteroid therapy. Despite the availability of [...] Read more.
Background and Objectives: Chronic rhinosinusitis with nasal polyps (CRSwNP) is a heterogeneous inflammatory disease of the nasal and paranasal sinus mucosa, associated with significant impairment in quality of life, frequent postoperative recurrence, and repeated need for systemic glucocorticosteroid therapy. Despite the availability of biologics targeting IL-4/IL-13, IL-5, and IgE, a subset of patients shows incomplete or insufficient clinical response. In this context, upstream targeting of epithelial alarmins, particularly thymic stromal lymphopoietin (TSLP), has emerged as a potential therapeutic strategy. To critically review current evidence on the role of TSLP in CRSwNP and to evaluate available data on the mechanism of action, clinical efficacy, and therapeutic potential of tezepelumab in severe and recurrent disease. Materials and Methods: A narrative review was conducted using PubMed, Scopus, and Web of Science. Studies published between 2016 and 2026 were included, comprising experimental research, phase II–III clinical trials, systematic reviews, and international guidelines. Results: TSLP functions as an epithelial alarmin that initiates and amplifies type 2 inflammation via dendritic cell activation, Th2 polarization, and activation of type 2 innate lymphoid cells (ILC2). Data suggests that tezepelumab, a monoclonal antibody targeting TSLP, may reduce inflammation and regulate the immune system. Evidence from asthma populations and relevant CRSwNP subgroups indicates potential improvements in nasal polyp score, congestion, olfactory function and quality of life. It is our understanding that the safety profile appears comparable to placebo, with no new safety concerns having been identified in long-term studies. Conclusions: Tezepelumab is a promising biologic that targets inflammation in CRSwNP. It may benefit severe, recurrent, treatment-resistant disease by modulating immune pathways. However, evidence is indirect and limited, and more trials are needed to define its efficacy, identify biomarkers, and clarify its role in treatment algorithms. Full article
(This article belongs to the Section Surgery)
Show Figures

Scheme 1

19 pages, 22264 KB  
Article
Single-Cell Profiling Identifies a CCR2+ Neutrophil-like Population Associated with Colorectal Cancer Liver Metastasis in a Murine Model
by Zi-Jun Yan, Yuan-Jie Yin, Yu-Ting Wang, Xian-Qi Zhang, Xiong-Hui Wang, Xi Chen, Cai-Ning Zhao and Rong Liu
Genes 2026, 17(7), 831; https://doi.org/10.3390/genes17070831 - 21 Jul 2026
Viewed by 405
Abstract
Background/Objectives: Colorectal liver metastases (CRLMs) are a major contributor to recurrence and mortality in colorectal cancer (CRC), with approximately a quarter of patients developing liver metastases over the course of the disease. Bone-marrow-derived myeloid lineages are sent into the circulatory system and colonize [...] Read more.
Background/Objectives: Colorectal liver metastases (CRLMs) are a major contributor to recurrence and mortality in colorectal cancer (CRC), with approximately a quarter of patients developing liver metastases over the course of the disease. Bone-marrow-derived myeloid lineages are sent into the circulatory system and colonize pre-metastatic niches, yet the transcriptional programs by which they establish a pro-metastatic microenvironment remain incompletely defined. Methods: Using an MC38 splenic-injection CRLM mouse model, we generated single-cell RNA sequencing (scRNA-seq) profiles of FACS-sorted CD11b+Gr1+ bone marrow myeloid cells, together with bulk RNA sequencing profiles of bone marrow and peripheral blood. Downstream analyses were performed in silico, including clustering and annotation, trajectory inference, cell–cell communication analysis, weighted gene co-expression network analysis (WGCNA), and pathway enrichment, with subset specificity examined against a public dataset of E. coli (Escherichia coli)-infected mice. Results: Within the CD11b+Gr1+ compartment, a CCR2+ neutrophil-like population (Ly6g+S100a8/9+) emerging during terminal differentiation was identified, which was enriched in CRLM mice but nearly absent in controls. Communication inference revealed an FN1-CD44 interaction involving mature neutrophils, which was associated with an epithelial–mesenchymal transition signature and upregulation of Tgfb1 and Il1b. This subpopulation was not recovered in the infection dataset, suggesting relative specificity to CRLMs. Conclusions: Within the constraints of a splenectomized hepatic colonization model, integrated transcriptomic analysis highlighted a CCR2+ bone marrow neutrophil-like population as a candidate contributor to CRLM, challenging the view that CCR2+ pro-metastatic myeloid cells are exclusively monocytic and suggesting candidate biomarkers and therapeutic targets for further study. Full article
(This article belongs to the Section Bioinformatics)
Show Figures

Graphical abstract

15 pages, 288 KB  
Article
Cynara scolymus Extract–Inulin Feed Additive Improves Intestinal Function and Growth in Weaned Piglets
by Guadalupe Martínez, Julieta María Decundo, Susana Nelly Diéguez, Denisa Soledad Pérez Gaudio, Carolina Paula Bianchi, Eugenio Colusi, Fabián Andrés Amanto and Alejandro Luis Soraci
Animals 2026, 16(14), 2250; https://doi.org/10.3390/ani16142250 - 21 Jul 2026
Viewed by 373
Abstract
The early post-weaning period in piglets is characterized by physiological and environmental stress that can impair intestinal function and growth performance. Plant-derived feed additives have gained interest as a nutritional strategy to support gut integrity and productivity. Extracts from Cynara scolymus stimulate bile [...] Read more.
The early post-weaning period in piglets is characterized by physiological and environmental stress that can impair intestinal function and growth performance. Plant-derived feed additives have gained interest as a nutritional strategy to support gut integrity and productivity. Extracts from Cynara scolymus stimulate bile secretion and exhibit antioxidant properties, whereas inulin may promote beneficial microbial populations and intestinal functionality through prebiotic activity. This study evaluated the biological activity of a feed additive containing Cynara scolymus extract and inulin on intestinal functional indicators and productive performance of post-weaned piglets under intensive production conditions. Four hundred and eight piglets were randomly assigned to two groups: a control group (CON) that was fed a basal diet, and a treatment group (CSI) that was supplemented with the additive (5% Cynara scolymus extract and 14% inulin) at 300 g/ton of feed. Plasma cortisol and citrulline concentrations were measured during the first 15 days post-weaning. On day 16 post-weaning, intestinal parameters were evaluated, including gastrointestinal pH; enterobacteria and lactic acid bacteria counts; volatile fatty acids; bacterial adhesion to ileal mucus; disaccharidase activity; and small intestinal histomorphology. Growth performance was monitored during the 50-day nursery phase. Compared with CON piglets, CSI piglets exhibited higher plasma citrulline concentrations (72.72 ± 20.87 vs. 47.54 ± 17.05 µM; p < 0.001), indicating improved intestinal epithelial functionality. CSI supplementation also increased the villus height-to-crypt depth ratio (3.67 ± 0.75 vs. 2.68 ± 0.64; p = 0.001), suggesting enhanced intestinal epithelial integrity. Furthermore, CSI piglets showed higher average daily gain (0.53 ± 0.07 vs. 0.44 ± 0.09 kg/day; p = 0.003) and a better feed conversion ratio (1.27 ± 0.20 vs. 1.57 ± 0.57; p = 0.004). These results suggest that Cynara scolymus extract and inulin supplementation has beneficial biological effects on intestinal epithelial functionality and productive performance in post-weaning piglets under commercial conditions. Full article
18 pages, 4780 KB  
Article
MIF-Associated Immunosuppressive CAF Remodeling Predicts Poor Prognosis During Lung Adenocarcinoma Progression: A Single-Cell and Multicohort Transcriptomic Study
by Guo Lin, Jianrui Ji, Fan Ge and Zhouguang Hui
Biomedicines 2026, 14(7), 1581; https://doi.org/10.3390/biomedicines14071581 - 15 Jul 2026
Viewed by 387
Abstract
Background: Lung adenocarcinoma (LUAD) develops through a stepwise pathological status from atypical adenomatous hyperplasia (AAH), adenocarcinoma in situ (AIS), and minimally invasive adenocarcinoma (MIA) to invasive adenocarcinoma (IA). Although malignant epithelial evolution during this process has been increasingly characterized, the dynamic remodeling of [...] Read more.
Background: Lung adenocarcinoma (LUAD) develops through a stepwise pathological status from atypical adenomatous hyperplasia (AAH), adenocarcinoma in situ (AIS), and minimally invasive adenocarcinoma (MIA) to invasive adenocarcinoma (IA). Although malignant epithelial evolution during this process has been increasingly characterized, the dynamic remodeling of cancer-associated fibroblasts (CAFs) and their contribution to the immunosuppressive tumor microenvironment (TME) remain incompletely explored. Methods: Single-cell RNA sequencing data from treatment-naïve LUAD lesions, including AAH, AIS, MIA, and IA, were analyzed together with external bulk transcriptomic cohorts. CAF subsets were characterized according to their transcriptional features, inferred developmental states, transcription factor activity, functional programs, and predicted cell–cell interactions. Ligand–receptor analysis was used to examine MIF-related communication between epithelial cells and CAFs. MIF-related genes were then used to develop a machine learning-based prognostic signature in the TCGA-LUAD cohort, followed by validation in independent GEO cohorts. Results: Single-cell transcriptomic analysis of 131,639 cells from 25 treatment-naïve LUAD lesions identified six CAF subtypes, including alveolar CAFs, antigen-presenting CAFs, extracellular matrix CAFs, EndMT-like CAFs, inflammatory CAFs, and myofibroblastic CAFs. CAF composition differed across pathological stages, with MIA lesions showing a distinct enrichment of eCAFs and reduced proportions of inflammatory and myofibroblastic CAF populations. Compared with pre-invasive lesions, IA lesions exhibited increased proportions of exhausted CD4+ and CD8+ T cells together with reduced cytotoxic features. Cell–cell communication analysis identified enhanced epithelial–CAF interactions in IA, including enrichment of MIF-CD74/CD44 signaling. Based on MIF-related genes, a machine learning prognostic signature was developed and validated in independent cohorts, consistently stratifying patients into distinct risk groups with significantly different survival outcomes. Conclusions: These findings suggest that CAF-related stromal remodeling is associated with immune suppression during LUAD progression. MIF-mediated epithelial–CAF communication may be involved in the formation of an immunosuppressive microenvironment and is associated with poor prognosis. The MIF-related signature may provide a useful approach for prognostic stratification in LUAD. Full article
Show Figures

Figure 1

Back to TopTop