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Search Results (630)

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Keywords = ERBB2

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34 pages, 2069 KB  
Article
Phytochemical Study and Cytotoxic Properties of Hydroalcoholic Extracts of Epilobium parviflorum Schreb.: In Silico and In Vitro Insights
by Christian Goldiș, Roxana Racoviceanu, Mihaela Jorgovan, Roxana Negrea-Ghiulai, Codruța Șoica, Alexandra Prodea, Oana Bătrîna, Gabriela Antal and Alexandra Mioc
Sci. Pharm. 2026, 94(3), 71; https://doi.org/10.3390/scipharm94030071 (registering DOI) - 23 Aug 2026
Abstract
Epilobium parviflorum Schreb. is a medicinal plant used traditionally against inflammatory disorders whose cytotoxic potential is still incompletely revealed. The current study investigates the phytochemical composition and in vitro cytotoxic activity of four hydroalcoholic extracts prepared from the aerial parts of E. parviflorum [...] Read more.
Epilobium parviflorum Schreb. is a medicinal plant used traditionally against inflammatory disorders whose cytotoxic potential is still incompletely revealed. The current study investigates the phytochemical composition and in vitro cytotoxic activity of four hydroalcoholic extracts prepared from the aerial parts of E. parviflorum by using maceration and Soxhlet extraction. The extracts were characterized in terms of total phenolic, flavonoid and tannins composition and LC-MS was used to identify its individual polyphenols. Their biological effects were assessed against four cancer cell lines (A375 melanoma, HT-29 colorectal adenocarcinoma, PANC-1 pancreatic carcinoma and SK-OV-3 ovarian adenocarcinoma cells), while using HaCaT keratinocytes as healthy cells in order to assess selectivity. Cell viability, cytoskeletal and nuclear morphology, mitochondrial respiration and network pharmacology were further investigated. A complex phenolic profile was revealed, with hyperoside being identified as the main component in all extracts while the extraction parameters strongly influenced the recovery of various phenolic compounds. All extracts reduced cancer cell viability in a dose-dependent manner after 24 h exposure, with the most pronounced effects observed at 720 and 1000 μg/mL, while HaCaT cells were left relatively unaffected. The morphological assessment indicated nuclear condensation, fragmentation and cytoskeletal disruption following the application of extracts. Moreover, high-resolution respirometry showed reduced oxidative phosphorylation and electron transfer system capacity thus indicating that early mitochondrial dysfunction may contribute to the cytotoxic effects. Network pharmacology revealed that ERBB2, CTNNB1, HSP90AA1 and HDAC6 might act as molecular targets in melanoma. Thus, these findings support the hypothesis that E. parviflorum hydroalcoholic extracts, particularly the 40% ethanol Soxhlet extract, may serve as important sources of bioactive phytocompounds with antiproliferative and apoptotic properties. Full article
(This article belongs to the Special Issue Anticancer Potential of Natural Products)
15 pages, 10976 KB  
Article
Clinicopathological Differences in HER2 Immunohistochemical Expression Between Low-Grade Endometrial Cancer with p53-Abnormal Expression and High-Grade Endometrial Cancer
by Kazuhisa Hachisuga, Miya Nakashima, Yoshihiro Katayama, Yusuke Inomata, Hiroshi Tomonobe, Shoji Maenohara, Keisuke Kodama, Hiroshi Yagi, Ichiro Onoyama, Kazuo Asanoma, Yoshinao Oda and Hideaki Yahata
Cancers 2026, 18(16), 2638; https://doi.org/10.3390/cancers18162638 - 15 Aug 2026
Viewed by 273
Abstract
Background/Objectives: Under the current molecular classification of endometrial cancer, the p53-abnormal group is defined as having the worst prognosis, but the clinicopathological position of low-grade endometrial cancer with p53-abnormal expression relative to high-grade endometrial cancer remains unclear. We previously showed that low-grade endometrial [...] Read more.
Background/Objectives: Under the current molecular classification of endometrial cancer, the p53-abnormal group is defined as having the worst prognosis, but the clinicopathological position of low-grade endometrial cancer with p53-abnormal expression relative to high-grade endometrial cancer remains unclear. We previously showed that low-grade endometrial cancer with p53-abnormal expression more closely resembles low-grade endometrial cancer with p53 wild-type expression than high-grade endometrial cancer and that the ERBB2 gene, encoding Human Epidermal Growth Factor Receptor 2 (HER2) protein, is more highly expressed in high-grade endometrial cancer. This study compared HER2 immunohistochemical expression (IHC) among low-grade endometrial cancer with wild-type p53 expression (EClop53wt), low-grade endometrial cancer with p53-abnormal expression (EClop53ab), and high-grade endometrial cancer (EChi), in order to characterize EClop53ab. Methods: We retrospectively analyzed 70 endometrial cancer cases treated at Kyushu University Hospital in 1992–2022. Tumors were classified as EClop53wt, EClop53ab, and EChi based on histopathology and p53 immunohistochemistry, with EChi corresponding to conventional uterine serous carcinoma. HER2 expression was evaluated immunohistochemically using a standardized scoring system (0, 1+, 2+, 3+), and its distribution was compared across the three groups, together with clinicopathological parameters and patient outcomes. Results: EChi showed the highest frequency and intensity of HER2 expression, with a substantially larger proportion of HER2 IHC 3+ cases than EClop53wt and EClop53ab (p < 0.0001 and p = 0.0146, respectively). Meanwhile, there was no significant association between EClop53wt and EClop53ab (p = 0.3794). In addition, HER2 IHC 3+ had significant associations with older age (≥60 years) and substantial lymphovascular space invasion (p = 0.0003 and 0.0174, respectively). Conclusions: EClop53ab exhibits HER2 profiles and clinical behavior more similar to EClop53wt, supporting the more nuanced application of molecular classification and HER2-targeted therapy in endometrial cancer. Full article
(This article belongs to the Special Issue Clinicopathological Study of Gynecologic Cancer (2nd Edition))
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17 pages, 966 KB  
Article
5′ Rapid Amplification of cDNA Ends (5′ RACE)-Based Targeted RNA Sequencing Assay for the Analysis of Clinically Relevant Alterations in Lung Cancer Patients
by Natalia V. Mitiushkina, Elena V. Preobrazhenskaya, Aleksandr A. Romanko, Anna D. Shestakova, Rimma S. Belova, Tatiana Y. Velyukhova, Yana I. Tretyakova, Natalia A. Firsova, Ekaterina A. Nalivalkina, Vladislav I. Tiurin and Evgeny N. Imyanitov
Int. J. Mol. Sci. 2026, 27(16), 7226; https://doi.org/10.3390/ijms27167226 - 13 Aug 2026
Viewed by 204
Abstract
Next-generation sequencing (NGS) is currently regarded as a preferable method for detection of actionable alterations in non-small cell lung carcinomas (NSCLCs). RNA-based NGS is particularly efficient in detection of gene fusions and allows for mRNA expression analysis of relevant genes. This study describes [...] Read more.
Next-generation sequencing (NGS) is currently regarded as a preferable method for detection of actionable alterations in non-small cell lung carcinomas (NSCLCs). RNA-based NGS is particularly efficient in detection of gene fusions and allows for mRNA expression analysis of relevant genes. This study describes a novel library preparation pipeline for targeted RNA sequencing, which is based on the 5′ rapid amplification of the cDNA ends (5′ RACE) and anchored multiplex PCR. The NGS panel was designed for the analysis of 15 genes relevant to NSCLC therapeutic decisions (ALK, BRAF, CD274 (PD-L1), EGFR, ERBB2 (HER2), KRAS, MET, NRAS, NRG1-2, NTRK1-3, RET and ROS1). The validation against PCR was performed for 168 NSCLC samples. The NGS assay successfully detected all 85 mutations previously identified by PCR. It also confirmed the absence of tested mutations in 82 out of 83 PCR-negative samples. The only discordant case was subsequently analyzed by digital droplet PCR and demonstrated low fraction of the mutated allele. The newly designed NGS panel was subsequently used for the analysis of 272 carcinomas from young (≤50 years old) patients with no driver mutations identified by PCR tests or with failed PCR analysis. NGS was successful in 240 (88.2%) cases, including 35 (64.8%) PCR-failed samples. Driver mutations were detected in 55 tumors, including three previously unreported fusions (PAPLN::ALK, CD55::ROS1 and FKBP15::RET). We conclude that 5′ RACE-based RNA sequencing is a viable approach for NSCLC molecular testing. Full article
(This article belongs to the Section Molecular Oncology)
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23 pages, 13256 KB  
Article
Coordinated Expression of ADC Targets ERBB2, TACSTD2, and NECTIN4 in Bladder Cancer: A Multi-Scale Transcriptomic and Proteomic Landscape Analysis
by Sanhe Liu, Liqun Duan and Shaozhong Wei
Curr. Issues Mol. Biol. 2026, 48(8), 825; https://doi.org/10.3390/cimb48080825 - 13 Aug 2026
Viewed by 182
Abstract
Antibody–drug conjugates (ADCs) targeting HER2 (encoded by ERBB2), Trop2 (TACSTD2), and Nectin-4 (NECTIN4) have demonstrated clinical activity in bladder cancer. However, the co-expression relationships among these three targets at both the transcriptomic and protein levels, and their spatial [...] Read more.
Antibody–drug conjugates (ADCs) targeting HER2 (encoded by ERBB2), Trop2 (TACSTD2), and Nectin-4 (NECTIN4) have demonstrated clinical activity in bladder cancer. However, the co-expression relationships among these three targets at both the transcriptomic and protein levels, and their spatial organization within the tumor microenvironment, remain incompletely characterized. To address this, we performed a multi-platform, multi-resolution analysis integrating ten bulk RNA-seq datasets (n = 1628 samples), six spatial transcriptomics datasets (10x Visium and Visium HD, n = 31 specimens), and multiplex immunofluorescence (mIF) staining on three paired tumor–adjacent normal bladder specimens. Pairwise Pearson correlation analyses were conducted for ERBB2, TACSTD2, and NECTIN4 across bulk transcriptomes and spatial compartments (tumor core, interface, and stroma). High-resolution co-expression hotspot mapping was performed using Visium HD data. Preliminary protein-level evidence was obtained using mIF, with quantitative three-dimensional surface plot reconstructions illustrating the spatial distribution of marker co-expression. Given the limited number of specimens (three paired tumor–normal samples), these findings should be regarded as exploratory and illustrative rather than definitive validation. Moderate-to-strong positive correlations among the three genes were consistently observed across all ten bulk datasets, with the strongest association between TACSTD2 and NECTIN4 (Pearson r up to 0.969). Spatial transcriptomic analyses recapitulated these positive correlations across all histopathological compartments, with the tumor core generally exhibiting the highest coefficients. No consistent spatial gradient was observed, indicating preservation of co-expression across tissue niches. Visium HD analysis confirmed positive pairwise correlations and identified discrete co-expression hotspots. mIF revealed extensive Trop2–Nectin-4 protein colocalization across all tumors, whereas HER2 showed more restricted and heterogeneous expression. Triple-positive subpopulations were identified but were limited. Strikingly, all three markers exhibited pronounced tumor-specific upregulation relative to paired adjacent normal tissues, with surface plot analysis showing markedly elevated cumulative fluorescence intensities in tumors (Z-values approaching 240 arbitrary units) compared with a flattened landscape in normal tissues (Z-values < 100–120 arbitrary units). These findings provide a multi-scale description of ADC-target co-expression in bladder cancer and generate hypotheses for biomarker-driven patient stratification, which require validation in larger, independent cohorts. Full article
(This article belongs to the Special Issue Molecular Mechanisms in Cancer Treatment and Anticancer Drugs)
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17 pages, 810 KB  
Article
Next-Generation Sequencing Refines Diagnosis and Expands Precision Medicine Opportunities in Soft Tissue Sarcomas
by Francine Tesser-Gamba, Thais Biude Mendes, Fernanda Teresa Lima, Simone de Campos Vieira Abib, Eliana Maria Monteiro Caran and Silvia Regina Caminada de Toledo
Int. J. Mol. Sci. 2026, 27(16), 7201; https://doi.org/10.3390/ijms27167201 - 12 Aug 2026
Viewed by 256
Abstract
Soft tissue sarcomas (STSs) are a heterogeneous group of rare mesenchymal malignancies with overlapping morphological and immunohistochemical features, often making definitive diagnosis challenging. Recent advances in next-generation sequencing (NGS) have enabled the identification of recurrent molecular alterations that contribute to tumor classification, prognostic [...] Read more.
Soft tissue sarcomas (STSs) are a heterogeneous group of rare mesenchymal malignancies with overlapping morphological and immunohistochemical features, often making definitive diagnosis challenging. Recent advances in next-generation sequencing (NGS) have enabled the identification of recurrent molecular alterations that contribute to tumor classification, prognostic stratification, and precision oncology approaches. This retrospective study aimed to evaluate the diagnostic and clinical impact of molecular profiling in pediatric soft tissue sarcomas using the Oncomine Childhood Cancer Research Assay (OCCRA) panel. Fifty-five frozen tumor samples representing 24 distinct soft tissue sarcoma subtypes were obtained from the Pediatric Oncology Institute -IOP/GRAACC/UNIFESP Biobank (B-053). Molecular analysis was performed using NGS to identify gene fusions, single nucleotide variants (SNVs), copy number variations (CNVs), and insertions/deletions (InDels). Clinically relevant molecular alterations were identified in 70% (37/55) of cases, including 18 fusion transcripts, 13 SNVs, 8 CNVs, and 6 InDels. Recurrent and diagnostically relevant alterations included BCOR::CCNB3, ASPSCR1::TFE3, NFR1::BRAF, FUS::DDIT3, EML4::NTRK3, ETV6::NTRK3, CIC::DUX4, NAB2::STAT6 and SS18::SSX1/2 fusions, as well as amplifications involving PDGFRA, FGFR1, GLI1, CDK4, ERBB3, and KIT. Pathogenic variants affecting genes involved in tumor suppression and chromatin remodeling, including TP53, NF1, DICER1, SMARCA4, PTEN, and PIK3CA, were also detected. Importantly, molecular profiling had significant diagnostic impact in several histologically ambiguous tumors, enabling molecular reclassification and refinement of previously inconclusive or inaccurate pathological diagnoses. In multiple cases, NGS transformed descriptive histopathological interpretations into genetically defined sarcoma entities, including NTRK-rearranged spindle cell neoplasms, CIC-rearranged sarcomas, synovial sarcoma, low-grade fibromyxoid sarcoma, and clear cell sarcoma. Furthermore, the identification of actionable alterations highlighted potential opportunities for targeted therapies and precision medicine approaches. Our findings demonstrate that comprehensive molecular profiling significantly enhances diagnostic accuracy in pediatric soft tissue sarcomas, particularly in morphologically challenging cases. The integration of NGS into routine sarcoma diagnostics enables biologically informed tumor classification and supports personalized therapeutic strategies. Full article
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16 pages, 2602 KB  
Article
Metabolism Pathway Blood Proteomic Differences in Lewy Body Dementia Compared to Alzheimer’s Disease
by Ariana N. Pritha, Leonidas Chouliaras, Peter Swann, Maria Prats-Sedano, Anna McKeever, Amanda Heslegrave, Nicholas J. Ashton, Henrik Zetterberg, Li Su, Maura Malpetti, James B. Rowe and John T. O’Brien
Int. J. Mol. Sci. 2026, 27(15), 6875; https://doi.org/10.3390/ijms27156875 - 31 Jul 2026
Viewed by 331
Abstract
Dementia with Lewy Bodies (DLB) is the most common neurodegenerative dementia after Alzheimer’s disease (AD), but it remains challenging to diagnose due to overlapping symptoms and mixed pathologies. This pilot study tested whether DLB has different metabolic blood proteomic profiles compared to AD [...] Read more.
Dementia with Lewy Bodies (DLB) is the most common neurodegenerative dementia after Alzheimer’s disease (AD), but it remains challenging to diagnose due to overlapping symptoms and mixed pathologies. This pilot study tested whether DLB has different metabolic blood proteomic profiles compared to AD and controls. Serum was analysed from people with DLB (n = 20), a group with AD (either with Alzheimer’s disease dementia or Mild Cognitive Impairment with a positive amyloid positron emission tomography scan (MCI+/AD) (n = 15), and similarly aged controls (n = 15) using the Olink Metabolism panel encompassing 92 proteins. Six proteins (PILRB, LRIG1, NECTIN2, TINAGL1, SSC4D, and FKBP4) were significantly different in DLB compared with the controls, and one protein (SERPINB8) was differentially expressed when compared with MCI+/AD. Receiver operating characteristic curves for biologically relevant proteins that have previously established roles in neurodegenerative and cognitive properties showed that RNASE3 levels could differentiate DLB from MCI+/AD (area under the curve (AUC) = 0.717, sensitivity = 0.850, and specificity = 0.600). A multimarker model incorporating RNASE3 with phosphorylated tau 217 (pTau217) and polygenic risk scores for LBD achieved improved accuracy in discriminating DLB from MCI+/AD (AUC = 0.963, sensitivity = 1.000, and specificity = 0.900). Pathway analyses revealed dysregulation in cortisol signalling, inflammation resolution, and ErbB4-mediated neuroplasticity, which point towards peripheral protein alterations related to the adaptation to stress, immune regulation, and synaptic integrity in DLB. The present exploratory study highlights potential pathophysiological mechanisms implicated in DLB, suggesting that a multimodal biomarker panel may perform better compared to single proteins. Considering the small sample sizes, the findings will need to be replicated in larger cohorts. Full article
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9 pages, 322 KB  
Case Report
Trastuzumab Deruxtecan in Metastatic Urothelial Carcinoma with NGS-Detected ERBB2 Amplification: A Four-Patient Real-World Case Series
by Giuseppe Di Lorenzo, Sara Di Lorenzo, Antonio Verde, Oriana Strianese, Luigi Leo and Carlo Buonerba
Curr. Oncol. 2026, 33(8), 456; https://doi.org/10.3390/curroncol33080456 - 30 Jul 2026
Viewed by 281
Abstract
Background: Next-generation sequencing (NGS)-detected ERBB2 amplification occurs in a subset of urothelial carcinomas, but its role as a treatment-selection marker for trastuzumab deruxtecan (T-DXd) remains uncertain. Methods: We retrospectively reviewed four patients with metastatic urothelial carcinoma treated with T-DXd in routine practice from [...] Read more.
Background: Next-generation sequencing (NGS)-detected ERBB2 amplification occurs in a subset of urothelial carcinomas, but its role as a treatment-selection marker for trastuzumab deruxtecan (T-DXd) remains uncertain. Methods: We retrospectively reviewed four patients with metastatic urothelial carcinoma treated with T-DXd in routine practice from 2024. Treatment selection was based on NGS-detected ERBB2 amplification because HER2 immunohistochemistry and in situ hybridization were unavailable. Results: Four men aged 65–76 years received T-DXd: one in the second line and three in the fourth or fifth line. The best radiological responses, abstracted from contemporaneous radiology reports and oncology medical records, were complete response in one patient, partial response in one, and stable disease in two. Three patients had previously received enfortumab vedotin. Documented adverse events included fatigue, anemia, diarrhea, rash, and leukopenia. No interstitial lung disease or pneumonitis was documented in the available records. Conclusions: These observations are descriptive and hypothesis-generating. They do not establish the efficacy or safety of T-DXd or validate ERBB2 amplification as a predictive biomarker, but they support prospective evaluation of genomic ERBB2 amplification when standard HER2 testing is unavailable. Full article
(This article belongs to the Section Genitourinary Oncology)
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21 pages, 7952 KB  
Article
Recognition of ErbB Family Dimers by the EGF-like Domain of NRG1alpha and Beta: Implications for Ligand-Based CAR Therapy
by Alex Novikov, Alon Naumchik, Rajashri Banerji, Yariv Greenshpan, Kamran Waidha, Baisali Bhattacharya, Moshe Elkabets, Olga Radinsky and Angel Porgador
Int. J. Mol. Sci. 2026, 27(15), 6813; https://doi.org/10.3390/ijms27156813 - 29 Jul 2026
Viewed by 394
Abstract
HER-positive cancers comprise a heterogeneous group of malignancies driven by dysregulated activation of the human epidermal growth factor receptor (HER/ERBB) family. While chimeric antigen receptor (CAR) T-cell therapies targeting HER2 have demonstrated potent anti-tumor capabilities, their clinical translation remains hampered by safety hurdles [...] Read more.
HER-positive cancers comprise a heterogeneous group of malignancies driven by dysregulated activation of the human epidermal growth factor receptor (HER/ERBB) family. While chimeric antigen receptor (CAR) T-cell therapies targeting HER2 have demonstrated potent anti-tumor capabilities, their clinical translation remains hampered by safety hurdles and antigen escape. We developed a modular “Targeted Chimeric Artificial Reporter” (TcAR) system using the natural epidermal growth factor (EGF)-like binding domains of neuregulin-1 (NRG1) isoforms to decode complex HER dimerization profiles. Leveraging the superior targeting plasticity of the β-isoform, we engineered NRG1β-based CAR-T and CAR-natural killer (NK) cells. Our study demonstrates that NRG1β-directed therapy overcomes therapeutic antigen escape in HER2-depleted models and exerts potent anti-tumor activity within complex three-dimensional (3D) tissue microenvironments ex vivo, exhibiting a significantly safer, muted inflammatory profile compared to clinical standards. Full article
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8 pages, 5765 KB  
Case Report
ESR1 Y537S Detected in a Brain Metastasis but Not in Plasma ctDNA in HR+/HER2-Low Metastatic Breast Cancer: A Case Report
by Aemélia Nègre, Lorène Seguin, Arthur Géraud Cremieux, Frederic Viret, Agnès Tallet, Cornel Popovici, Anthony Gonçalves and Alexandre de Nonneville
Curr. Oncol. 2026, 33(8), 454; https://doi.org/10.3390/curroncol33080454 - 28 Jul 2026
Viewed by 252
Abstract
Brain metastases in hormone receptor-positive metastatic breast cancer remain incompletely characterized at the molecular level. We report isolated central nervous system progression in a 60-year-old woman with hormone receptor-positive breast cancer initially diagnosed at the age of 38 and metastatic recurrence diagnosed at [...] Read more.
Brain metastases in hormone receptor-positive metastatic breast cancer remain incompletely characterized at the molecular level. We report isolated central nervous system progression in a 60-year-old woman with hormone receptor-positive breast cancer initially diagnosed at the age of 38 and metastatic recurrence diagnosed at the age of 55. After approximately five years of extracranial disease control with letrozole plus palbociclib, she developed multiple brain metastases, including a large cerebellar lesion requiring surgical resection. Molecular profiling of the resected lesion identified ESR1 Y537S and ERBB2 Y772_A775dup, whereas postoperative plasma circulating tumor DNA analyzed using a sensitive next-generation sequencing assay showed no detectable somatic alteration. Extracranial disease remained in complete metabolic response. This tissue–plasma discordance is compatible with spatial genomic heterogeneity but may also reflect a low circulating tumor fraction, postoperative reduction in tumor burden, and limited release of tumor-derived DNA from CNS lesions into the systemic circulation. This case highlights the limitations of plasma circulating tumor DNA for evaluating CNS-limited progression and supports direct molecular profiling of brain metastases when tissue is available. Full article
(This article belongs to the Section Breast Cancer)
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24 pages, 2051 KB  
Review
Does the ERBB/EGF Signaling Network Serve as a Nexus for Oncogenic Signals in Uveal Melanoma?
by Niusha Raeesian and David J. Riese
Biomolecules 2026, 16(8), 1079; https://doi.org/10.3390/biom16081079 - 23 Jul 2026
Viewed by 535
Abstract
Uveal melanomas (UMs) metastasize at a high frequency, and metastatic UMs are associated with very poor clinical outcomes. Consequently, there is considerable interest in the genetics and biochemistry of UM and in how these insights may lead to novel and effective approaches to [...] Read more.
Uveal melanomas (UMs) metastasize at a high frequency, and metastatic UMs are associated with very poor clinical outcomes. Consequently, there is considerable interest in the genetics and biochemistry of UM and in how these insights may lead to novel and effective approaches to treating it. This work reviews the biology and pharmacotherapy of UM. It also summarizes signaling by the network comprising ERBB receptor tyrosine kinases and EGF family peptide growth factors, including mechanisms of crosstalk with G protein-coupled receptors. Next, this work discusses signaling changes that appear to drive UM, particularly increased signaling by the CYSLTR2/Gαq/Gα11 pathway. Finally, this work suggests that some of the signaling events that drive UM may be the consequence of crosstalk between the CYSLTR2/Gαq/Gα11 pathway and the ERBB/EGF signaling network. Thus, this work proposes that the ERBB/EGF signaling network may be a novel therapeutic target for UM. Full article
(This article belongs to the Special Issue Advances in Melanoma Targeted Therapy)
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18 pages, 14346 KB  
Article
Developmental and Neurobehavioral Toxicity of Tetrabromobisphenol A Mono(2-hydroxyethyl) Ether (TBBPA-MHEE) in Zebrafish Larvae: Oxidative/Inflammatory Responses and Candidate ErbB-Related Signaling
by Yuhan Deng, Yuqi Zhao, Jiujiu Cao, Tianyu Chen, Ziyu Jiang, Yamin Zhang and Jiannan Chen
Biology 2026, 15(14), 1120; https://doi.org/10.3390/biology15141120 - 10 Jul 2026
Viewed by 424
Abstract
Tetrabromobisphenol A mono(2-hydroxyethyl) ether (TBBPA-MHEE) is an important byproduct during the production of tetrabromobisphenol A (TBBPA) and its related derivatives. Although it has been detected in aquatic environments, its in vivo developmental toxicity and underlying mechanisms remain poorly understood. In this study, zebrafish [...] Read more.
Tetrabromobisphenol A mono(2-hydroxyethyl) ether (TBBPA-MHEE) is an important byproduct during the production of tetrabromobisphenol A (TBBPA) and its related derivatives. Although it has been detected in aquatic environments, its in vivo developmental toxicity and underlying mechanisms remain poorly understood. In this study, zebrafish were used as a model organism to evaluate the early developmental toxicity, neurobehavioral toxicity, and candidate molecular responses associated with TBBPA-MHEE. The 96 h median lethal concentration (96 h-LC50) of TBBPA-MHEE for zebrafish embryos/larvae was 1.684 mg/L. Sublethal nominal exposure concentrations (2, 20, and 200 μg/L) caused developmental abnormalities, including reduced body length, pericardial edema, impaired swim bladder development, and significantly inhibited spontaneous motor activity as well as the response to light–dark transition and mechanical stimulation. Transgenic reporter assays further showed shortened motor neuron projections, reduced brain-region fluorescence in Tg(gad1b:mCherry) larvae, and downregulated the expression of neurodevelopment-related genes. Network toxicology analysis suggested that MTOR, SRC, MAPK3, and GSK3B were identified as candidate targets potentially associated with TBBPA-MHEE-induced neurotoxicity, with significant enrichment of the ErbB signaling pathway and possible perturbation of PI3K/Akt/mTOR-related responses. In addition, TBBPA-MHEE exposure increased the accumulation of reactive oxygen species (ROS) in the larval brain and induced inflammatory and apoptotic responses. Quercetin intervention partially alleviated ROS accumulation and inflammation and improved the developmental and motor phenotypes. Collectively, these findings indicate that TBBPA-MHEE induces neurodevelopmental toxicity in zebrafish, possibly associated with altered transcriptional responses related to ErbB signaling and the PI3K/Akt/mTOR axis, accompanied by oxidative stress, inflammatory responses, and apoptosis-related events. Because exposure concentrations were not analytically verified, all treatment levels are reported as nominal concentrations. This study provides experimental evidence for the toxicological assessment and environmental risk evaluation of TBBPA derivative pollutants. Full article
(This article belongs to the Special Issue Advances in Ecotoxicology and Environmental Toxicology)
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16 pages, 290 KB  
Review
Histological Subtypes of Bladder Cancer: Epidemiology, Molecular Biology, and Clinical Implications
by Belén Mora-Garijo, Syed Rahman, Hongzhi Xu, Jon Chatzkel, G. Daniel Grass, Philippe E. Spiess and Roger Li
Cancers 2026, 18(13), 2174; https://doi.org/10.3390/cancers18132174 - 7 Jul 2026
Viewed by 785
Abstract
Histological subtypes of bladder cancer are generally associated with more aggressive disease, higher stage at presentation, and worse prognosis compared to conventional urothelial carcinoma. Recent updates in classification systems have further refined the distinction between true histologic subtypes and divergent differentiation, underscoring the [...] Read more.
Histological subtypes of bladder cancer are generally associated with more aggressive disease, higher stage at presentation, and worse prognosis compared to conventional urothelial carcinoma. Recent updates in classification systems have further refined the distinction between true histologic subtypes and divergent differentiation, underscoring the complexity of these tumors. Emerging molecular profiling studies have identified subtype-specific genomic alterations, including ERBB2 amplification in micropapillary subtype carcinoma, CDH1 loss in plasmacytoid subtype carcinoma, and TP53 and RB1 co-alterations in neuroendocrine bladder cancer, which may contribute to differences in tumor biology and therapeutic response. Despite these advances, the histological subtypes of bladder cancer remain underrepresented in prospective clinical trials, leading to significant gaps in evidence-based management. Treatment responses vary widely across subtypes, with some demonstrating sensitivity to platinum-based chemotherapy or immunotherapy, while others appear less responsive to conventional approaches. This review summarizes the current understanding of the epidemiology, molecular landscape, and clinical behavior of major bladder cancer subtypes and highlights emerging opportunities for personalized treatment strategies, biomarker-driven therapies, and more inclusive clinical trial design to improve outcomes in this high-risk population. Full article
(This article belongs to the Special Issue Rare Genitourinary Cancers)
13 pages, 4431 KB  
Article
Systemic Drug Effects in Vortioxetine-Induced Time-Series Datasets
by Shinuk Kim
Int. J. Mol. Sci. 2026, 27(13), 6058; https://doi.org/10.3390/ijms27136058 - 6 Jul 2026
Viewed by 414
Abstract
This paper introduces an approach for inferring the gene regulatory networks in vortioxetine-induced glioblastoma cells to investigate vortioxetine’s systemic effects. The approach uses an ordinary differential equation (ODE)-based inverse problem to evaluate the drug-induced gene interactions within the GLIOMA and ERBB pathways, which [...] Read more.
This paper introduces an approach for inferring the gene regulatory networks in vortioxetine-induced glioblastoma cells to investigate vortioxetine’s systemic effects. The approach uses an ordinary differential equation (ODE)-based inverse problem to evaluate the drug-induced gene interactions within the GLIOMA and ERBB pathways, which are deeply intertwined in cancers, by using time-series datasets. Time-series datasets were generated in triplicate at 0, 3, 6, 9, 12, and 24 h. The results of the ERBB pathway confirmed that PIK3R5 was commonly activated, while JUN, as a proto-oncogene in glioblastoma, was inhibited by genes across all three datasets. In particular, PIK3R5 was commonly activated by PAK6 in all three datasets. The results of the GLIOMA pathway confirmed that CALML6 was commonly activated, while CDK4 and CCND1, which are mostly overexpressed in human cancers, were inhibited across all three datasets. Additionally, an analysis of the independent datasets generated at 6 and 22 h after the vortioxetine injection identified the most distinct variable genes between the two time points: CRK (1.96) and JUN (−3.02) for the ERBB signaling pathway, and BRAF (1.30) and MAP2K2 (−1.92) for the GLIOMA pathway. We conclude that vortioxetine, an antidepressant, decreases JUN, a proto-oncogene involved in the ERBB signaling pathway, and CCND1, another proto-oncogene involved in the GLIOMA pathway, over time in glioblastoma cells. Full article
(This article belongs to the Special Issue Mathematical Computation and Modeling in Biology)
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9 pages, 10403 KB  
Case Report
Complete Imaging Resolution of Ductal Carcinoma In Situ During Osimertinib Therapy for Synchronous EGFR Exon 19-Mutant Non-Small Cell Lung Cancer: A Case Report
by Leticia Assad Maia Sandoval, Richard E. Sharpe, Austin J. Fullenkamp, Erinn Downs and Lida Mina
Int. J. Mol. Sci. 2026, 27(13), 5995; https://doi.org/10.3390/ijms27135995 - 3 Jul 2026
Cited by 1 | Viewed by 326
Abstract
A 64-year-old Asian woman diagnosed with synchronous breast ductal carcinoma in situ (DCIS) and stage IV EGFR-mutated non-small cell carcinoma of the lung (NSCLC). A decision was made to defer management of the DCIS and initiate Osimertinib for lung cancer treatment, since this [...] Read more.
A 64-year-old Asian woman diagnosed with synchronous breast ductal carcinoma in situ (DCIS) and stage IV EGFR-mutated non-small cell carcinoma of the lung (NSCLC). A decision was made to defer management of the DCIS and initiate Osimertinib for lung cancer treatment, since this was a life-limiting diagnosis. At 9 months, restaging FDG-PET CT showed an interval response in the NSCLC and complete loss of FDG avidity at the biopsy-proven DCIS site. Breast MRI confirmed complete imaging resolution of the DCIS. The clinical resolution of breast DCIS during third-generation EGFR inhibitor therapy has not been previously reported in humans and highlights a potential role for the EGFR/HER2 (ERBB) pathway in pre-invasive breast cancer. Full article
(This article belongs to the Special Issue Breast Cancer: From Pathophysiology to Novel Therapies, 2nd Edition)
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22 pages, 1709 KB  
Review
Overcoming Resistance to Anti-EGFR Therapies: Mechanisms of Cetuximab and Panitumumab Resistance and Emerging Combination Strategies
by Gabriela Henrykowska, Dorota Bartusik-Aebisher, Klaudia Dynarowicz, Tamil Selvan Ramesh, Barbara Smolak and David Aebisher
Pharmaceuticals 2026, 19(7), 1041; https://doi.org/10.3390/ph19071041 - 3 Jul 2026
Viewed by 612
Abstract
Cetuximab and panitumumab are anti-EGFR monoclonal antibodies widely used for the treatment of colorectal cancers. However, due to various mechanisms of resistance to these targeted therapies, the patients’ responses vary. These resistances remain a major obstacle in treatment and overcoming them has become [...] Read more.
Cetuximab and panitumumab are anti-EGFR monoclonal antibodies widely used for the treatment of colorectal cancers. However, due to various mechanisms of resistance to these targeted therapies, the patients’ responses vary. These resistances remain a major obstacle in treatment and overcoming them has become a key emphasis of current therapeutic strategies. Intrinsic and acquired resistance often lead to reactivation of downstream signaling pathways, mainly the RAS-RAF-MEK-ERK (MAPK pathway) and PI3K-AKT axes. Prior existing mutations in KRAS, NRAS, and BRAF result in primary resistance by constantly activating the signals, irrespective of EGFR inhibition. That said, acquired resistance manifests under therapeutic burden through the process of clonal evolution via KRAS and BRAF alterations, restoring MAPK pathway activity despite EGFR inhibition. In addition to those mutations, tumor cells exploit mechanisms independent of EGFR, such as the pathway bypass, which includes amplification of ERBB family receptors like HER2 (ERBB2) and activation of MET signaling. To overcome these resistances, novel strategies have emerged, which target multiple nodes within the oncogenic networks. Such methods include vertical pathway inhibition, multi-kinase inhibition, liquid-biopsy-guided therapy, and anti-EGFR rechallenge. Reactivation driven by secondary mutation can be prevented by targeting multiple nodes within the MAPK cascade simultaneously, which is referred to as the vertical pathway inhibition. Overall, this review underscores that overcoming therapeutic resistance requires a multidimensional approach that integrates molecular profiling, rational combination therapies, and adaptive treatment. Finally, these advances underscore the shift toward precision oncology, where therapy is tailored to tumor evolution, leading to improved response and patient outcome. Full article
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