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Keywords = central nervous system (CNS) malignant tumors

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20 pages, 725 KB  
Review
Primary Lymphomas of the Female Genital Tract: Recognizing the Rare Mimicker of Gynecologic Malignancy
by Sofoklis Stavros, Maria-Anastasia Daskalaki, Stefanos Dafopoulos, Efthalia Moustakli, Ismini Anagnostaki, Anastasios Potiris, Theodoros Karampitsakos, Konstantinos Dafopoulos, Georgios Daskalakis and Peter Drakakis
Med. Sci. 2026, 14(3), 409; https://doi.org/10.3390/medsci14030409 - 21 Jul 2026
Viewed by 495
Abstract
Primary lymphomas of the female genital tract (PLFGT) are extremely rare neoplasms, representing a minor fraction of both extranodal lymphomas and gynecologic malignancies. Due to their nonspecific clinical presentation and overlapping imaging features with more common gynecologic tumors, diagnosis is often delayed or [...] Read more.
Primary lymphomas of the female genital tract (PLFGT) are extremely rare neoplasms, representing a minor fraction of both extranodal lymphomas and gynecologic malignancies. Due to their nonspecific clinical presentation and overlapping imaging features with more common gynecologic tumors, diagnosis is often delayed or missed. This narrative review aims to synthesize current evidence on the clinical characteristics, histologic subtypes, diagnostic approaches, treatment strategies, and prognostic factors of PLFGT, emphasizing recent developments that may influence clinical practice. A comprehensive literature review was conducted, incorporating data from institutional case series, population-based studies, and recent genomic investigations focusing on PLFGT across various anatomical sites: ovary, uterus, cervix, and vagina. PLFGT typically affects women aged 44–68 years, with the ovary being the most frequently involved organ. The most common subtype is diffuse large B-cell lymphoma (DLBCL), followed by Burkitt lymphoma and marginal zone lymphoma. Patients usually present with pelvic pain, mass, or abnormal bleeding, while B symptoms are infrequent. Image-guided core needle biopsy has emerged as a valuable diagnostic approach that may reduce unnecessary surgery. Characteristic sonographic findings, such as hypoechoic, well-defined lesions and homogeneous uterine echo reduction, should raise clinical suspicion, though primary and metastatic disease cannot be distinguished solely by imaging. Rituximab-containing regimens (R-CHOP) are the mainstay of treatment and have improved outcomes. Despite treatment, central nervous system (CNS) recurrence remains a concern, particularly in ovarian involvement. Additionally, mutations in MYD88 and CD79B, although not prognostic, offer potential for personalized therapy. Timely diagnosis and appropriate systemic therapy are critical for improving survival in PLFGT. Advances in imaging, biopsy techniques, and molecular profiling are reshaping the diagnostic and therapeutic landscape of this rare but clinically significant disease. Full article
(This article belongs to the Section Gynecology)
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28 pages, 2932 KB  
Review
Multitargeted Flavonoids in Glioblastoma Therapy
by María Jesús Ramírez-Expósito, Cristina Cueto-Ureña and José Manuel Martínez-Martos
Appl. Sci. 2026, 16(12), 6218; https://doi.org/10.3390/app16126218 - 19 Jun 2026
Viewed by 390
Abstract
Glioblastoma (GB) is the most aggressive primary central nervous system tumor in adults and the most common malignant primary brain tumor, representing approximately 50.9% of all malignant CNS tumors, with a median overall survival of approximately 14.6 months despite standard multimodal treatment, consisting [...] Read more.
Glioblastoma (GB) is the most aggressive primary central nervous system tumor in adults and the most common malignant primary brain tumor, representing approximately 50.9% of all malignant CNS tumors, with a median overall survival of approximately 14.6 months despite standard multimodal treatment, consisting of surgical resection, concurrent radiotherapy, and temozolomide (TMZ), followed by adjuvant TMZ (Stupp protocol). Tumor recurrence is inevitable and attributed to diffuse infiltration of neoplastic cells into the brain parenchyma, marked intratumoral heterogeneity, the presence of glioma stem cells, and the protection conferred by the BBB. Flavonoids are plant-derived polyphenolic compounds with more than 8000 identified. They have attracted growing interest as potential therapeutic agents because of their capacity to modulate multiple oncogenic signaling pathways and their favorable toxicity profile. Here we synthesize the preclinical evidence on the main flavonoids with documented activity in GB models, with emphasis on quercetin, apigenin, luteolin, and EGCG, while distinguishing glioblastoma-specific evidence from indirect findings derived from other experimental systems. We analyze their underlying molecular mechanisms, including induction of apoptosis through the intrinsic and extrinsic pathways, inhibition of cell proliferation and angiogenesis, suppression of migration and invasion, epigenetic modulation, and, particularly, the capacity to target the glioma stem cell population. We also examine the limited oral bioavailability and restricted penetration across the BBB, as these factors remain major barriers to translational development. We conclude with an analysis of emerging nanotechnological strategies, targeted delivery systems, and synergistic combinations with conventional chemotherapeutic agents, together with a cautious assessment of the current clinical evidence, which remains insufficient to support the use of flavonoids outside controlled clinical trials. Full article
(This article belongs to the Special Issue Recent Advances in Flavonoids and Health)
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21 pages, 1043 KB  
Article
Long-Term Survival and Risk of Second Malignant Neoplasms Among Childhood Cancer Patients in 16 Provinces of Spain
by Jaume Galceran, Alberto Ameijide, Noura Jeghalef, Antonia Sánchez, Marcela Guevara, Jàmnica Bigorra, Pilar Gutiérrez, An L. D. Boone, Montserrat Garrido, Xitama Álvarez, Ana Vizcaíno, Isabel Martín, Amaia Onaindia, Silvia Sanclemente, Jan Trallero, María José Sánchez, María-Isabel Palacios, Ramon Clèries, Marià Carulla and on behalf of the Spanish Network of Cancer Registries (REDECAN)
Cancers 2026, 18(12), 1991; https://doi.org/10.3390/cancers18121991 - 18 Jun 2026
Viewed by 454
Abstract
Background: Childhood cancer survivors have a higher risk of developing malignancies later in life compared with individuals of similar age in the general population. In Spain, population-based evidence on second malignant neoplasms (SMNs) is limited. This study aimed to estimate survival following childhood [...] Read more.
Background: Childhood cancer survivors have a higher risk of developing malignancies later in life compared with individuals of similar age in the general population. In Spain, population-based evidence on second malignant neoplasms (SMNs) is limited. This study aimed to estimate survival following childhood cancer diagnosis and to assess the risk of SMNs in Spain. Methods: This population-based registry study used data from 12 cancer registries within the Spanish Network of Cancer Registries (REDECAN). All malignancies of sites and non-malignant central nervous system (CNS) tumors diagnosed before age 15 were included. Age-standardized incidence rates (ASIRw) for 2015–2019 were calculated. Five- and 10-year age-adjusted observed survival rates for 1990–1999 and 2000–2009 were estimated. SMN risk was assessed using standardized incidence ratios (SIRs) and excess absolute risks (EARs). Results: The ASIRw for 2015–2019 was 181.3 per million child-years. Ten-year survival increased from 71.3% in 1990–1999 to 75.5% in 2000–2009. The overall risk of developing an SMN was significantly elevated (SIR = 5.67) at 20 years. Conclusions: Although survival for childhood cancer in Spain was around 75% in 2000–2009, childhood cancer survivors remain at substantially increased risk of SMNs for at least two decades. Efforts to reduce treatment-related toxicity while maintaining survival gains are essential. Full article
(This article belongs to the Special Issue Recent Advances in Epidemiology of Childhood Cancer)
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16 pages, 3656 KB  
Case Report
Atypical Teratoid/Rhabdoid Tumor of the Lateral Ventricle: A Case Series and Experience with Molecular Subtyping-Guided Immunotherapy
by Haohan Wang, Zesheng Ying, Zhuo Zhi, Nijia Zhang, Jia Wang, Nan Zhang, Yingjie Cai and Ming Ge
Neurol. Int. 2026, 18(4), 74; https://doi.org/10.3390/neurolint18040074 - 21 Apr 2026
Viewed by 623
Abstract
Background: Atypical teratoid/rhabdoid tumors (AT/RT) are rare, highly aggressive pediatric central nervous system (CNS) malignancies. AT/RT of the lateral ventricle is an exceptionally rare subgroup, with only 11 reported cases. SMARCB1 inactivation is the primary molecular feature of AT/RT. Current consensus is to [...] Read more.
Background: Atypical teratoid/rhabdoid tumors (AT/RT) are rare, highly aggressive pediatric central nervous system (CNS) malignancies. AT/RT of the lateral ventricle is an exceptionally rare subgroup, with only 11 reported cases. SMARCB1 inactivation is the primary molecular feature of AT/RT. Current consensus is to classify AT/RT based on methylation and molecular profiles into the following subgroups: AT/RT-TYR, AT/RT-SHH, AT/RT-MYC, and a potentially distinct SMARCA4-deficient subtype. AT/RT-MYC exhibits high levels of CD8+ tumor-infiltrating lymphocytes, indicating immunogenic potential. Case presentation: We report three pediatric cases presenting with intracranial hypertension and seizures. Diagnosis was confirmed via histopathology and molecular profiling. Interventions included gross total resection, chemotherapy, radiotherapy, and combined immune checkpoint inhibitors (pembrolizumab and ipilimumab). Outcomes varied from rapid progression to 3-year recurrence-free survival. A cohort of 14 pediatric patients with lateral ventricle AT/RT, comprising 3 institutional cases and 11 cases identified from the PubMed database, was evaluated through a narrative synthesis. Conclusions: These advancements highlight the crucial role of molecular subtyping in tailoring personalized treatments, including epigenetic modifiers and immune-based regimens. However, clinical validation is essential to establish standardized protocols. Integrating genomic, epigenetic, and immune microenvironment profiling may enhance risk assessment and treatment precision, ultimately improving survival and quality of life in pediatric patients. Full article
(This article belongs to the Section Brain Tumor and Brain Injury)
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41 pages, 794 KB  
Review
Diffuse Midline Gliomas: Clinical, Diagnostic, and Therapeutic Perspectives
by Sanyukta Bihari, Dia Yang, Devarshi Mukherji and Aya Haggiagi
Biomedicines 2026, 14(4), 934; https://doi.org/10.3390/biomedicines14040934 - 20 Apr 2026
Cited by 1 | Viewed by 3725
Abstract
Diffuse midline gliomas (DMGs) are rare but highly aggressive central nervous system (CNS) tumors that can present in both pediatric and adult populations. These tumors were redefined in the 2016 WHO classification of CNS tumors based on integrated histopathological and molecular features, and [...] Read more.
Diffuse midline gliomas (DMGs) are rare but highly aggressive central nervous system (CNS) tumors that can present in both pediatric and adult populations. These tumors were redefined in the 2016 WHO classification of CNS tumors based on integrated histopathological and molecular features, and were initially designated as “DMG, H3 K27M-mutant”. In the 2021 WHO update, DMGs were incorporated into the newly defined category of primarily pediatric-type diffuse high-grade gliomas, and nomenclature was changed to “DMG, H3 K27-altered” to encompass additional molecular drivers beyond the canonical H3 K27M mutation. Clinically, DMGs arise as expansile, infiltrating tumors within midline structures and may present as non-enhancing or enhancing lesions on imaging. Diagnosis is based on neuroimaging and molecular confirmation by immunohistochemistry or sequencing when tissue is available. DMGs are categorized as WHO grade 4 malignant tumors due to their aggressive biology leading to rapid and infiltrative growth. Owing to their deep and midline location, surgical resection is typically not feasible. Radiation therapy is the backbone of treatment, but there is no standard regimen of chemotherapy that has demonstrated durable efficacy. Recent progress in therapeutic approaches has led to a major breakthrough on 6 August 2025 when the U.S. Food and Drug Administration granted the accelerated approval of dordaviprone (ONC201), marking it as the first systemic therapy for progressive DMG harboring H3 K27M mutation. Other novel approaches, including chimeric antigen receptor (CAR) T-cell directed therapies and convection-enhanced delivery, are actively under investigation. We aim to comprehensively review DMGs, including the recent insights into their biology, the evolving therapeutic landscape, and the opportunities to fuel this new momentum against one of the most formidable gliomas. Full article
(This article belongs to the Special Issue Diagnosis, Pathogenesis and Treatment of CNS Tumors (2nd Edition))
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19 pages, 2885 KB  
Article
Clinical Utility of Belay Summit™ Cerebrospinal Fluid Test to Inform Diagnosis and Management of Central Nervous System Cancer—A Single Institution Case Series
by Michael Youssef, Alexandra Larson, Vindhya Udhane, Zhixin Jiang, Daniel Lim, Jennifer N. Adams, Rakshitha Jagadish, Anthony Acevedo, Brett A. Domagala, Samantha A. Vo, Tarin Peltier, Daniel Sanchez, Viriya Keo, Julianna Ernst, Kala F. Schilter, Qian Nie and Honey V. Reddi
Cancers 2026, 18(7), 1094; https://doi.org/10.3390/cancers18071094 - 27 Mar 2026
Cited by 1 | Viewed by 1156
Abstract
Background: Cytology from cerebrospinal fluid (CSF) is standard-of-care to detect central nervous system (CNS) cancers but suffers from low-sensitivity and lacks associated molecular information, often requiring brain biopsy or resection to obtain. Belay Diagnostics offers analytically and clinically validated CSF-based tests to support [...] Read more.
Background: Cytology from cerebrospinal fluid (CSF) is standard-of-care to detect central nervous system (CNS) cancers but suffers from low-sensitivity and lacks associated molecular information, often requiring brain biopsy or resection to obtain. Belay Diagnostics offers analytically and clinically validated CSF-based tests to support the diagnosis and management of primary and secondary CNS cancers. However, the clinical utility (CU) of these assays has not been previously evaluated. Methods: This retrospective study presents a real-world, single institution experience of using the Belay Summit liquid biopsy test for all orders received (n = 123) between October 2024 and September 2025. Clinical information was reviewed for demographics, provisional diagnosis, oncology history, CSF cytology results, and tumor genomic profiling results. The primary endpoint of this study was to evaluate the impact of Belay CSF-based assays on physician diagnosis and treatment decisions. Secondary endpoints included evaluating the clinical performance of the Belay Summit test verses cytology in CNS malignancy detection (sensitivity, specificity, and accuracy). Results: The cohort included 120 patients with suspected or previously diagnosed primary (n = 40) or metastatic (n = 80) CNS tumors; three patients completed longitudinal testing for a total of 123 specimens and test orders. Summit showed higher sensitivity for CNS malignancy (90%) over CSF cytology (12%). The Belay CSF liquid biopsy test demonstrated strong clinical utility and was essential to clinical course pursued in 93% (114/123) of specimens, informing treatment and management decisions. Conclusions: The Belay Summit test provides clinically meaningful information to support physician decision-making for the diagnosis and management of primary and secondary CNS tumors, especially in cases where tissue sampling is infeasible. Full article
(This article belongs to the Section Molecular Cancer Biology)
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18 pages, 3419 KB  
Review
Beyond Resection: Surgery as an Evolutionary Bottleneck Shaping Tumor Evolution and Treatment Response in Diffuse Gliomas
by Paolo Tini, Flavio Donnini, Giovanni Rubino, Giuseppe Battaglia, Pierpaolo Pastina, Marta Vannini, Tommaso Carfagno, Giacomo Tiezzi, Ludovica Cellini, Giuseppe Minniti and Salvatore Chibbaro
Cancers 2026, 18(6), 1012; https://doi.org/10.3390/cancers18061012 - 20 Mar 2026
Cited by 2 | Viewed by 1324
Abstract
Surgical resection remains a cornerstone in the multidisciplinary management of central nervous system (CNS) tumors, particularly diffuse gliomas. Traditionally, the role of surgery has been evaluated primarily through quantitative metrics such as extent of resection and its association with survival outcomes. However, despite [...] Read more.
Surgical resection remains a cornerstone in the multidisciplinary management of central nervous system (CNS) tumors, particularly diffuse gliomas. Traditionally, the role of surgery has been evaluated primarily through quantitative metrics such as extent of resection and its association with survival outcomes. However, despite maximal and radiologically complete resections, recurrence remains nearly universal in malignant CNS tumors, suggesting that surgical cytoreduction alone does not fully account for post-surgical disease dynamics. Emerging biological and molecular evidence indicates that surgery represents not merely a technical intervention, but a biologically active event that profoundly reshapes tumor evolution and treatment response. In this review, we propose a conceptual framework that redefines surgery as a key biological driver in CNS tumor progression. We synthesize evidence demonstrating that surgical trauma induces inflammation, hypoxia, vascular remodeling, immune modulation, and extracellular matrix reorganization, collectively reprogramming the residual tumor microenvironment. These changes create selective pressures that favor the survival and expansion of adaptive tumor cell subpopulations, including invasive and stem-like phenotypes. From an evolutionary perspective, surgical resection functions as an acute selective bottleneck acting on heterogeneous tumor ecosystems, contributing to clonal selection and molecular divergence at recurrence. We further examine the dissociation between surgical (anatomical) margins and molecular (biological) margins, highlighting how biologically active tumor cells infiltrate beyond radiologically defined boundaries. This discrepancy provides a biological explanation for marginal and distant recurrences and challenges anatomy-based paradigms of surgical completeness. Importantly, we discuss how surgery-induced biological changes influence postoperative radiotherapy and systemic therapies, affecting radiosensitivity, target delineation, and therapeutic vulnerability. Finally, we outline future directions toward surgery-integrated precision neuro-oncology, emphasizing the potential of spatial profiling, liquid biopsy, advanced imaging, and artificial intelligence to capture perioperative tumor evolution. By reframing surgery as a biological inflection point rather than a neutral prelude to adjuvant treatment, this review advocates for a dynamic, biology-driven continuum of care aimed at anticipating tumor adaptation and improving long-term disease control in CNS tumors. Full article
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12 pages, 2517 KB  
Review
Astrocytoma in Patients with HIV—Review of the Literature and Case Report
by Florentina Dumitrescu, Eugenia-Andreea Marcu, Vlad Pădureanu, Cristiana-Luiza Rădoi-Troacă, Rodica Pădureanu and Lucian Giubelan
Pathogens 2026, 15(3), 284; https://doi.org/10.3390/pathogens15030284 - 5 Mar 2026
Viewed by 1184
Abstract
Astrocytomas are among the most common primary tumors of the central nervous system, arising from astrocytic glial cells and encompassing a wide spectrum of histopathological grades and clinical behaviors. Human immunodeficiency virus (HIV) infection is characterized by chronic immune dysregulation, neuroinflammation, and increased [...] Read more.
Astrocytomas are among the most common primary tumors of the central nervous system, arising from astrocytic glial cells and encompassing a wide spectrum of histopathological grades and clinical behaviors. Human immunodeficiency virus (HIV) infection is characterized by chronic immune dysregulation, neuroinflammation, and increased susceptibility to both opportunistic infections and malignancies. The management of astrocytomas in patients living with HIV presents unique clinical challenges but should, whenever feasible, follow standard neuro-oncological principles. We report the case of a 34-year-old man with well-controlled HIV infection who presented in February 2025 with progressive neurological symptoms. Brain imaging revealed a left temporo-insular lesion, and the diagnosis was confirmed by neuronavigation-guided biopsy performed on 31 March 2025. Histopathological and immunohistochemical evaluation established the diagnosis of an isocitrate dehydrogenase (IDH) wild-type astrocytoma, central nervous system (CNS) World Health Organization (WHO) grade 2, according to the 2021 classification of central nervous system tumors. Full article
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24 pages, 2078 KB  
Review
Ferroptosis in Glioblastoma and Neuroblastoma: Molecular Mechanisms and Novel Therapeutic Strategies
by Zhaoyang Liu, Zihan Ma, Kexin Yang and Hongwei Fan
Curr. Issues Mol. Biol. 2026, 48(3), 267; https://doi.org/10.3390/cimb48030267 - 3 Mar 2026
Cited by 2 | Viewed by 1805
Abstract
Malignant neoplasms arising from the central nervous system (CNS), particularly glioblastoma (GBM) as well as neuroblastoma (NB), represent a formidable global health burden owing to their aggressive biological behavior and dismal clinical outcomes. Ferroptosis—an iron-dependent form of regulated cell death distinct from apoptosis, [...] Read more.
Malignant neoplasms arising from the central nervous system (CNS), particularly glioblastoma (GBM) as well as neuroblastoma (NB), represent a formidable global health burden owing to their aggressive biological behavior and dismal clinical outcomes. Ferroptosis—an iron-dependent form of regulated cell death distinct from apoptosis, autophagy, and necrosis—has emerged as a critical regulatory nexus in the progression and therapeutic response of these malignancies. Characterized by iron-catalyzed lipid peroxidation, ferroptosis is tightly governed by the metabolic interplay among lipids, iron, and glutathione, profoundly influencing tumorigenesis, tumor progression, and therapeutic resistance. In this review, we systematically synthesize current knowledge on ferroptosis in GBM and NB, specifically contrasting how developmental origins and metabolic contexts shape their regulatory mechanisms. We further integrate recent advances in the diagnostic and therapeutic landscape of nervous system tumors, with a particular emphasis on ferroptosis-targeted strategies. Overall, this work aims to provide a conceptual framework linking ferroptosis regulation to tumor context, thereby offering mechanistic insights and future directions for the precision management of nervous system malignancies. Full article
(This article belongs to the Section Biochemistry, Molecular and Cellular Biology)
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27 pages, 1178 KB  
Review
From Cerebrovascular Injury to Brain Cancer: The Role of Blood–Brain Barrier Dysfunction
by Stanisław Kisiel, Michał Pawlik, Wojciech Jan Niemcewicz, Wincenty Janicki, Julia Świerczyńska, Karolina Romanczuk, Robert Zdanowski and Agata Borkowska
Biomedicines 2026, 14(3), 511; https://doi.org/10.3390/biomedicines14030511 - 26 Feb 2026
Viewed by 2612
Abstract
Stroke and brain cancer are severe disorders of the central nervous system (CNS) associated with high morbidity and mortality. Although each condition has been extensively studied individually, growing evidence suggests that cerebrovascular injury may influence the development of brain malignancies. This narrative review [...] Read more.
Stroke and brain cancer are severe disorders of the central nervous system (CNS) associated with high morbidity and mortality. Although each condition has been extensively studied individually, growing evidence suggests that cerebrovascular injury may influence the development of brain malignancies. This narrative review synthesizes current experimental, clinical, and epidemiological data supporting a mechanistic link between stroke and brain cancer, with a particular focus on blood–brain barrier (BBB) dysfunction. We discuss how stroke-induced hypoxia, oxidative stress, and neuroinflammation disrupt BBB integrity, promote endothelial activation, and induce the expression of adhesion molecules that facilitate arrest, extravasation, and survival of circulating tumor cells within the CNS. Additionally, post-stroke regenerative signaling, angiogenesis, and immune modulation may contribute to the formation of a permissive microenvironment that supports tumor initiation and metastatic growth. Available epidemiological studies, clinical observations, and case reports are reviewed to evaluate the strength and limitations of the association between cerebrovascular events and subsequent brain cancer. Although the co-occurrence of stroke and brain cancer remains relatively uncommon, elucidating the shared molecular and cellular mechanisms underlying this relationship can improve risk stratification and allow the development of diagnostic and therapeutic strategies aimed at preserving BBB integrity and reducing long-term oncological complications after stroke. Full article
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20 pages, 1915 KB  
Article
Protein Expression Status of HTR4 and PDE4D Genes in Glial Brain Tumors Followed by the Study of Genomic Instability
by Marina Milić, Nejla Ademović, Emilija Manojlović Gačić, Vladimir Baščarević, Nasta Tanić, Nikola Tanić and Ivan Milić
Life 2026, 16(3), 374; https://doi.org/10.3390/life16030374 - 25 Feb 2026
Viewed by 857
Abstract
Malignant gliomas are the most common primary tumors of the central nervous system (CNS), originating from glial cells. They account for 30% of all CNS tumors. Among them, glioblastoma (GBM) is the most common, accounting for 45% of all glial tumors, while low-grade [...] Read more.
Malignant gliomas are the most common primary tumors of the central nervous system (CNS), originating from glial cells. They account for 30% of all CNS tumors. Among them, glioblastoma (GBM) is the most common, accounting for 45% of all glial tumors, while low-grade gliomas (LGGs) account for 31.8% of all gliomas. The aim of this study was to analyze the protein-expression profile of HTR4 and PDE4D genes in patients with glioma by immunohistochemical (IHC) analysis, to determine whether some interrelationship between them exists, to correlate their expression with clinical and histopathological parameters and therapy, and to determine their impact on patients’ survival. In addition, we analyzed the level of genomic instability (GI) (microsatellite (MIN), chromosomal (CIN) and total GI) by AP-PCR, in order to understand whether it can represent a tool for biological stratification of glioma tumors and risk assessment. Our results revealed that synchronized expression of 5-HTR4 and PDE4D proteins represents a stable modulatory signaling axis of glial-tumor biology, and reflects the activity of cAMP signaling pathway, but cannot independently stratify patients. Moreover, our study confirms that the combination of MIN, CIN and total GI represents a powerful tool for biological tumor stratification, risk assessment and understanding the pathobiological spectrum of the disease. Full article
(This article belongs to the Section Genomics and Proteomics)
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17 pages, 4726 KB  
Article
Analytical Validation and Clinical Sensitivity of the Belay Summit™ 2.0 Cerebrospinal Fluid Liquid Biopsy Test—An Expanded Comprehensive Genomic Profiling Platform for Central Nervous System Malignancies
by Sakshi Khurana, Viriya Keo, Alexandra Larson, Vindhya Udhane, Jennifer N. Adams, Anthony Acevedo, Tarin Peltier, Daniel Sanchez, Brett A. Domagala, Samantha A. Vo, Kathleen Mitchell, Dean Ellis, Baymuhammet Muhammedov, Samer I. Al-Saffar, Kyle M. Hernandez, Chetan Bettegowda, Christopher Douville, Kala F. Schilter, Qian Nie and Honey V. Reddi
Cancers 2026, 18(2), 256; https://doi.org/10.3390/cancers18020256 - 14 Jan 2026
Cited by 8 | Viewed by 2045
Abstract
Background/Objectives: The latest National Comprehensive Cancer Network (NCCN) Central Nervous System (CNS) Guidelines recommend utilizing next-generation sequencing (NGS) to enable comprehensive genomic profiling (CGP) as the preferred approach for molecular characterization of central nervous system (CNS) malignancies. CNS malignancies present distinct challenges due [...] Read more.
Background/Objectives: The latest National Comprehensive Cancer Network (NCCN) Central Nervous System (CNS) Guidelines recommend utilizing next-generation sequencing (NGS) to enable comprehensive genomic profiling (CGP) as the preferred approach for molecular characterization of central nervous system (CNS) malignancies. CNS malignancies present distinct challenges due to the infeasibility of tissue-based testing for many patients and the restrictive nature of the blood–brain barrier (BBB) making plasma-based liquid biopsy an ineffective alternative. Recent advances in liquid biopsy have extended molecular testing beyond plasma to include cerebrospinal fluid (CSF), which serves as a valuable source for tumor-derived nucleic acids. Methods: The Belay Summit™ 2.0 is a high-throughput CGP assay capable of detecting multiple variant types, including single nucleotide variants (SNVs) and small insertion and deletions (Indels), copy number variations (CNVs), gene fusions, splice variants, and immunotherapy biomarkers such as microsatellite instability (MSI) and tumor mutational burden (TMB). This study details the analytical and clinical validation of Summit™ 2.0 to assess its technical performance and clinical sensitivity. Analytical validation was conducted using 68 specimens, demonstrating robust and reproducible detection of all variant types with 15 ng of CSF-derived total nucleic acid (tNA). Results: The analytical sensitivity of the Belay Summit™ 2.0 assay for SNVs and Indels was determined to be 96.7% with a 100% limit of detection (LoD) at a variant allele frequency of 0.3%. Clinical validity was evaluated across a cohort of 118 CSF specimens, including both primary and metastatic CNS tumors, demonstrating 96% sensitivity and 98% specificity. Conclusions: These findings support the use of the Belay Summit™ 2.0 assay for accurate and reproducible genomic profiling of CNS tumors using tumor-derived nucleic acids from CSF in patients for whom tissue-based testing is considered infeasible, unsafe, or not deemed by the prescribing physician to be clinically appropriate. Full article
(This article belongs to the Section Cancer Biomarkers)
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29 pages, 1038 KB  
Review
Targeting the MAPK Pathway in Brain Tumors: Mechanisms and Therapeutic Opportunities
by Dimitrios Vrachas, Elisavet Kosma, Angeliki-Ioanna Giannopoulou, Angeliki Margoni, Antonios N. Gargalionis, Elias A. El-Habr, Christina Piperi and Christos Adamopoulos
Cancers 2026, 18(1), 156; https://doi.org/10.3390/cancers18010156 - 2 Jan 2026
Cited by 1 | Viewed by 2576
Abstract
Central nervous system (CNS) tumors consist of a diverse set of malignancies that remain clinically challenging due to their biological complexity, high morbidity, and limited responsiveness to current therapies. A growing body of genomic evidence has revealed that dysregulation of the mitogen-activated protein [...] Read more.
Central nervous system (CNS) tumors consist of a diverse set of malignancies that remain clinically challenging due to their biological complexity, high morbidity, and limited responsiveness to current therapies. A growing body of genomic evidence has revealed that dysregulation of the mitogen-activated protein kinase (MAPK) signaling pathway is a recurrent and unifying characteristic across many pediatric and adult CNS tumor entities. Alterations affecting upstream receptor tyrosine kinases (RTKs), RAS GTPases, RAF kinases, and other associated regulators contribute to MAPK signaling pathway hyperactivation, shaping tumor behavior, therapy response and resistance. These aberrations ranging from hotspot mutations such as BRAF V600E and oncogenic fusions like BRAF–KIAA1549 are particularly enriched in gliomas and glioneuronal tumors, highlighting MAPK signaling as a key oncogenic driver. The expanding availability of molecularly targeted compounds, including selective inhibitors of RAF, MEK and ERK, has begun to transform treatment approaches for specific molecular subtypes. However, the clinical benefit of MAPK-directed therapies is frequently limited by restricted blood–brain barrier (BBB) penetration, intratumoral heterogeneity, parallel pathway reactivation, and an immunosuppressive tumor microenvironment (TME). In this review, we synthesize current knowledge on MAPK pathway alterations in CNS tumors and evaluate the therapeutic landscape of MAPK inhibition, with emphasis on approved agents, emerging compounds, combination strategies, and novel drug-delivery technologies. We also discuss mechanisms that undermine treatment efficacy and highlight future directions aimed at integrating MAPK-targeted therapy into precision-based management of brain tumors. Full article
(This article belongs to the Special Issue Insights from the Editorial Board Member)
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18 pages, 14304 KB  
Article
Consequences of Hypoxic Events, Necrosis, and Microvascular Density, in Astrocytoma IDH-Mutant, CNS WHO Grade 4
by Cristian Ionut Orasanu, Madalina Bosoteanu, Sorin Vamesu, Raluca Ioana Voda, Anamaria Sincu and Mariana Deacu
Med. Sci. 2026, 14(1), 6; https://doi.org/10.3390/medsci14010006 - 23 Dec 2025
Viewed by 1022
Abstract
Background/Objectives: Astrocytoma IDH-mutant CNS WHO grade 4 is a malignant tumor of the central nervous system characterized by tumor necrosis, microvascular proliferation, and/or homozygous CDKN2A/B deletion. This study aims to investigate the prognostic role of the consequences of hypoxic events leading to necrosis [...] Read more.
Background/Objectives: Astrocytoma IDH-mutant CNS WHO grade 4 is a malignant tumor of the central nervous system characterized by tumor necrosis, microvascular proliferation, and/or homozygous CDKN2A/B deletion. This study aims to investigate the prognostic role of the consequences of hypoxic events leading to necrosis and microvascular density, observing their associations with clinical-imaging parameters and morphogenetics. Methods: We performed a retrospective analysis over a 10-year period. Clinical and imaging data were collected from observation sheets and electronic databases. Six immunohistochemical markers and FISH testing were used to evaluate the prognosis and neoformation of blood vessels. Based on the whole slide image, the necrotic percentage was assessed, and the microvascular density was quantified. All data were statistically analyzed. Results: We identified 44 cases, with a mean age of 57.86 years. From a clinical perspective, advanced age, arterial hypertension, diabetes mellitus, and acute onset of clinical manifestations represent negative prognostic factors. In imaging, the increased rate of resectability is a protective factor, while the presence of residual volume and an increased residual volume have a negative impact on survival. The consequences of hypoxic events (tumor necrosis and microvascular density) are negative risk factors for survival. Added to these are p53 overexpression, loss of PTEN, deletion, and amplification of the CDKN2A gene. Conclusions: We observed that necrosis and increased microvascular density resulting from microvascular proliferation are both defining features of the tumor and impact patient prognosis and survival. In addition, they induce or are associated with other essential changes (p53, PTEN, CDKN2A) that promote tumor aggressiveness. Full article
(This article belongs to the Section Neurosciences)
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19 pages, 6531 KB  
Article
The Toxic Effect and Mechanism of TMZ Combined with siHOXB9 on Glioblastoma Cells
by Xiaoyu Liu, Yunfei Liu, Wenxuan Li, Qianwen Wang, Ziyu Huang, Xiyu Cheng, Qiong Yan and Honggang Hu
Int. J. Mol. Sci. 2026, 27(1), 79; https://doi.org/10.3390/ijms27010079 - 21 Dec 2025
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Abstract
Glioblastoma (GBM) represents a highly invasive primary malignant tumor within the central nervous system (CNS). Temozolomide (TMZ), a first-line chemotherapy agent for GBM treatment, has significant limitations, including drug resistance, poor water solubility, a short half-life, and notable toxic side effects. The innovation [...] Read more.
Glioblastoma (GBM) represents a highly invasive primary malignant tumor within the central nervous system (CNS). Temozolomide (TMZ), a first-line chemotherapy agent for GBM treatment, has significant limitations, including drug resistance, poor water solubility, a short half-life, and notable toxic side effects. The innovation of the TMZ dosage form is pivotal for enhancing its therapeutic efficacy. In this study, solid lipid nanoparticles (SLN) loaded with Angiopep-2 (A2) and TMZ (TMZ-A2SLN), a nanopolymer featuring a solid spherical morphology and a particle size of approximately 100 nm, were constructed. The combined effect of TMZ-A2SLN and small-interfering RNA (siRNA) that can knock down the expression of the HOXB9 gene (siHOXB9) augmented the sensitivity of the glioma cell line U251 to TMZ. Under the combined effect, the viability of U251 cells was reduced by 77%. Meanwhile, the mortality rate increased by approximately 45%, and the cell apoptosis rate rose by around 36%. The number of cells arrested in the G2/M and S phases rose. Proteomic analysis indicates that TMZ-A2SLN might be implicated in the pro-inflammatory signaling cascade, tumor migration, invasion, and angiogenesis during the treatment of glioma cells. Moreover, HOXB9 may play a crucial regulatory role in the PPAR signaling pathway, the neural signaling pathway, the phospholipase D signaling pathway, the IL-17 signaling pathway, mineral absorption, and other pathways during glioma cell treatment. Full article
(This article belongs to the Section Molecular Neurobiology)
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