A national clinical trial found that abemaciclib, an oral cancer drug, may slow tumor growth in patients with aggressive meningiomas with specific genetic mutations. The trial showed promising results, with a median progression-free survival of 10 months and a median overall survival of 29 months.
The Rice Brain Institute has awarded seed grants to four collaborative projects that unite Rice faculty with clinicians and scientists across the Texas Medical Center. The grants support innovative research in brain science, mental health, and neurological disease.
Researchers found that reactivating and maintaining p53 using idasantulin and selinexor significantly extended survival in ATRT and MRT mouse models, reducing tumor burden and increasing survival rates. The study's findings provide a strong rationale for investigating this treatment approach for rhabdoid tumors.
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Researchers at the University of Plymouth investigate why drugs used to treat other tumours are ineffective against NF2-related schwannoma and meningioma tumours. They explore repurposing clinically tested cancer drugs to target MDR mechanisms, which may lead to effective therapies for patients with these tumours.
Researchers have identified two proteins that allow cancer cells to evade destruction by brain immune cells, known as microglia. By removing these proteins, microglia play a key role in eliminating cancer cells during the early stage of their arrival in the brain.
Researchers at Mass General Brigham developed a modified herpes simplex virus that stimulates the immune system to attack glioblastoma cells, increasing T-cell and natural killer cell responses. The virus, engineered to recognize markers found on glioblastoma cells, also increases overall survival in preclinical models.
Researchers at the University of Plymouth will receive a £2.8 million funding boost to accelerate new treatments for low-grade brain tumors. The center aims to deepen understanding and translate knowledge into life-changing therapies.
Researchers at MD Anderson have discovered bacterial genetic and cellular elements within brain tumor cells, potentially influencing tumor behavior. Inflammation may also drive the earliest stages of lung cancer, with targeting proinflammatory pathways emerging as a potential early intervention approach
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A new study found that disrupted brain fluid circulation, even in regions far from the tumor, can forecast poorer survival rates in glioblastoma patients. The researchers used MRI scans to measure fluid movement and accumulation, revealing a link between impaired glymphatic function and shorter survival.
Researchers analyzed 29 new and 22 previously reported cases of PCNSL involving the ventricles, finding different clinical symptoms such as headache, dizziness, and vision impairment. The study suggests that despite its unusual location, ventricular PCNSL behaves like other forms of brain lymphoma, with a recommended treatment strategy...
A recent UK study has highlighted the need for equitable investment and adoption of new innovations in brain tumor care. The research team found that genomic testing has expanded rapidly but many services are struggling to keep pace, leading to regional inequalities in access to advanced treatments.
The study identified two major factors that improve survival for children with IHG: achieving a complete surgical resection and cancer-directed adjuvant treatment. Early surgery in infants was fraught with risks of bleeding and early oncologic death, highlighting the need for strategies to minimize surgical morbidity.
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Researchers studied clinical features and treatment strategies for managing postoperative space-occupying cysts in brain tumor surgical sites. External drainage using an Ommaya reservoir or direct percutaneous puncture drainage showed favorable results, reducing cyst size and improving patient outcomes.
Researchers have discovered a previously overlooked brain tumor subtype with strong immune activity but poorer survival rates. An AI framework has been developed to assist doctors in accurately identifying this subtype, enabling more personalized patient care.
A Harvard Medical School-led research team developed an AI tool called PICTURE that can reliably tell apart glioblastoma and primary central nervous system lymphoma during surgery. The tool distinguishes between the two cancers with near-perfect accuracy, reducing errors in diagnosis and guiding critical treatment decisions.
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Researchers from Korea University mapped the evolutionary trajectory of meningiomas at single-cell resolution, revealing profound shifts in proliferative programs and tumor–immune interactions. The study identified COL6A3 as a central player driving recurrence and treatment resistance.
A recent study by Mass General Brigham researchers found that adults with a history of moderate-to-severe traumatic brain injuries are at a higher risk of developing malignant brain tumors. The study evaluated data from over 75,000 people and discovered a significant association between TBI and increased tumor development.
Researchers identified a key metric, acoustic emission dose, to adjust ultrasound power and open the blood-brain barrier for delivering drugs in patients with high-grade gliomas. This allows for reliable treatment of brain cancer by bypassing the protective blood-brain barrier.
A European study analyzed data from over 30,000 children with brain tumors, providing a clear overview of their survival outcomes. The study found that differences in survival rates between countries are smaller than previously thought, suggesting improved access to similar treatments across Europe.
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Researchers compared CECS and EES techniques for treating giant and irregular pituitary tumors. The study found that CECS resulted in a higher gross tumor removal rate (66%) and lower postoperative bleeding rates compared to EES.
Researchers at MD Anderson have made significant breakthroughs in cancer treatment, including improved outcomes for elderly patients with IDH-mutant AML who are not eligible for intensive chemotherapy. Additionally, new targeted therapies have been approved as frontline treatments, while pre-surgical radiation therapy may offer an alte...
Researchers found that 2.7% of 70-year-old women had meningiomas, a type of tumor on the meninges outside the brain tissue. The study emphasizes the importance of diligence and careful consideration in managing these tumors, which are often benign and grow slowly.
The American Society for Radiation Oncology (ASTRO) has updated its guideline on radiation therapy for high-grade diffuse gliomas, the most common primary brain tumor in adults. The new guideline provides evidence-based recommendations for multidisciplinary treatment and addresses optimal radiation dosing, fractionation, and techniques.
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Researchers investigated the clinical outcomes of concurrent TTFields therapy with CRT in patients with newly diagnosed glioblastoma, finding no significant difference in survival outcomes compared to adjuvant therapy. The study also showed comparable safety profiles for both treatment groups.
Researchers at Texas A">&M found that dogs with meningiomas live longer with radiation therapy than surgery. Radiation nearly doubles average survival time in dogs with brain tumors, while surgery had an average of about 10 months.
Researchers at Michigan Medicine have created nanodiscs that can target cholesterol levels in glioblastoma, starving cancer cells and increasing survival rates of treated mice. The combined treatment with radiation therapy was able to preserve normal brain structure and elicited an immunological memory.
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Researchers discovered a novel line of communication between metastatic medulloblastoma and leptomeningeal fibroblasts, facilitating recruitment and reprogramming to support tumor growth. Disrupting this communication may offer a potential treatment opportunity for this devastating disease.
Researchers have found that targeting PGM3 can help stop the growth of glioblastoma, a fast-growing brain tumor. By blocking this enzyme, tumors can be effectively suppressed.
Scientists at St. Jude Children's Research Hospital discovered FOXR2 activation in multiple pediatric CNS tumor types, including high-grade gliomas and pineoblastomas, with significantly different clinical outcomes. The study highlights the importance of combining molecular findings with other diagnostic approaches to improve treatment...
The Ralph L. Sacco Scholarships in Brain Health support research into vascular disease's impact on cognitive decline, dementia, and brain health. Researchers Hortense Triniac and Katy Walsh will study protein interactions to reduce stroke risk and investigate cerebral amyloid angiopathy.
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Researchers found that combining imipridones with radiation therapy and temozolomide slowed glioblastoma growth and prolonged survival in mice. The treatment also boosted immune responses and suppressed MGMT protein expression, making it more effective.
Recent research reveals that avapritinib, a PDGFRA inhibitor, demonstrates potent activity against pediatric high-grade glioma tumors with PDGFRA alterations. Clinical trials in patients showed an initial clinical response and improved survival rates, suggesting the potential for avapritinib as a therapeutic option.
Researchers at UT Health San Antonio have discovered a way to delay or even block recurrence of the deadliest brain cancer after radiation by targeting senescent cells with experimental 'senolytic' drugs. This approach shows promise in preventing tumor growth and improving patient survival.
Researchers developed a new diagnostic platform that classifies brain tumors based on the body's cancer-fighting immune response. The approach tailors treatment options to each patient's unique immune profile, offering improved diagnostics and potential for immunotherapies to revolutionize childhood leukemia treatments.
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Researchers identified the prion protein as a key player in the progression of glioblastoma, a type of brain tumor. The study found that blocking the production of this protein using genetic editing reduced the ability of tumor stem cells to proliferate and invade tissues.
Researchers found that suppressing ZNF638 triggers an antiviral immune response in glioblastoma patients, making them more susceptible to treatment. This finding offers a potential new treatment strategy for the disease, which has remained challenging despite recent advances in immunotherapy.
Researchers identified PDGFRA as a promising therapeutic target for pediatric high-grade gliomas. Inhibition of the PDGFRA signaling pathway leads to tumor cell death and has shown potential in laboratory and animal models, as well as initial clinical experience with avapritinib therapy.
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Researchers found that avapritinib decreases aggressive gliomas in animal models and in an initial cohort of patients with high-grade glioma. The drug targets the PDGFRA gene, which is commonly mutated in this type of cancer.
Researchers developed a new technique to identify aggressive medulloblastoma in children, allowing doctors to tailor treatments and reduce unnecessary side effects. The MYC test can be performed in any pathology lab worldwide, providing faster and more accurate care for young patients with brain tumours.
A new study by Mass General Brigham researchers has found a link between genetic mutations and toxin exposure in firefighters' brain tumors. The study identified a unique pattern of genetic mutations, known as a mutational signature, in many firefighter samples, especially those who had spent more years firefighting.
A new drug formulation called Rhenium Obisbemeda has been shown to significantly extend the median survival and progression-free time of glioblastoma patients, with a median overall survival time of 17 months. The treatment, which uses convection-enhanced delivery, shows promise as a potential cure for this deadly brain tumor.
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A new study reveals that radiotherapy has opposite effects on glioblastoma multiforme (GBM) and low-grade gliomas (LGG), with GBM patients living longer after treatment. The study highlights the need for personalized treatment approaches based on genetic and molecular characteristics to improve survival outcomes.
A new study finds that dexamethasone, a commonly prescribed anti-swelling drug, can significantly reduce the body's immune response to brain cancer for weeks after its last dose. This effect is stronger with higher dosages and may impact immunotherapy treatments.
Researchers at UCSF have identified unique, cancer-specific proteins created through mistakes in RNA splicing. These antigens could be used to create potent immunotherapies that recognize and attack hard-to-treat tumors. The discovery offers new hope for glioma patients and expands the number of targets available for cancer therapy.
Researchers at Dana-Farber Cancer Institute found that combining navtemadlin with DNA-damaging chemotherapy can increase efficacy in treating glioblastoma. Navtemadlin activates the p53 pathway, killing glioblastoma cells more effectively than other treatments.
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Three University of Arizona Health Sciences faculty members have received career development awards to support their research. Erika Austhof will study the role of weather and ecological drivers in salmonella transmission, while Kristin Huntoon will investigate a drug for treating glioblastomas. Celina Valencia will examine the link be...
A comprehensive review published in Brain Medicine maps out the extensive influence of reproductive hormones on neurological health and disease. The study examines how sex hormones affect a broad spectrum of neurological conditions, including vascular disorders, movement disorders, epilepsy, multiple sclerosis, and Alzheimer's disease.
Researchers found a biomarker, RNA Polymerase II (RNAPII), associated with tumor aggressiveness and recurrence in meningioma and breast cancers. The study developed a novel profiling technology, Cleavage Under Targeted Accessible Chromatin (CUTAC), to measure gene transcription activity from DNA, which predicted cancer outcomes.
Researchers identified specific non-frontal brain areas involved in speech intent, which can be used to distinguish between language production and perception. This study is a crucial step towards developing a brain-computer interface to treat patients with Broca's aphasia.
Scientists at German Cancer Research Center develop innovative method for growing individual brain tumors in lab, mimicking original structure and molecular properties. The IPTO model accurately predicts patient response to chemotherapy and other drugs, offering a valuable tool for personalized medicine.
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Researchers found that glioblastoma stem cells are co-localized with myeloid-derived suppressor cells, promoting tumor growth and aggressiveness. The study identified key molecules, such as IL-6 and IL-8, that attract and activate MDSCs, providing new potential therapeutic targets.
The Neuro-Oncology Translational Research Training Program aims to bridge laboratory discoveries and clinical applications in neuro-oncology, targeting glioblastoma and brain metastases. The program provides predoctoral and postdoctoral trainees with cutting-edge lab experience and mentorship across multiple disciplines.
A potential new therapy, CT-179, effectively targets tumor cells and disrupts cancer stem cells, leading to improved treatments and increased survival rates. The novel drug, developed by Curtana Pharmaceuticals, may bring new efficacy to brain tumor therapy.
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Researchers have developed a new gene therapy that targets aggressive brain cancer, glioblastoma, with a precise delivery system. The treatment uses a novel virus to deliver a targeting drug to cancer cells, achieving cure rates of up to 90% in mouse models.
Researchers discovered dasatinib inhibits growth of molecular subgroup EPN and activates anti-tumor immune responses. Treatment with dasatinib induced complete regression in 78% of animals, supporting clinical evaluation.
A recent study from Memorial Sloan Kettering Cancer Center sheds new light on the heterogeneity of GBM tumors and the role of cancer stem cells in tumor growth. The research identifies six distinct transcriptional states, each with its own unique gene signature, and provides guidance for future research to develop targeted therapies.
Researchers developed an AI model to detect brain cancer spread in surrounding tissue using MRI scans, showing 85-per-cent accuracy. This non-surgical method offers insights into patients' cancer without aggressive surgery, potentially improving treatment and survival.
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Researchers at Uppsala University found that Semliki Forest virus penetrates the central nervous system by entering the cerebrospinal fluid and binding to VLDLR before penetrating deeper into the brain. This finding could be used to develop the virus as an agent for treating brain cancer.
A study suggests targeting endocan, a protein produced by endothelial cells in blood vessels, could slow tumor growth and make glioblastoma more vulnerable to existing treatments. The discovery may lead to new strategies to combat glioblastoma, which has an average lifespan of just 12-15 months.
The study found that COVID-19-related disruptions led to frequent delays in investigations or treatments for children with brain tumors. Caregivers reported feeling traumatized by their experiences, including lack of access to healthcare facilities and social situations, which made it harder to evaluate their concerns.