Publications by authors named "Abdullaev Z"

Atypical teratoid/rhabdoid tumor (ATRT) is an aggressive, malignant embryonal tumor with dismal long-term survival despite aggressive multimodal therapy. While this tumor typically presents in infancy or early childhood, there are published case reports of adult-onset ATRT. Making prognostic conclusions or therapeutic decisions for this older patient population remains challenging due to the paucity of these reports.

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Astrocytomas that harbor recurrent genomic alterations in MYB or MYBL1 are a group of Pediatric-type diffuse low-grade gliomas that were newly recognized in the 2021 WHO Classification of Tumors of the Central Nervous System. These tumors are described in the WHO classification as harboring fusions in MYB or MYBL1. In this report, we examine 14 consecutive cases in which a MYB or MYBL1 alteration was identified, each with diagnostic confirmation by genome-wide DNA methylation profiling (6 Angiocentric gliomas and 8 Diffuse astrocytomas, MYB- or MYBL1-altered), for their specific genomic alterations in these genes.

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  • The study focuses on malignant transformation (MT) in IDH-mutant gliomas, emphasizing the need to understand the mechanisms behind MT and intervene at early stages.
  • Researchers created two 3D cell models (403L and 403H) from the same patient's IDH-mutant glioma, representing low-grade (LGG) and high-grade (HGG) tumors, allowing for comparison of genetic and metabolic changes.
  • The findings indicate that the high-grade model (403H) is more aggressive, showing increased cell invasion and distinct metabolic alterations, providing a new framework for investigating MT in gliomas.
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  • The Open Pediatric Cancer (OpenPedCan) Project builds upon the earlier Open Pediatric Brain Tumor Atlas, analyzing data from over 6,000 pediatric cancer patients and providing a vast multi-omic dataset from various tumor types.
  • The project integrates multiple genomic and proteomic data types, allowing researchers to access harmonized data through platforms like GitHub, CAVATICA, and AWS.
  • OpenPedCan enhances molecular subtyping of tumors by incorporating methylation information, facilitating research that supports more accurate diagnosis and treatment strategies in pediatric cancer.
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  • Papillary tumor of the pineal region (PTPR) is a rare and unique tumor characterized by specific molecular and histopathologic features, with limited prior research on its variations and clinical presentations.
  • In a study of 76 confirmed PTPR cases, researchers identified two main methylation groups (PTPR-A and PTPR-B) and further classified PTPR-B into two subtypes (B1 and B2) based on DNA methylation profiles and genomic variations.
  • Clinical outcomes revealed that nearly half of the patients experienced tumor progression, with significant differences in outcomes among the identified subtypes, highlighting the tumor's molecular diversity and potential for recurrence.
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  • It’s important to diagnose brain tumors accurately so patients can get the right treatment.
  • Scientists created a new tool called DEPLOY that uses deep learning to help classify different types of brain tumors from images of the tumor slides.
  • DEPLOY has shown it can predict tumor types with a very high accuracy, helping doctors diagnose patients faster and more reliably.
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  • Anaplastic ganglioglioma (GG) is a rare tumor with glial components that can become more aggressive over time, particularly in pediatric patients aged 9-16.
  • In a study of three patients with BRAF p.V600E mutations, initial low-grade tumors transformed into higher-grade tumors at recurrence after a period ranging from 20 months to 7 years.
  • The research suggests that the progression to a more malignant state in gangliogliomas may involve the inactivation of the CDKN2A/B genes, even though these deletions were not found in all initial tumors.
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In the evolving landscape of ependymoma classification, which integrates histological, molecular, and anatomical context, we detail a rare case divergent from the usual histopathological spectrum. We present the case of a 37-year-old man with symptomatic spinal cord compression at the L3-L4 level. Neuroradiological evaluation revealed an intradural, encapsulated mass.

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Glioblastoma is universally fatal and characterized by frequent chromosomal copy number alterations harboring oncogenes and tumor suppressors. In this study, we analyzed exome-wide human glioblastoma copy number data and found that cytoband 6q27 is an independent poor prognostic marker in multiple data sets. We then combined CRISPR-Cas9 data, human spatial transcriptomic data, and human and mouse RNA sequencing data to nominate as a potential haploinsufficient tumor suppressor in the 6q27 region.

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  • CNS embryonal tumors are diverse high-grade cancers, and recent advancements in profiling have identified new molecular subtypes, including those with the BRD4::LEUTX fusion.
  • A study characterized 9 cases of CNS tumors with this fusion, revealing key features such as young patient age, large tumor size, and spread to the cerebrospinal fluid, alongside distinct biological behaviors.
  • The tumors displayed high-grade characteristics and specific gene expressions, indicating a unique methylation signature that warrants further investigation through larger studies for a deeper understanding of this tumor type.
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Diffuse midline glioma, H3 K27-altered (DMG-H3 K27) is an aggressive group of diffuse gliomas that predominantly occurs in pediatric patients, involves midline structures, and displays loss of H3 p.K28me3 (K27me3) expression by immunohistochemistry and characteristic genetic/epigenetic profile. Rare examples of a diffuse glioma with an H3 p.

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Purpose: Although fewer than 5% of high-grade gliomas (HGG) are BRAF-V600E mutated, these tumors are notable as BRAF-targeted therapy shows efficacy for some populations. The purpose of this study was to evaluate response to the combination of encorafenib with binimetinib in adults with recurrent BRAF-V600-mutated HGG.

Patients And Methods: In this phase 2, open-label, Adult Brain Tumor Consortium (ABTC) trial (NCT03973918), encorafenib and binimetinib were administered at their FDA-approved doses continuously in 28-day cycles.

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Background: Glioblastoma (GBM) is the most aggressive primary brain malignancy with <45% living a year beyond diagnosis. Previously published investigations of long-term survivors (LTS) provided clinical data but rarely incorporated a comprehensive clinical and molecular analysis. Herein, we identify clinical, imaging, molecular, and outcome features for 23 GBM-LTS patients and compare them with a matched cohort of short-term survivors (STS).

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Microarray-based methylation profiling has emerged as a valuable tool for refining diagnoses and revealing novel tumor subtypes, particularly in central nervous system tumors. Despite the increasing adoption of this technique in clinical genomic laboratories, no technical standards have been published in establishing minimum criteria for test validation. A working group with experience and expertise in DNA-based methylation profiling tests on central nervous system tumors collaborated to develop practical discussion points and focus on important considerations for validating this test in clinical laboratory settings.

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Mutations in five canonical Ras pathway genes (NF1, NRAS, KRAS, PTPN11 and CBL) are detected in nearly 90% of patients with juvenile myelomonocytic leukemia (JMML), a frequently fatal malignant neoplasm of early childhood. In this report, we describe seven patients diagnosed with SH2B3-mutated JMML, including five patients who were found to have initiating, loss-of-function mutations in the gene. SH2B3 encodes the adaptor protein LNK, a negative regulator of normal hematopoiesis upstream of the Ras pathway.

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Diagnostic classification of soft tissue tumors is based on histology, immunohistochemistry, genetic findings, and radiologic and clinical correlations. Recently, a sarcoma DNA methylation classifier was developed, covering 62 soft tissue and bone tumor entities. The classifier is based on large-scale analysis of methylation sites across the genome.

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Synovial sarcoma is a relatively common soft tissue tumor characterized by highly specific t(X;18)(p11;q11) translocation resulting in the fusion of SS18 with members of SSX gene family. Typically, detection of SS18 locus rearrangement by fluorescence in situ hybridization or SS18 :: SSX fusion transcripts confirms the diagnosis. More recently, immunohistochemistry (IHC) for SS18-SSX chimeric protein (E9X9V) and C-terminus of SSX (E5A2C) showed high specificity and sensitivity for synovial sarcoma.

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