Targeting neovascularization in glioblastoma (GBM) is hampered by poor understanding of the underlying mechanisms and unclear linkages to tumour molecular landscapes. Here we report that different molecular subtypes of human glioma stem cells (GSC) trigger distinct endothelial responses involving either angiogenic or circumferential vascular growth (vasectasia). The latter process is selectively triggered by mesenchymal (but not proneural) GSCs and is mediated by a subset of extracellular vesicles (EVs) able to transfer EGFR/EGFRvIII transcript to endothelial cells. Inhibition of the expression and phosphorylation of EGFR in endothelial cells, either pharmacologically (Dacomitinib) or genetically (gene editing), abolishes their EV responses in vitro and disrupts vasectasia in vivo. Therapeutic inhibition of EGFR markedly extends anticancer effects of VEGF blockade in mice, coupled with abrogation of vasectasia and prolonged survival. Thus, vasectasia driven by intercellular transfer of oncogenic EGFR may represent a new therapeutic target in a subset of GBMs. Vasectasia is a newly described, non-angiogenic form of blood vessel formation induced by mesenchymal glioblastoma cells, and driven by endothelial cell responses to extracellular vesicles containing oncogenic EGFR.
Giant cell tumor of the bone (GCTB) is a rare primary bone neoplasm, representing about 5% of all primary bone tumors. Most GCTBs are found in the epiphysis of long bones, with only 2% of GCTBs involving the skull. In recent years, the receptor activator of nuclear factor Kappa ligand monoclonal antibody denosumab has been demonstrated as a promising therapeutic option for GCTB; however, this is an evolving field. We present a case of a 57-year-old female with a rare GCTB in the right orbit and sinuses, originally thought to be an aneurysmal bone cyst. Her symptoms included proptosis, intermittent blurry vision, sinus congestion, and frontal headaches. After excision, the tumor recurred within 18 months. Upon repeat excision, a diagnosis of GCTB was made. The patient started denosumab therapy and had no tumor growth over the ensuing 2 years, with stability of symptoms and clinical signs on follow-up.
Searchable abstracts of presentations at key conferences in endocrinology ISSN 1470-3947 (print) | ISSN 1479-6848 (online)
Supplementary Figure 2. Summary of focal copy number alterations detected by GISTIC2 in spinal Grade II and Myxopapillary Ependymoma.
Supplementary Figure S6. Foretinib and MET knockdown inhibits proliferation, migration and invasion of medulloblastoma cells
Supplementary Figures 1-5 from An Epigenetic Genome-Wide Screen Identifies SPINT2 as a Novel Tumor Suppressor Gene in Pediatric Medulloblastoma
Supplementary Figure 4. Metabolic protein expression analysis supporting Figure 4 along with lactate measurements in normal spinal tissue, Grade II spinal ependymoma, and myxopapillary ependymoma.
Supplementary Figure S1. Subgroup-specific copy number aberrations in primary medulloblastomas
Supplementary Table 1 - 7. Supplementary Table 1: Clinical and histopathological data associated with all spinal ependymomas analyzed in this study, along with molecular subgroup assignment; Supplementary Table 2: Table of all antibodies used in this study, their commercial sources, and dilutions used; Supplementary Table 3: Table of differentially expressed genes between spinal grade II and myxopapillary ependymoma; Supplementary Table 4: Summary of focal amplifications detected in spinal ependymoma by GISTIC2; Supplementary Table 5: Summary of focal deletions detected in spinal ependymoma by GISTIC2; Supplementary Table 6: List of significant pathways enriched by Gene Set Enrichment Analysis in spinal grade II ependymoma; Supplementary Table 7: List of significant pathways enriched by Gene Set Enrichment Analysis in spinal myxopapillary ependymoma
Supplementary Figure S5. PDGFRÃ? pathway inhibition in foretinib treated Daoy and D425 medulloblastoma cells
Supplementary Figure 7 from An Epigenetic Genome-Wide Screen Identifies SPINT2 as a Novel Tumor Suppressor Gene in Pediatric Medulloblastoma
Supplementary Figure 3. Analysis of HIF-1a expression in Spinal Grade II versus Myxopapillary Ependymoma in additional to single sample GSEA analysis of HIF1a transcriptional targets.
Supplementary Figure 6 from An Epigenetic Genome-Wide Screen Identifies SPINT2 as a Novel Tumor Suppressor Gene in Pediatric Medulloblastoma
Supplementary Figure 1. Unsupervised consensus hierarchical clustering and non-negative matrix factorization of 35 spinal ependymoma gene expression signatures from a rank 2 to 4 classification.
We report on a 57 year old female patient who presented in acute respiratory failure with severe generalized weakness. She was previously misdiagnosed for over three decades as polymyositis. She was treated with enzyme replacement therapy (ERT) for over five years, after being diagnosed with late onset Pompe Disease (LOPD). She returned to independent living with the use of non invasive ventilation at nights. ERT should be considered in the management of patients with advanced LOPD and the effects of ERT closely monitored.
Abstract: Whipple disease (WD) is a rare bacterial infectious disease that is classically characterized by years of arthralgia, followed by malabsorption, diarrhea, and weight loss. However, WD may manifest in virtually any organ system, and patients with WD rarely develop subcutaneous erythema nodosum-like lesions. We report a case of a 51-year-old man diagnosed with WD who subsequently developed widely distributed erythematous subcutaneous nodules after 5 months of antibiotic therapy.
PURPOSE:We sought to investigate clinical outcomes of relapsed medulloblastoma and to compare molecular features between patient-matched diagnostic and relapsed tumors. METHODS:Children and infants enrolled on either SJMB03 (NCT00085202) or SJYC07 (NCT00602667) trials who experienced medulloblastoma relapse were analyzed for clinical outcomes, including anatomic and temporal patterns of relapse and postrelapse survival. A largely independent, paired molecular cohort was analyzed by DNA methylation array and next-generation sequencing. RESULTS:A total of 72 of 329 (22%) SJMB03 and 52 of 79 (66%) SJYC07 patients experienced relapse with significant representation of Group 3 and wingless tumors. Although most patients exhibited some distal disease (79%), 38% of patients with sonic hedgehog tumors experienced isolated local relapse. Time to relapse and postrelapse survival varied by molecular subgroup with longer latencies for patients with Group 4 tumors. Postrelapse radiation therapy among previously nonirradiated SJYC07 patients was associated with long-term survival. Reirradiation was only temporizing for SJMB03 patients. Among 127 patients with patient-matched tumor pairs, 9 (7%) experienced subsequent nonmedulloblastoma CNS malignancies. Subgroup (96%) and subtype (80%) stabilities were largely maintained among the remainder. Rare subgroup divergence was observed from Group 4 to Group 3 tumors, which is coincident with genetic alterations involving MYC, MYCN, and FBXW7. Subgroup-specific patterns of alteration were identified for driver genes and chromosome arms. CONCLUSION:Clinical behavior of relapsed medulloblastoma must be contextualized in terms of up-front therapies and molecular classifications. Group 4 tumors exhibit slower biological progression. Utility of radiation at relapse is dependent on patient age and prior treatments. Degree and patterns of molecular conservation at relapse vary by subgroup. Relapse tissue enables verification of molecular targets and identification of occult secondary malignancies.