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Educational Case: Histologic and Molecular Features of Diffuse Gliomas

Zhang, Sarah; William, Christopher
The following fictional cases are intended as a learning tool within the Pathology Competencies for Medical Education (PCME), a set of national standards for teaching pathology. These are divided into three basic competencies: Disease Mechanisms and Processes, Organ System Pathology, and Diagnostic Medicine and Therapeutic Pathology. For additional information, and a full list of learning objectives for all three competencies, see http://journals.sagepub.com/doi/10.1177/2374289517715040.1.
PMCID:7133074
PMID: 32284966
ISSN: 2374-2895
CID: 4401682

Spinal epidural lipomatosis with progressive myelopathy in patients with Type 1 Diabetes Mellitus: a novel association? [Meeting Abstract]

Kister, Ilya; Charlson, Robert; Fatterpekar, Girish; Smith, Michael; Shapiro, Maksim; William, Christopher; Lotan, Itay
ISI:000536058004221
ISSN: 0028-3878
CID: 4561452

AN UNUSUAL PRESENTATION OF A PEDIATRIC MIDLINE H3K27M-MUTANT TUMOR WITH DISSEMINATED CRANIOSPINAL LEPTOMENINGEAL DISEASE [Meeting Abstract]

Navarro, Ralph; Golub, Danielle; Hill, Travis; McQuinn, Michelle; Kim, Nora; Tang, Karen; Livingston, Stephanie; Cooper, Benjamin; Gardner, Sharon; Nicolaides, Theodore; William, Christopher; Zagzag, David; Hidalgo, E. Teresa
ISI:000590061300725
ISSN: 1522-8517
CID: 4688202

GOPC-ROS1 Fusion Due to Microdeletion at 6q22 Is an Oncogenic Driver in a Subset of Pediatric Gliomas and Glioneuronal Tumors

Richardson, Timothy E; Tang, Karen; Vasudevaraja, Varshini; Serrano, Jonathan; William, Christopher M; Mirchia, Kanish; Pierson, Christopher R; Leonard, Jeffrey R; AbdelBaki, Mohamed S; Schieffer, Kathleen M; Cottrell, Catherine E; Tovar-Spinoza, Zulma; Comito, Melanie A; Boué, Daniel R; Jour, George; Snuderl, Matija
ROS1 is a transmembrane receptor tyrosine kinase proto-oncogene that has been shown to have rearrangements with several genes in glioblastoma and other neoplasms, including intrachromosomal fusion with GOPC due to microdeletions at 6q22.1. ROS1 fusion events are important findings in these tumors, as they are potentially targetable alterations with newer tyrosine kinase inhibitors; however, whether these tumors represent a distinct entity remains unknown. In this report, we identify 3 cases of unusual pediatric glioma with GOPC-ROS1 fusion. We reviewed the clinical history, radiologic and histologic features, performed methylation analysis, whole genome copy number profiling, and next generation sequencing analysis for the detection of oncogenic mutation and fusion events to fully characterize the genetic and epigenetic alterations present in these tumors. Two of 3 tumors showed pilocytic features with focal expression of synaptophysin staining and variable high-grade histologic features; the third tumor aligned best with glioblastoma and showed no evidence of neuronal differentiation. Copy number profiling revealed chromosome 6q22 microdeletions corresponding to the GOPC-ROS1 fusion in all 3 cases and methylation profiling showed that the tumors did not cluster together as a single entity or within known methylation classes by t-Distributed Stochastic Neighbor Embedding.
PMID: 31626289
ISSN: 1554-6578
CID: 4140722

Familial X-Linked Acrogigantism: Postnatal Outcomes and Tumor Pathology in a Prenatally Diagnosed Infant and His Mother

Wise-Oringer, Brittany K; Zanazzi, George J; Gordon, Rebecca J; Wardlaw, Sharon L; William, Christopher; Anyane-Yeboa, Kwame; Chung, Wendy K; Kohn, Brenda; Wisoff, Jeffrey H; David, Raphael; Oberfield, Sharon E
CONTEXT/BACKGROUND:X-linked acrogigantism (X-LAG), a condition of infant-onset acrogigantism marked by elevated GH, IGF-1, and prolactin (PRL), is extremely rare. Thirty-three cases, including three kindreds, have been reported. These patients have pituitary adenomas that are thought to be mixed lactotrophs and somatotrophs. CASE DESCRIPTION/METHODS:The patient's mother, diagnosed with acrogigantism at 21 months, underwent pituitary tumor excision at 24 months. For over 30 years, stable PRL, GH, and IGF-1 concentrations and serial imaging studies indicated no tumor recurrence. During pre-conception planning, X-LAG was diagnosed: single-nucleotide polymorphism (SNP) microarray showed chromosome Xq26.3 microduplication. After conception, SNP microarray on a chorionic villus sample showed the same microduplication in the fetus, confirming familial X-LAG. The infant grew rapidly with rising PRL, GH, and IGF-1 concentrations and an enlarging suprasellar pituitary mass, despite treatment with bromocriptine. At 15 months, he underwent tumor resection. The pituitary adenoma resembled the mother's pituitary adenoma, with tumor cells arranged in trabeculae and glandular structures. In both cases, many tumor cells expressed PRL, GH, and PIT1. Furthermore, the tumor expressed other lineage-specific transcription factors, as well as SOX2 and OCT4, demonstrating the multipotentiality of X-LAG tumors. Both showed an elevated Ki-67 proliferation index-5.6% (mother) and 8.5% (infant)-the highest reported in X-LAG. CONCLUSIONS:This is the first prenatally diagnosed case of X-LAG. Clinical follow-up and biochemical evaluation have provided insight into the natural history of this disease. Expression of stem cell markers and several cell lineage-specific transcription factors suggests that these tumors are multipotential.
PMID: 31166600
ISSN: 1945-7197
CID: 3922962

Amyloid Precursor Protein Is Required To Permit And To Limit Cortical Plasticity In Vivo [Meeting Abstract]

William, Christopher; Stern, Matthew; Pei, Xuewei; Saqran, Lubna; Frosch, Matthew; Hyman, Bradley
ISI:000434064400032
ISSN: 0022-3069
CID: 3156202

Concurrent LETM and nerve root enhancement in spinal neurosarcoid: A case series

Deng, Pojen; Krasnozhen-Ratush, Olga; William, Christopher; Howard, Jonathan
Spinal neurosarcoidosis is a rare form of neurosarcoid which can be challenging to diagnose given its clinical or radiographic findings are often indistinguishable from other causes of spinal demyelinating disease. We present a series of three patients with spinal neurosarcoid, all of whom demonstrated concurrent longitudinally enhancing transverse myelitis as well as spinal nerve root enhancement. These findings may be suggestive of spinal neurosarcoid and may help clinicians make the diagnosis as well as reduce the need for invasive biopsy.
PMID: 29720030
ISSN: 1477-0970
CID: 3068032

Activity-Dependent Dysfunction in Visual and Olfactory Sensory Systems in Mouse Models of Down Syndrome

William, Christopher M; Saqran, Lubna; Stern, Matthew A; Chiang, Charles L; Herrick, Scott P; Rangwala, Aziz; Albers, Mark W; Frosch, Matthew P; Hyman, Bradley T
Activity-dependent synaptic plasticity plays a critical role in the refinement of circuitry during postnatal development and may be disrupted in conditions that cause intellectual disability, such as Down syndrome (DS). To test this hypothesis, visual cortical plasticity was assessed in Ts65Dn mice that harbor a chromosomal duplication syntenic to human chromosome 21q. We find that Ts65Dn mice demonstrate a defect in ocular dominance plasticity (ODP) following monocular deprivation. This phenotype is similar to that of transgenic mice that express amyloid precursor protein (APP), which is duplicated in DS and in Ts65DN mice; however, normalizing APP gene copy number in Ts65Dn mice fails to rescue plasticity. Ts1Rhr mice harbor a duplication of the telomeric third of the Ts65Dn-duplicated sequence and demonstrate the same ODP defect, suggesting a gene or genes sufficient to drive the phenotype are located in that smaller duplication. In addition, we find that Ts65Dn mice demonstrate an abnormality in olfactory system connectivity, a defect in the refinement of connections to second-order neurons in the olfactory bulb. Ts1Rhr mice do not demonstrate a defect in glomerular refinement, suggesting that distinct genes or sets of genes underlie visual and olfactory system phenotypes. Importantly, these data suggest that developmental plasticity and connectivity are impaired in sensory systems in DS model mice, that such defects may contribute to functional impairment in DS, and that these phenotypes, present in male and female mice, provide novel means for examining the genetic and molecular bases for neurodevelopmental impairment in model mice in vivoSIGNIFICANCE STATEMENT Our understanding of the basis for intellectual impairment in Down syndrome is hindered by the large number of genes duplicated in Trisomy 21 and a lack of understanding of the effect of disease pathology on the function of neural circuits in vivo This work describes early postnatal developmental abnormalities in visual and olfactory sensory systems in Down syndrome model mice, which provide insight into defects in the function of neural circuits in vivo and provide an approach for exploring the genetic and molecular basis for impairment in the disease. In addition, these findings raise the possibility that basic dysfunction in primary sensory circuitry may illustrate mechanisms important for global learning and cognitive impairment in Down syndrome patients.
PMCID:5637117
PMID: 28899917
ISSN: 1529-2401
CID: 2731822

Filling A Void: Creating a Systematic Approach to Examining Post Mortem Brains of Unexpected Child Deaths [Meeting Abstract]

Faustin, Arline; Reichard, Ross; Thomas, Cheddhi; Shepherd, Timothy; O'Connell, Brooke; Crandall, Laura; McGuone, Declan; William, Christopher; Snuderl, Matija; Wisniewski, Thomas; Devinsky, Orrin
ISI:000404906900140
ISSN: 1554-6578
CID: 2645132

Live Digital Telepathology Enables Rapid Remote Frozen Section Diagnosis and Cytology Adequacy Assessment by Subspecialists [Meeting Abstract]

Kane, Yehonatan; Darvishian, Farbod; Deng, Fang-Ming; Moreira, Andre L; Simsir, Aylin; William, Christopher; Snuderl, Matija
ISI:000393724402076
ISSN: 1530-0307
CID: 2506802