280 results match your criteria: "Children's Hospital and Dana Farber Cancer Institute[Affiliation]"

Background: Super-enhancers are clusters of enhancer elements that play critical roles in the maintenance of cell identity. Current investigations on super-enhancers are centered on the established ones in static cell types. How super-enhancers are established during cell differentiation remains obscure.

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Dyskeratosis congenita (DC) is a rare inherited bone marrow failure and cancer predisposition syndrome caused by mutations in telomerase or telomeric proteins. Here, we report that zebrafish telomerase RNA () binds to specific DNA sequences of master myeloid genes and controls their expression by recruiting RNA Polymerase II (Pol II). Zebrafish harboring the CR4-CR5 domain mutation found in DC patients hardly interacted with Pol II and failed to regulate myeloid gene expression in vivo and to increase their transcription rates in vitro.

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The North American Pediatric Aplastic Anemia Consortium (NAPAAC) is a group of pediatric hematologist-oncologists, hematopathologists, and bone marrow transplant physicians from 46 institutions in North America with interest and expertise in aplastic anemia, inherited bone marrow failure syndromes, and myelodysplastic syndromes. The NAPAAC Bone Marrow Failure Diagnosis and Care Guidelines Working Group was established with the charge of harmonizing the approach to the diagnostic workup of aplastic anemia in an effort to standardize best practices in the field. This document outlines the rationale for initial evaluations in pediatric patients presenting with signs and symptoms concerning for severe aplastic anemia.

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Importance: Participants in clinical trials may experience benefits associated with new therapeutic strategies as well as tight adherence to best supportive care practices.

Objectives: To investigate whether participation in a clinical trial is associated with improved survival among children with neuroblastoma and investigate potential recruitment bias of patients in clinical trials.

Design, Setting, And Participants: This cohort study included pediatric patients with intermediate- or high-risk neuroblastoma in North American studies who were included in the International Neuroblastoma Risk Group Data Commons and who received a diagnosis between January 1, 1991, and March 1, 2020.

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The RUNX1 database (RUNX1db): establishment of an expert curated RUNX1 registry and genomics database as a public resource for familial platelet disorder with myeloid malignancy.

Haematologica

November 2021

Department of Genetics and Molecular Pathology, SA Pathology, Adelaide, SA, Australia; Centre for Cancer Biology, SA Pathology and University of South Australia, Adelaide, SA, Australia; School of Medicine, University of Adelaide, Adelaide, SA.

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Upregulation of GBP1 in thyroid primordium is required for developmental thyroid morphogenesis.

Genet Med

October 2021

The Core Laboratory in Medical Center of Clinical Research, Department of Molecular Diagnostics & Endocrinology, Shanghai Ninth People's Hospital, State Key Laboratory of Medical Genomics, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

Article Synopsis
  • Congenital hypothyroidism (CH) is a common disorder caused by improper thyroid development, but the exact molecular mechanisms involved are not well understood.
  • Researchers studied 192 CH patients through targeted sequencing and exome sequencing to identify new candidate genes linked to CH.
  • They discovered four harmful variations in the GBP1 gene that negatively affected thyroid cell development in zebrafish models, highlighting the role of GBP1 in thyroid growth and cellular adhesion.
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Numerous drug treatments that have recently entered the clinic or clinical trials have their genesis in zebrafish. Zebrafish are well established for their contribution to developmental biology and have now emerged as a powerful preclinical model for human disease, as their disease characteristics, aetiology and progression, and molecular mechanisms are clinically relevant and highly conserved. Zebrafish respond to small molecules and drug treatments at physiologically relevant dose ranges and, when combined with cell-specific or tissue-specific reporters and gene editing technologies, drug activity can be studied at single-cell resolution within the complexity of a whole animal, across tissues and over an extended timescale.

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Transcription and metabolism both influence cell function, but dedicated transcriptional control of metabolic pathways that regulate cell fate has rarely been defined. We discovered, using a chemical suppressor screen, that inhibition of the pyrimidine biosynthesis enzyme dihydroorotate dehydrogenase (DHODH) rescues erythroid differentiation in bloodless zebrafish mutant embryos defective for transcriptional intermediary factor 1 gamma (). This rescue depends on the functional link of DHODH to mitochondrial respiration.

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Background Aims: Adoptive transfer of suppressive CD4+CD25+ thymic regulatory T cells (tTregs) can control auto- and alloimmune responses but typically requires in vitro expansion to reach the target cell number for efficacy. Although the adoptive transfer of expanded tTregs purified from umbilical cord blood ameliorates graft-versus-host disease in patients receiving hematopoietic stem cell transplantation for lymphohematopoietic malignancy, individual Treg products of 100 × 10 cells/kg are manufactured over an extended 19-day time period using a process that yields variable products and is both laborious and costly. These limitations could be overcome with the availability of 'off the shelf' Treg.

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Radiation therapy (RT) is often used as a palliative treatment for children with recurrent malignant disease to ameliorate or prevent symptoms. However, no guidelines exist regarding the clinical indications or dose fractionation for palliative RT. The goal of this report is to provide guidelines for the use of palliative RT in children with cancer.

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A uniform format for manuscript submission.

Cell

April 2021

Stem Cell Program and Division of Hematology/Oncology, Boston Children's Hospital and Dana Farber Cancer Institute, Howard Hughes Medical Institute, Harvard Medical School, Boston, MA, USA; Stem Cell and Regenerative Biology Department, Harvard University, Cambridge, MA, USA.

Many scientists spend unnecessary time reformatting papers to submit them to different journals. We propose a uniform submission format that we hope journals will include in their options for submission. Widespread adoption of this uniform submission format could shorten the submission and publishing process, freeing up time for research.

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Stage 4S neuroblastoma (4SNB) is associated with spontaneous tumor regression and an excellent prognosis. However, a small group of the patients have a poor prognosis. One hundred eighty-five stage 4SNB cases filed at the Children's Oncology Group Neuroblastoma Pathology Reference Laboratory were studied.

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This manuscript illuminates the nuanced ways in which the COVID-19 pandemic has impacted the pediatric palliative care social work role and clinical care in caring for children with life-limiting illnesses and their families throughout the country. The authors discuss memorable moments, logistical impacts, telehealth usage, decision-making experiences, end of life care, bereavement practices, specialized interventions, and self-care. The paper concludes with lessons learned and practical recommendations for the future.

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There is a lack of appropriate melanoma models that can be used to evaluate the efficacy of novel therapeutic modalities. Here, we discuss the current state of the art of melanoma models including genetically engineered mouse, patient-derived xenograft, zebrafish, and ex vivo and in vitro models. We also identify five major challenges that can be addressed using such models, including metastasis and tumor dormancy, drug resistance, the melanoma immune response, and the impact of aging and environmental exposures on melanoma progression and drug resistance.

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Patients with childhood, adolescent, and young adult cancer who will be treated with gonadotoxic therapies are at increased risk for infertility. Many patients and their families desire biological children but effective communication about treatment-related infertility risk and procedures for fertility preservation does not always happen. The PanCareLIFE Consortium and the International Late Effects of Childhood Cancer Guideline Harmonization Group reviewed the literature and developed a clinical practice guideline that provides recommendations for ongoing communication methods for fertility preservation for patients who were diagnosed with childhood, adolescent, and young adult cancer at age 25 years or younger and their families.

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Male patients with childhood, adolescent, and young adult cancer are at an increased risk for infertility if their treatment adversely affects reproductive organ function. Future fertility is a primary concern of patients and their families. Variations in clinical practice are barriers to the timely implementation of interventions that preserve fertility.

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Female patients with childhood, adolescent, and young adult cancer are at increased risk for fertility impairment when treatment adversely affects the function of reproductive organs. Patients and their families desire biological children but substantial variations in clinical practice guidelines reduce consistent and timely implementation of effective interventions for fertility preservation across institutions. As part of the PanCareLIFE Consortium, and in collaboration with the International Late Effects of Childhood Cancer Guideline Harmonization Group, we reviewed the current literature and developed a clinical practice guideline for fertility preservation in female patients who were diagnosed with childhood, adolescent, and young adult cancer at age 25 years or younger, including guidance on risk assessment and available methods for fertility preservation.

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SATB2 induction of a neural crest mesenchyme-like program drives melanoma invasion and drug resistance.

Elife

February 2021

Howard Hughes Medical Institute, Stem Cell Program and the Division of Pediatric Hematology/Oncology, Boston Children's Hospital and Dana-Farber Cancer Institute, Harvard Medical School, Boston, United States.

Article Synopsis
  • Recent studies on melanoma using genomic and single-cell RNA sequencing revealed no common genetic mutations linked to metastasis, but identified specific transcriptional patterns associated with invasive behavior and drug resistance.
  • In an experiment using a zebrafish model of melanoma, researchers discovered that overexpressing the transcriptional regulator SATB2 promotes aggressive tumor characteristics, including increased invasion and formation of structures that aid in invasion.
  • SATB2 activates genes related to neural crest development and shares similarities with known drug-resistant melanoma states, contributing to the tumor's growth and resistance to the cancer drug Vemurafenib.
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Active learning for fellows: The hematopathology "unknown case".

Pediatr Blood Cancer

April 2021

Division of Hematology/Oncology, Pediatric Hematology/Oncology, Children's Hospital of Philadelphia, University of Pennsylvania Perelman School of Medicine, Philadelphia, Pennsylvania.

The pediatric hematology/oncology fellowship program at the Children's Hospital of Philadelphia set out to create a case-based learning curriculum for common hematologic malignancies that would apply principles of adult learning theory and improve fellows' retention of information in a supportive, goal-oriented learning environment. A framework we employed in developing this curriculum is that of "flow theory," which parallels many of the tenets of adult learning theory. After implementing this curriculum, which we call "the unknown case," the percentage of fellows correctly identifying a common hematopathologic diagnosis improved from 50% to 85%.

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Functional evaluation of genetic lesions can discover a role in cancer initiation and progression and help develop novel therapeutic strategies. We previously identified the negative MAPK regulator SPRED1 as a novel tumor suppressor in KIT-driven melanoma. Here, we show that SPRED1 is also frequently deleted in human melanoma driven by mutant BRAF.

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Blood in the water: recent uses of zebrafish to study myeloid biology.

Curr Opin Hematol

January 2021

Stem Cell Program and Division of Hematology/Oncology, Boston Children's Hospital and Dana Farber Cancer Institute, Howard Hughes Medical Institute, Harvard Medical School, Boston.

Purpose Of Review: Myeloid cells contribute to immune response to infection and tissue regeneration after injury as well as to the developmental induction of the hematopoietic system overall. Here we review recent uses of zebrafish to advance the study of myeloid biology in development and disease.

Recent Findings: Recent studies have made use of advanced imaging and genetic strategies and have highlighted key concepts in myeloid cell behavior.

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Genome-wide association studies identify genomic variants associated with human traits and diseases. Most trait-associated variants are located within cell-type-specific enhancers, but the molecular mechanisms governing phenotypic variation are less well understood. Here, we show that many enhancer variants associated with red blood cell (RBC) traits map to enhancers that are co-bound by lineage-specific master transcription factors (MTFs) and signaling transcription factors (STFs) responsive to extracellular signals.

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Diamond-Blackfan anemia (DBA) is a rare hematopoietic disease characterized by a block in red cell differentiation. Most DBA cases are caused by mutations in ribosomal proteins and characterized by higher than normal activity of the tumor suppressor p53. Higher p53 activity is thought to contribute to DBA phenotypes by inducing apoptosis during red blood cell differentiation.

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Recurrent co-alteration of HDGF and SETDB1 on chromosome 1q drives cutaneous melanoma progression and poor prognosis.

Pigment Cell Melanoma Res

May 2021

Stem Cell Program and the Division of Pediatric Hematology/Oncology, Howard Hughes Medical Institute, Boston Children's Hospital and Dana-Farber Cancer Institute, Harvard Medical School, Boston, MA, USA.

A progressive increase in copy number variation (CNV) characterizes the natural history of cutaneous melanoma progression toward later disease stages, but our understanding of genetic drivers underlying chromosomal arm-level CNVs remains limited. To identify candidate progression drivers, we mined the TCGA SKCM dataset and identified HDGF as a recurrently amplified gene whose high mRNA expression correlates with poor patient survival. Using melanocyte-specific overexpression in the zebrafish BRAF -driven MiniCoopR melanoma model, we show that HDGF accelerates melanoma development in vivo.

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