Publications by authors named "Wenan Chen"

Background: Diagnosing Mendelian and rare genetic conditions requires identifying phenotype-associated genetic findings and prioritizing likely disease-causing genes. This task is labor-intensive for molecular and clinical geneticists, who must review extensive literature and databases to link patient phenotypes with causal genotypes. The challenge is further complicated by the large number of genetic variants detected through next-generation sequencing, which impacts both diagnosis timelines and patient care strategies.

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Germline BRCA2 loss-of function variants, which can be identified through clinical genetic testing, predispose to several cancers. However, variants of uncertain significance limit the clinical utility of test results. Thus, there is a need for functional characterization and clinical classification of all BRCA2 variants to facilitate the clinical management of individuals with these variants.

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Somatic mitochondrial DNA (mtDNA) mutations are prevalent in tumors, yet defining their biological significance remains challenging due to the intricate interplay between selective pressure, heteroplasmy, and cell state. Utilizing bulk whole-genome sequencing data from matched tumor and normal samples from two cohorts of pediatric cancer patients, we uncover differences in the accumulation of synonymous and nonsynonymous mtDNA mutations in pediatric leukemias, indicating distinct selective pressures. By integrating single-cell sequencing (SCS) with mathematical modeling and network-based systems biology approaches, we identify a correlation between the extent of cell-state changes associated with tumor-enriched mtDNA mutations and the selective pressures shaping their distribution among individual leukemic cells.

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Article Synopsis
  • Clinical genetic testing helps find cancer risks by identifying gene changes, but some of these changes are confusing because we don't know what they mean (called VUS).
  • Researchers studied a huge number of breast cancer patients and healthy people to understand these confusing gene changes better.
  • They found that their method of analyzing data closely matches what other experts say about which gene changes are harmless or harmful, giving more information about 785 unclear changes.
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  • Despite high cure rates for childhood acute lymphoblastic leukemia (ALL), it remains a major cause of cancer-related deaths in children, especially among those initially classified as standard-risk (SR).
  • Researchers analyzed genomic data from over 1,300 children with ALL to identify factors influencing relapse, focusing on comparing patients who relapsed against those who stayed in remission for five years.
  • Findings indicated that specific genomic subtypes and chromosomal alterations significantly affect relapse risk, highlighting the need for detailed genetic analysis to improve risk assessment and treatment strategies in childhood ALL.
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  • Nijmegen breakage syndrome is linked to biallelic mutations in the NBN gene, increasing the risk of lymphoid cancers, including leukemia for heterozygous carriers.
  • A study of 4,325 pediatric B-cell acute lymphoblastic leukemia (B-ALL) patients discovered 25 unique damaging NBN variants, showing a significant increase in frequency compared to noncancer controls.
  • Functional assays confirmed 14 of these variants as having severe loss-of-function effects, but carriers of NBN variants had similar survival outcomes as those without such mutations, indicating they can safely undergo standard B-ALL therapies.
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  • - The study focuses on the importance of immunophenotyping in patients who experience out-of-hospital cardiac arrest (OHCA) and the challenges involved in this research area.
  • - It outlines the necessary steps for creating a clinical cohort, including patient enrollment, sample collection, and ethical review processes.
  • - The protocol details the methods for collecting blood samples and preserving certain immune cells, specifically focusing on modulating immune checkpoints in OHCA patients, which can also be applied to other critical illnesses.
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Unlabelled: Germline BRCA2 loss-of function (LOF) variants identified by clinical genetic testing predispose to breast, ovarian, prostate and pancreatic cancer. However, variants of uncertain significance (VUS) (n>4000) limit the clinical use of testing results. Thus, there is an urgent need for functional characterization and clinical classification of all variants.

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Sepsis-induced acute lung injury (ALI) is related to the dysregulation of inflammatory responses. Polydatin supplement was reported to exhibit anti-inflammatory effects in several diseases. The present study aimed to investigate the role of polydatin in sepsis-induced ALI.

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Replication Protein A (RPA) is single-strand DNA binding protein that plays a key role in the replication and repair of DNA. RPA is a heterotrimer made of 3 subunits - RPA1, RPA2, and RPA3. Germline pathogenic variants affecting were recently described in patients with Telomere Biology Disorders (TBD), also known as dyskeratosis congenita or short telomere syndrome.

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Background: Carriers of cancer predisposing variants are at an increased risk of developing subsequent malignant neoplasms among those who have survived childhood cancer. We aimed to investigate whether cancer predisposing variants contribute to the risk of subsequent malignant neoplasm-related late mortality (5 years or more after diagnosis).

Methods: In this analysis, data were included from two retrospective cohort studies, St Jude Lifetime Cohort (SJLIFE) and the Childhood Cancer Survivor Study (CCSS), with prospective follow-up of patients who were alive for at least 5 years after diagnosis with childhood cancer (ie, long-term childhood cancer survivors) with corresponding germline whole genome or whole exome sequencing data.

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Single-cell RNA sequencing (scRNA-seq) has emerged as a powerful tool for investigating cellular biology at an unprecedented resolution, enabling the characterization of cellular heterogeneity, identification of rare but significant cell types, and exploration of cell-cell communications and interactions. Its broad applications span both basic and clinical research domains. In this comprehensive review, we survey the current landscape of scRNA-seq analysis methods and tools, focusing on count modeling, cell-type annotation, data integration, including spatial transcriptomics, and the inference of cell-cell communication.

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Article Synopsis
  • Biallelic mutations in the DNA repair gene are linked to Nijmegen Breakage Syndrome and can increase the risk of certain cancers, including lymphoid malignancies in children.
  • A study found 25 potentially harmful genetic variants in pediatric patients with B-cell acute lymphoblastic leukemia (B-ALL), indicating a higher occurrence compared to non-cancer controls.
  • Functional testing confirmed 14 variants as pathogenic, showing severe loss of function, but patients carrying one of these variants had similar survival rates to those without the variants, suggesting they can undergo standard B-ALL treatment safely.
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  • Researchers have developed a new mouse model that replicates key features of hepatoblastoma, enabling better understanding of the disease and potential treatments.
  • They used advanced techniques like single-cell RNA-sequencing to identify different types of cancer cells and mapped genes crucial for cancer dependency, revealing targets for therapy.
  • In testing chemotherapy responses, they found certain genetic factors that can enhance or diminish the effectiveness of doxorubicin, suggesting that targeting PRKDC could improve treatment outcomes.
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  • Patients who experience cardiac arrest often suffer from neurological injury due to systemic inflammation, but the exact mechanisms are not well understood.!* -
  • Research shows that immune cell responses start to differ within 6 hours after cardiac arrest, influencing patient outcomes; specific immune cell types are linked to poor neurological recovery.!* -
  • The study suggests early interventions targeting immune checkpoints may help reduce inflammation and improve recovery after cardiac arrest.!*
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  • Intrachromosomal amplification of chromosome 21 is a specific subtype of high-risk childhood acute lymphoblastic leukemia (iAMP21-ALL) that involves complex genetic changes on chromosome 21, contributing to its development.
  • A study of 124 iAMP21-ALL patients revealed distinct subgroups based on their genetic alterations and identified a common amplified region containing 71 genes, many of which are linked to leukemia.
  • The research also highlighted early genetic changes in the disease, illustrated clonal diversity, and emphasized the need for improved diagnostic methods to better manage iAMP21-ALL cases.
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Causal variants for rare genetic diseases are often rare in the general population. Rare variants may also contribute to common complex traits and can have much larger per-allele effect sizes than common variants, although power to detect these associations can be limited. Sequencing costs have steadily declined with technological advancements, making it feasible to adopt whole-exome and whole-genome profiling for large biobank-scale sample sizes.

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Objective: Neuroinflammation caused by traumatic brain injury (TBI) can lead to neurological deficits. Acupuncture can inhibit neuroinflammation and promote nerve repair; however, the specific mechanism is still unclear. The purpose of this study was to explore whether acupuncture could modulate the M1 and M2 phenotypic polarization of microglia in a rat model of TBI via the toll-like receptor 4 (TLR4)/intracellular toll-interleukin-1 receptor (TIR) domain-containing adaptor inducing interferon-β (TRIF)/myeloid differentiation factor 88 (MyD88) pathway.

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Familial aggregation of Hodgkin lymphoma (HL) has been demonstrated in large population studies, pointing to genetic predisposition to this hematological malignancy. To understand the genetic variants associated with the development of HL, we performed whole genome sequencing on 234 individuals with and without HL from 36 pedigrees that had 2 or more first-degree relatives with HL. Our pedigree selection criteria also required at least 1 affected individual aged <21 years, with the median age at diagnosis of 21.

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Sequencing cases without matched healthy controls hinders prioritization of germline disease-predisposition genes. To circumvent this problem, genotype summary counts from public data sets can serve as controls. However, systematic inflation and false positives can arise if confounding factors are not controlled.

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Individuals with monogenic disorders can experience variable phenotypes that are influenced by genetic variation. To investigate this in sickle cell disease (SCD), we performed whole-genome sequencing (WGS) of 722 individuals with hemoglobin HbSS or HbSβ0-thalassemia from Baylor College of Medicine and from the St. Jude Children's Research Hospital Sickle Cell Clinical Research and Intervention Program (SCCRIP) longitudinal cohort study.

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Improvements in whole genome amplification (WGA) would enable new types of basic and applied biomedical research, including studies of intratissue genetic diversity that require more accurate single-cell genotyping. Here, we present primary template-directed amplification (PTA), an isothermal WGA method that reproducibly captures >95% of the genomes of single cells in a more uniform and accurate manner than existing approaches, resulting in significantly improved variant calling sensitivity and precision. To illustrate the types of studies that are enabled by PTA, we developed direct measurement of environmental mutagenicity (DMEM), a tool for mapping genome-wide interactions of mutagens with single living human cells at base-pair resolution.

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The TP53-R337H founder mutation exists at a high frequency throughout southern Brazil and represents one of the most common germline TP53 mutations reported to date. It was identified in pediatric adrenocortical tumors in families with a low incidence of cancer. The R337H mutation has since been found in association with early-onset breast cancers and Li-Fraumeni syndrome (LFS).

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