Search results for "Nucleotide Sequencing"

showing 10 items of 226 documents

Targeted Re-Sequencing Emulsion PCR Panel for Myopathies: Results in 94 Cases.

2016

BACKGROUND Molecular diagnostics in the genetic myopathies often requires testing of the largest and most complex transcript units in the human genome (DMD, TTN, NEB). Iteratively targeting single genes for sequencing has traditionally entailed high costs and long turnaround times. Exome sequencing has begun to supplant single targeted genes, but there are concerns regarding coverage and needed depth of the very large and complex genes that frequently cause myopathies. OBJECTIVE To evaluate efficiency of next-generation sequencing technologies to provide molecular diagnostics for patients with previously undiagnosed myopathies. METHODS We tested a targeted re-sequencing approach, using a 45…

0301 basic medicineBiologyPolymerase Chain ReactionMuscular Dystrophies03 medical and health sciencesExon0302 clinical medicineMuscular DiseasesHumansGenetic TestingGeneExomeExome sequencingGeneticsMassive parallel sequencingHigh-Throughput Nucleotide SequencingSequence Analysis DNAMolecular diagnostics030104 developmental biologyNeurologyMolecular Diagnostic TechniquesRe sequencingMutationHuman genomeNeurology (clinical)030217 neurology & neurosurgery
researchProduct

Deep learning in next-generation sequencing

2020

Highlights • Machine learning increasingly important for NGS. • Deep learning can improve many NGS applications.

0301 basic medicineBiomedical ResearchComputer scienceContext (language use)ComputerApplications_COMPUTERSINOTHERSYSTEMSReviewMachine learningcomputer.software_genre03 medical and health sciences0302 clinical medicineDeep LearningGene to ScreenDrug DiscoveryHumansPharmacologyFeature detection (web development)Network architectureArtificial neural networkbusiness.industryDeep learningHigh-Throughput Nucleotide SequencingMedical research030104 developmental biologyMetagenomics030220 oncology & carcinogenesisUnsupervised learningArtificial intelligenceMetagenomicsNeural Networks ComputerbusinesscomputerDrug Discovery Today
researchProduct

Incomplete Timothy syndrome secondary to a mosaic mutation of the CACNA1C gene diagnosed using next-generation sequencing.

2016

Autosomal dominant genetic diseases can occur de novo and in the form of somatic mosaicism, which can give rise to a less severe phenotype, and make diagnosis more difficult given the sensitivity limits of the methods used. We report the case of female child with a history of surgery for syndactyly of the hands and feet, who was admitted at 6 years of age to a pediatric intensive care unit following cardiac arrest. The electrocardiogram (ECG) showed a long QT interval that on occasions reached 500 ms. Despite the absence of facial dysmorphism and the presence of normal psychomotor development, a diagnosis of Timothy syndrome was made given the association of syndactyly and the ECG features.…

0301 basic medicineCalcium Channels L-TypeLong QT syndromeDNA Mutational AnalysisTimothy syndrome030204 cardiovascular system & hematologyBioinformaticsDNA sequencing03 medical and health sciencessymbols.namesakeElectrocardiography0302 clinical medicineGeneticsmedicineMissense mutationHumansSyndactylyAutistic DisorderChildCodonGenetics (clinical)AllelesGenetic Association StudiesSanger sequencingbiologyMosaicismKCNE2High-Throughput Nucleotide Sequencingmedicine.diseaseLong QT Syndrome030104 developmental biologyPhenotypeAmino Acid SubstitutionMutation (genetic algorithm)Mutationsymbolsbiology.proteinFemaleSyndactylyAmerican journal of medical genetics. Part A
researchProduct

NGS‐based liquid biopsy profiling identifies mechanisms of resistance to ALK inhibitors: a step toward personalized NSCLC treatment

2021

Despite impressive and durable responses, nonsmall cell lung cancer (NSCLC) patients treated with anaplastic lymphoma kinase (ALK) inhibitors (ALK‐Is) ultimately progress due to development of resistance. Here, we have evaluated the clinical utility of circulating tumor DNA (ctDNA) profiling by next‐generation sequencing (NGS) upon disease progression. We collected 26 plasma and two cerebrospinal fluid samples from 24 advanced ALK‐positive NSCLC patients at disease progression to an ALK‐I. These samples were analyzed by NGS and digital PCR. A tool to retrieve variants at the ALK locus was developed (VALK tool). We identified at least one resistance mutation in the ALK locus in ten (38.5%) p…

0301 basic medicineCancer ResearchLung NeoplasmsEML4-ALKAntineoplastic AgentsEML4‐ALKmedicine.disease_causeNSCLCIDH2Circulating Tumor DNA03 medical and health sciencesALK-TKI0302 clinical medicineCarcinoma Non-Small-Cell LungMAP2K1hemic and lymphatic diseasesALK‐TKIGeneticsmedicineHumansAnaplastic lymphoma kinaseAnaplastic Lymphoma KinaseDigital polymerase chain reactionPrecision MedicineLiquid biopsyProtein Kinase InhibitorsneoplasmsResearch ArticlesRC254-282MutationCrizotinibliquid biopsybusiness.industryHigh-Throughput Nucleotide SequencingNeoplasms. Tumors. Oncology. Including cancer and carcinogensGeneral MedicineResistance mutation3. Good health030104 developmental biologyOncologyDrug Resistance Neoplasm030220 oncology & carcinogenesisNGSMutationCancer researchMolecular MedicinebusinessResearch Articlemedicine.drugMolecular Oncology
researchProduct

Differential distribution and enrichment of non-coding RNAs in exosomes from normal and Cancer-associated fibroblasts in colorectal cancer.

2018

Exosome production from cancer-associated fibroblasts seems to be an important driver of tumor progression. We report the first in-depth biotype characterization of ncRNAs, analyzed by Next Generation Sequencing and Bioinformatics, expressed in established primary human normal and cancer-associated fibroblasts (CAFs) from cancer and normal mucosa tissues from 9 colorectal cancer patients, and/or packaged in their derived exosomes. Differential representation and enrichment analyses based on these ncRNAs revealed a significant number of differences between the ncRNA content of exosomes and the expression patterns of the normal and cancer-associated fibroblast cells. ncRNA regulatory elements…

0301 basic medicineCancer ResearchStromal cellRNA UntranslatedColorectal cancerBiologyExosomeslcsh:RC254-282Non-coding RNAs03 medical and health sciencesCancer-Associated FibroblastsCell MovementNext generation sequencingmedicineBiomarkers TumorHumansLiquid biopsyLetter to the EditorCells CulturedCell ProliferationTumor microenvironmentColon CancerLiquid biopsySequence Analysis RNACancerHigh-Throughput Nucleotide SequencingFibroblastsmedicine.diseaselcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogensPrognosisMicrovesiclesGene Expression Regulation Neoplastic030104 developmental biologyOncologyTumor microenvironmentTumor progressionCancer researchMolecular MedicineCancer-Associated FibroblastsColorectal Neoplasms
researchProduct

Whole-genome sequencing of Neisseria gonorrhoeae in a forensic transmission case.

2019

Abstract Molecular epidemiology and phylogenetic analyses are frequently used in the investigation of viral transmission cases in forensic contexts. Here, we present the methods and results of the analysis of a bacterial transmission episode in an alleged child abuse case using complete genome sequences obtained by high-throughput sequencing (HTS) methods. We obtained genomes of Neisseria gonorrhoeae from the victim, the suspect, and 29 unrelated controls. The analysis of the genomes revealed that the victim and suspect isolates had identical sequences in both the bacterial chromosome and the single plasmid present in them. One of the local controls was very similar (differing in only 2 SNP…

0301 basic medicineChild abuseMaleBacterial genome sizeBiologyGenomePolymerase Chain ReactionPolymorphism Single NucleotideDNA sequencingPathology and Forensic Medicine03 medical and health sciencesGonorrhea0302 clinical medicineGeneticsHumans030216 legal & forensic medicineTypingChildGeneticsWhole genome sequencingLikelihood FunctionsMolecular epidemiologyWhole Genome SequencingHigh-Throughput Nucleotide SequencingChild Abuse SexualSequence Analysis DNANeisseria gonorrhoeaeElectrophoresis Gel Pulsed-Field030104 developmental biologyVaginaMultilocus sequence typingFemaleMultilocus Sequence TypingForensic science international. Genetics
researchProduct

Large-scale identification of functional microRNA targeting reveals cooperative regulation of the hemostatic system.

2018

Essentials MicroRNAs (miRNAs) regulate the molecular networks controlling biological functions such as hemostasis. We utilized novel methods to analyze miRNA-mediated regulation of the hemostatic system. 52 specific miRNA interactions with 11 key hemostatic associated genes were identified. Functionality and drugability of miRNA-19b-3p against antithrombin were demonstrated in vivo. SUMMARY: Background microRNAs (miRNAs) confer robustness to complex molecular networks regulating biological functions. However, despite the involvement of miRNAs in almost all biological processes, and the importance of the hemostatic system for a multitude of actions in and beyond blood coagulation, the role o…

0301 basic medicineComputational biologyBiologyAntithrombinsHemostatics03 medical and health sciencesMiceCell Line TumormicroRNAGene silencingAnimalsHumansGene SilencingBiomarker discoveryGene3' Untranslated RegionsHemostasisThree prime untranslated regionRNARobustness (evolution)Computational BiologyHigh-Throughput Nucleotide SequencingThrombosisHematologyMice Inbred C57BLMicroRNAs030104 developmental biologyHemostasisBiomarkersPlasmidsJournal of thrombosis and haemostasis : JTH
researchProduct

Differential binding cell-SELEX method to identify cell-specific aptamers using high-throughput sequencing

2018

AbstractAptamers have in recent years emerged as a viable alternative to antibodies. High-throughput sequencing (HTS) has revolutionized aptamer research by increasing the number of reads from a few (using Sanger sequencing) to millions (using an HTS approach). Despite the availability and advantages of HTS compared to Sanger sequencing, there are only 50 aptamer HTS sequencing samples available on public databases. HTS data in aptamer research are primarily used to compare sequence enrichment between subsequent selection cycles. This approach does not take full advantage of HTS because the enrichment of sequences during selection can be due to inefficient negative selection when using live…

0301 basic medicineComputer scienceAptamerlcsh:MedicineGenomicsComputational biologyCell selexLigandsArticleDNA sequencingCell Line03 medical and health sciencessymbols.namesakeNegative selectionDrug Delivery Systems0302 clinical medicineCell Line TumorHumansGenomic librarylcsh:ScienceCarcinoma Renal CellSelection (genetic algorithm)Gene LibrarySanger sequencingMultidisciplinaryMolecular medicinelcsh:RSELEX Aptamer TechniqueHigh-throughput screeningComputational BiologyHigh-Throughput Nucleotide SequencingNucleotide MetabolismGenomicsAptamers NucleotideFlow CytometryMolecular medicineKidney Neoplasms030104 developmental biologyDrug DesignDrug deliverysymbolsNucleic Acid Conformationlcsh:QFunctional genomics030217 neurology & neurosurgerySystematic evolution of ligands by exponential enrichment
researchProduct

Next-generation sequencing: big data meets high performance computing

2017

The progress of next-generation sequencing has a major impact on medical and genomic research. This high-throughput technology can now produce billions of short DNA or RNA fragments in excess of a few terabytes of data in a single run. This leads to massive datasets used by a wide range of applications including personalized cancer treatment and precision medicine. In addition to the hugely increased throughput, the cost of using high-throughput technologies has been dramatically decreasing. A low sequencing cost of around US$1000 per genome has now rendered large population-scale projects feasible. However, to make effective use of the produced data, the design of big data algorithms and t…

0301 basic medicineComputer scienceDistributed computingGenomic researchBig dataTerabyteComputing MethodologiesDNA sequencing03 medical and health sciences0302 clinical medicineDatabases GeneticDrug DiscoveryHumansThroughput (business)PharmacologyGenomebusiness.industryHigh-Throughput Nucleotide SequencingGenomicsSequence Analysis DNAPrecision medicineSupercomputerData scienceCancer treatment030104 developmental biology030220 oncology & carcinogenesisbusinessAlgorithmsDrug Discovery Today
researchProduct

Rescuing monopronucleated-derived human blastocysts: a model to study chromosomal topography and fingerprinting.

2021

Objective To quantify the percentage of monopronuclear-derived blastocysts (MNBs) that are potentially useful for reproductive purposes using classic and state-of-the-art chromosome analysis approaches, and to study chromosomal distribution in the inner cell mass (ICM) and trophectoderm (TE) for intertissue/intratissue concordance comparison. Design Prospective experimental study. Setting Single-center in vitro fertilization clinic and reproductive genetics laboratory. Patient(s) A total of 1,128 monopronuclear zygotes were obtained between June 2016 and December 2018. Intervention(s) MNBs were whole-fixed or biopsied to obtain a portion of ICM and 2 TE portions (TE1 and TE2) and were subse…

0301 basic medicineConcordanceBiopsyBiologyPolymorphism Single NucleotideChromosomesAndrology03 medical and health sciences0302 clinical medicinemedicineInner cell massHumansProspective StudiesIn Situ Hybridization FluorescenceGenetic testing030219 obstetrics & reproductive medicineZygotePloidiesmedicine.diagnostic_testObstetrics and GynecologyChromosomeHigh-Throughput Nucleotide SequencingEmbryoDNA Fingerprinting030104 developmental biologyBlastocystReproductive MedicineBlastocyst Inner Cell MassFemalePloidyFluorescence in situ hybridizationFertility and sterility
researchProduct