67 research outputs found
Molecular profiling of ETS and nonâETS aberrations in prostate cancer patients from northern India
BACKGROUNDMolecular stratification of prostate cancer (PCa) based on genetic aberrations including ETS or RAF geneârearrangements, PTEN deletion, and SPINK1 overâexpression show clear prognostic and diagnostic utility. Gene rearrangements involving ETS transcription factors are frequent pathogenetic somatic events observed in PCa. Incidence of ETS rearrangements in Caucasian PCa patients has been reported, however, occurrence in Indian population is largely unknown. The aim of this study was to determine the prevalence of the ETS and RAF kinase gene rearrangements, SPINK1 overâexpression, and PTEN deletion in this cohort.METHODSIn this multiâcenter study, formalinâfixed paraffin embedded (FFPE) PCa specimens (nâ=â121) were procured from four major medical institutions in India. The tissues were sectioned and molecular profiling was done using immunohistochemistry (IHC), RNA in situ hybridization (RNAâISH) and/or fluorescence in situ hybridization (FISH).RESULTSERG overâexpression was detected in 48.9% (46/94) PCa specimens by IHC, which was confirmed in a subset of cases by FISH. Among other ETS family members, while ETV1 transcript was detected in one case by RNAâISH, no alteration in ETV4 was observed. SPINK1 overâexpression was observed in 12.5% (12/96) and PTEN deletion in 21.52% (17/79) of the total PCa cases. Interestingly, PTEN deletion was found in 30% of the ERGâpositive cases (Pâ=â0.017) but in only one case with SPINK1 overâexpression (Pâ=â0.67). BRAF and RAF1 gene rearrangements were detected in âŒ1% and âŒ4.5% of the PCa cases, respectively.CONCLUSIONSThis is the first report on comprehensive molecular profiling of the major spectrum of the causal aberrations in Indian men with PCa. Our findings suggest that ETS gene rearrangement and SPINK1 overâexpression patterns in North Indian population largely resembled those observed in Caucasian population but differed from Japanese and Chinese PCa patients. The molecular profiling data presented in this study could help in clinical decisionâmaking for the pursuit of surgery, diagnosis, and in selection of therapeutic intervention. Prostate 75:1051â1062, 2015. © 2015 The Authors. The Prostate, published by Wiley Periodicals, Inc.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/111808/1/pros22989.pd
Transcriptomic signatures reveal immune dysregulation in human diabetic and idiopathic gastroparesis
Abstract
Background
Cellular changes described in human gastroparesis have revealed a role for immune dysregulation, however, a mechanistic understanding of human gastroparesis and the signaling pathways involved are still unclear.
Methods
Diabetic gastroparetics, diabetic non-gastroparetic controls, idiopathic gastroparetics and non-diabetic non-gastroparetic controls underwent full-thickness gastric body biopsies. Deep RNA sequencing was performed and pathway analysis of differentially expressed transcripts was done using IngenuityÂź. A subset of differentially expressed genes in diabetic gastroparesis was validated in a separate cohort using QT-PCR.
Results
111 genes were differentially expressed in diabetic gastroparesis and 181 in idiopathic gastroparesis with a log2fold difference of |ââ„â2| and false detection rate (FDR) <â5%. Top canonical pathways in diabetic gastroparesis included genes involved with macrophages, fibroblasts and endothelial cells in rheumatoid arthritis, osteoarthritis pathway and differential regulation of cytokine production in macrophages and T helper cells by IL-17A and IL-17F. Top canonical pathways in idiopathic gastroparesis included genes involved in granulocyte adhesion and diapedesis, agranulocyte adhesion and diapedesis, and role of macrophages, fibroblasts and endothelial cells in rheumatoid arthritis. Sixty-five differentially expressed genes (log2fold difference |ââ„â2|, FDR <â5%) were common in both diabetic and idiopathic gastroparesis with genes in the top 5 canonical pathways associated with immune signaling. 4/5 highly differentially expressed genes (SGK1, APOLD1, CXCR4, CXCL2, and FOS) in diabetic gastroparesis were validated in a separate cohort of patients using RT-PCR. Immune profile analysis revealed that genes associated with M1 (pro inflammatory) macrophages were enriched in tissues from idiopathic gastroparesis tissues compared to controls (pâ<â0.05).
Conclusions
Diabetic and idiopathic gastroparesis have both unique and overlapping transcriptomic signatures. Innate immune signaling likely plays a central role in pathogenesis of human gastroparesis.https://deepblue.lib.umich.edu/bitstream/2027.42/145193/1/12920_2018_Article_379.pd
Transcriptomic signatures reveal immune dysregulation in human diabetic and idiopathic gastroparesis
Abstract
Background
Cellular changes described in human gastroparesis have revealed a role for immune dysregulation, however, a mechanistic understanding of human gastroparesis and the signaling pathways involved are still unclear.
Methods
Diabetic gastroparetics, diabetic non-gastroparetic controls, idiopathic gastroparetics and non-diabetic non-gastroparetic controls underwent full-thickness gastric body biopsies. Deep RNA sequencing was performed and pathway analysis of differentially expressed transcripts was done using IngenuityÂź. A subset of differentially expressed genes in diabetic gastroparesis was validated in a separate cohort using QT-PCR.
Results
111 genes were differentially expressed in diabetic gastroparesis and 181 in idiopathic gastroparesis with a log2fold difference of |ââ„â2| and false detection rate (FDR) <â5%. Top canonical pathways in diabetic gastroparesis included genes involved with macrophages, fibroblasts and endothelial cells in rheumatoid arthritis, osteoarthritis pathway and differential regulation of cytokine production in macrophages and T helper cells by IL-17A and IL-17F. Top canonical pathways in idiopathic gastroparesis included genes involved in granulocyte adhesion and diapedesis, agranulocyte adhesion and diapedesis, and role of macrophages, fibroblasts and endothelial cells in rheumatoid arthritis. Sixty-five differentially expressed genes (log2fold difference |ââ„â2|, FDR <â5%) were common in both diabetic and idiopathic gastroparesis with genes in the top 5 canonical pathways associated with immune signaling. 4/5 highly differentially expressed genes (SGK1, APOLD1, CXCR4, CXCL2, and FOS) in diabetic gastroparesis were validated in a separate cohort of patients using RT-PCR. Immune profile analysis revealed that genes associated with M1 (pro inflammatory) macrophages were enriched in tissues from idiopathic gastroparesis tissues compared to controls (pâ<â0.05).
Conclusions
Diabetic and idiopathic gastroparesis have both unique and overlapping transcriptomic signatures. Innate immune signaling likely plays a central role in pathogenesis of human gastroparesis.https://deepblue.lib.umich.edu/bitstream/2027.42/145193/1/12920_2018_Article_379.pd
ÄnÎtÉr-Äk\u27tÄv
Catalog for the exhibition ÄnÎtÉr-Äk\u27tÄv held at the Seton Hall University Walsh Gallery, November 8 - December 15, 2006. Curated by Gianluca Bianchino, Jeanne Brasile and Asha Ganpat. Includes an essay by Jeanne Brasile. Includes illustrations
A communal catalogue reveals Earthâs multiscale microbial diversity
Our growing awareness of the microbial worldâs importance and diversity contrasts starkly with our limited understanding of its fundamental structure. Despite recent advances in DNA sequencing, a lack of standardized protocols and common analytical frameworks impedes comparisons among studies, hindering the development of global inferences about microbial life on Earth. Here we present a meta-analysis of microbial community samples collected by hundreds of researchers for the Earth Microbiome Project. Coordinated protocols and new analytical methods, particularly the use of exact sequences instead of clustered operational taxonomic units, enable bacterial and archaeal ribosomal RNA gene sequences to be followed across multiple studies and allow us to explore patterns of diversity at an unprecedented scale. The result is both a reference database giving global context to DNA sequence data and a framework for incorporating data from future studies, fostering increasingly complete characterization of Earthâs microbial diversity
A communal catalogue reveals Earth's multiscale microbial diversity
Our growing awareness of the microbial world's importance and diversity contrasts starkly with our limited understanding of its fundamental structure. Despite recent advances in DNA sequencing, a lack of standardized protocols and common analytical frameworks impedes comparisons among studies, hindering the development of global inferences about microbial life on Earth. Here we present a meta-analysis of microbial community samples collected by hundreds of researchers for the Earth Microbiome Project. Coordinated protocols and new analytical methods, particularly the use of exact sequences instead of clustered operational taxonomic units, enable bacterial and archaeal ribosomal RNA gene sequences to be followed across multiple studies and allow us to explore patterns of diversity at an unprecedented scale. The result is both a reference database giving global context to DNA sequence data and a framework for incorporating data from future studies, fostering increasingly complete characterization of Earth's microbial diversity.Peer reviewe
Finishing the euchromatic sequence of the human genome
The sequence of the human genome encodes the genetic instructions for human physiology, as well as rich information about human evolution. In 2001, the International Human Genome Sequencing Consortium reported a draft sequence of the euchromatic portion of the human genome. Since then, the international collaboration has worked to convert this draft into a genome sequence with high accuracy and nearly complete coverage. Here, we report the result of this finishing process. The current genome sequence (Build 35) contains 2.85 billion nucleotides interrupted by only 341 gaps. It covers âŒ99% of the euchromatic genome and is accurate to an error rate of âŒ1 event per 100,000 bases. Many of the remaining euchromatic gaps are associated with segmental duplications and will require focused work with new methods. The near-complete sequence, the first for a vertebrate, greatly improves the precision of biological analyses of the human genome including studies of gene number, birth and death. Notably, the human enome seems to encode only 20,000-25,000 protein-coding genes. The genome sequence reported here should serve as a firm foundation for biomedical research in the decades ahead
Socialization, legitimation and the transfer of biomedical knowledge to low- and middle-income countries: analyzing the case of emergency medicine in India
BACKGROUND: Medical specialization is a key feature of biomedicine, and is a growing, but weakly understood
aspect of health systems in many low- and middle-income countries (LMICs), including India. Emergency medicine
is an example of a medical specialty that has been promoted in India by several high-income country stakeholders,
including the Indian diaspora, through transnational and institutional partnerships. Despite the rapid evolution of
emergency medicine in comparison to other specialties, this specialty has seen fragmentation in the stakeholder
network and divergent training and policy objectives. Few empirical studies have examined the influence of
stakeholders from high-income countries broadly, or of diasporas specifically, in transferring knowledge of medical
specialization to LMICs. Using the concepts of socialization and legitimation, our goal is to examine the transfer of
medical knowledge from high-income countries to LMICs through domestic, diasporic and foreign stakeholders,
and the perceived impact of this knowledge on shaping health priorities in India.
METHODS: This analysis was conducted as part of a broader study on the development of emergency medicine in
India. We designed a qualitative case study focused on the early 1990s until 2015, analyzing data from in-depth
interviewing (n = 87), document review (n = 248), and non-participant observation of conferences and meetings
(n = 6).
RESULTS: From the early 1990s, domestic stakeholders with exposure to emergency medicine in high-income
countries began to establish Emergency Departments and initiate specialist training in the field. Their efforts were
amplified by the active legitimation of emergency medicine by diasporic and foreign stakeholders, who formed
transnational partnerships with domestic stakeholders and organized conferences, training programs and other
activities to promote the field in India. However, despite a broad commitment to expanding specialist training, the
network of domestic, diasporic and foreign stakeholders was highly fragmented, resulting in myriad unstandardized
postgraduate training programs and duplicative policy agendas. Further, the focus in this time period was largely
on training specialists, resulting in more emphasis on a medicalized, tertiary-level form of care.
CONCLUSIONS: This analysis reveals the complexities of the roles and dynamics of domestic, diasporic and foreign
stakeholders in the evolution of emergency medicine in India. More research and critical analyses are required to
explore the transfer of medical knowledge, such as other medical specialties, models of clinical care, and medical
technologies, from high-income countries to India
Defining the causes of sporadic Parkinson's disease in the global Parkinson's genetics program (GP2)
The Global Parkinsonâs Genetics Program (GP2) will genotype over 150,000 participants from around the world, and integrate genetic and clinical data for use in large-scale analyses to dramatically expand our understanding of the genetic architecture of PD. This report details the workflow for cohort integration into the complex arm of GP2, and together with our outline of the monogenic hub in a companion paper, provides a generalizable blueprint for establishing large scale collaborative research consortia
Multi-ancestry genome-wide association meta-analysis of Parkinson?s disease
Although over 90 independent risk variants have been identified for Parkinsonâs disease using genome-wide association studies, most studies have been performed in just one population at a time. Here we performed a large-scale multi-ancestry meta-analysis of Parkinsonâs disease with 49,049 cases, 18,785 proxy cases and 2,458,063 controls including individuals of European, East Asian, Latin American and African ancestry. In a meta-analysis, we identified 78 independent genome-wide significant loci, including 12 potentially novel loci (MTF2, PIK3CA, ADD1, SYBU, IRS2, USP8, PIGL, FASN, MYLK2, USP25, EP300 and PPP6R2) and fine-mapped 6 putative causal variants at 6 known PD loci. By combining our results with publicly available eQTL data, we identified 25 putative risk genes in these novel loci whose expression is associated with PD risk. This work lays the groundwork for future efforts aimed at identifying PD loci in non-European populations
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