In this study, we used the eukaryotic model Saccharomyces cerevisiae to better understand quinines mode of action and the mechanisms underlying the cell response to the drug.
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View SamplesPurpose: PRPF31 as a general mRNA splicing factor has important roles in every cell of each organ in the body. But, there is not enough evidence to clarify how PRPF31 deficiency is associated with retina specific disease as Retinitis Pigmentosa (RP). In this study, we investigated the functional effects of PRPF31 downregulation in a model of Human Organotypic Retinal Culture (HORC) using RNA sequencing technique.Methods: Human eyes from young donors (20-40 years old) were obtained within the 24 hours post mortem from Iranian eye bank. The retinas were isolated and transfected using PRPF31 and scramble siRNA. PRPF31 downregulation was confirmed by quantitative real time PCR (q-RTPCR). The mRNA libraries were sequenced on Illumina HiSeq 4000 and analyzed using bioinformatics approaches. Then, q-RTPCR for some downregulated genes was performed for additional confirmation.Results: PRPF31 reduction in siRNA treated samples led to downregulation of 1040 of genes and upregulation of 858 of genes, as a whole. The differentially downregulated genes were enriched in phototransduction (RHO, ROM1, FSCN, GNAT, CRX, NR2E3) and rhodopsin mediated visual cycle. RNA sequencing analysis confirmed q-RTPCR results of selected genes involved in phototransduction. In addition, genes with increased expression were mainly associated with immune and inflammatory responses, particularly innate immune system. Also, we examined the effects of PRPF31 deficiency on splicing by analysis of differential exon usage (DEU) of the retina. Pathway analysis of DEU genes indicated that the most affected pathways are the phototransduction, cortical actin cytoskeleton organization and photoreceptor cell development .Conclusion: Our data reveals that PRPF31 deficiency has a crucial role in retina specific pathology by affecting the expression and exon usage of wide range of genes implicated in phototransduction and rhodopsin mediated signaling pathway. In addition, there was an evidence of upregulation of some genes which bioinformatics approach showed their important role in activation of inflammatory response. Together these findings not only confirm our model of RP11 but also unravel some mysteries in pathophysiology of this disease in human retina
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Sex, Age, Specimen part, Disease, Treatment
View SamplesIFNs are highly pleiotropic cytokines also endowed with marked anti-angiogenic activity. In this study, the mRNA expression profiles of endothelial cells (EC) exposed in vitro to IFN-alpha, IFN-beta, or
Identification of genes selectively regulated by IFNs in endothelial cells.
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View SamplesStem and progenitor cells are the critical units for tissue maintenance, regeneration, and repair. The activation of regenerative events in response to tissue injury has been correlated with mobilization of tissue-resident progenitor cells, which is functional to the wound healing process. However, until now there has been no evidence for the presence of cells with a healing capacity circulating in healthy conditions. We identified a rare cell population present in the peripheral blood of healthy mice that actively participates in tissue repair. These Circulating cells, with a Homing ability and involved in the Healing process (CH cells), were identified by an innovative flowcytometry strategy as small cells not expressing CD45 and lineage markers. Their transcriptome profile revealed that CH cells are unique and present a high expression of key pluripotency- and epiblast-associated genes. More importantly, CH-labeled cells derived from healthy Red Fluorescent Protein (RFP)-transgenic mice and systemically injected into syngeneic fractured wild-type mice migrated and engrafted in wounded tissues, ultimately differentiating into tissue-specific cells. Accordingly, the number of CH cells in the peripheral blood rapidly decreased following femoral fracture. These findings uncover the existence of constitutively circulating cells that may represent novel, accessible, and versatile effectors of therapeutic tissue regeneration.
Identification of a New Cell Population Constitutively Circulating in Healthy Conditions and Endowed with a Homing Ability Toward Injured Sites.
Sex, Specimen part
View SamplesThe anthracycline, doxorubicin (Dox), is widely used in oncology, but it may it may cause a cardiomyopathy which has dismal prognosis and cannot be effectively prevented. The secretome of multipotent human amniotic fluid-derived stem cells (hAFS) has previously been demonstrated to reduce ischemic cardiac damage. Here, it is shown that the hAFS conditioned medium (hAFS-CM) antagonizes senescence and apoptosis of cardiomyocytes and cardiac progenitor cells, two major features of Dox cardiotoxicity. Mechanistic studies with primary mouse neonatal cardiomyocytes reveal that hAFS-CM inhibition of Dox-elicited senescence and apoptosis is paralleled by decreased DNA damage and is associated with nuclear translocation of NF-kB and upregulation of a set of genes controlled by NF-kB, namely Il6 and Cxcl1, which promote cardiomyocyte survival, and Cyp1b1 and Abcb1, which encode for proteins involved in Dox metabolism and efflux, respectively. The PI3K/Akt signaling cascade, upstream of NF-kB, is potently activated by the hAFS-CM and pre-treatment with a PI3K inhibitor abrogates NF-kB accumulation into the nucleus, modulation of its target genes, and prevention of Dox-initiated senescence and apoptosis in response to the hAFS-CM. This work may lay the ground for the development of a stem cell-based paracrine therapy of chemotherapy-related cardiotoxicity.
The human amniotic fluid stem cell secretome effectively counteracts doxorubicin-induced cardiotoxicity.
Specimen part
View SamplesTumor tissue heterogeneity is a well known feature of several solid tumors. Neuroblastic Tumors (NTs) is a group of paediatric cancers with a great tissue heterogeneity. Most of NTs are composed of undifferentiated, poorly differentiated or differentiating neuroblastic (Nb) cells with very few or absent Schwannian stromal (SS) cells: these tumors are grouped as Neuroblastoma (Schwannian stroma-poor). The remaining NTs are composed of abundant SS cells and classified as Ganglioneuroblastoma (Schwannian stroma-rich) intermixed or nodular and Ganglioneuroma. The importance to understand Nb and SS gene signatures in NTs, is to clarify the complex network mechanism of tumor growth and progression. In order to identify the Nb and SS cells gene signatures, we analyzed the gene expression profiling of 19 cases of neuroblastic tumors: 10 stroma poor (NTs-SP) and 9 stroma rich (NTs-SR), by high density oligonucleotide microarrays. Moreover, the analysis was performed in parallel on both whole and laser microdissected tumor samples: from 4 of 19 cases, was isolated different areas all composed of pure cellular populations.
Identification of low intratumoral gene expression heterogeneity in neuroblastic tumors by genome-wide expression analysis and game theory.
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View SamplesGlioblastomas (GBM) are poorly differentiated astrocytic tumors arising in the Central Nervous System (CNS), which despite aggressive treatments are still characterized by a fatal outcome. Several studies have shown the existence of a subpopulation of cells within glioma tumors displaying cancer stem cells properties. As the term tumor initiating cells (TICs) is frequentely used to describe cells as these with cancer stem cells capacity. Because TICs promotes the tumor chemo- and radio-resistance and angiogenesis it is conceivable that finding a mean to kill these cells would lead to a better therapy for GBM.
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View SamplesDNA repair genes have been shown to be expressed in the early stages of mammalian development probably to reduce possible replication errors and genotoixc damages. Several birth defects and some cancers are due to inappropriate or defective DNA repair machinery indicating that a right activity of DNA repair genes in the early stages of fetal development are essential for an appropriate DNA function. Neuroblastoma (NB), an embryonal tumor deriving from neural crest cells (NCCs) is diagnosed in about 30% of patients within the first year of life. Moreover, several reports show that NB can be detected in foetus and in neonatal period.
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View SamplesIn March 2006, murine Bone Marrow Stromal Cells (BMSC) were flown in the Soyuz 12S to the International Space Station to investigate the effects of microgravity on their osteogenic potential in a three-dimensional environment. BMSC were grown in porous bioceramic Skelite disks ( 9 mm x T 1.2 mm). The constructs were exposed to microgravity for ca. 8 days, then fixed for RNA extraction. While the flight experiment was performed in fully automated hardware inside the KUBIK incubator, one group of control samples were incubated inside manually operated hardwares (flight control), and the other control group was incubated under routine laboratory conditions (lab control). The altered gene expression profile was analyzed by Mouse Gene 1.0 ST array (Affymetrix) representing whole-transcript coverage. Each one of the 28853 genes is represented on the array by approximately 26 probes spread across the full length of the gene, providing a more complete and more accurate picture of gene expression than the 3 based expression array design.
Activation of nervous system development genes in bone marrow derived mesenchymal stem cells following spaceflight exposure.
Specimen part, Disease
View SamplesMost patients affected by Glioblastoma multiforme (GBM) experience a recurrence of the disease because of the spreading of tumor-initiating cells (TICs) beyond surgical boundary. Unveiling and targeting molecular mechanisms causing this process is a logic goal to impair GBM killing ability.
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Specimen part
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