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Arraystar inc lncrna/mrna expression profile microarray
Lncrna/Mrna Expression Profile Microarray, supplied by Arraystar inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Long noncoding RNA ( <t>LncRNA)</t> SEMA3B‐AS1 could be an important prognostic factor in predicting the survival of colorectal carcinoma (CRC) patients . (A) Hierarchical clustering analysis of differentially expressed lncRNAs that intersected between CRC tissues and paracancerous normal intestinal mucosal tissues, as well as between CRC cells SW620 and SW480. N, normal intestinal mucosa tissues. C, colorectal carcinoma tissues. The red square highlights SEMA3B‐AS1 . (B) The level of SEMA3B‐AS1 in paired colorectal carcinoma and adjacent noncancerous tissues. (C) The level of SEMA3B‐AS1 in colorectal carcinoma and colon mucosa epithelial (FHC) cell lines. (D) Expression analysis of SEMA3B‐AS1 in normal colorectal mucosa and colorectal carcinoma tissues by in situ hybridization (ISH). Scale bars are shown in the right–left corner of each picture. The scale bar indicates 100 μm in upper row, and the scale bar indicates 20 μm in lower row. (E) Correlation among TNM, lymph node metastasis, distant metastasis, and expression of SEMA3B‐AS1 . (F and G) Kaplan–Meier survival analysis in all patients with colorectal carcinoma according to SEMA3B‐AS1 expression according to our data (F) and The Cancer Genome Atlas (TCGA) cohort (G). For (B)–(E), data are presented as means ± SD in three independent experiments. * p < 0.05; ** p < 0.01; *** p < 0.001.
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Long noncoding RNA ( LncRNA) SEMA3B‐AS1 could be an important prognostic factor in predicting the survival of colorectal carcinoma (CRC) patients . (A) Hierarchical clustering analysis of differentially expressed lncRNAs that intersected between CRC tissues and paracancerous normal intestinal mucosal tissues, as well as between CRC cells SW620 and SW480. N, normal intestinal mucosa tissues. C, colorectal carcinoma tissues. The red square highlights SEMA3B‐AS1 . (B) The level of SEMA3B‐AS1 in paired colorectal carcinoma and adjacent noncancerous tissues. (C) The level of SEMA3B‐AS1 in colorectal carcinoma and colon mucosa epithelial (FHC) cell lines. (D) Expression analysis of SEMA3B‐AS1 in normal colorectal mucosa and colorectal carcinoma tissues by in situ hybridization (ISH). Scale bars are shown in the right–left corner of each picture. The scale bar indicates 100 μm in upper row, and the scale bar indicates 20 μm in lower row. (E) Correlation among TNM, lymph node metastasis, distant metastasis, and expression of SEMA3B‐AS1 . (F and G) Kaplan–Meier survival analysis in all patients with colorectal carcinoma according to SEMA3B‐AS1 expression according to our data (F) and The Cancer Genome Atlas (TCGA) cohort (G). For (B)–(E), data are presented as means ± SD in three independent experiments. * p < 0.05; ** p < 0.01; *** p < 0.001.

Journal: MedComm

Article Title: SEMA3B‐AS1 suppresses colorectal carcinoma progression by inhibiting Semaphorin 3B‐dependent VEGF signaling pathway activation

doi: 10.1002/mco2.365

Figure Lengend Snippet: Long noncoding RNA ( LncRNA) SEMA3B‐AS1 could be an important prognostic factor in predicting the survival of colorectal carcinoma (CRC) patients . (A) Hierarchical clustering analysis of differentially expressed lncRNAs that intersected between CRC tissues and paracancerous normal intestinal mucosal tissues, as well as between CRC cells SW620 and SW480. N, normal intestinal mucosa tissues. C, colorectal carcinoma tissues. The red square highlights SEMA3B‐AS1 . (B) The level of SEMA3B‐AS1 in paired colorectal carcinoma and adjacent noncancerous tissues. (C) The level of SEMA3B‐AS1 in colorectal carcinoma and colon mucosa epithelial (FHC) cell lines. (D) Expression analysis of SEMA3B‐AS1 in normal colorectal mucosa and colorectal carcinoma tissues by in situ hybridization (ISH). Scale bars are shown in the right–left corner of each picture. The scale bar indicates 100 μm in upper row, and the scale bar indicates 20 μm in lower row. (E) Correlation among TNM, lymph node metastasis, distant metastasis, and expression of SEMA3B‐AS1 . (F and G) Kaplan–Meier survival analysis in all patients with colorectal carcinoma according to SEMA3B‐AS1 expression according to our data (F) and The Cancer Genome Atlas (TCGA) cohort (G). For (B)–(E), data are presented as means ± SD in three independent experiments. * p < 0.05; ** p < 0.01; *** p < 0.001.

Article Snippet: LncRNA Expression Microarray (Arraystar) was used to label, purify, and hybridize the cDNA.

Techniques: Expressing, In Situ Hybridization

The regulatory mechanism of the competitive endogenous RNA networks in transcription, translation, and epigenetics . LncRNA regulates transcription by splicing and degrading RNA, while posttranscriptional regulation is controlled by decoy and sponge proteins, as well as epigenetic modification. CircRNA regulates transcription and translation by binding to miRNA and interacting with RNA-binding protein, particularly in certain circRNA can code protein. Both lncRNA and circRNA can serve as competitive endogenous RNA that bind with miRNA to regulate the translation of targeted mRNA, thereby inhibiting mRNA translation and promoting mRNA degradation. See text for details. circRNA, circular RNA; lncRNA, long non-coding RNA; miRNA, microRNA; mRNA, messenger RNA; UTR, untranslated regions.

Journal: Reviews in Cardiovascular Medicine

Article Title: Revealing Landscape of Competing Endogenous RNA Networks in Sepsis-Induced Cardiovascular Diseases

doi: 10.31083/j.rcm2407214

Figure Lengend Snippet: The regulatory mechanism of the competitive endogenous RNA networks in transcription, translation, and epigenetics . LncRNA regulates transcription by splicing and degrading RNA, while posttranscriptional regulation is controlled by decoy and sponge proteins, as well as epigenetic modification. CircRNA regulates transcription and translation by binding to miRNA and interacting with RNA-binding protein, particularly in certain circRNA can code protein. Both lncRNA and circRNA can serve as competitive endogenous RNA that bind with miRNA to regulate the translation of targeted mRNA, thereby inhibiting mRNA translation and promoting mRNA degradation. See text for details. circRNA, circular RNA; lncRNA, long non-coding RNA; miRNA, microRNA; mRNA, messenger RNA; UTR, untranslated regions.

Article Snippet: A total of 30,584 differentially expressed lncRNAs (1068 downregulated and 871 upregulated) were screened by the Arraystar Human lncRNA Expression Microarray; among them, CTC-459I6.1 and AL132709.5 were the most downregulated and upregulated lncRNAs, respectively.

Techniques: Modification, Binding Assay, RNA Binding Assay

The  lncRNA  associated ceRNA networks in sepsis-induced cardiotoxicity .

Journal: Reviews in Cardiovascular Medicine

Article Title: Revealing Landscape of Competing Endogenous RNA Networks in Sepsis-Induced Cardiovascular Diseases

doi: 10.31083/j.rcm2407214

Figure Lengend Snippet: The lncRNA associated ceRNA networks in sepsis-induced cardiotoxicity .

Article Snippet: A total of 30,584 differentially expressed lncRNAs (1068 downregulated and 871 upregulated) were screened by the Arraystar Human lncRNA Expression Microarray; among them, CTC-459I6.1 and AL132709.5 were the most downregulated and upregulated lncRNAs, respectively.

Techniques: Biomarker Discovery, Diagnostic Assay, Activity Assay, Expressing, Inhibition, Migration, Membrane

The  lncRNA  associated ceRNA networks of septic cardiovascular toxicity in non-cardiomyocytes .

Journal: Reviews in Cardiovascular Medicine

Article Title: Revealing Landscape of Competing Endogenous RNA Networks in Sepsis-Induced Cardiovascular Diseases

doi: 10.31083/j.rcm2407214

Figure Lengend Snippet: The lncRNA associated ceRNA networks of septic cardiovascular toxicity in non-cardiomyocytes .

Article Snippet: A total of 30,584 differentially expressed lncRNAs (1068 downregulated and 871 upregulated) were screened by the Arraystar Human lncRNA Expression Microarray; among them, CTC-459I6.1 and AL132709.5 were the most downregulated and upregulated lncRNAs, respectively.

Techniques: Biomarker Discovery, Expressing

LncRNA-mediated competitive endogenous RNA networks in septic cardiomyopathy . LncRNAs CRNDE, MIAT , and SNHG1 are associated with septic cardiomyopathy by regulating oxidative stress. LncRNAs H19, RMRP , and TTN-AS1 are associated with septic cardiomyopathy by regulating mitochondrial injury. Yin Yang-1 and matrine alleviate septic cardiomyopathy by upregulating LINC00472 and downregulating PTENP1 , respectively. Palmitic acid and saturated fatty acid aggravate septic cardiomyopathy by upregulating GAS5 and MALAT1 , respectively. The up-arrow indicates upregulation and the down-arrow indicates downregulation. The arrow-line represents promotion and the T-line represents inhibition. ANRIL, antisense ncRNA in the INK4 locus; CRNDE , colorectal neoplasia differentially expressed; E2F2, E2F transcription factor 2; GAS5 , growth arrest specific 5; H19 , H19 imprinted maternally expressed transcript; HMGB1, high mobility group protein 1; HSPA4, heat shock 70 kDa protein 4; IL-6, interleukin-6; MALAT1 , metastasis associated lung adenocarcinoma transcript 1; MAOA, monoamine oxidase A; MIAT, myocardial infarction associated transcript; NF- κ B, nuclear factor- κ B; PTENP1 , PTEN pseudogene-1; RMRP , RNA component of mitochondrial RNA processing endoribonuclease; SIRT1, sirtuins 1; SNHG16 , small nucleolar RNA host gene 16; SORBS2, sorbin and SH3 domain‐containing 2; TLR4, toll-like receptor 4; TRAF6, TNF receptor associated factor; TTN-AS1 , TTN antisense RNA 1; XIAP, X-linked inhibitor of apoptosis gene; lncRNA, long non-coding RNA.

Journal: Reviews in Cardiovascular Medicine

Article Title: Revealing Landscape of Competing Endogenous RNA Networks in Sepsis-Induced Cardiovascular Diseases

doi: 10.31083/j.rcm2407214

Figure Lengend Snippet: LncRNA-mediated competitive endogenous RNA networks in septic cardiomyopathy . LncRNAs CRNDE, MIAT , and SNHG1 are associated with septic cardiomyopathy by regulating oxidative stress. LncRNAs H19, RMRP , and TTN-AS1 are associated with septic cardiomyopathy by regulating mitochondrial injury. Yin Yang-1 and matrine alleviate septic cardiomyopathy by upregulating LINC00472 and downregulating PTENP1 , respectively. Palmitic acid and saturated fatty acid aggravate septic cardiomyopathy by upregulating GAS5 and MALAT1 , respectively. The up-arrow indicates upregulation and the down-arrow indicates downregulation. The arrow-line represents promotion and the T-line represents inhibition. ANRIL, antisense ncRNA in the INK4 locus; CRNDE , colorectal neoplasia differentially expressed; E2F2, E2F transcription factor 2; GAS5 , growth arrest specific 5; H19 , H19 imprinted maternally expressed transcript; HMGB1, high mobility group protein 1; HSPA4, heat shock 70 kDa protein 4; IL-6, interleukin-6; MALAT1 , metastasis associated lung adenocarcinoma transcript 1; MAOA, monoamine oxidase A; MIAT, myocardial infarction associated transcript; NF- κ B, nuclear factor- κ B; PTENP1 , PTEN pseudogene-1; RMRP , RNA component of mitochondrial RNA processing endoribonuclease; SIRT1, sirtuins 1; SNHG16 , small nucleolar RNA host gene 16; SORBS2, sorbin and SH3 domain‐containing 2; TLR4, toll-like receptor 4; TRAF6, TNF receptor associated factor; TTN-AS1 , TTN antisense RNA 1; XIAP, X-linked inhibitor of apoptosis gene; lncRNA, long non-coding RNA.

Article Snippet: A total of 30,584 differentially expressed lncRNAs (1068 downregulated and 871 upregulated) were screened by the Arraystar Human lncRNA Expression Microarray; among them, CTC-459I6.1 and AL132709.5 were the most downregulated and upregulated lncRNAs, respectively.

Techniques: Inhibition

LncRNA-mediated ceRNA networks in vascular endothelial cells and mononuclear macrophages under sepsis environment . LncRNAs LUADT1, HULC , and SNHG15 are involved in sepsis endothelial dysfunction. LncRNAs PVT1, HOTAR , and SNHG16 are involved in sepsis-induced macrophage polarization. In general, lncRNA MALAT1 aggravates sepsis-induced endothelial dysfunction and macrophage polarization, but MALAT1 inhibits LPS-induced RAW264.7 macrophage apoptosis by regulating has-miR-346/SMAD3 axis. The up-arrow indicates upregulation and the down-arrow indicates downregulation. The arrow-line represents promotion and the T-line represents inhibition. HMGB1, high mobility group protein 1; HOTAIR , hox transcript antisense RNA; HULC, highly upregulated in liver cancer; IL-6, interleukin-6; LUADT1, lung adenocarcinoma transcript 1; MALAT1 , metastasis associated lung adenocarcinoma transcript 1; MCEMP1, mast cell expressed membrane protein 1; NF- κ B, nuclear factor- κ B; PIM-1, pim-1 proto-oncogene; PVT1 , plasmacytoma variant translocation 1; SMAD3, SMAD family member 3; SNHG15/16 , small nucleolar RNA host gene 15/16; TLR4, toll-like receptor 4; TRPM7, transient receptor potential melastatin-subfamily member 7; lncRNA, long non-coding RNA.

Journal: Reviews in Cardiovascular Medicine

Article Title: Revealing Landscape of Competing Endogenous RNA Networks in Sepsis-Induced Cardiovascular Diseases

doi: 10.31083/j.rcm2407214

Figure Lengend Snippet: LncRNA-mediated ceRNA networks in vascular endothelial cells and mononuclear macrophages under sepsis environment . LncRNAs LUADT1, HULC , and SNHG15 are involved in sepsis endothelial dysfunction. LncRNAs PVT1, HOTAR , and SNHG16 are involved in sepsis-induced macrophage polarization. In general, lncRNA MALAT1 aggravates sepsis-induced endothelial dysfunction and macrophage polarization, but MALAT1 inhibits LPS-induced RAW264.7 macrophage apoptosis by regulating has-miR-346/SMAD3 axis. The up-arrow indicates upregulation and the down-arrow indicates downregulation. The arrow-line represents promotion and the T-line represents inhibition. HMGB1, high mobility group protein 1; HOTAIR , hox transcript antisense RNA; HULC, highly upregulated in liver cancer; IL-6, interleukin-6; LUADT1, lung adenocarcinoma transcript 1; MALAT1 , metastasis associated lung adenocarcinoma transcript 1; MCEMP1, mast cell expressed membrane protein 1; NF- κ B, nuclear factor- κ B; PIM-1, pim-1 proto-oncogene; PVT1 , plasmacytoma variant translocation 1; SMAD3, SMAD family member 3; SNHG15/16 , small nucleolar RNA host gene 15/16; TLR4, toll-like receptor 4; TRPM7, transient receptor potential melastatin-subfamily member 7; lncRNA, long non-coding RNA.

Article Snippet: A total of 30,584 differentially expressed lncRNAs (1068 downregulated and 871 upregulated) were screened by the Arraystar Human lncRNA Expression Microarray; among them, CTC-459I6.1 and AL132709.5 were the most downregulated and upregulated lncRNAs, respectively.

Techniques: Inhibition, Membrane, Variant Assay, Translocation Assay

Apoptosis and pyroptosis associated competitive endogenous RNA networks in septic cardiomyopathy . LncRNAs CYTOR, GAS5, KCNQ1OT1, LUCAT1 , and NEAT1 are associated with septic cardiomyopathy by regulating apoptosis. LncRNAs XIST and ZFAS1 are associated with septic cardiomyopathy by regulating pyroptosis. The up-arrow indicates upregulation and the down-arrow indicates downregulation. The arrow-line represents promotion and the T-line represents inhibition. c-Fos, A nuclear phosphoprotein; CYTOR , cytoskeleton regulator RNA; GAS5 , growth arrest specific 5; KCNQ1OT1 , KCNQ1 opposite strand/antisense transcript 1; LUCAT1 , lung cancer-related transcript 1; NEAT1 , nuclear paraspeckle assembly transcript 1; NF- κ B, nuclear factor- κ B; NLRP3, NOD-like receptor thermal protein domain associated protein 3; PGC-1α, peroxisome proliIerators-activated receptor γ coactivator l alpha; ROCK1, rho associated coiled-coil containing protein kinase 1; SESN2, sestrin 2; SIRT1, silent information regulator 1; XIAP, X-linked inhibitor of apoptosis gene; XIST , X-inactive specific transcript; ZFAS1 , zinc finger antisense 1; lncRNA, long non-coding RNA.

Journal: Reviews in Cardiovascular Medicine

Article Title: Revealing Landscape of Competing Endogenous RNA Networks in Sepsis-Induced Cardiovascular Diseases

doi: 10.31083/j.rcm2407214

Figure Lengend Snippet: Apoptosis and pyroptosis associated competitive endogenous RNA networks in septic cardiomyopathy . LncRNAs CYTOR, GAS5, KCNQ1OT1, LUCAT1 , and NEAT1 are associated with septic cardiomyopathy by regulating apoptosis. LncRNAs XIST and ZFAS1 are associated with septic cardiomyopathy by regulating pyroptosis. The up-arrow indicates upregulation and the down-arrow indicates downregulation. The arrow-line represents promotion and the T-line represents inhibition. c-Fos, A nuclear phosphoprotein; CYTOR , cytoskeleton regulator RNA; GAS5 , growth arrest specific 5; KCNQ1OT1 , KCNQ1 opposite strand/antisense transcript 1; LUCAT1 , lung cancer-related transcript 1; NEAT1 , nuclear paraspeckle assembly transcript 1; NF- κ B, nuclear factor- κ B; NLRP3, NOD-like receptor thermal protein domain associated protein 3; PGC-1α, peroxisome proliIerators-activated receptor γ coactivator l alpha; ROCK1, rho associated coiled-coil containing protein kinase 1; SESN2, sestrin 2; SIRT1, silent information regulator 1; XIAP, X-linked inhibitor of apoptosis gene; XIST , X-inactive specific transcript; ZFAS1 , zinc finger antisense 1; lncRNA, long non-coding RNA.

Article Snippet: A total of 30,584 differentially expressed lncRNAs (1068 downregulated and 871 upregulated) were screened by the Arraystar Human lncRNA Expression Microarray; among them, CTC-459I6.1 and AL132709.5 were the most downregulated and upregulated lncRNAs, respectively.

Techniques: Inhibition

The lncRNA- and circRNA-associated competitive endogenous RNA networks in septic cardiovascular dysfunction . The regulatory mechanisms and potential functions of ceRNA networks in septic cardiomyopathy and vascular paralysis by regulating inflammation, oxidative response, endothelial dysfunction, macrophage polarization, apoptosis and pyroptosis, along with metabolic energy impairment and endoplasmic reticulum stress. See text for details.

Journal: Reviews in Cardiovascular Medicine

Article Title: Revealing Landscape of Competing Endogenous RNA Networks in Sepsis-Induced Cardiovascular Diseases

doi: 10.31083/j.rcm2407214

Figure Lengend Snippet: The lncRNA- and circRNA-associated competitive endogenous RNA networks in septic cardiovascular dysfunction . The regulatory mechanisms and potential functions of ceRNA networks in septic cardiomyopathy and vascular paralysis by regulating inflammation, oxidative response, endothelial dysfunction, macrophage polarization, apoptosis and pyroptosis, along with metabolic energy impairment and endoplasmic reticulum stress. See text for details.

Article Snippet: A total of 30,584 differentially expressed lncRNAs (1068 downregulated and 871 upregulated) were screened by the Arraystar Human lncRNA Expression Microarray; among them, CTC-459I6.1 and AL132709.5 were the most downregulated and upregulated lncRNAs, respectively.

Techniques: