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a The measurement of blood glucose concentrations in STZ-induced diabetic mice and control WT mice ( n = 5). b Representative dual-energy X-ray images of mouse femur from STZ-induced diabetic mice or control mice. c Bone mineral density (BMD) of STZ-induced diabetic mice or control mice ( n = 5). d Heatmap of differentially expressed miRNAs of bone specimens from STZ-induced diabetic mice or normal mice. e , f qRT-PCR analysis of <t>miRNA</t> expression in bone specimens from STZ-induced diabetic mice or control mice ( n = 3). All data are expressed as mean ± SEM, * p < 0.05, ** p < 0.01
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a The measurement of blood glucose concentrations in STZ-induced diabetic mice and control WT mice ( n = 5). b Representative dual-energy X-ray images of mouse femur from STZ-induced diabetic mice or control mice. c Bone mineral density (BMD) of STZ-induced diabetic mice or control mice ( n = 5). d Heatmap of differentially expressed miRNAs of bone specimens from STZ-induced diabetic mice or normal mice. e , f qRT-PCR analysis of <t>miRNA</t> expression in bone specimens from STZ-induced diabetic mice or control mice ( n = 3). All data are expressed as mean ± SEM, * p < 0.05, ** p < 0.01
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a The measurement of blood glucose concentrations in STZ-induced diabetic mice and control WT mice ( n = 5). b Representative dual-energy X-ray images of mouse femur from STZ-induced diabetic mice or control mice. c Bone mineral density (BMD) of STZ-induced diabetic mice or control mice ( n = 5). d Heatmap of differentially expressed miRNAs of bone specimens from STZ-induced diabetic mice or normal mice. e , f qRT-PCR analysis of <t>miRNA</t> expression in bone specimens from STZ-induced diabetic mice or control mice ( n = 3). All data are expressed as mean ± SEM, * p < 0.05, ** p < 0.01
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Exosomes exerted its role in PE through the delivery of miR‐139‐5p. (a) <t>Microarray</t> analysis of the top 10 <t>miRNAs</t> differentially expressed in trophoblasts treated with exosomes. (b) The exosomes significantly enriched miR‐139‐5p (unpaired t ‐test, ** P < 0.01). (c) The expression of miR‐139‐5p in exosomes of hucMSC transfected with miR‐139‐5p inhibitor measured by RT‐qPCR (one‐way ANOVA, ** P < 0.01). (d) Cell proliferation in trophoblasts treated with exo‐NC and exo‐inhibitor detected by CCK‐8 assay (two‐way ANOVA, ** P < 0.01). exo‐NC. exo‐inhibitor. (e) Cell migration in trophoblasts treated with exo‐NC and exo‐inhibitor detected by wound healing assay (two‐way ANOVA, ** P < 0.01). exo‐NC. exo‐inhibitor. (f) Cell invasion in trophoblasts treated with exo‐NC and exo‐inhibitor detected by Transwell assay (unpaired t ‐test, ** P < 0.01). (g) Cell apoptosis rate of trophoblasts treated with exo‐NC and exo‐inhibitor detected by TUNEL staining (unpaired t ‐test, ** P < 0.01).
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miR-140-5p lowly expressed in chemoresistance chort. ( A ) Heatmap representation of differentially expressed microRNAs in the chemoresistant osteosarcoma cases and chemosensitive osteosarcoma cases. Rows, <t>miRNA;</t> columns, independent biological replicates. Downregulated microRNAs are shown in red, while upregulated microRNAs are shown in green. ( B ) Differentially expressed microRNAs between chemoresistant osteosarcoma cases and chemosensitive osteosarcoma. Expression of miR-140-5p ( C ) in 40 paired osteosarcoma and adjacent normal bone tissues (ANCT). ( D ) Kaplan-Meier analysis for overall survival in 40 osteosarcoma patients in low- and moderate- groups based on miR-140-5p expression levels.
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CombiMatrix mirna microarrays
MicroRNAs detected by sequencing and their target gene families predicted in cotton
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Phalanx Bio Inc mirna microarray system
Unsupervised hierarchical clustering analysis of <t>miRNA</t> expression profiles from GISTs specimen:85 miRNAs were downregulated in high SNAI2 level GISTs compared with low SNAI2 level GISTs
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Image Search Results


a The measurement of blood glucose concentrations in STZ-induced diabetic mice and control WT mice ( n = 5). b Representative dual-energy X-ray images of mouse femur from STZ-induced diabetic mice or control mice. c Bone mineral density (BMD) of STZ-induced diabetic mice or control mice ( n = 5). d Heatmap of differentially expressed miRNAs of bone specimens from STZ-induced diabetic mice or normal mice. e , f qRT-PCR analysis of miRNA expression in bone specimens from STZ-induced diabetic mice or control mice ( n = 3). All data are expressed as mean ± SEM, * p < 0.05, ** p < 0.01

Journal: Cell Death Discovery

Article Title: High-glucose-induced miR-214-3p inhibits BMSCs osteogenic differentiation in type 1 diabetes mellitus

doi: 10.1038/s41420-019-0223-1

Figure Lengend Snippet: a The measurement of blood glucose concentrations in STZ-induced diabetic mice and control WT mice ( n = 5). b Representative dual-energy X-ray images of mouse femur from STZ-induced diabetic mice or control mice. c Bone mineral density (BMD) of STZ-induced diabetic mice or control mice ( n = 5). d Heatmap of differentially expressed miRNAs of bone specimens from STZ-induced diabetic mice or normal mice. e , f qRT-PCR analysis of miRNA expression in bone specimens from STZ-induced diabetic mice or control mice ( n = 3). All data are expressed as mean ± SEM, * p < 0.05, ** p < 0.01

Article Snippet: Then miRNA microarray was performed at CapitalBio Technology Ltd.

Techniques: Control, Quantitative RT-PCR, Expressing

Exosomes exerted its role in PE through the delivery of miR‐139‐5p. (a) Microarray analysis of the top 10 miRNAs differentially expressed in trophoblasts treated with exosomes. (b) The exosomes significantly enriched miR‐139‐5p (unpaired t ‐test, ** P < 0.01). (c) The expression of miR‐139‐5p in exosomes of hucMSC transfected with miR‐139‐5p inhibitor measured by RT‐qPCR (one‐way ANOVA, ** P < 0.01). (d) Cell proliferation in trophoblasts treated with exo‐NC and exo‐inhibitor detected by CCK‐8 assay (two‐way ANOVA, ** P < 0.01). exo‐NC. exo‐inhibitor. (e) Cell migration in trophoblasts treated with exo‐NC and exo‐inhibitor detected by wound healing assay (two‐way ANOVA, ** P < 0.01). exo‐NC. exo‐inhibitor. (f) Cell invasion in trophoblasts treated with exo‐NC and exo‐inhibitor detected by Transwell assay (unpaired t ‐test, ** P < 0.01). (g) Cell apoptosis rate of trophoblasts treated with exo‐NC and exo‐inhibitor detected by TUNEL staining (unpaired t ‐test, ** P < 0.01).

Journal: The Journal of Obstetrics and Gynaecology Research

Article Title: Exosomal microRNA ‐139‐5p from mesenchymal stem cells accelerates trophoblast cell invasion and migration by motivation of the ERK / MMP ‐2 pathway via downregulation of protein tyrosine phosphatase

doi: 10.1111/jog.14495

Figure Lengend Snippet: Exosomes exerted its role in PE through the delivery of miR‐139‐5p. (a) Microarray analysis of the top 10 miRNAs differentially expressed in trophoblasts treated with exosomes. (b) The exosomes significantly enriched miR‐139‐5p (unpaired t ‐test, ** P < 0.01). (c) The expression of miR‐139‐5p in exosomes of hucMSC transfected with miR‐139‐5p inhibitor measured by RT‐qPCR (one‐way ANOVA, ** P < 0.01). (d) Cell proliferation in trophoblasts treated with exo‐NC and exo‐inhibitor detected by CCK‐8 assay (two‐way ANOVA, ** P < 0.01). exo‐NC. exo‐inhibitor. (e) Cell migration in trophoblasts treated with exo‐NC and exo‐inhibitor detected by wound healing assay (two‐way ANOVA, ** P < 0.01). exo‐NC. exo‐inhibitor. (f) Cell invasion in trophoblasts treated with exo‐NC and exo‐inhibitor detected by Transwell assay (unpaired t ‐test, ** P < 0.01). (g) Cell apoptosis rate of trophoblasts treated with exo‐NC and exo‐inhibitor detected by TUNEL staining (unpaired t ‐test, ** P < 0.01).

Article Snippet: Then, the cDNA was marked and hybridized with the miRNA Expression Microarray (Arraystar).

Techniques: Microarray, Expressing, Transfection, Quantitative RT-PCR, CCK-8 Assay, Migration, Wound Healing Assay, Transwell Assay, TUNEL Assay, Staining

miR-140-5p lowly expressed in chemoresistance chort. ( A ) Heatmap representation of differentially expressed microRNAs in the chemoresistant osteosarcoma cases and chemosensitive osteosarcoma cases. Rows, miRNA; columns, independent biological replicates. Downregulated microRNAs are shown in red, while upregulated microRNAs are shown in green. ( B ) Differentially expressed microRNAs between chemoresistant osteosarcoma cases and chemosensitive osteosarcoma. Expression of miR-140-5p ( C ) in 40 paired osteosarcoma and adjacent normal bone tissues (ANCT). ( D ) Kaplan-Meier analysis for overall survival in 40 osteosarcoma patients in low- and moderate- groups based on miR-140-5p expression levels.

Journal: Scientific Reports

Article Title: MicroRNA-140-5p regulates osteosarcoma chemoresistance by targeting HMGN5 and autophagy

doi: 10.1038/s41598-017-00405-3

Figure Lengend Snippet: miR-140-5p lowly expressed in chemoresistance chort. ( A ) Heatmap representation of differentially expressed microRNAs in the chemoresistant osteosarcoma cases and chemosensitive osteosarcoma cases. Rows, miRNA; columns, independent biological replicates. Downregulated microRNAs are shown in red, while upregulated microRNAs are shown in green. ( B ) Differentially expressed microRNAs between chemoresistant osteosarcoma cases and chemosensitive osteosarcoma. Expression of miR-140-5p ( C ) in 40 paired osteosarcoma and adjacent normal bone tissues (ANCT). ( D ) Kaplan-Meier analysis for overall survival in 40 osteosarcoma patients in low- and moderate- groups based on miR-140-5p expression levels.

Article Snippet: miRNA microarrays analysis was outsourced to RiBio Cor (Ribobio, Guangzhou, China).

Techniques: Expressing

MicroRNAs detected by sequencing and their target gene families predicted in cotton

Journal: Genome Biology

Article Title: Genome-wide analysis reveals rapid and dynamic changes in miRNA and siRNA sequence and expression during ovule and fiber development in allotetraploid cotton ( Gossypium hirsutum L.)

doi: 10.1186/gb-2009-10-11-r122

Figure Lengend Snippet: MicroRNAs detected by sequencing and their target gene families predicted in cotton

Article Snippet: miRNA microarrays were performed using the arrays manufactured by CombiMatrix (Mukilteo, WA, USA) [ ].

Techniques: Sequencing, Binding Assay

Conservation of miRNAs in cotton and other plants

Journal: Genome Biology

Article Title: Genome-wide analysis reveals rapid and dynamic changes in miRNA and siRNA sequence and expression during ovule and fiber development in allotetraploid cotton ( Gossypium hirsutum L.)

doi: 10.1186/gb-2009-10-11-r122

Figure Lengend Snippet: Conservation of miRNAs in cotton and other plants

Article Snippet: miRNA microarrays were performed using the arrays manufactured by CombiMatrix (Mukilteo, WA, USA) [ ].

Techniques:

Stem loop structures of core pre-miRNAs. (a) Stem-loop structures of miR156 in A. thaliana ( AtMIR156 ), G. hirsutum ( GhMIR156 ), and G. raimondii ( GrMIR156 ) showing overall conserved structures among them and slightly different sequence composition and structure between GhMIR156 and GrMIR15 6. (b) The conserved miR482 is located in the 3' end of the stem in Populus trichocarpa ( PtMIR482 ) and G. hirsutum ( GhMIR482 ). (c) Stem-loop structures of four novel miRNAs (Gh-MIR2948, Gh-MIR2947, GhMIR2949a, and GhMIR2950) in G. hirsutum . One of the three predicted pre- GhMIR2949a EST stem-loops is shown. Gh-miR482-5p is located in the 5' end of the stem in the new miRNA Gh-MIR2948 . Gh-miR2948 was predicted to possess different targets from Gh-miR482 (b). Mature miRNAs and miRNA* are shown in red and green, respectively. The numbers in (b, c) indicate total miRNA and miRNA* sequence reads, respectively, in four tissues examined.

Journal: Genome Biology

Article Title: Genome-wide analysis reveals rapid and dynamic changes in miRNA and siRNA sequence and expression during ovule and fiber development in allotetraploid cotton ( Gossypium hirsutum L.)

doi: 10.1186/gb-2009-10-11-r122

Figure Lengend Snippet: Stem loop structures of core pre-miRNAs. (a) Stem-loop structures of miR156 in A. thaliana ( AtMIR156 ), G. hirsutum ( GhMIR156 ), and G. raimondii ( GrMIR156 ) showing overall conserved structures among them and slightly different sequence composition and structure between GhMIR156 and GrMIR15 6. (b) The conserved miR482 is located in the 3' end of the stem in Populus trichocarpa ( PtMIR482 ) and G. hirsutum ( GhMIR482 ). (c) Stem-loop structures of four novel miRNAs (Gh-MIR2948, Gh-MIR2947, GhMIR2949a, and GhMIR2950) in G. hirsutum . One of the three predicted pre- GhMIR2949a EST stem-loops is shown. Gh-miR482-5p is located in the 5' end of the stem in the new miRNA Gh-MIR2948 . Gh-miR2948 was predicted to possess different targets from Gh-miR482 (b). Mature miRNAs and miRNA* are shown in red and green, respectively. The numbers in (b, c) indicate total miRNA and miRNA* sequence reads, respectively, in four tissues examined.

Article Snippet: miRNA microarrays were performed using the arrays manufactured by CombiMatrix (Mukilteo, WA, USA) [ ].

Techniques: Sequencing

Differential accumulation of miRNAs in microarray and sequence assays. (a) Hierarchical cluster analysis of miRNA expression variation in leaves (L), fibers (F; +7 DPA) and fiber-bearing ovules (O+; +3 DPA) of TM-1 and ovules without fibers (O-; +3 DPA) of the N1N1 mutant (N1). At, Arabidopsis thaliana ; Gm, Glycine max ; Mt, Medicago truncatula ; Os, Oryza sativa ; Pp, Physcomitrella patens ; Pt, Populus trichocarpa ; Sb, Sorghum bicolor ; So, Saccharum officinarum ; Zm, Zea mays . Vertical lines indicate similar expression patterns of miRNAs in 'blocks'. (b) Positive correlation of miRNAs between sequencing frequencies and microarray hybridization intensities detected in cotton leaves (R 2 = 0.28; P = 0.02; degrees of freedom (df) = 16). (c) Positive correlation of miRNAs between sequencing frequencies and microarray hybridization intensities detected in cotton ovules (+ 3 DPA; R 2 = 0.20; P = 0.06; df = 16).

Journal: Genome Biology

Article Title: Genome-wide analysis reveals rapid and dynamic changes in miRNA and siRNA sequence and expression during ovule and fiber development in allotetraploid cotton ( Gossypium hirsutum L.)

doi: 10.1186/gb-2009-10-11-r122

Figure Lengend Snippet: Differential accumulation of miRNAs in microarray and sequence assays. (a) Hierarchical cluster analysis of miRNA expression variation in leaves (L), fibers (F; +7 DPA) and fiber-bearing ovules (O+; +3 DPA) of TM-1 and ovules without fibers (O-; +3 DPA) of the N1N1 mutant (N1). At, Arabidopsis thaliana ; Gm, Glycine max ; Mt, Medicago truncatula ; Os, Oryza sativa ; Pp, Physcomitrella patens ; Pt, Populus trichocarpa ; Sb, Sorghum bicolor ; So, Saccharum officinarum ; Zm, Zea mays . Vertical lines indicate similar expression patterns of miRNAs in 'blocks'. (b) Positive correlation of miRNAs between sequencing frequencies and microarray hybridization intensities detected in cotton leaves (R 2 = 0.28; P = 0.02; degrees of freedom (df) = 16). (c) Positive correlation of miRNAs between sequencing frequencies and microarray hybridization intensities detected in cotton ovules (+ 3 DPA; R 2 = 0.20; P = 0.06; df = 16).

Article Snippet: miRNA microarrays were performed using the arrays manufactured by CombiMatrix (Mukilteo, WA, USA) [ ].

Techniques: Microarray, Sequencing, Expressing, Mutagenesis, Hybridization

Small RNA blot analysis of miRNA accumulation in cotton leaves, fiber-bearing ovules, and fibers (n = 2). U6 or tRNAs were used as hybridization and RNA loading controls. Gh-miRNAs are shown on the right. TM-1, G. hirsutum cv. TM-1; D1, G. thurberi ; A2, G. arboreum ; N1, N1N1 lintless mutant of TM-1; -1 and -3, 1 and 3 days prior to anthesis, respectively; 0, on the day of anthesis; +1, +3, and +5, 1, 3, and 5 days post-anthesis (DPA), respectively; +7 and +10, fibers harvested at 7 and 10 DPA, respectively; L, leaves; P, petals. Note that doublets in miR167 were probably produced from precursors of multiple miRNA loci in cotton. The levels of Gh-miR2950 were very low and not quantified. A fragment present in fiber in the Gh-miR2950 blot was larger than 21 nucleotides and probably an artifact.

Journal: Genome Biology

Article Title: Genome-wide analysis reveals rapid and dynamic changes in miRNA and siRNA sequence and expression during ovule and fiber development in allotetraploid cotton ( Gossypium hirsutum L.)

doi: 10.1186/gb-2009-10-11-r122

Figure Lengend Snippet: Small RNA blot analysis of miRNA accumulation in cotton leaves, fiber-bearing ovules, and fibers (n = 2). U6 or tRNAs were used as hybridization and RNA loading controls. Gh-miRNAs are shown on the right. TM-1, G. hirsutum cv. TM-1; D1, G. thurberi ; A2, G. arboreum ; N1, N1N1 lintless mutant of TM-1; -1 and -3, 1 and 3 days prior to anthesis, respectively; 0, on the day of anthesis; +1, +3, and +5, 1, 3, and 5 days post-anthesis (DPA), respectively; +7 and +10, fibers harvested at 7 and 10 DPA, respectively; L, leaves; P, petals. Note that doublets in miR167 were probably produced from precursors of multiple miRNA loci in cotton. The levels of Gh-miR2950 were very low and not quantified. A fragment present in fiber in the Gh-miR2950 blot was larger than 21 nucleotides and probably an artifact.

Article Snippet: miRNA microarrays were performed using the arrays manufactured by CombiMatrix (Mukilteo, WA, USA) [ ].

Techniques: Northern blot, Hybridization, Mutagenesis, Produced

Mapping of mRNA cleavage sites by cotton miRNAs using RNA ligase-mediated rapid amplification of 5' complementary DNA ends (RLM 5' RACE). The arrows indicate the 5' ends of miRNA-guided cleavage products, and the numbers indicate the ratios of cleaved products of the total fragments that were sequenced. Only a single cleavage product was observed within the miRNA-complementary region for each examined EST target, except for a miR166 target, in which two products resulting from adjacent sites were detected. The EST targets (from 5' to 3') with accession numbers are shown in the top strand ('+', sense strand orientation; '-', antisense strand), and Gh-miRNAs are shown in the bottom strand with the orientation from 3' (left) to 5' (right). The total lengths of the target ESTs are shown above the EST accession numbers. Wobble U-G pairs are indicated by black dots. Note that Gh-miR166 had two adjacent cleavage sites in the predicted target. ARF, auxin responsive factor.

Journal: Genome Biology

Article Title: Genome-wide analysis reveals rapid and dynamic changes in miRNA and siRNA sequence and expression during ovule and fiber development in allotetraploid cotton ( Gossypium hirsutum L.)

doi: 10.1186/gb-2009-10-11-r122

Figure Lengend Snippet: Mapping of mRNA cleavage sites by cotton miRNAs using RNA ligase-mediated rapid amplification of 5' complementary DNA ends (RLM 5' RACE). The arrows indicate the 5' ends of miRNA-guided cleavage products, and the numbers indicate the ratios of cleaved products of the total fragments that were sequenced. Only a single cleavage product was observed within the miRNA-complementary region for each examined EST target, except for a miR166 target, in which two products resulting from adjacent sites were detected. The EST targets (from 5' to 3') with accession numbers are shown in the top strand ('+', sense strand orientation; '-', antisense strand), and Gh-miRNAs are shown in the bottom strand with the orientation from 3' (left) to 5' (right). The total lengths of the target ESTs are shown above the EST accession numbers. Wobble U-G pairs are indicated by black dots. Note that Gh-miR166 had two adjacent cleavage sites in the predicted target. ARF, auxin responsive factor.

Article Snippet: miRNA microarrays were performed using the arrays manufactured by CombiMatrix (Mukilteo, WA, USA) [ ].

Techniques: Amplification

Quantitative RT-PCR analysis of predicted targets of miRNAs, including three novel miRNAs, in cotton. O (-3), O (0), O (+3), F (+7), and Leaf indicate RNA samples from the ovules at -3 DPA, 0 DPA, and +3 DPA, fiber at +7 DPA, and leaves, respectively. The label above each plot indicates the EST accession number followed by the predicted gene function and the corresponding miRNA. Relative expression levels (REL) were calculated using HISTONE H3 as a control.

Journal: Genome Biology

Article Title: Genome-wide analysis reveals rapid and dynamic changes in miRNA and siRNA sequence and expression during ovule and fiber development in allotetraploid cotton ( Gossypium hirsutum L.)

doi: 10.1186/gb-2009-10-11-r122

Figure Lengend Snippet: Quantitative RT-PCR analysis of predicted targets of miRNAs, including three novel miRNAs, in cotton. O (-3), O (0), O (+3), F (+7), and Leaf indicate RNA samples from the ovules at -3 DPA, 0 DPA, and +3 DPA, fiber at +7 DPA, and leaves, respectively. The label above each plot indicates the EST accession number followed by the predicted gene function and the corresponding miRNA. Relative expression levels (REL) were calculated using HISTONE H3 as a control.

Article Snippet: miRNA microarrays were performed using the arrays manufactured by CombiMatrix (Mukilteo, WA, USA) [ ].

Techniques: Quantitative RT-PCR, Expressing, Control

Unsupervised hierarchical clustering analysis of miRNA expression profiles from GISTs specimen:85 miRNAs were downregulated in high SNAI2 level GISTs compared with low SNAI2 level GISTs

Journal: Cancer Cell International

Article Title: Identification of upstream miRNAs of SNAI2 and their influence on the metastasis of gastrointestinal stromal tumors

doi: 10.1186/s12935-019-1006-8

Figure Lengend Snippet: Unsupervised hierarchical clustering analysis of miRNA expression profiles from GISTs specimen:85 miRNAs were downregulated in high SNAI2 level GISTs compared with low SNAI2 level GISTs

Article Snippet: Labeling and hybridization were performed in accordance with the protocols in the PhalanxBio miRNA microarray system.

Techniques: Expressing

Prediction and screening of the upstream metastasis-associated miRNAs of SNAI2 in GISTs. a Flowchart of confirmation of the upstream metastasis-associated miRNAs of SNAI2 in GISTs. b , c The mRNA and protein levels of SNAI2 in 10 GISTs tissue, 3 high SNAI2 level GISTs and 3 low SNAI2 level GISTs were selected for the miRNA microarray. d Eight possible metastasis-associated miRNAs levels in GISTs. The miRNAs levels of five miRNAs including miRNA-1-3P, miRNA-200b-3p, miRNA-32-3P, miRNA-30c-1-3P and miRNA-363-3P were significantly lower in high SNAI2 level GISTs group compared with low SNAI2 level GISTs group

Journal: Cancer Cell International

Article Title: Identification of upstream miRNAs of SNAI2 and their influence on the metastasis of gastrointestinal stromal tumors

doi: 10.1186/s12935-019-1006-8

Figure Lengend Snippet: Prediction and screening of the upstream metastasis-associated miRNAs of SNAI2 in GISTs. a Flowchart of confirmation of the upstream metastasis-associated miRNAs of SNAI2 in GISTs. b , c The mRNA and protein levels of SNAI2 in 10 GISTs tissue, 3 high SNAI2 level GISTs and 3 low SNAI2 level GISTs were selected for the miRNA microarray. d Eight possible metastasis-associated miRNAs levels in GISTs. The miRNAs levels of five miRNAs including miRNA-1-3P, miRNA-200b-3p, miRNA-32-3P, miRNA-30c-1-3P and miRNA-363-3P were significantly lower in high SNAI2 level GISTs group compared with low SNAI2 level GISTs group

Article Snippet: Labeling and hybridization were performed in accordance with the protocols in the PhalanxBio miRNA microarray system.

Techniques: Microarray

SNAI2 levels after transfection of miRNA mimics and inhibitors. a , b MiR-200b-3p, miR-30c-1-3P and miR-363-3P could downregulate the SNAI2 in both protein and mRNA level

Journal: Cancer Cell International

Article Title: Identification of upstream miRNAs of SNAI2 and their influence on the metastasis of gastrointestinal stromal tumors

doi: 10.1186/s12935-019-1006-8

Figure Lengend Snippet: SNAI2 levels after transfection of miRNA mimics and inhibitors. a , b MiR-200b-3p, miR-30c-1-3P and miR-363-3P could downregulate the SNAI2 in both protein and mRNA level

Article Snippet: Labeling and hybridization were performed in accordance with the protocols in the PhalanxBio miRNA microarray system.

Techniques: Transfection

The invasiveness of GIST cells after treated with miRNA-mimics and miRNA-inhibitors. The invasiveness of GISTs cells were downregulated by miRNAs mimics and upregulated by inhibitors of 3 miRNAs, miR-200b-3p, miR-30c-1-3P and miR-363-3P

Journal: Cancer Cell International

Article Title: Identification of upstream miRNAs of SNAI2 and their influence on the metastasis of gastrointestinal stromal tumors

doi: 10.1186/s12935-019-1006-8

Figure Lengend Snippet: The invasiveness of GIST cells after treated with miRNA-mimics and miRNA-inhibitors. The invasiveness of GISTs cells were downregulated by miRNAs mimics and upregulated by inhibitors of 3 miRNAs, miR-200b-3p, miR-30c-1-3P and miR-363-3P

Article Snippet: Labeling and hybridization were performed in accordance with the protocols in the PhalanxBio miRNA microarray system.

Techniques:

Luciferase reporter assays. Transfection of miRNA mimics of miR-200b-3p, miR-30c-1-3P, miR-363-3P resulted in a decrease in luciferase signal to from 73 to 83% of that in the negative control

Journal: Cancer Cell International

Article Title: Identification of upstream miRNAs of SNAI2 and their influence on the metastasis of gastrointestinal stromal tumors

doi: 10.1186/s12935-019-1006-8

Figure Lengend Snippet: Luciferase reporter assays. Transfection of miRNA mimics of miR-200b-3p, miR-30c-1-3P, miR-363-3P resulted in a decrease in luciferase signal to from 73 to 83% of that in the negative control

Article Snippet: Labeling and hybridization were performed in accordance with the protocols in the PhalanxBio miRNA microarray system.

Techniques: Luciferase, Transfection, Negative Control

Journal: Cancer Cell International

Article Title: Identification of upstream miRNAs of SNAI2 and their influence on the metastasis of gastrointestinal stromal tumors

doi: 10.1186/s12935-019-1006-8

Figure Lengend Snippet:

Article Snippet: Labeling and hybridization were performed in accordance with the protocols in the PhalanxBio miRNA microarray system.

Techniques:

Journal: Cancer Cell International

Article Title: Identification of upstream miRNAs of SNAI2 and their influence on the metastasis of gastrointestinal stromal tumors

doi: 10.1186/s12935-019-1006-8

Figure Lengend Snippet:

Article Snippet: Labeling and hybridization were performed in accordance with the protocols in the PhalanxBio miRNA microarray system.

Techniques: