human brain microvascular endothelial cell line Search Results


96
Cell Applications Inc t 75 flasks
T 75 Flasks, supplied by Cell Applications Inc, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Johns Hopkins HealthCare primary human brain microvascular endothelial cells
Invasion and survival of M. tuberculosis pknD mutant in host-derived cells . A . BALB/c mice were infected with M. tuberculosis CDC1551 or pknD mutant, and sacrificed at days 1 and 49 after infection. The mutant for M. tuberculosis pknD was significantly attenuated (P = 0.004) in mouse brain, but not lung tissue, 49 days after infection. No defect was observed in the lungs at either time point. Bacterial burden is represented as log 10 CFU/organ for all animal experiments. B . Invasion of host-cell monolayers by wild-type CDC1551, wild-type intergenic transposon control, pknD transposon mutant (pknD:Tn), and pknD genetic complement (pknD:Comp) was examined and normalized to the wild-type control. Invasion assays were performed in brain <t>microvascular</t> <t>endothelial</t> cells (HBMEC), epithelial A549 cells, and umbilical vein endothelia (HUVEC). No difference in invasion was observed in A549 cells (P = 0.31) or HUVEC (P = 0.41). A significant reduction in invasive capacity, however, was observed in the CNS-derived HBMEC (P = 0.02). This defect was restored by genetic complementation with the native pknD/pstS2 operon. N.S. = not significantly different. C . Intracellular survival of each of the above M. tuberculosis strains was examined in HBMEC at days 1, 3, 5, and 7 after infection. The pknD:Tn mutant demonstrated an invasion and intracellular survival defect in HBMEC relative to wild-type over the course of the seven day infection. D . Survival was also examined by infection of activated J774 macrophages. No corresponding survival defect for the pknD:Tn mutant was observed in these cells during the seven day infection. A mutant for the gene Rv0442c , known to be attenuated in the macrophage model, is included as a control. All CFU counts are represented as mean ± standard deviation.
Primary Human Brain Microvascular Endothelial Cells, supplied by Johns Hopkins HealthCare, 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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90
Cell Systems Corporation human cerebral artery microvascular endothelial cells
Carvacrol stimulates TRPV3 cation currents in cerebral artery <t>endothelial</t> cells A, representative whole-cell currents recorded from human <t>microvascular</t> cerebral artery endothelial cells during voltage ramps from −100 to +100 mV. Current density is shown for cells under baseline conditions (B) and after first (1), second (2), and third (3) application of carvacrol (100 μM). B, summary data demonstrating sensitization of the carvacrol-induced current (n = 6). C, summary data showing the effects of the TRPA1 antagonist HC-030031 (HC, 3 μM) and the TRPV1–4 blocker RuR (10 μM) on carvacrol-induced currents recorded from cerebral artery endothelial cells; n = 5 for HC-030031, n = 4 for ruthenium red. Current magnitude was normalized to peak carvacrol-induced currents. *, P ≤ 0.05 versus control (C).
Human Cerebral Artery Microvascular Endothelial Cells, supplied by Cell Systems Corporation, 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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90
BD Diagnostics immortalized human brain microvascular endothelial cell line hcmec/d3
Carvacrol stimulates TRPV3 cation currents in cerebral artery <t>endothelial</t> cells A, representative whole-cell currents recorded from human <t>microvascular</t> cerebral artery endothelial cells during voltage ramps from −100 to +100 mV. Current density is shown for cells under baseline conditions (B) and after first (1), second (2), and third (3) application of carvacrol (100 μM). B, summary data demonstrating sensitization of the carvacrol-induced current (n = 6). C, summary data showing the effects of the TRPA1 antagonist HC-030031 (HC, 3 μM) and the TRPV1–4 blocker RuR (10 μM) on carvacrol-induced currents recorded from cerebral artery endothelial cells; n = 5 for HC-030031, n = 4 for ruthenium red. Current magnitude was normalized to peak carvacrol-induced currents. *, P ≤ 0.05 versus control (C).
Immortalized Human Brain Microvascular Endothelial Cell Line Hcmec/D3, supplied by BD Diagnostics, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+brain+microvascular+endothelial+cell+line/immortalized+human+brain+microvascular+endothelial+cell+line+hcmec+d3/pmc03549094-196-8-34
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90
Merck KGaA hcmec/d3 transformed brain endothelial line
Carvacrol stimulates TRPV3 cation currents in cerebral artery <t>endothelial</t> cells A, representative whole-cell currents recorded from human <t>microvascular</t> cerebral artery endothelial cells during voltage ramps from −100 to +100 mV. Current density is shown for cells under baseline conditions (B) and after first (1), second (2), and third (3) application of carvacrol (100 μM). B, summary data demonstrating sensitization of the carvacrol-induced current (n = 6). C, summary data showing the effects of the TRPA1 antagonist HC-030031 (HC, 3 μM) and the TRPV1–4 blocker RuR (10 μM) on carvacrol-induced currents recorded from cerebral artery endothelial cells; n = 5 for HC-030031, n = 4 for ruthenium red. Current magnitude was normalized to peak carvacrol-induced currents. *, P ≤ 0.05 versus control (C).
Hcmec/D3 Transformed Brain Endothelial Line, supplied by Merck KGaA, 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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90
Johns Hopkins HealthCare human bmecs (hbmecs)
Analysis of miR-155 binding sites on kras 3’UTR and Gli1/2 binding sites on mir155hg promotor by dual-luciferase reporter assays. A Conservation of the miR-155 sequence among different species (upper panel), and conservation of the miR-155 target sequence in KRAS among different species (lower panel). Human, Homo sapiens ; Mouse, Mus musculus ; Rat, Rattus norvegicus . B The miRNA response elements (MREs) of miR-155 were shown on the sequence of kras 3′-UTR, and mutations were introduced on these MREs. Both wild-type and mutated sequences were cloned into the psiCHECK-2 plasmid. C dual-luciferase reporter assay testing miR-155 binding with kras 3’UTR. HEK-293 T cells were co-transfected with has-miR-155 mimics or mimics NC as control oligonucleotide (final concentration at 50 nM) together with the wild-type (KRAS-WT-3’UTR) or mutated (KRAS-Mut-3’UTR) kras 3′-UTR luciferase reporter plasmids. The renilla luciferase activity was measured and normalized to firefly luciferase activity after 36 h. ** p < 0.01. The assays were performed in triplicates, and results are presented as mean ± SEM. D Schematic of the three predicted Gli1/2 binding sites on mir155 hg promotor (upper panel) and their binding sequences accordingly (lower panel). The binding sites were located at − 1088 to − 1077 (site 1), − 461 to − 447 (site 2), and − 407 to − 393 (site 3) of the mir155hg promotor. The gli2 luciferase activities were tested by applying a series of truncations ( E ) as well as site-targeted mutations ( F ) on the mir155hg promoter, along with pcDNA3.1-Gli1 and pcDNA3.1-Gli2 and pRL-TK plasmids. The specific constructs used in the truncation assays ( E ) included pGL3-basic vector, pGL3-mir155hg-promo-WT (containing promotor region from − 1440 to + 226), pGL3-mir155hg-promo-truncation1 (from − 913 to + 226) and pGL3-mir155hg-promo-truncation2 (from − 339 to + 226). The specific constructs used in the site-mutation assays ( F ) included pGL3-basic vector, pGL3- mir155hg-promo-WT (containing all 3 sites), pGL3-mir155hg-promo-mut1 (lack of site 1), pGL3-mir155hg-promo-mut2 (lack of site 2) and pGL3-mir155hg-promo-mut3 (lack of site 3). The luciferase activities were determined and presented as the ratio of firefly and renilla luciferase activity. The assays were performed with three replicates and data are presented as mean ± SEM. ** p < 0.01. G Schematic of the Gli1 and Gli2 binding to the mir155hg promotor at around − 1088 in <t>hBMECs</t>
Human Bmecs (Hbmecs), supplied by Johns Hopkins HealthCare, 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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90
ScienCell human brain microvascular endothelial cell lysate
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Human Brain Microvascular Endothelial Cell Lysate, supplied by ScienCell, 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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90
Cell Systems Corporation human primary brain microvascular endothelial cells acbri379
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Human Primary Brain Microvascular Endothelial Cells Acbri379, supplied by Cell Systems Corporation, 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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93
Innoprot Inc human brain microvascular endothelial cells
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Human Brain Microvascular Endothelial Cells, supplied by Innoprot Inc, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+brain+microvascular+endothelial+cell+line/Human+Brain+Microvascular+Endothelial+Cells/custom%40p10361%4010%2E21203%2Frs%2E3%2Ers-5267381
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iXCells Biotechnologies human brain microvascular endothelial cells
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Human Brain Microvascular Endothelial Cells, supplied by iXCells Biotechnologies, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
China Center for Type Culture Collection human brain microvascular endothelial cell line (hbec-5i
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Human Brain Microvascular Endothelial Cell Line (Hbec 5i, supplied by China Center for Type Culture Collection, 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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Chemicell gmbh human brain microvascular endothelial cell line hbmec
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Human Brain Microvascular Endothelial Cell Line Hbmec, supplied by Chemicell gmbh, 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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Image Search Results


Invasion and survival of M. tuberculosis pknD mutant in host-derived cells . A . BALB/c mice were infected with M. tuberculosis CDC1551 or pknD mutant, and sacrificed at days 1 and 49 after infection. The mutant for M. tuberculosis pknD was significantly attenuated (P = 0.004) in mouse brain, but not lung tissue, 49 days after infection. No defect was observed in the lungs at either time point. Bacterial burden is represented as log 10 CFU/organ for all animal experiments. B . Invasion of host-cell monolayers by wild-type CDC1551, wild-type intergenic transposon control, pknD transposon mutant (pknD:Tn), and pknD genetic complement (pknD:Comp) was examined and normalized to the wild-type control. Invasion assays were performed in brain microvascular endothelial cells (HBMEC), epithelial A549 cells, and umbilical vein endothelia (HUVEC). No difference in invasion was observed in A549 cells (P = 0.31) or HUVEC (P = 0.41). A significant reduction in invasive capacity, however, was observed in the CNS-derived HBMEC (P = 0.02). This defect was restored by genetic complementation with the native pknD/pstS2 operon. N.S. = not significantly different. C . Intracellular survival of each of the above M. tuberculosis strains was examined in HBMEC at days 1, 3, 5, and 7 after infection. The pknD:Tn mutant demonstrated an invasion and intracellular survival defect in HBMEC relative to wild-type over the course of the seven day infection. D . Survival was also examined by infection of activated J774 macrophages. No corresponding survival defect for the pknD:Tn mutant was observed in these cells during the seven day infection. A mutant for the gene Rv0442c , known to be attenuated in the macrophage model, is included as a control. All CFU counts are represented as mean ± standard deviation.

Journal: BMC Microbiology

Article Title: Role of Mycobacterium tuberculosis pknD in the Pathogenesis of central nervous system tuberculosis

doi: 10.1186/1471-2180-12-7

Figure Lengend Snippet: Invasion and survival of M. tuberculosis pknD mutant in host-derived cells . A . BALB/c mice were infected with M. tuberculosis CDC1551 or pknD mutant, and sacrificed at days 1 and 49 after infection. The mutant for M. tuberculosis pknD was significantly attenuated (P = 0.004) in mouse brain, but not lung tissue, 49 days after infection. No defect was observed in the lungs at either time point. Bacterial burden is represented as log 10 CFU/organ for all animal experiments. B . Invasion of host-cell monolayers by wild-type CDC1551, wild-type intergenic transposon control, pknD transposon mutant (pknD:Tn), and pknD genetic complement (pknD:Comp) was examined and normalized to the wild-type control. Invasion assays were performed in brain microvascular endothelial cells (HBMEC), epithelial A549 cells, and umbilical vein endothelia (HUVEC). No difference in invasion was observed in A549 cells (P = 0.31) or HUVEC (P = 0.41). A significant reduction in invasive capacity, however, was observed in the CNS-derived HBMEC (P = 0.02). This defect was restored by genetic complementation with the native pknD/pstS2 operon. N.S. = not significantly different. C . Intracellular survival of each of the above M. tuberculosis strains was examined in HBMEC at days 1, 3, 5, and 7 after infection. The pknD:Tn mutant demonstrated an invasion and intracellular survival defect in HBMEC relative to wild-type over the course of the seven day infection. D . Survival was also examined by infection of activated J774 macrophages. No corresponding survival defect for the pknD:Tn mutant was observed in these cells during the seven day infection. A mutant for the gene Rv0442c , known to be attenuated in the macrophage model, is included as a control. All CFU counts are represented as mean ± standard deviation.

Article Snippet: Primary human brain microvascular endothelial cells and HUVEC were kind gifts from Dr. Kwang Sik Kim, Department of Pediatrics, Johns Hopkins University School of Medicine.

Techniques: Mutagenesis, Derivative Assay, Infection, Control, Standard Deviation

Carvacrol stimulates TRPV3 cation currents in cerebral artery endothelial cells A, representative whole-cell currents recorded from human microvascular cerebral artery endothelial cells during voltage ramps from −100 to +100 mV. Current density is shown for cells under baseline conditions (B) and after first (1), second (2), and third (3) application of carvacrol (100 μM). B, summary data demonstrating sensitization of the carvacrol-induced current (n = 6). C, summary data showing the effects of the TRPA1 antagonist HC-030031 (HC, 3 μM) and the TRPV1–4 blocker RuR (10 μM) on carvacrol-induced currents recorded from cerebral artery endothelial cells; n = 5 for HC-030031, n = 4 for ruthenium red. Current magnitude was normalized to peak carvacrol-induced currents. *, P ≤ 0.05 versus control (C).

Journal: Molecular Pharmacology

Article Title: A Dietary Agonist of Transient Receptor Potential Cation Channel V3 Elicits Endothelium-Dependent Vasodilation S⃞

doi: 10.1124/mol.109.060715

Figure Lengend Snippet: Carvacrol stimulates TRPV3 cation currents in cerebral artery endothelial cells A, representative whole-cell currents recorded from human microvascular cerebral artery endothelial cells during voltage ramps from −100 to +100 mV. Current density is shown for cells under baseline conditions (B) and after first (1), second (2), and third (3) application of carvacrol (100 μM). B, summary data demonstrating sensitization of the carvacrol-induced current (n = 6). C, summary data showing the effects of the TRPA1 antagonist HC-030031 (HC, 3 μM) and the TRPV1–4 blocker RuR (10 μM) on carvacrol-induced currents recorded from cerebral artery endothelial cells; n = 5 for HC-030031, n = 4 for ruthenium red. Current magnitude was normalized to peak carvacrol-induced currents. *, P ≤ 0.05 versus control (C).

Article Snippet: Carvacrol-activated currents were recorded from human cerebral artery microvascular endothelial cells (Cell Systems Corporation, Kirkland, WA).

Techniques: Control

Analysis of miR-155 binding sites on kras 3’UTR and Gli1/2 binding sites on mir155hg promotor by dual-luciferase reporter assays. A Conservation of the miR-155 sequence among different species (upper panel), and conservation of the miR-155 target sequence in KRAS among different species (lower panel). Human, Homo sapiens ; Mouse, Mus musculus ; Rat, Rattus norvegicus . B The miRNA response elements (MREs) of miR-155 were shown on the sequence of kras 3′-UTR, and mutations were introduced on these MREs. Both wild-type and mutated sequences were cloned into the psiCHECK-2 plasmid. C dual-luciferase reporter assay testing miR-155 binding with kras 3’UTR. HEK-293 T cells were co-transfected with has-miR-155 mimics or mimics NC as control oligonucleotide (final concentration at 50 nM) together with the wild-type (KRAS-WT-3’UTR) or mutated (KRAS-Mut-3’UTR) kras 3′-UTR luciferase reporter plasmids. The renilla luciferase activity was measured and normalized to firefly luciferase activity after 36 h. ** p < 0.01. The assays were performed in triplicates, and results are presented as mean ± SEM. D Schematic of the three predicted Gli1/2 binding sites on mir155 hg promotor (upper panel) and their binding sequences accordingly (lower panel). The binding sites were located at − 1088 to − 1077 (site 1), − 461 to − 447 (site 2), and − 407 to − 393 (site 3) of the mir155hg promotor. The gli2 luciferase activities were tested by applying a series of truncations ( E ) as well as site-targeted mutations ( F ) on the mir155hg promoter, along with pcDNA3.1-Gli1 and pcDNA3.1-Gli2 and pRL-TK plasmids. The specific constructs used in the truncation assays ( E ) included pGL3-basic vector, pGL3-mir155hg-promo-WT (containing promotor region from − 1440 to + 226), pGL3-mir155hg-promo-truncation1 (from − 913 to + 226) and pGL3-mir155hg-promo-truncation2 (from − 339 to + 226). The specific constructs used in the site-mutation assays ( F ) included pGL3-basic vector, pGL3- mir155hg-promo-WT (containing all 3 sites), pGL3-mir155hg-promo-mut1 (lack of site 1), pGL3-mir155hg-promo-mut2 (lack of site 2) and pGL3-mir155hg-promo-mut3 (lack of site 3). The luciferase activities were determined and presented as the ratio of firefly and renilla luciferase activity. The assays were performed with three replicates and data are presented as mean ± SEM. ** p < 0.01. G Schematic of the Gli1 and Gli2 binding to the mir155hg promotor at around − 1088 in hBMECs

Journal: Cell Communication and Signaling : CCS

Article Title: TGFβ1-induced hedgehog signaling suppresses the immune response of brain microvascular endothelial cells elicited by meningitic Escherichia coli

doi: 10.1186/s12964-023-01383-y

Figure Lengend Snippet: Analysis of miR-155 binding sites on kras 3’UTR and Gli1/2 binding sites on mir155hg promotor by dual-luciferase reporter assays. A Conservation of the miR-155 sequence among different species (upper panel), and conservation of the miR-155 target sequence in KRAS among different species (lower panel). Human, Homo sapiens ; Mouse, Mus musculus ; Rat, Rattus norvegicus . B The miRNA response elements (MREs) of miR-155 were shown on the sequence of kras 3′-UTR, and mutations were introduced on these MREs. Both wild-type and mutated sequences were cloned into the psiCHECK-2 plasmid. C dual-luciferase reporter assay testing miR-155 binding with kras 3’UTR. HEK-293 T cells were co-transfected with has-miR-155 mimics or mimics NC as control oligonucleotide (final concentration at 50 nM) together with the wild-type (KRAS-WT-3’UTR) or mutated (KRAS-Mut-3’UTR) kras 3′-UTR luciferase reporter plasmids. The renilla luciferase activity was measured and normalized to firefly luciferase activity after 36 h. ** p < 0.01. The assays were performed in triplicates, and results are presented as mean ± SEM. D Schematic of the three predicted Gli1/2 binding sites on mir155 hg promotor (upper panel) and their binding sequences accordingly (lower panel). The binding sites were located at − 1088 to − 1077 (site 1), − 461 to − 447 (site 2), and − 407 to − 393 (site 3) of the mir155hg promotor. The gli2 luciferase activities were tested by applying a series of truncations ( E ) as well as site-targeted mutations ( F ) on the mir155hg promoter, along with pcDNA3.1-Gli1 and pcDNA3.1-Gli2 and pRL-TK plasmids. The specific constructs used in the truncation assays ( E ) included pGL3-basic vector, pGL3-mir155hg-promo-WT (containing promotor region from − 1440 to + 226), pGL3-mir155hg-promo-truncation1 (from − 913 to + 226) and pGL3-mir155hg-promo-truncation2 (from − 339 to + 226). The specific constructs used in the site-mutation assays ( F ) included pGL3-basic vector, pGL3- mir155hg-promo-WT (containing all 3 sites), pGL3-mir155hg-promo-mut1 (lack of site 1), pGL3-mir155hg-promo-mut2 (lack of site 2) and pGL3-mir155hg-promo-mut3 (lack of site 3). The luciferase activities were determined and presented as the ratio of firefly and renilla luciferase activity. The assays were performed with three replicates and data are presented as mean ± SEM. ** p < 0.01. G Schematic of the Gli1 and Gli2 binding to the mir155hg promotor at around − 1088 in hBMECs

Article Snippet: The human BMECs (hBMECs) were kindly gifted from Prof. Kwang Sik Kim at Johns Hopkins University School of Medicine, and the Gli-KO hBMECs cell lines were constructed and tested in a previous study [ ].

Techniques: Binding Assay, Luciferase, Sequencing, Clone Assay, Plasmid Preparation, Reporter Assay, Transfection, Control, Concentration Assay, Activity Assay, Construct, Mutagenesis

rTGFβ1 inhibited ERK1/2 signaling and immune reaction of RS218 infected hBMECs relying on inducted noncanonical HH signaling. A Detecting expression alterations of IL-6, MIP-2, and E-selectin in hBMECs with qPCR or Western blot. The cells were infected with RS218 with or without rTGFβ1 pre-treatment (at 50 ng/mL). ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM. B qPCR detecting IL-6, MIP-2, and E-selectin transcription upon RS218 infection in wild-type hBMECs or Gli-KO hBMECs. The wild-type hBMECs were pretreated with rTGFβ1 (at 50 ng/mL) or together with GANT61 (at 10 μM). The Gli-KO hBMECs were pretreated with rTGFβ1 (at 50 ng/mL). ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM. C Western blot detecting phosphorylation of p65, JNK, ERK1/2, and p38 in RS218 infected hBMECs. The cells were pretreated with or without rTGFβ1 at 50 ng/mL. D Western blot detecting expression of E-selectin and ERK1/2 phosphorylation in RS218 infected hBMECs. The cells were pretreated with rTGFβ1 (at 50 ng/mL) or GANT61 (at 10 μM). E Detecting expression alterations of IL-6, MIP-2, and E-selectin in hBMECs with qPCR or Western blot. The cells were infected with RS218 with or without U0126 treatment (at 5 μM). ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM

Journal: Cell Communication and Signaling : CCS

Article Title: TGFβ1-induced hedgehog signaling suppresses the immune response of brain microvascular endothelial cells elicited by meningitic Escherichia coli

doi: 10.1186/s12964-023-01383-y

Figure Lengend Snippet: rTGFβ1 inhibited ERK1/2 signaling and immune reaction of RS218 infected hBMECs relying on inducted noncanonical HH signaling. A Detecting expression alterations of IL-6, MIP-2, and E-selectin in hBMECs with qPCR or Western blot. The cells were infected with RS218 with or without rTGFβ1 pre-treatment (at 50 ng/mL). ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM. B qPCR detecting IL-6, MIP-2, and E-selectin transcription upon RS218 infection in wild-type hBMECs or Gli-KO hBMECs. The wild-type hBMECs were pretreated with rTGFβ1 (at 50 ng/mL) or together with GANT61 (at 10 μM). The Gli-KO hBMECs were pretreated with rTGFβ1 (at 50 ng/mL). ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM. C Western blot detecting phosphorylation of p65, JNK, ERK1/2, and p38 in RS218 infected hBMECs. The cells were pretreated with or without rTGFβ1 at 50 ng/mL. D Western blot detecting expression of E-selectin and ERK1/2 phosphorylation in RS218 infected hBMECs. The cells were pretreated with rTGFβ1 (at 50 ng/mL) or GANT61 (at 10 μM). E Detecting expression alterations of IL-6, MIP-2, and E-selectin in hBMECs with qPCR or Western blot. The cells were infected with RS218 with or without U0126 treatment (at 5 μM). ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM

Article Snippet: The human BMECs (hBMECs) were kindly gifted from Prof. Kwang Sik Kim at Johns Hopkins University School of Medicine, and the Gli-KO hBMECs cell lines were constructed and tested in a previous study [ ].

Techniques: Infection, Expressing, Western Blot, Phospho-proteomics

TGF-HH axis suppressed ERK1/2 signaling in RS218 infected hBMECs via modulating miR155 and KRAS. A Western blot and qPCR detecting expression of KRAS in RS218 infected hBMECs. The cells were pretreated with rTGFβ1 (at 50 ng/mL) or GANT61 (at 10 μM). ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM. B IF assays showing the KRAS expression in BMECs of mice challenged by RS218 with or without rTGFβ1 pre-treatment (at 1 μg/kg). The KRAS was stained in red. CD31 was specifically applied for labeling the micro-vessels in green. The cell nucleus was stained in blue with DAPI. Scale bar = 50 μm. C qPCR detecting MIR155HG and miR-155 expression upon RS218 infection in hBMECs. The cells were pretreated with rTGFβ1 (at 50 ng/mL) or GANT61 (at 10 μM). ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM. D Western blot detecting expression of E-selectin, KRAS and ERK1/2 phosphorylation in RS218 infected hBMECs with or without rTGFβ1 pre-treatment (at 50 ng/mL). The cells were transfected with has-miR-155 mimics, mimics NC, has-miR-155 inhibitors, or inhibitors NC at 50 nM as indicated. E qPCR detecting expression alterations of IL-6, MIP-2, and E-selectin in RS218 infected hBMECs with or without rTGFβ1 pre-treatment (at 50 ng/mL). The cells were transfected with has-miR-155 mimics, mimics NC, has-miR-155 inhibitors, or inhibitors NC at 50 nM as indicated. ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM

Journal: Cell Communication and Signaling : CCS

Article Title: TGFβ1-induced hedgehog signaling suppresses the immune response of brain microvascular endothelial cells elicited by meningitic Escherichia coli

doi: 10.1186/s12964-023-01383-y

Figure Lengend Snippet: TGF-HH axis suppressed ERK1/2 signaling in RS218 infected hBMECs via modulating miR155 and KRAS. A Western blot and qPCR detecting expression of KRAS in RS218 infected hBMECs. The cells were pretreated with rTGFβ1 (at 50 ng/mL) or GANT61 (at 10 μM). ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM. B IF assays showing the KRAS expression in BMECs of mice challenged by RS218 with or without rTGFβ1 pre-treatment (at 1 μg/kg). The KRAS was stained in red. CD31 was specifically applied for labeling the micro-vessels in green. The cell nucleus was stained in blue with DAPI. Scale bar = 50 μm. C qPCR detecting MIR155HG and miR-155 expression upon RS218 infection in hBMECs. The cells were pretreated with rTGFβ1 (at 50 ng/mL) or GANT61 (at 10 μM). ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM. D Western blot detecting expression of E-selectin, KRAS and ERK1/2 phosphorylation in RS218 infected hBMECs with or without rTGFβ1 pre-treatment (at 50 ng/mL). The cells were transfected with has-miR-155 mimics, mimics NC, has-miR-155 inhibitors, or inhibitors NC at 50 nM as indicated. E qPCR detecting expression alterations of IL-6, MIP-2, and E-selectin in RS218 infected hBMECs with or without rTGFβ1 pre-treatment (at 50 ng/mL). The cells were transfected with has-miR-155 mimics, mimics NC, has-miR-155 inhibitors, or inhibitors NC at 50 nM as indicated. ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM

Article Snippet: The human BMECs (hBMECs) were kindly gifted from Prof. Kwang Sik Kim at Johns Hopkins University School of Medicine, and the Gli-KO hBMECs cell lines were constructed and tested in a previous study [ ].

Techniques: Infection, Western Blot, Expressing, Staining, Labeling, Phospho-proteomics, Transfection

SAG repressed BMECs immune reaction and neuroinflammation of infected mice in vivo and in vitro. A Western blot detecting expression of E-selectin, KRAS and ERK1/2 phosphorylation in RS218 infected hBMECs with or without SAG pre-treatment (at 10 μM). B qPCR detecting expression alterations of IL-6, MIP-2, and E-selectin in RS218 infected hBMECs with or without SAG pre-treatment (at 10 μM). ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM. C qPCR detecting MIR155HG, miR-155, and KRAS expression upon RS218 infection in hBMECs. The cells were pretreated with or without SAG pre-treatment (at 10 μM). * p < 0.05, ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM. D Effects of the SAG pre-treatment at 10 mg/kg (for 12 h) on the survival of the mice after the challenge of RS218 ( n = 10). ** p < 0.01. E ELISA analysis of IL-6 and MIP-2 in brain lysates from RS218 challenged mice with or without SAG pre-treatment at 10 mg/kg. Data are presented as mean ± SEM from five individual mice in each group. F IF assays showing the E-selectin and KRAS expression in brains of mice challenged by RS218 with or without SAG pre-treatment (at 10 mg/kg). The E-selection and KRAS were stained in red. CD31 was specifically applied for labeling the micro-vessels in green. The cell nucleus was stained in blue with DAPI. Scale bar = 50 μm

Journal: Cell Communication and Signaling : CCS

Article Title: TGFβ1-induced hedgehog signaling suppresses the immune response of brain microvascular endothelial cells elicited by meningitic Escherichia coli

doi: 10.1186/s12964-023-01383-y

Figure Lengend Snippet: SAG repressed BMECs immune reaction and neuroinflammation of infected mice in vivo and in vitro. A Western blot detecting expression of E-selectin, KRAS and ERK1/2 phosphorylation in RS218 infected hBMECs with or without SAG pre-treatment (at 10 μM). B qPCR detecting expression alterations of IL-6, MIP-2, and E-selectin in RS218 infected hBMECs with or without SAG pre-treatment (at 10 μM). ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM. C qPCR detecting MIR155HG, miR-155, and KRAS expression upon RS218 infection in hBMECs. The cells were pretreated with or without SAG pre-treatment (at 10 μM). * p < 0.05, ** p < 0.01. The qPCR assays were performed in triplicates, and results are presented as mean ± SEM. D Effects of the SAG pre-treatment at 10 mg/kg (for 12 h) on the survival of the mice after the challenge of RS218 ( n = 10). ** p < 0.01. E ELISA analysis of IL-6 and MIP-2 in brain lysates from RS218 challenged mice with or without SAG pre-treatment at 10 mg/kg. Data are presented as mean ± SEM from five individual mice in each group. F IF assays showing the E-selectin and KRAS expression in brains of mice challenged by RS218 with or without SAG pre-treatment (at 10 mg/kg). The E-selection and KRAS were stained in red. CD31 was specifically applied for labeling the micro-vessels in green. The cell nucleus was stained in blue with DAPI. Scale bar = 50 μm

Article Snippet: The human BMECs (hBMECs) were kindly gifted from Prof. Kwang Sik Kim at Johns Hopkins University School of Medicine, and the Gli-KO hBMECs cell lines were constructed and tested in a previous study [ ].

Techniques: Infection, In Vivo, In Vitro, Western Blot, Expressing, Phospho-proteomics, Enzyme-linked Immunosorbent Assay, Selection, Staining, Labeling

Schematic representation of the TGFβ1 or SAG immunosuppression effects on BMECs through upregulating miR-155 and negative regulating KRAS as well as downstream ERK1/2 signaling. The exogenous TGFβ1 or SAG triggered the HH signaling in E. coli -infected BMECs and upregulated intracellular miR-155. Further, the promoted miR-155 suppressed the ERK1/2 activation by negatively regulating KRAS, thus decreasing IL-6, MIP-2, and E-selectin expression

Journal: Cell Communication and Signaling : CCS

Article Title: TGFβ1-induced hedgehog signaling suppresses the immune response of brain microvascular endothelial cells elicited by meningitic Escherichia coli

doi: 10.1186/s12964-023-01383-y

Figure Lengend Snippet: Schematic representation of the TGFβ1 or SAG immunosuppression effects on BMECs through upregulating miR-155 and negative regulating KRAS as well as downstream ERK1/2 signaling. The exogenous TGFβ1 or SAG triggered the HH signaling in E. coli -infected BMECs and upregulated intracellular miR-155. Further, the promoted miR-155 suppressed the ERK1/2 activation by negatively regulating KRAS, thus decreasing IL-6, MIP-2, and E-selectin expression

Article Snippet: The human BMECs (hBMECs) were kindly gifted from Prof. Kwang Sik Kim at Johns Hopkins University School of Medicine, and the Gli-KO hBMECs cell lines were constructed and tested in a previous study [ ].

Techniques: Infection, Activation Assay, Expressing

KEY RESOURCES TABLE

Journal: Cell reports

Article Title: Intrinsic antiviral immunity of barrier cells revealed by an iPSC-derived blood-brain barrier cellular model

doi: 10.1016/j.celrep.2022.110885

Figure Lengend Snippet: KEY RESOURCES TABLE

Article Snippet: Human brain microvascular endothelial cell lysate , ScienCell , Cat#1006.

Techniques: Virus, Recombinant, Modification, Membrane, Knock-Out, Clinical Proteomics, Fluorescence, Plasmid Preparation, Western Blot, Mutagenesis, PCR Cloning, Cloning, Software, Cell Culture, Electroporation