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egm-2 bulletkit medium  (Lonza)


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    Structured Review

    Lonza egm-2 bulletkit medium
    Egm 2 Bulletkit Medium, supplied by Lonza, 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/egm-2+bulletkit/egm+2+medium/pm40668060-38-20-24
    Average 90 stars, based on 1 article reviews
    egm-2 bulletkit medium - by Bioz Stars, 2026-10
    90/100 stars

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    Related Articles

    Sterility:

    Article Title: Hornerin expressed on endothelial cells via interacting with thrombomodulin modulates vascular inflammation and angiogenesis.
    Article Snippet: Thrombomodulin is predominantly expressed on vascular endothelial cells and modulates endothelial cell functions by interacting with multiple ligands.. The specific thrombomodulin receptor or cofactor active on the endothelial cell surface remains elusive.. This study aims to identify interacting partners of thrombomodulin on endothelial cells.

    Article Title: Dynamics of heat shock protein 70 kDa in heat-shocked and hypoxic human endothelial cells.
    Article Snippet: Primary human endothelial cells obtained from Lonza were cultured in a humidified incubator at 37 °C and 5% CO2 (Thermo Scientific and CELLXPERT®C170I, Eppendorf) in adherent culture flasks with EBM-2 (CC-3156, Lonza) supplemented with the EGM-2 BulletKit (CC-3162, Lonza) for human umbilical vein endothelial cells (HUVECs, passages 2–5, C2519A, Lonza) 1 or the EGM-2MV BulletKit for human coronary artery endothelial cells (HCAECs, passages 4–7, CC-2585, Lonza) 2.

    Article Title: Ticagrelor Induces Angiogenesis in Progenitor and Mature Endothelial Cells In Vitro: Investigation of the Possible Role of Adenosine.
    Article Snippet: EGM-2 BulletKit and EGMPlus BulletKit, as well as passage 1 human umbilical vein endothelial cells (HUVECs), were purchased from Lonza (Walkersville, MD, USA).

    Article Title: Functional screening identifies miRNAs with a novel function inhibiting vascular smooth muscle cell proliferation
    Article Snippet: HSVECs were obtained by enzymatic collagenase digestion of human saphenous veins (Ethics 15/ES/0094) as previously described.34 Cells were maintained in EC growth medium (EGM-2 BulletKit, Lonza) supplemented with 2% FBS (Life Technologies) and penicillin-streptomycin (100 U/mL) (Gibco).

    Article Title: An endothelial SOX18–mevalonate pathway axis enables repurposing of statins for infantile hemangioma
    Article Snippet: HUVECs were grown in EBM-2 medium (Lonza, C2519A) supplemented with EGM-2 BulletKit (Lonza).

    Article Title: Type IV collagen expression is regulated by Notch3-mediated Notch signaling during angiogenesis.
    Article Snippet: Angiogenesis, the process of new blood vessel formation, involves endothelial cell proliferation and migration, accompanied by the remodeling of the extracellular matrix (ECM).. Type IV collagen, a major ECM component, plays a critical role in vascular basement membrane regeneration, influencing cell polarity, migration, and survival.. This study examines the regulatory role of Notch signaling, mediated by Notch3, in type IV collagen expression using TIG-1 fibroblasts and a co-culture angiogenesis model with human umbilical vein endothelial cells (HUVECs).

    Article Title: Endothelial progenitor cells and cerebral small vessel disease in APOE4 carriers
    Article Snippet: Isolated PBMCs were washed, resuspended in EGM-2 BulletKit (Lonza), and seeded on type I collagen-coated 24-well plates at 1 × 10 6 cells/well.

    Article Title: WHEP Domain of Glycyl-tRNA Synthetase Regulates Neuropilin 1 Binding and Vascular Permeability
    Article Snippet: The collagenase solution containing the ECs was flushed from the cord by perfusion with 40 ml of PBS, collected in a sterile 50 ml centrifuge tube, and centrifuged 5 min at 800 x g. Cells were first resuspended in Endothelial Cell Growth Basal Medium (EBM-2) supplemented with EGM-2 BulletKit (Lonza) (EGM-2), and subsequently plated in cell culture dishes that had been previously adsorbed with 1% gelatin from porcine skin (G9136, Sigma-Aldrich).

    Cell Culture:

    Article Title: Hornerin expressed on endothelial cells via interacting with thrombomodulin modulates vascular inflammation and angiogenesis.
    Article Snippet: Thrombomodulin is predominantly expressed on vascular endothelial cells and modulates endothelial cell functions by interacting with multiple ligands.. The specific thrombomodulin receptor or cofactor active on the endothelial cell surface remains elusive.. This study aims to identify interacting partners of thrombomodulin on endothelial cells.

    Article Title: Dynamics of heat shock protein 70 kDa in heat-shocked and hypoxic human endothelial cells.
    Article Snippet: Primary human endothelial cells obtained from Lonza were cultured in a humidified incubator at 37 °C and 5% CO2 (Thermo Scientific and CELLXPERT®C170I, Eppendorf) in adherent culture flasks with EBM-2 (CC-3156, Lonza) supplemented with the EGM-2 BulletKit (CC-3162, Lonza) for human umbilical vein endothelial cells (HUVECs, passages 2–5, C2519A, Lonza) 1 or the EGM-2MV BulletKit for human coronary artery endothelial cells (HCAECs, passages 4–7, CC-2585, Lonza) 2.

    Article Title: Ticagrelor Induces Angiogenesis in Progenitor and Mature Endothelial Cells In Vitro: Investigation of the Possible Role of Adenosine.
    Article Snippet: EGM-2 BulletKit and EGMPlus BulletKit, as well as passage 1 human umbilical vein endothelial cells (HUVECs), were purchased from Lonza (Walkersville, MD, USA).

    Article Title: Functional screening identifies miRNAs with a novel function inhibiting vascular smooth muscle cell proliferation
    Article Snippet: HSVECs were obtained by enzymatic collagenase digestion of human saphenous veins (Ethics 15/ES/0094) as previously described.34 Cells were maintained in EC growth medium (EGM-2 BulletKit, Lonza) supplemented with 2% FBS (Life Technologies) and penicillin-streptomycin (100 U/mL) (Gibco).

    Article Title: An endothelial SOX18–mevalonate pathway axis enables repurposing of statins for infantile hemangioma
    Article Snippet: HUVECs were grown in EBM-2 medium (Lonza, C2519A) supplemented with EGM-2 BulletKit (Lonza).

    Article Title: Type IV collagen expression is regulated by Notch3-mediated Notch signaling during angiogenesis.
    Article Snippet: Angiogenesis, the process of new blood vessel formation, involves endothelial cell proliferation and migration, accompanied by the remodeling of the extracellular matrix (ECM).. Type IV collagen, a major ECM component, plays a critical role in vascular basement membrane regeneration, influencing cell polarity, migration, and survival.. This study examines the regulatory role of Notch signaling, mediated by Notch3, in type IV collagen expression using TIG-1 fibroblasts and a co-culture angiogenesis model with human umbilical vein endothelial cells (HUVECs).

    Article Title: Endothelial progenitor cells and cerebral small vessel disease in APOE4 carriers
    Article Snippet: Isolated PBMCs were washed, resuspended in EGM-2 BulletKit (Lonza), and seeded on type I collagen-coated 24-well plates at 1 × 10 6 cells/well.

    Article Title: WHEP Domain of Glycyl-tRNA Synthetase Regulates Neuropilin 1 Binding and Vascular Permeability
    Article Snippet: The collagenase solution containing the ECs was flushed from the cord by perfusion with 40 ml of PBS, collected in a sterile 50 ml centrifuge tube, and centrifuged 5 min at 800 x g. Cells were first resuspended in Endothelial Cell Growth Basal Medium (EBM-2) supplemented with EGM-2 BulletKit (Lonza) (EGM-2), and subsequently plated in cell culture dishes that had been previously adsorbed with 1% gelatin from porcine skin (G9136, Sigma-Aldrich).



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    Overview of the SVZ‐on‐a‐chip. A) The SVZ‐on‐a‐chip structure 24 h post‐seeding, showing distinct cellular compartments visualized via staining. The entire chip structure is shown (scale bar = 3000 µm) alongside a magnified maximum Z‐projection view (scale bar = 100 µm). Arrows indicate neural stem cells (NSCs), and triangles highlight human fetal astrocytes (HFAs) embedded in Matrigel, occupying the central channel. The right channel is lined with human brain <t>microvascular</t> endothelial cells (HBMECs), while the left channel contains human choroid plexus epithelial cells (HCPEpiC). B) Neural channel with HCPEpiC seeded along the central channel (scale bar = 200 µm). C) The central channel, highlighted by triangles, is shown in closer detail (scale bar = 200 µm). D) 3D view of the inner channel, showing cells stained with Nestin (gray). Astrocytes, marked by triangles, are stained red but lack Nestin expression (scale bar = 70 µm). E) Inner channel viewed from a different angle (scale bar = 70 µm). F) Vascular channel lined with HBMECs (scale bar = 70 µm). G) HBMECs fully covering the vascular channel (scale bar = 70 µm). H) A magnified maximum Z‐projection view of the SVZ‐on‐a‐chip 7 days after complete seeding, showing significant cellular growth (scale bar = 100 µm). Clusters of NSCs are observed invading both the neural and, predominantly, the vascular channel. I) Maximum Z‐projection view of Nestin staining in the middle channel (scale bar = 100 µm). J) Close‐up of DCX‐positive neural stem cells invading the vascular channel. DCX staining was used instead of Nestin because HBMECs also express Nestin (scale bar = 50 µm). SVZ: Subventricular Zone, NSCs: Neural Stem Cells, HFAs: Human Fetal Astrocytes, HBMECs: Human Brain Microvascular Endothelial Cells, HCPEpiC: Human Choroid Plexus Epithelial Cells, DCX: Doublecortin.
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    Overview of the SVZ‐on‐a‐chip. A) The SVZ‐on‐a‐chip structure 24 h post‐seeding, showing distinct cellular compartments visualized via staining. The entire chip structure is shown (scale bar = 3000 µm) alongside a magnified maximum Z‐projection view (scale bar = 100 µm). Arrows indicate neural stem cells (NSCs), and triangles highlight human fetal astrocytes (HFAs) embedded in Matrigel, occupying the central channel. The right channel is lined with human brain <t>microvascular</t> endothelial cells (HBMECs), while the left channel contains human choroid plexus epithelial cells (HCPEpiC). B) Neural channel with HCPEpiC seeded along the central channel (scale bar = 200 µm). C) The central channel, highlighted by triangles, is shown in closer detail (scale bar = 200 µm). D) 3D view of the inner channel, showing cells stained with Nestin (gray). Astrocytes, marked by triangles, are stained red but lack Nestin expression (scale bar = 70 µm). E) Inner channel viewed from a different angle (scale bar = 70 µm). F) Vascular channel lined with HBMECs (scale bar = 70 µm). G) HBMECs fully covering the vascular channel (scale bar = 70 µm). H) A magnified maximum Z‐projection view of the SVZ‐on‐a‐chip 7 days after complete seeding, showing significant cellular growth (scale bar = 100 µm). Clusters of NSCs are observed invading both the neural and, predominantly, the vascular channel. I) Maximum Z‐projection view of Nestin staining in the middle channel (scale bar = 100 µm). J) Close‐up of DCX‐positive neural stem cells invading the vascular channel. DCX staining was used instead of Nestin because HBMECs also express Nestin (scale bar = 50 µm). SVZ: Subventricular Zone, NSCs: Neural Stem Cells, HFAs: Human Fetal Astrocytes, HBMECs: Human Brain Microvascular Endothelial Cells, HCPEpiC: Human Choroid Plexus Epithelial Cells, DCX: Doublecortin.
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    Overview of the SVZ‐on‐a‐chip. A) The SVZ‐on‐a‐chip structure 24 h post‐seeding, showing distinct cellular compartments visualized via staining. The entire chip structure is shown (scale bar = 3000 µm) alongside a magnified maximum Z‐projection view (scale bar = 100 µm). Arrows indicate neural stem cells (NSCs), and triangles highlight human fetal astrocytes (HFAs) embedded in Matrigel, occupying the central channel. The right channel is lined with human brain <t>microvascular</t> endothelial cells (HBMECs), while the left channel contains human choroid plexus epithelial cells (HCPEpiC). B) Neural channel with HCPEpiC seeded along the central channel (scale bar = 200 µm). C) The central channel, highlighted by triangles, is shown in closer detail (scale bar = 200 µm). D) 3D view of the inner channel, showing cells stained with Nestin (gray). Astrocytes, marked by triangles, are stained red but lack Nestin expression (scale bar = 70 µm). E) Inner channel viewed from a different angle (scale bar = 70 µm). F) Vascular channel lined with HBMECs (scale bar = 70 µm). G) HBMECs fully covering the vascular channel (scale bar = 70 µm). H) A magnified maximum Z‐projection view of the SVZ‐on‐a‐chip 7 days after complete seeding, showing significant cellular growth (scale bar = 100 µm). Clusters of NSCs are observed invading both the neural and, predominantly, the vascular channel. I) Maximum Z‐projection view of Nestin staining in the middle channel (scale bar = 100 µm). J) Close‐up of DCX‐positive neural stem cells invading the vascular channel. DCX staining was used instead of Nestin because HBMECs also express Nestin (scale bar = 50 µm). SVZ: Subventricular Zone, NSCs: Neural Stem Cells, HFAs: Human Fetal Astrocytes, HBMECs: Human Brain Microvascular Endothelial Cells, HCPEpiC: Human Choroid Plexus Epithelial Cells, DCX: Doublecortin.
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    Overview of the SVZ‐on‐a‐chip. A) The SVZ‐on‐a‐chip structure 24 h post‐seeding, showing distinct cellular compartments visualized via staining. The entire chip structure is shown (scale bar = 3000 µm) alongside a magnified maximum Z‐projection view (scale bar = 100 µm). Arrows indicate neural stem cells (NSCs), and triangles highlight human fetal astrocytes (HFAs) embedded in Matrigel, occupying the central channel. The right channel is lined with human brain <t>microvascular</t> endothelial cells (HBMECs), while the left channel contains human choroid plexus epithelial cells (HCPEpiC). B) Neural channel with HCPEpiC seeded along the central channel (scale bar = 200 µm). C) The central channel, highlighted by triangles, is shown in closer detail (scale bar = 200 µm). D) 3D view of the inner channel, showing cells stained with Nestin (gray). Astrocytes, marked by triangles, are stained red but lack Nestin expression (scale bar = 70 µm). E) Inner channel viewed from a different angle (scale bar = 70 µm). F) Vascular channel lined with HBMECs (scale bar = 70 µm). G) HBMECs fully covering the vascular channel (scale bar = 70 µm). H) A magnified maximum Z‐projection view of the SVZ‐on‐a‐chip 7 days after complete seeding, showing significant cellular growth (scale bar = 100 µm). Clusters of NSCs are observed invading both the neural and, predominantly, the vascular channel. I) Maximum Z‐projection view of Nestin staining in the middle channel (scale bar = 100 µm). J) Close‐up of DCX‐positive neural stem cells invading the vascular channel. DCX staining was used instead of Nestin because HBMECs also express Nestin (scale bar = 50 µm). SVZ: Subventricular Zone, NSCs: Neural Stem Cells, HFAs: Human Fetal Astrocytes, HBMECs: Human Brain Microvascular Endothelial Cells, HCPEpiC: Human Choroid Plexus Epithelial Cells, DCX: Doublecortin.
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    Overview of the SVZ‐on‐a‐chip. A) The SVZ‐on‐a‐chip structure 24 h post‐seeding, showing distinct cellular compartments visualized via staining. The entire chip structure is shown (scale bar = 3000 µm) alongside a magnified maximum Z‐projection view (scale bar = 100 µm). Arrows indicate neural stem cells (NSCs), and triangles highlight human fetal astrocytes (HFAs) embedded in Matrigel, occupying the central channel. The right channel is lined with human brain <t>microvascular</t> endothelial cells (HBMECs), while the left channel contains human choroid plexus epithelial cells (HCPEpiC). B) Neural channel with HCPEpiC seeded along the central channel (scale bar = 200 µm). C) The central channel, highlighted by triangles, is shown in closer detail (scale bar = 200 µm). D) 3D view of the inner channel, showing cells stained with Nestin (gray). Astrocytes, marked by triangles, are stained red but lack Nestin expression (scale bar = 70 µm). E) Inner channel viewed from a different angle (scale bar = 70 µm). F) Vascular channel lined with HBMECs (scale bar = 70 µm). G) HBMECs fully covering the vascular channel (scale bar = 70 µm). H) A magnified maximum Z‐projection view of the SVZ‐on‐a‐chip 7 days after complete seeding, showing significant cellular growth (scale bar = 100 µm). Clusters of NSCs are observed invading both the neural and, predominantly, the vascular channel. I) Maximum Z‐projection view of Nestin staining in the middle channel (scale bar = 100 µm). J) Close‐up of DCX‐positive neural stem cells invading the vascular channel. DCX staining was used instead of Nestin because HBMECs also express Nestin (scale bar = 50 µm). SVZ: Subventricular Zone, NSCs: Neural Stem Cells, HFAs: Human Fetal Astrocytes, HBMECs: Human Brain Microvascular Endothelial Cells, HCPEpiC: Human Choroid Plexus Epithelial Cells, DCX: Doublecortin.
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    Overview of the SVZ‐on‐a‐chip. A) The SVZ‐on‐a‐chip structure 24 h post‐seeding, showing distinct cellular compartments visualized via staining. The entire chip structure is shown (scale bar = 3000 µm) alongside a magnified maximum Z‐projection view (scale bar = 100 µm). Arrows indicate neural stem cells (NSCs), and triangles highlight human fetal astrocytes (HFAs) embedded in Matrigel, occupying the central channel. The right channel is lined with human brain <t>microvascular</t> endothelial cells (HBMECs), while the left channel contains human choroid plexus epithelial cells (HCPEpiC). B) Neural channel with HCPEpiC seeded along the central channel (scale bar = 200 µm). C) The central channel, highlighted by triangles, is shown in closer detail (scale bar = 200 µm). D) 3D view of the inner channel, showing cells stained with Nestin (gray). Astrocytes, marked by triangles, are stained red but lack Nestin expression (scale bar = 70 µm). E) Inner channel viewed from a different angle (scale bar = 70 µm). F) Vascular channel lined with HBMECs (scale bar = 70 µm). G) HBMECs fully covering the vascular channel (scale bar = 70 µm). H) A magnified maximum Z‐projection view of the SVZ‐on‐a‐chip 7 days after complete seeding, showing significant cellular growth (scale bar = 100 µm). Clusters of NSCs are observed invading both the neural and, predominantly, the vascular channel. I) Maximum Z‐projection view of Nestin staining in the middle channel (scale bar = 100 µm). J) Close‐up of DCX‐positive neural stem cells invading the vascular channel. DCX staining was used instead of Nestin because HBMECs also express Nestin (scale bar = 50 µm). SVZ: Subventricular Zone, NSCs: Neural Stem Cells, HFAs: Human Fetal Astrocytes, HBMECs: Human Brain Microvascular Endothelial Cells, HCPEpiC: Human Choroid Plexus Epithelial Cells, DCX: Doublecortin.
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    Image Search Results


    Overview of the SVZ‐on‐a‐chip. A) The SVZ‐on‐a‐chip structure 24 h post‐seeding, showing distinct cellular compartments visualized via staining. The entire chip structure is shown (scale bar = 3000 µm) alongside a magnified maximum Z‐projection view (scale bar = 100 µm). Arrows indicate neural stem cells (NSCs), and triangles highlight human fetal astrocytes (HFAs) embedded in Matrigel, occupying the central channel. The right channel is lined with human brain microvascular endothelial cells (HBMECs), while the left channel contains human choroid plexus epithelial cells (HCPEpiC). B) Neural channel with HCPEpiC seeded along the central channel (scale bar = 200 µm). C) The central channel, highlighted by triangles, is shown in closer detail (scale bar = 200 µm). D) 3D view of the inner channel, showing cells stained with Nestin (gray). Astrocytes, marked by triangles, are stained red but lack Nestin expression (scale bar = 70 µm). E) Inner channel viewed from a different angle (scale bar = 70 µm). F) Vascular channel lined with HBMECs (scale bar = 70 µm). G) HBMECs fully covering the vascular channel (scale bar = 70 µm). H) A magnified maximum Z‐projection view of the SVZ‐on‐a‐chip 7 days after complete seeding, showing significant cellular growth (scale bar = 100 µm). Clusters of NSCs are observed invading both the neural and, predominantly, the vascular channel. I) Maximum Z‐projection view of Nestin staining in the middle channel (scale bar = 100 µm). J) Close‐up of DCX‐positive neural stem cells invading the vascular channel. DCX staining was used instead of Nestin because HBMECs also express Nestin (scale bar = 50 µm). SVZ: Subventricular Zone, NSCs: Neural Stem Cells, HFAs: Human Fetal Astrocytes, HBMECs: Human Brain Microvascular Endothelial Cells, HCPEpiC: Human Choroid Plexus Epithelial Cells, DCX: Doublecortin.

    Journal: Advanced Science

    Article Title: Subventricular Zone‐on‐a‐Chip: A Model to Study Neurogenesis Disruption in Neonatal Intraventricular Hemorrhage

    doi: 10.1002/advs.202502145

    Figure Lengend Snippet: Overview of the SVZ‐on‐a‐chip. A) The SVZ‐on‐a‐chip structure 24 h post‐seeding, showing distinct cellular compartments visualized via staining. The entire chip structure is shown (scale bar = 3000 µm) alongside a magnified maximum Z‐projection view (scale bar = 100 µm). Arrows indicate neural stem cells (NSCs), and triangles highlight human fetal astrocytes (HFAs) embedded in Matrigel, occupying the central channel. The right channel is lined with human brain microvascular endothelial cells (HBMECs), while the left channel contains human choroid plexus epithelial cells (HCPEpiC). B) Neural channel with HCPEpiC seeded along the central channel (scale bar = 200 µm). C) The central channel, highlighted by triangles, is shown in closer detail (scale bar = 200 µm). D) 3D view of the inner channel, showing cells stained with Nestin (gray). Astrocytes, marked by triangles, are stained red but lack Nestin expression (scale bar = 70 µm). E) Inner channel viewed from a different angle (scale bar = 70 µm). F) Vascular channel lined with HBMECs (scale bar = 70 µm). G) HBMECs fully covering the vascular channel (scale bar = 70 µm). H) A magnified maximum Z‐projection view of the SVZ‐on‐a‐chip 7 days after complete seeding, showing significant cellular growth (scale bar = 100 µm). Clusters of NSCs are observed invading both the neural and, predominantly, the vascular channel. I) Maximum Z‐projection view of Nestin staining in the middle channel (scale bar = 100 µm). J) Close‐up of DCX‐positive neural stem cells invading the vascular channel. DCX staining was used instead of Nestin because HBMECs also express Nestin (scale bar = 50 µm). SVZ: Subventricular Zone, NSCs: Neural Stem Cells, HFAs: Human Fetal Astrocytes, HBMECs: Human Brain Microvascular Endothelial Cells, HCPEpiC: Human Choroid Plexus Epithelial Cells, DCX: Doublecortin.

    Article Snippet: DPBS minus Ca ++ and M g++ (14 190 144, Thermo Fischer, Waltham, Massachusetts, USA), DPBS with Ca ++ and Mg ++ (14 040 091, Thermo Fischer), Astrocyte Media (AM1801, ScienCell, Carlsbad, California, USA), TrypLE (12 604 013, Thermo Fischer), Attachment factor protein 1× (S006100, Thermo Fischer), EGM ‐2 MV Microvascular Endothelial Cell Growth Medium‐2 BulletKit (CC‐3202, Lonza, Basel, Switzerland), Endothelial Cell Growth Medium MV2 (C‐22022, PromoCell, Heidelberg, Germany), Epithelial Cell Medium (Innoprot, P60104 , Derio, Spain), poly‐L‐lysine (PLL) (Innoprot), DMEM: F12 Glutamax (31331‐028, Thermo Fischer), N2 supplement ( 17502‐048, Thermo Fischer), B27 serum free (11 530 536, Thermo Fischer), FGF (233‐FB, R&D Systems, MN, USA), EGF (E9644, Sigma Aldrich, Burlington, Massachusetts, USA), PLO (P3655, Sigma Aldrich), Laminin (L2020, Sigma Aldrich), Matrigel Growth Factor Reduced (GFR) Basement Membrane Matrix, LDEV‐free (354 230, Corning, Corning, New York, USA), Antibiotic‐Antimycotic (15 240 062, Themo Fischer), idenTx 3 Chip (Aim Biotech, Singapore), Transwells 0.4 μM microporous membrane (833 932 041, Sarstedt, Nümbrecht, Germany), High Pure RNA Isolation Kit (11 828 665 001, Roche, Basel, Switzerland), Clariom S Affymetrix Assay (902 927, Thermo Fischer), High‐capacity RNA‐to‐cDNA kit (4 387 406, Thermo Fischer), TaqMan probes (Applied Biosystems, California, USA), Fast Advanced Master Mix (4 444 557, Applied Biosystems), TRIzol (15 596 026, Thermo Fischer), Chloroform (194 002, MP Biomedicals, Santa Ana, California, USA), Cell recovery solution (354 253, Corning), Anti‐Adherence Rinsing Solution (0 7010, STEMCELL Technologies, Vancouver, Canada), AggreWell800 24‐well plates (34 811, STEMCELL Technologies), Goat serum (G9023, Sigma Aldrich), Trypan Blue (1 450 021, Bio‐Rad, Hercules, California, USA), LEGENDplex Human Inflammation Panel 1 (13‐plex) assay using a V‐bottom plate (BioLegend, San Diego, California, USA), CellROX Green reagent ( C10444 ,Invitrogen), JC‐1 dye (T3168, Invitrogen) IL1receptor antagonist (SRP3327, Sigma Aldrich).

    Techniques: Staining, Expressing