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ikk inhibitor  (Selleck Chemicals)


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    Structured Review

    Selleck Chemicals ikk inhibitor
    The combination of NF-κB inhibition and cisplatin more effectively inhibits proliferation of human endometrial cancer cells. ( A ) Western blotting of L1CAM, pNF-κB (p65), NF-κB (p65), and GAPDH in HHUA with drug addition. GAPDH was used as a loading control. ( B ) MTT assay of HHUA and SPAC-1-L cells were performed 48 h after treatment with cisplatin(CDDP), an <t>IKK</t> <t>inhibitor,</t> or their combination. ( C ) MTT assay of SPAC-1-L with control or L1CAM knockdown evaluated 48 h after cisplatin (CDDP) addition. ( D ) MTT assay of Ishikawa cells with control or L1CAM overexpression, evaluated 48 h after the addition of cisplatin (CDDP) or an IKK inhibitor. ( p < 0.05 *, p < 0.01 **, p < 0.001 ***, n.s.: not significant). The uncropped blots are shown in .
    Ikk Inhibitor, supplied by Selleck Chemicals, used in various techniques. Bioz Stars score: 95/100, based on 95 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/ikk+inhibitor/IKK-16/pmc12839394-138-0-2
    Average 95 stars, based on 95 article reviews
    ikk inhibitor - by Bioz Stars, 2026-09
    95/100 stars

    Images

    1) Product Images from "L1CAM Promotes Human Endometrial Cancer Via NF-κB Activation"

    Article Title: L1CAM Promotes Human Endometrial Cancer Via NF-κB Activation

    Journal: Cancers

    doi: 10.3390/cancers18020198

    The combination of NF-κB inhibition and cisplatin more effectively inhibits proliferation of human endometrial cancer cells. ( A ) Western blotting of L1CAM, pNF-κB (p65), NF-κB (p65), and GAPDH in HHUA with drug addition. GAPDH was used as a loading control. ( B ) MTT assay of HHUA and SPAC-1-L cells were performed 48 h after treatment with cisplatin(CDDP), an IKK inhibitor, or their combination. ( C ) MTT assay of SPAC-1-L with control or L1CAM knockdown evaluated 48 h after cisplatin (CDDP) addition. ( D ) MTT assay of Ishikawa cells with control or L1CAM overexpression, evaluated 48 h after the addition of cisplatin (CDDP) or an IKK inhibitor. ( p < 0.05 *, p < 0.01 **, p < 0.001 ***, n.s.: not significant). The uncropped blots are shown in .
    Figure Legend Snippet: The combination of NF-κB inhibition and cisplatin more effectively inhibits proliferation of human endometrial cancer cells. ( A ) Western blotting of L1CAM, pNF-κB (p65), NF-κB (p65), and GAPDH in HHUA with drug addition. GAPDH was used as a loading control. ( B ) MTT assay of HHUA and SPAC-1-L cells were performed 48 h after treatment with cisplatin(CDDP), an IKK inhibitor, or their combination. ( C ) MTT assay of SPAC-1-L with control or L1CAM knockdown evaluated 48 h after cisplatin (CDDP) addition. ( D ) MTT assay of Ishikawa cells with control or L1CAM overexpression, evaluated 48 h after the addition of cisplatin (CDDP) or an IKK inhibitor. ( p < 0.05 *, p < 0.01 **, p < 0.001 ***, n.s.: not significant). The uncropped blots are shown in .

    Techniques Used: Inhibition, Western Blot, Control, MTT Assay, Knockdown, Over Expression

    Related Articles

    Activation Assay:

    Article Title: IL-36β Promotes CD8 + T Cell Activation and Antitumor Immune Responses by Activating mTORC1
    Article Snippet: .. For analyzing the role of PI3K/Akt and IKK pathways in IL-36β-induced mTORC1 activation, PI3K inhibitor (Wortmannin, Selleck) with a concentration of 20 nM and IKK inhibitor (IKK16, Selleck) with a concentration of 100 nM were adopted. ..

    Concentration Assay:

    Article Title: IL-36β Promotes CD8 + T Cell Activation and Antitumor Immune Responses by Activating mTORC1
    Article Snippet: .. For analyzing the role of PI3K/Akt and IKK pathways in IL-36β-induced mTORC1 activation, PI3K inhibitor (Wortmannin, Selleck) with a concentration of 20 nM and IKK inhibitor (IKK16, Selleck) with a concentration of 100 nM were adopted. ..



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    (A) Settlement rate of inhibitor-treated larvae. The box plots with superimposed jitter plots display the larval settlement rate under various inhibitor treatments. The biofilm stimulus condition is used as the positive control. The concentration of each inhibitor is indicated on the horizontal axis. The data represent the settlement rate of larvae remaining attached out of 10 larvae across six independent biological replicates (total n = 60). Statistical significance among treatment groups was assessed using one-way ANOVA followed by Tukey’s HSD post hoc test, with grouping letters indicating significant differences ( p < 0.05); treatments sharing a letter are not significantly different. (B) Quantitative assessment of the functional hierarchy. The box plots with superimposed jitter plots show the Metamorphic Progression Scores (MPS) for larvae treated with various pharmacological inhibitors with or without all-trans retinoic acid (RA). The MPS was calculated based on the metamorphic stage reached by the larvae in the identical assays used for the settlement rate analysis in (A). The concentration of each inhibitor is indicated on the horizontal axis. The MPS represents the average metamorphic stage reached (0 = brachiolaria; 1 = early; 2 = middle; 3 = late; 4 = pre-juvenile; 5 = juvenile). Statistical significance among the treatment groups was assessed using one-way ANOVA followed by Tukey’s HSD post hoc test ( *p < 0.05; n.s., not significant). A significant RA-dependent rescue condition (a statistically significant increase in MPS compared with the inhibitor-alone condition) is highlighted in grey, establishing the functional hierarchy of the pathways relative to the RA commitment signal. (C) Representative image illustrating pathway functional hierarchy. Images show representative larval morphology under the control, inhibitor-only, and inhibitor + RA conditions. These images specifically represent the high-concentration inhibitor treatments (MyD88 inhibitor: 50 µM; MAPK inhibitors: 10 µM; IKKβ and HSP90AA1 inhibitors: 1 µM). MyD88 inhibition completely blocks the behavioral decision of settlement. JNK and p38 inhibition caused a distinct early-stage arrest (low MPS), and the effects of their inhibition were significantly rescued by RA co-treatment. In contrast, ERK inhibition arrested metamorphosis at the middle stage, and this block was not rescued by exogenous RA. Similarly, IKKβ and HSP90AA1 inhibition arrested metamorphosis at later stages, and this block was not rescued by exogenous RA, functionally placing all three pathways (ERK, IKKβ, and HSP90AA1) downstream of the RA commitment signal. Scale bar: 200 µm. Inhibitors used: T6167923 (MyD88 <t>inhibitor),</t> <t>IKK-16</t> (IKKβ inhibitor), U0126 (ERK inhibitor), SP600125 (JNK inhibitor), SB202190 (p38 inhibitor), and Luminespib (HSP90AA1 inhibitor).
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    The combination of NF-κB inhibition and cisplatin more effectively inhibits proliferation of human endometrial cancer cells. ( A ) Western blotting of L1CAM, pNF-κB (p65), NF-κB (p65), and GAPDH in HHUA with drug addition. GAPDH was used as a loading control. ( B ) MTT assay of HHUA and SPAC-1-L cells were performed 48 h after treatment with cisplatin(CDDP), an <t>IKK</t> <t>inhibitor,</t> or their combination. ( C ) MTT assay of SPAC-1-L with control or L1CAM knockdown evaluated 48 h after cisplatin (CDDP) addition. ( D ) MTT assay of Ishikawa cells with control or L1CAM overexpression, evaluated 48 h after the addition of cisplatin (CDDP) or an IKK inhibitor. ( p < 0.05 *, p < 0.01 **, p < 0.001 ***, n.s.: not significant). The uncropped blots are shown in .
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    The combination of NF-κB inhibition and cisplatin more effectively inhibits proliferation of human endometrial cancer cells. ( A ) Western blotting of L1CAM, pNF-κB (p65), NF-κB (p65), and GAPDH in HHUA with drug addition. GAPDH was used as a loading control. ( B ) MTT assay of HHUA and SPAC-1-L cells were performed 48 h after treatment with cisplatin(CDDP), an <t>IKK</t> <t>inhibitor,</t> or their combination. ( C ) MTT assay of SPAC-1-L with control or L1CAM knockdown evaluated 48 h after cisplatin (CDDP) addition. ( D ) MTT assay of Ishikawa cells with control or L1CAM overexpression, evaluated 48 h after the addition of cisplatin (CDDP) or an IKK inhibitor. ( p < 0.05 *, p < 0.01 **, p < 0.001 ***, n.s.: not significant). The uncropped blots are shown in .
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    Image Search Results


    (A) Settlement rate of inhibitor-treated larvae. The box plots with superimposed jitter plots display the larval settlement rate under various inhibitor treatments. The biofilm stimulus condition is used as the positive control. The concentration of each inhibitor is indicated on the horizontal axis. The data represent the settlement rate of larvae remaining attached out of 10 larvae across six independent biological replicates (total n = 60). Statistical significance among treatment groups was assessed using one-way ANOVA followed by Tukey’s HSD post hoc test, with grouping letters indicating significant differences ( p < 0.05); treatments sharing a letter are not significantly different. (B) Quantitative assessment of the functional hierarchy. The box plots with superimposed jitter plots show the Metamorphic Progression Scores (MPS) for larvae treated with various pharmacological inhibitors with or without all-trans retinoic acid (RA). The MPS was calculated based on the metamorphic stage reached by the larvae in the identical assays used for the settlement rate analysis in (A). The concentration of each inhibitor is indicated on the horizontal axis. The MPS represents the average metamorphic stage reached (0 = brachiolaria; 1 = early; 2 = middle; 3 = late; 4 = pre-juvenile; 5 = juvenile). Statistical significance among the treatment groups was assessed using one-way ANOVA followed by Tukey’s HSD post hoc test ( *p < 0.05; n.s., not significant). A significant RA-dependent rescue condition (a statistically significant increase in MPS compared with the inhibitor-alone condition) is highlighted in grey, establishing the functional hierarchy of the pathways relative to the RA commitment signal. (C) Representative image illustrating pathway functional hierarchy. Images show representative larval morphology under the control, inhibitor-only, and inhibitor + RA conditions. These images specifically represent the high-concentration inhibitor treatments (MyD88 inhibitor: 50 µM; MAPK inhibitors: 10 µM; IKKβ and HSP90AA1 inhibitors: 1 µM). MyD88 inhibition completely blocks the behavioral decision of settlement. JNK and p38 inhibition caused a distinct early-stage arrest (low MPS), and the effects of their inhibition were significantly rescued by RA co-treatment. In contrast, ERK inhibition arrested metamorphosis at the middle stage, and this block was not rescued by exogenous RA. Similarly, IKKβ and HSP90AA1 inhibition arrested metamorphosis at later stages, and this block was not rescued by exogenous RA, functionally placing all three pathways (ERK, IKKβ, and HSP90AA1) downstream of the RA commitment signal. Scale bar: 200 µm. Inhibitors used: T6167923 (MyD88 inhibitor), IKK-16 (IKKβ inhibitor), U0126 (ERK inhibitor), SP600125 (JNK inhibitor), SB202190 (p38 inhibitor), and Luminespib (HSP90AA1 inhibitor).

    Journal: bioRxiv

    Article Title: An APP-centered molecular gateway integrates innate immunity and retinoic acid signaling to drive irreversible metamorphic commitment

    doi: 10.64898/2026.01.22.700939

    Figure Lengend Snippet: (A) Settlement rate of inhibitor-treated larvae. The box plots with superimposed jitter plots display the larval settlement rate under various inhibitor treatments. The biofilm stimulus condition is used as the positive control. The concentration of each inhibitor is indicated on the horizontal axis. The data represent the settlement rate of larvae remaining attached out of 10 larvae across six independent biological replicates (total n = 60). Statistical significance among treatment groups was assessed using one-way ANOVA followed by Tukey’s HSD post hoc test, with grouping letters indicating significant differences ( p < 0.05); treatments sharing a letter are not significantly different. (B) Quantitative assessment of the functional hierarchy. The box plots with superimposed jitter plots show the Metamorphic Progression Scores (MPS) for larvae treated with various pharmacological inhibitors with or without all-trans retinoic acid (RA). The MPS was calculated based on the metamorphic stage reached by the larvae in the identical assays used for the settlement rate analysis in (A). The concentration of each inhibitor is indicated on the horizontal axis. The MPS represents the average metamorphic stage reached (0 = brachiolaria; 1 = early; 2 = middle; 3 = late; 4 = pre-juvenile; 5 = juvenile). Statistical significance among the treatment groups was assessed using one-way ANOVA followed by Tukey’s HSD post hoc test ( *p < 0.05; n.s., not significant). A significant RA-dependent rescue condition (a statistically significant increase in MPS compared with the inhibitor-alone condition) is highlighted in grey, establishing the functional hierarchy of the pathways relative to the RA commitment signal. (C) Representative image illustrating pathway functional hierarchy. Images show representative larval morphology under the control, inhibitor-only, and inhibitor + RA conditions. These images specifically represent the high-concentration inhibitor treatments (MyD88 inhibitor: 50 µM; MAPK inhibitors: 10 µM; IKKβ and HSP90AA1 inhibitors: 1 µM). MyD88 inhibition completely blocks the behavioral decision of settlement. JNK and p38 inhibition caused a distinct early-stage arrest (low MPS), and the effects of their inhibition were significantly rescued by RA co-treatment. In contrast, ERK inhibition arrested metamorphosis at the middle stage, and this block was not rescued by exogenous RA. Similarly, IKKβ and HSP90AA1 inhibition arrested metamorphosis at later stages, and this block was not rescued by exogenous RA, functionally placing all three pathways (ERK, IKKβ, and HSP90AA1) downstream of the RA commitment signal. Scale bar: 200 µm. Inhibitors used: T6167923 (MyD88 inhibitor), IKK-16 (IKKβ inhibitor), U0126 (ERK inhibitor), SP600125 (JNK inhibitor), SB202190 (p38 inhibitor), and Luminespib (HSP90AA1 inhibitor).

    Article Snippet: The inhibitors were dissolved in DMSO and applied at the indicated concentrations: the MyD88 inhibitor T6167923 (5 or 50 μM; MedChemExpress), the IKKβ inhibitor IKK-16 (0.1 or 1 μM; MedChemExpress), and MAPK inhibitors SP600125 (JNK), SB202190 (p38), and U0126 (ERK) (1 or 10 μM; MedChemExpress or FUJIFILM Wako Pure Chemical Corporation), and the HSP90AA1 inhibitors luminespib (0.1 or 1 μM; Chemscene).

    Techniques: Positive Control, Concentration Assay, Functional Assay, Control, Inhibition, Blocking Assay

    The combination of NF-κB inhibition and cisplatin more effectively inhibits proliferation of human endometrial cancer cells. ( A ) Western blotting of L1CAM, pNF-κB (p65), NF-κB (p65), and GAPDH in HHUA with drug addition. GAPDH was used as a loading control. ( B ) MTT assay of HHUA and SPAC-1-L cells were performed 48 h after treatment with cisplatin(CDDP), an IKK inhibitor, or their combination. ( C ) MTT assay of SPAC-1-L with control or L1CAM knockdown evaluated 48 h after cisplatin (CDDP) addition. ( D ) MTT assay of Ishikawa cells with control or L1CAM overexpression, evaluated 48 h after the addition of cisplatin (CDDP) or an IKK inhibitor. ( p < 0.05 *, p < 0.01 **, p < 0.001 ***, n.s.: not significant). The uncropped blots are shown in .

    Journal: Cancers

    Article Title: L1CAM Promotes Human Endometrial Cancer Via NF-κB Activation

    doi: 10.3390/cancers18020198

    Figure Lengend Snippet: The combination of NF-κB inhibition and cisplatin more effectively inhibits proliferation of human endometrial cancer cells. ( A ) Western blotting of L1CAM, pNF-κB (p65), NF-κB (p65), and GAPDH in HHUA with drug addition. GAPDH was used as a loading control. ( B ) MTT assay of HHUA and SPAC-1-L cells were performed 48 h after treatment with cisplatin(CDDP), an IKK inhibitor, or their combination. ( C ) MTT assay of SPAC-1-L with control or L1CAM knockdown evaluated 48 h after cisplatin (CDDP) addition. ( D ) MTT assay of Ishikawa cells with control or L1CAM overexpression, evaluated 48 h after the addition of cisplatin (CDDP) or an IKK inhibitor. ( p < 0.05 *, p < 0.01 **, p < 0.001 ***, n.s.: not significant). The uncropped blots are shown in .

    Article Snippet: IKK inhibitor (Selleck, S2882, Tokyo, Japan) and cisplatin (CDDP) (Selleck, S1166, Tokyo, Japan) were used to investigate their effects on cell viability.

    Techniques: Inhibition, Western Blot, Control, MTT Assay, Knockdown, Over Expression