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p38 mapk inhibitor sb203580 sb  (MedChemExpress)


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    Structured Review

    MedChemExpress p38 mapk inhibitor sb203580 sb
    P38 Mapk Inhibitor Sb203580 Sb, supplied by MedChemExpress, used in various techniques. Bioz Stars score: 98/100, based on 530 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/p38+mapk+inhibitor/Adezmapimod/pm42153350-40-1-9
    Average 98 stars, based on 530 article reviews
    p38 mapk inhibitor sb203580 sb - by Bioz Stars, 2026-09
    98/100 stars

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    Related Articles

    Modification:

    Article Title: λ-Carrageenan regulates antiviral responses by targeting classical NF-κB and IRF3-mediated signaling pathways.
    Article Snippet: λ-Carrageenan (λ-CGN) has attracted attention for its biological activities, such as anticoagulant, antitumor, and pro-inflammatory effects.. Here, we explored the function of λ-CGN in modulating innate immune responses.. Our study showed that λ-CGN inhibited the infection by various viruses.

    Fractionation:

    Article Title: λ-Carrageenan regulates antiviral responses by targeting classical NF-κB and IRF3-mediated signaling pathways.
    Article Snippet: λ-Carrageenan (λ-CGN) has attracted attention for its biological activities, such as anticoagulant, antitumor, and pro-inflammatory effects.. Here, we explored the function of λ-CGN in modulating innate immune responses.. Our study showed that λ-CGN inhibited the infection by various viruses.

    Staining:

    Article Title: DPEP2 suppresses hyperinflammation via metabolic reprogramming of macrophages in sepsis.
    Article Snippet: RAW264.7 cells were treated with TLR1/2 ligands (1 μg/mL Pam3Csk4; HY-P1180A, MedChemExpress, Monmouth Junction, NJ, USA), TLR7/8 ligands (1 μg/mL R848; HY-13740, MedChemExpress) and TLR3 ligands (1 μg/mL poly(I:C); HY-107202, MedChemExpress) for 12 h. RAW264.7 cells, human monocytes and BMDMs were stimulated with LPS (l4391, Sigma) to establish in vitro inflammatory model. RAW264.7 cells were treated with LTD4 (1μM; 20310, Cayman, Ann Arbor, MI, USA), LTE4 (1 μM; 20410, Cayman) or PGE2 (1 μM; HY-101952, MedChemExpress) in vitro. .. RAW264.7 cells were treated with a EGR1 inhibitor (5 μM EGR-1IN-1 (IT25); HY-163731, MedChemExpress), CysLTR1 inhibitor (5 μM Zafrilukast; HY-17492, AR TI CL E IN P RE SS MedChemExpress), CysLTR2 inhibitor (1 μM HAMI3379; HY-112248A MedChemExpress), NF-κB inhibitor (30 μM JSH-23; HY-13982, MedChemExpress), ERK inhibitor (1 μM U0126; HY-12031A, MedChemExpress), JNK inhibitor (25 μM SP600125; HY-12041, MedChemExpress), p38 MAPK inhibitor (30 μM SB203580; HY-10256, MedChemExpress), or AKT inhibitor (30 μM Ly294002; HY-10108, MedChemExpress), for 1 h and stimulated with LPS (1 μg/mL) for 12 h. Hematoxylin-eosin (H&E) staining and histological analysis Mice were euthanized, and their lungs were removed and fixed in 4% paraformaldehyde at room temperature for 24 h. Tissues were dehydrated, embedded in paraffin, and stained with H&E. ..

    Mouse Assay:

    Article Title: DPEP2 suppresses hyperinflammation via metabolic reprogramming of macrophages in sepsis.
    Article Snippet: RAW264.7 cells were treated with TLR1/2 ligands (1 μg/mL Pam3Csk4; HY-P1180A, MedChemExpress, Monmouth Junction, NJ, USA), TLR7/8 ligands (1 μg/mL R848; HY-13740, MedChemExpress) and TLR3 ligands (1 μg/mL poly(I:C); HY-107202, MedChemExpress) for 12 h. RAW264.7 cells, human monocytes and BMDMs were stimulated with LPS (l4391, Sigma) to establish in vitro inflammatory model. RAW264.7 cells were treated with LTD4 (1μM; 20310, Cayman, Ann Arbor, MI, USA), LTE4 (1 μM; 20410, Cayman) or PGE2 (1 μM; HY-101952, MedChemExpress) in vitro. .. RAW264.7 cells were treated with a EGR1 inhibitor (5 μM EGR-1IN-1 (IT25); HY-163731, MedChemExpress), CysLTR1 inhibitor (5 μM Zafrilukast; HY-17492, AR TI CL E IN P RE SS MedChemExpress), CysLTR2 inhibitor (1 μM HAMI3379; HY-112248A MedChemExpress), NF-κB inhibitor (30 μM JSH-23; HY-13982, MedChemExpress), ERK inhibitor (1 μM U0126; HY-12031A, MedChemExpress), JNK inhibitor (25 μM SP600125; HY-12041, MedChemExpress), p38 MAPK inhibitor (30 μM SB203580; HY-10256, MedChemExpress), or AKT inhibitor (30 μM Ly294002; HY-10108, MedChemExpress), for 1 h and stimulated with LPS (1 μg/mL) for 12 h. Hematoxylin-eosin (H&E) staining and histological analysis Mice were euthanized, and their lungs were removed and fixed in 4% paraformaldehyde at room temperature for 24 h. Tissues were dehydrated, embedded in paraffin, and stained with H&E. ..

    Small Interfering RNA:

    Article Title: Structural elucidation of Lyophyllum Decastes polysaccharide LP1-1 and its mechanism of macrophage activation mediated through TLR2/4.
    Article Snippet: This is a PDF file of an article that has undergone enhancements after acceptance, such as the addition of a cover page and metadata, and formatting for readability, but it is not yet the definitive version of record.. This version will undergo additional copyediting, typesetting and review before it is published in its final form, but we are providing this version to give early visibility of the article.. Please note that, during the production process, errors may be discovered which could affect the content, and all legal disclaimers that apply to the journal pertain.

    Pyrolysis Gas Chromatography:

    Article Title: Spinal p38 MAPK/PGC-1α/SIRT3 signaling pathway mediates remifentanil-induced hyperalgesia in rats via ROS release and NR2B activation.
    Article Snippet: Remifentanil-induced hyperalgesia (RIH) poses a significant clinical challenge.. Our research group has previously confirmed that abnormal activation of p38 mitogen-activated protein kinase (p38 MAPK) in the spinal dorsal horn contributes to RIH, but the specific regulatory pathway remains unclear.. It is known that p38 MAPK can regulate the expression of peroxisome proliferator-activated receptor gamma coactivator 1-alpha (PGC-1α), and the PGC-1α/Sirtuin 3 (SIRT3) pathway plays an important role in various pain models.

    Saline:

    Article Title: Spinal p38 MAPK/PGC-1α/SIRT3 signaling pathway mediates remifentanil-induced hyperalgesia in rats via ROS release and NR2B activation.
    Article Snippet: Remifentanil-induced hyperalgesia (RIH) poses a significant clinical challenge.. Our research group has previously confirmed that abnormal activation of p38 mitogen-activated protein kinase (p38 MAPK) in the spinal dorsal horn contributes to RIH, but the specific regulatory pathway remains unclear.. It is known that p38 MAPK can regulate the expression of peroxisome proliferator-activated receptor gamma coactivator 1-alpha (PGC-1α), and the PGC-1α/Sirtuin 3 (SIRT3) pathway plays an important role in various pain models.



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    TLCA regulates mitochondrial biogenesis and altered myofiber type composition through the <t>p38</t> MAPK/PGC-1α signaling pathway. A Cell viability of cells treated with different concentrations of TLCA for 24 h (n = 10). B & F The mRNA expression of MYH1A and MYH7B (n = 6). C & G Intracellular enzymatic activities of succinate dehydrogenase (SDH) and lactate dehydrogenase (LDH), ATP content and mitochondrial DNA (mtDNA) content (n = 6). D & H The mRNA expression of HK1, GPI, PGAM1, PGK1, PYGL, PGC-1α, NRF1 and TFAM (n = 6). E The protein expression of PGC-1α, <t>p38</t> <t>MAPK</t> and phosphorylation p38 MAPK (n = 3). I The protein expression of PGC-1α (n = 3). Data were shown as mean ± SD; *Represents significant difference when compared with 0 μM TLCA or CON group, and # represents significant difference when compared with TLCA group. *& # P < 0.05, ⁎⁎ & ## P < 0.01, ⁎⁎⁎ & ### P < 0.001.
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    TLCA regulates mitochondrial biogenesis and altered myofiber type composition through the <t>p38</t> MAPK/PGC-1α signaling pathway. A Cell viability of cells treated with different concentrations of TLCA for 24 h (n = 10). B & F The mRNA expression of MYH1A and MYH7B (n = 6). C & G Intracellular enzymatic activities of succinate dehydrogenase (SDH) and lactate dehydrogenase (LDH), ATP content and mitochondrial DNA (mtDNA) content (n = 6). D & H The mRNA expression of HK1, GPI, PGAM1, PGK1, PYGL, PGC-1α, NRF1 and TFAM (n = 6). E The protein expression of PGC-1α, <t>p38</t> <t>MAPK</t> and phosphorylation p38 MAPK (n = 3). I The protein expression of PGC-1α (n = 3). Data were shown as mean ± SD; *Represents significant difference when compared with 0 μM TLCA or CON group, and # represents significant difference when compared with TLCA group. *& # P < 0.05, ⁎⁎ & ## P < 0.01, ⁎⁎⁎ & ### P < 0.001.
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    TLCA regulates mitochondrial biogenesis and altered myofiber type composition through the <t>p38</t> MAPK/PGC-1α signaling pathway. A Cell viability of cells treated with different concentrations of TLCA for 24 h (n = 10). B & F The mRNA expression of MYH1A and MYH7B (n = 6). C & G Intracellular enzymatic activities of succinate dehydrogenase (SDH) and lactate dehydrogenase (LDH), ATP content and mitochondrial DNA (mtDNA) content (n = 6). D & H The mRNA expression of HK1, GPI, PGAM1, PGK1, PYGL, PGC-1α, NRF1 and TFAM (n = 6). E The protein expression of PGC-1α, <t>p38</t> <t>MAPK</t> and phosphorylation p38 MAPK (n = 3). I The protein expression of PGC-1α (n = 3). Data were shown as mean ± SD; *Represents significant difference when compared with 0 μM TLCA or CON group, and # represents significant difference when compared with TLCA group. *& # P < 0.05, ⁎⁎ & ## P < 0.01, ⁎⁎⁎ & ### P < 0.001.
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    MedChemExpress p38 mapk inhibitor
    RTA-408 activates <t>p38–NRF2</t> signaling and promotes LC3B accumulation in hepatocellular carcinoma cells. HepG2 and PP5 cells were treated with RTA-408 (0, 200, 400, or 600 nM) for 24 h, and protein expression was analyzed by western blotting. Representative immunoblots show phosphorylated p38 (p-p38), total p38, phosphorylated ERK1/2 (p-ERK), total ERK1/2, phosphorylated JNK (p-JNK), total JNK, NRF2, LC3B, p62, cleaved caspase-3 (c-cas3), and β-actin. Densitometric analyses of p-p38/p38, p-ERK/ERK, and p-JNK/JNK, as well as NRF2, LC3B, p62, and c-cas3 normalized to β-actin, are shown in the accompanying bar graphs. RTA-408 increased p38 phosphorylation and NRF2 expression in both cell lines and was accompanied by marked accumulation of LC3B and p62, while ERK and JNK responses differed between HepG2 and PP5 cells. Cleaved caspase-3 increased at higher concentrations of RTA-408. β-Actin was used as a loading control. Data are presented as mean ± SEM from three independent experiments ( n = 3). *P < 0.05 and **P < 0.01 versus control.
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    RTA-408 activates <t>p38–NRF2</t> signaling and promotes LC3B accumulation in hepatocellular carcinoma cells. HepG2 and PP5 cells were treated with RTA-408 (0, 200, 400, or 600 nM) for 24 h, and protein expression was analyzed by western blotting. Representative immunoblots show phosphorylated p38 (p-p38), total p38, phosphorylated ERK1/2 (p-ERK), total ERK1/2, phosphorylated JNK (p-JNK), total JNK, NRF2, LC3B, p62, cleaved caspase-3 (c-cas3), and β-actin. Densitometric analyses of p-p38/p38, p-ERK/ERK, and p-JNK/JNK, as well as NRF2, LC3B, p62, and c-cas3 normalized to β-actin, are shown in the accompanying bar graphs. RTA-408 increased p38 phosphorylation and NRF2 expression in both cell lines and was accompanied by marked accumulation of LC3B and p62, while ERK and JNK responses differed between HepG2 and PP5 cells. Cleaved caspase-3 increased at higher concentrations of RTA-408. β-Actin was used as a loading control. Data are presented as mean ± SEM from three independent experiments ( n = 3). *P < 0.05 and **P < 0.01 versus control.
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    Baines Food Consultancy p38 mapk inhibitors
    RTA-408 activates <t>p38–NRF2</t> signaling and promotes LC3B accumulation in hepatocellular carcinoma cells. HepG2 and PP5 cells were treated with RTA-408 (0, 200, 400, or 600 nM) for 24 h, and protein expression was analyzed by western blotting. Representative immunoblots show phosphorylated p38 (p-p38), total p38, phosphorylated ERK1/2 (p-ERK), total ERK1/2, phosphorylated JNK (p-JNK), total JNK, NRF2, LC3B, p62, cleaved caspase-3 (c-cas3), and β-actin. Densitometric analyses of p-p38/p38, p-ERK/ERK, and p-JNK/JNK, as well as NRF2, LC3B, p62, and c-cas3 normalized to β-actin, are shown in the accompanying bar graphs. RTA-408 increased p38 phosphorylation and NRF2 expression in both cell lines and was accompanied by marked accumulation of LC3B and p62, while ERK and JNK responses differed between HepG2 and PP5 cells. Cleaved caspase-3 increased at higher concentrations of RTA-408. β-Actin was used as a loading control. Data are presented as mean ± SEM from three independent experiments ( n = 3). *P < 0.05 and **P < 0.01 versus control.
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    Image Search Results


    TLCA regulates mitochondrial biogenesis and altered myofiber type composition through the p38 MAPK/PGC-1α signaling pathway. A Cell viability of cells treated with different concentrations of TLCA for 24 h (n = 10). B & F The mRNA expression of MYH1A and MYH7B (n = 6). C & G Intracellular enzymatic activities of succinate dehydrogenase (SDH) and lactate dehydrogenase (LDH), ATP content and mitochondrial DNA (mtDNA) content (n = 6). D & H The mRNA expression of HK1, GPI, PGAM1, PGK1, PYGL, PGC-1α, NRF1 and TFAM (n = 6). E The protein expression of PGC-1α, p38 MAPK and phosphorylation p38 MAPK (n = 3). I The protein expression of PGC-1α (n = 3). Data were shown as mean ± SD; *Represents significant difference when compared with 0 μM TLCA or CON group, and # represents significant difference when compared with TLCA group. *& # P < 0.05, ⁎⁎ & ## P < 0.01, ⁎⁎⁎ & ### P < 0.001.

    Journal: Poultry Science

    Article Title: Gut microbiota-derived taurolithocholic acid modulates myofiber-type switching via p38 MAPK/PGC-1α signaling underlying breed differences between Arbor Acres and Taoyuan chickens

    doi: 10.1016/j.psj.2026.106914

    Figure Lengend Snippet: TLCA regulates mitochondrial biogenesis and altered myofiber type composition through the p38 MAPK/PGC-1α signaling pathway. A Cell viability of cells treated with different concentrations of TLCA for 24 h (n = 10). B & F The mRNA expression of MYH1A and MYH7B (n = 6). C & G Intracellular enzymatic activities of succinate dehydrogenase (SDH) and lactate dehydrogenase (LDH), ATP content and mitochondrial DNA (mtDNA) content (n = 6). D & H The mRNA expression of HK1, GPI, PGAM1, PGK1, PYGL, PGC-1α, NRF1 and TFAM (n = 6). E The protein expression of PGC-1α, p38 MAPK and phosphorylation p38 MAPK (n = 3). I The protein expression of PGC-1α (n = 3). Data were shown as mean ± SD; *Represents significant difference when compared with 0 μM TLCA or CON group, and # represents significant difference when compared with TLCA group. *& # P < 0.05, ⁎⁎ & ## P < 0.01, ⁎⁎⁎ & ### P < 0.001.

    Article Snippet: The differentiation medium containing TLCA and p38 MAPK inhibitor SB203580 (152121-47-6, MedChemExpress, Shanghai, China) was added to CPMs after 4 days of differentiation, and the cells were collected after 24 h.

    Techniques: Expressing, Phospho-proteomics

    RTA-408 activates p38–NRF2 signaling and promotes LC3B accumulation in hepatocellular carcinoma cells. HepG2 and PP5 cells were treated with RTA-408 (0, 200, 400, or 600 nM) for 24 h, and protein expression was analyzed by western blotting. Representative immunoblots show phosphorylated p38 (p-p38), total p38, phosphorylated ERK1/2 (p-ERK), total ERK1/2, phosphorylated JNK (p-JNK), total JNK, NRF2, LC3B, p62, cleaved caspase-3 (c-cas3), and β-actin. Densitometric analyses of p-p38/p38, p-ERK/ERK, and p-JNK/JNK, as well as NRF2, LC3B, p62, and c-cas3 normalized to β-actin, are shown in the accompanying bar graphs. RTA-408 increased p38 phosphorylation and NRF2 expression in both cell lines and was accompanied by marked accumulation of LC3B and p62, while ERK and JNK responses differed between HepG2 and PP5 cells. Cleaved caspase-3 increased at higher concentrations of RTA-408. β-Actin was used as a loading control. Data are presented as mean ± SEM from three independent experiments ( n = 3). *P < 0.05 and **P < 0.01 versus control.

    Journal: Hepatic Oncology

    Article Title: RTA‑408 induces p38‑dependent apoptosis and suppresses cell viability in hepatocellular carcinoma cells

    doi: 10.1080/20450923.2026.2659967

    Figure Lengend Snippet: RTA-408 activates p38–NRF2 signaling and promotes LC3B accumulation in hepatocellular carcinoma cells. HepG2 and PP5 cells were treated with RTA-408 (0, 200, 400, or 600 nM) for 24 h, and protein expression was analyzed by western blotting. Representative immunoblots show phosphorylated p38 (p-p38), total p38, phosphorylated ERK1/2 (p-ERK), total ERK1/2, phosphorylated JNK (p-JNK), total JNK, NRF2, LC3B, p62, cleaved caspase-3 (c-cas3), and β-actin. Densitometric analyses of p-p38/p38, p-ERK/ERK, and p-JNK/JNK, as well as NRF2, LC3B, p62, and c-cas3 normalized to β-actin, are shown in the accompanying bar graphs. RTA-408 increased p38 phosphorylation and NRF2 expression in both cell lines and was accompanied by marked accumulation of LC3B and p62, while ERK and JNK responses differed between HepG2 and PP5 cells. Cleaved caspase-3 increased at higher concentrations of RTA-408. β-Actin was used as a loading control. Data are presented as mean ± SEM from three independent experiments ( n = 3). *P < 0.05 and **P < 0.01 versus control.

    Article Snippet: RTA-408 (omaveloxolone) (MCE; 1474034-05-3; USA) and the p38 MAPK inhibitor, SB203580 (MCE; 152121-47-6; USA), were dissolved in dimethyl sulfoxide (DMSO) to prepare stock solutions (10 mM for RTA-408 and 10 mM for SB203580), which were stored at − 20 °C according to the manufacturer’s instructions.

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

    p38 inhibition attenuates RTA-408-induced p38 signaling, LC3B/p62 accumulation, and apoptotic protein activation in hepatocellular carcinoma cells. HepG2 and PP5 cells were treated for 24 h with vehicle control (Con), RTA-408 (400 nM) alone, or RTA-408 (400 nM) plus SB203580 (10 μM). Protein expression was analyzed by western blotting. Representative immunoblots show phosphorylated p38 (p-p38), total p38, NRF2, LC3B, p62, cleaved caspase-3 (c-cas3), and β-actin. Densitometric analyses of p-p38/p38, as well as NRF2, LC3B, p62, and c-cas3 normalized to β-actin, are shown in the accompanying bar graphs. In both HepG2 and PP5 cells, RTA-408 increased p38 phosphorylation, NRF2 expression, LC3B accumulation, p62 accumulation, and cleaved caspase-3 levels, whereas co-treatment with SB203580 markedly attenuated these RTA-408-induced effects without altering total p38 expression. These findings indicate that p38 activity contributes to RTA-408-induced stress signaling, LC3B/p62-associated responses, and apoptotic protein activation in hepatocellular carcinoma cells. Data are presented as mean ± SEM from three independent experiments ( n = 3). *P < 0.05 and **P < 0.01 versus control; #P < 0.05 and ##P < 0.01 versus RTA-408 alone.

    Journal: Hepatic Oncology

    Article Title: RTA‑408 induces p38‑dependent apoptosis and suppresses cell viability in hepatocellular carcinoma cells

    doi: 10.1080/20450923.2026.2659967

    Figure Lengend Snippet: p38 inhibition attenuates RTA-408-induced p38 signaling, LC3B/p62 accumulation, and apoptotic protein activation in hepatocellular carcinoma cells. HepG2 and PP5 cells were treated for 24 h with vehicle control (Con), RTA-408 (400 nM) alone, or RTA-408 (400 nM) plus SB203580 (10 μM). Protein expression was analyzed by western blotting. Representative immunoblots show phosphorylated p38 (p-p38), total p38, NRF2, LC3B, p62, cleaved caspase-3 (c-cas3), and β-actin. Densitometric analyses of p-p38/p38, as well as NRF2, LC3B, p62, and c-cas3 normalized to β-actin, are shown in the accompanying bar graphs. In both HepG2 and PP5 cells, RTA-408 increased p38 phosphorylation, NRF2 expression, LC3B accumulation, p62 accumulation, and cleaved caspase-3 levels, whereas co-treatment with SB203580 markedly attenuated these RTA-408-induced effects without altering total p38 expression. These findings indicate that p38 activity contributes to RTA-408-induced stress signaling, LC3B/p62-associated responses, and apoptotic protein activation in hepatocellular carcinoma cells. Data are presented as mean ± SEM from three independent experiments ( n = 3). *P < 0.05 and **P < 0.01 versus control; #P < 0.05 and ##P < 0.01 versus RTA-408 alone.

    Article Snippet: RTA-408 (omaveloxolone) (MCE; 1474034-05-3; USA) and the p38 MAPK inhibitor, SB203580 (MCE; 152121-47-6; USA), were dissolved in dimethyl sulfoxide (DMSO) to prepare stock solutions (10 mM for RTA-408 and 10 mM for SB203580), which were stored at − 20 °C according to the manufacturer’s instructions.

    Techniques: Inhibition, Activation Assay, Control, Expressing, Western Blot, Phospho-proteomics, Activity Assay

    Pharmacological inhibition of p38 MAPK partially restores cell viability and attenuates RTA-408-induced apoptosis in hepatocellular carcinoma cells. (A) HepG2 and PP5 cells were treated for 24 h with vehicle control (Con), RTA-408 (400 nM) alone, or RTA-408 (400 nM) plus SB203580 (10 μM), and cell viability was assessed by the MTT assay. Bar graphs show the percentage of viable cells relative to the control group. (B) Under the same treatment conditions, apoptosis was evaluated by Annexin V/7-AAD flow cytometry. Representative dot plots show the distribution of viable (Annexin V − /7-AAD − ), early apoptotic (Annexin V + /7-AAD − ), late apoptotic (Annexin V + /7-AAD + ), and necrotic (Annexin V − /7-AAD + ) cell populations. The accompanying bar graphs summarize total apoptosis (early + late apoptosis). In both cell lines, RTA-408 reduced cell viability and increased apoptosis, whereas co-treatment with SB203580 partially reversed the loss of viability and attenuated the pro-apoptotic effect of RTA-408. Data are presented as mean ± SEM from three independent experiments ( n = 3). Statistical significance was determined by one-way analysis of variance with appropriate post hoc testing. *P < 0.05, **P < 0.01, and ***P < 0.001 versus control; ##P < 0.01 versus RTA-408 alone.

    Journal: Hepatic Oncology

    Article Title: RTA‑408 induces p38‑dependent apoptosis and suppresses cell viability in hepatocellular carcinoma cells

    doi: 10.1080/20450923.2026.2659967

    Figure Lengend Snippet: Pharmacological inhibition of p38 MAPK partially restores cell viability and attenuates RTA-408-induced apoptosis in hepatocellular carcinoma cells. (A) HepG2 and PP5 cells were treated for 24 h with vehicle control (Con), RTA-408 (400 nM) alone, or RTA-408 (400 nM) plus SB203580 (10 μM), and cell viability was assessed by the MTT assay. Bar graphs show the percentage of viable cells relative to the control group. (B) Under the same treatment conditions, apoptosis was evaluated by Annexin V/7-AAD flow cytometry. Representative dot plots show the distribution of viable (Annexin V − /7-AAD − ), early apoptotic (Annexin V + /7-AAD − ), late apoptotic (Annexin V + /7-AAD + ), and necrotic (Annexin V − /7-AAD + ) cell populations. The accompanying bar graphs summarize total apoptosis (early + late apoptosis). In both cell lines, RTA-408 reduced cell viability and increased apoptosis, whereas co-treatment with SB203580 partially reversed the loss of viability and attenuated the pro-apoptotic effect of RTA-408. Data are presented as mean ± SEM from three independent experiments ( n = 3). Statistical significance was determined by one-way analysis of variance with appropriate post hoc testing. *P < 0.05, **P < 0.01, and ***P < 0.001 versus control; ##P < 0.01 versus RTA-408 alone.

    Article Snippet: RTA-408 (omaveloxolone) (MCE; 1474034-05-3; USA) and the p38 MAPK inhibitor, SB203580 (MCE; 152121-47-6; USA), were dissolved in dimethyl sulfoxide (DMSO) to prepare stock solutions (10 mM for RTA-408 and 10 mM for SB203580), which were stored at − 20 °C according to the manufacturer’s instructions.

    Techniques: Inhibition, Control, MTT Assay, Flow Cytometry