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1.
Jpn J Clin Oncol ; 53(1): 4-15, 2023 Jan 06.
Article in English | MEDLINE | ID: mdl-36398439

ABSTRACT

BACKGROUND: We aimed to confirm the efficacy and safety of the oral histone deacetylase inhibitor entinostat in Japanese patients with hormone receptor-positive advanced/recurrent breast cancer and to explore potential biomarkers. METHODS: This phase II, double-blind, randomized, placebo-controlled trial (ClinicalTrials.gov; NCT03291886) was conducted at 28 Japanese sites (September 2017-July 2020; interim analysis cutoff: April 2019). Patients with progression/relapse following non-steroidal aromatase inhibitors were randomized 1:1 to entinostat (5 mg/week) or placebo, plus exemestane (25 mg/day). Primary endpoint was progression-free survival; secondary endpoints included overall survival and safety. Exploratory biomarker outcomes included lysine acetylation, immune cell profiles, estrogen receptor 1 mutations and plasma chemokines. RESULTS: Of 133 randomized patients, 131 (65 entinostat, 66 placebo) who received study drug were analyzed. Median (95% confidence interval) progression-free survival was 5.8 (3.2-7.8) months for entinostat and 3.3 (3.1-5.8) months for placebo (hazard ratio [95% confidence interval]: 0.75 [0.50 - 1.14]; P = 0.189). Median overall survival was not reached in either group. Entinostat tended to prolong progression-free survival in patients aged ≥65 years, not endocrine resistant, or with estrogen receptor 1 Y537S mutation. Candidate biomarkers of efficacy (progression-free survival) included lysine acetylation in CD3+ cells, plasma interferon gamma-induced protein 10, dendritic cell CD86 expression, and CD4+ cell expression of human leukocyte antigen-DR and inducible T-cell co-stimulator. Safety was similar to non-Japanese populations; however, seven entinostat-treated patients (10.8%) had reversible lung injury. CONCLUSIONS: In Japanese patients, the safety of entinostat plus exemestane was acceptable and progression-free survival was prolonged, although not significantly. Exploratory analyses identified potential biomarkers, including lysine acetylation, of efficacy.


Subject(s)
Breast Neoplasms , Humans , Female , Breast Neoplasms/genetics , Estrogen Receptor alpha , Lysine/therapeutic use , Receptors, Estrogen/metabolism , Neoplasm Recurrence, Local/drug therapy , Antineoplastic Combined Chemotherapy Protocols/adverse effects , Double-Blind Method
2.
Am J Cancer Res ; 10(12): 4399-4415, 2020.
Article in English | MEDLINE | ID: mdl-33415007

ABSTRACT

The Hippo signaling pathway regulates cell fate and organ development. In the Hippo pathway, transcriptional enhanced associate domain (TEAD) which is a transcription factor is activated by forming a complex with yes-associated protein 1 (YAP1) or transcriptional coactivator with PDZ-binding motif (TAZ, also called WWTR1). Hyper-activation of YAP1/TAZ, leading to the activation of TEAD, has been reported in many cancers, including malignant pleural mesothelioma (MPM). Therefore, the YAP1/TAZ-TEAD complex is considered a novel therapeutic target for cancer treatment. However, few reports have described YAP1/TAZ-TEAD inhibitors, and their efficacy and selectivity are poor. In this study, we performed a high-throughput screening of a neurofibromin 2 (NF2)-deficient MPM cell line and a large tumor suppressor kinase 1/2 (LATS1/2)-deficient non-small-cell lung cancer cell line using a transcriptional reporter assay. After screening and optimization, K-975 was successfully identified as a potent inhibitor of YAP1/TAZ-TEAD signaling. X-ray crystallography revealed that K-975 was covalently bound to an internal cysteine residue located in the palmitate-binding pocket of TEAD. K-975 had a strong inhibitory effect against protein-protein interactions between YAP1/TAZ and TEAD in cell-free and cell-based assays. Furthermore, K-975 potently inhibited the proliferation of NF2-non-expressing MPM cell lines compared with NF2-expressing MPM cell lines. K-975 also suppressed tumor growth and provided significant survival benefit in MPM xenograft models. These findings indicate that K-975 is a strong and selective TEAD inhibitor with the potential to become an effective drug candidate for MPM therapy.

3.
Int Immunopharmacol ; 25(1): 162-8, 2015 Mar.
Article in English | MEDLINE | ID: mdl-25617668

ABSTRACT

We have isolated 9-methylstreptimidone from microorganism as a new NF-κB inhibitor. Later, we designed 3-[(dodecylthiocarbonyl) methyl]-glutarimide (DTCM-glutarimide) as an analog of this compound, which shows anti-inflammatory activity in vivo. In the present research, we found that DTCM-glutarimide inhibited receptor activator of nuclear factor-κB ligand (RANKL)-induced osteoclast differentiation of mouse bone marrow-derived macrophages and RANKL- or lipopolysaccharide (LPS)-induced osteoclast differentiation of RAW 264.7 cells without any toxicity. It also inhibited the RANKL-induced NFATc1 expression. Upstream signaling involving phosphorylation of Akt and GSK-3ß was induced by RANKL, of which the signaling was inhibited by DTCM-glutarimide. Then DTCM-glutarimide was confirmed to inhibit RANKL-induced NF-κB activity, possibly by inhibiting the Akt-mediated activation of IKK. Thus, DTCM-glutarimide inhibited osteoclastogenesis by blocking both the Akt-GSK3ß-NFATc1 and NF-κB-NFATc1 pathways. DTCM-glutarimide may be a candidate as a chemotherapeutic agent for severe bone resorption diseases.


Subject(s)
Bone Resorption/drug therapy , Macrophages/drug effects , NF-kappa B/antagonists & inhibitors , Osteoclasts/drug effects , Piperidones/pharmacology , Animals , Cell Differentiation/drug effects , Cell Line , Down-Regulation , Glycogen Synthase Kinase 3/metabolism , Glycogen Synthase Kinase 3 beta , Humans , Lipopolysaccharides/metabolism , Macrophages/physiology , Mice , Mice, Inbred ICR , NFATC Transcription Factors/genetics , NFATC Transcription Factors/metabolism , Oncogene Protein v-akt/metabolism , Osteoclasts/physiology , Piperidones/chemical synthesis , RANK Ligand/metabolism , Signal Transduction/drug effects
4.
Inflamm Res ; 60(9): 879-88, 2011 Sep.
Article in English | MEDLINE | ID: mdl-21625968

ABSTRACT

OBJECTIVE: We have previously synthesized a novel piperidine compound, 3-[(dodecylthiocarbonyl)methyl]glutarimide (DTCM-glutarimide), that inhibits LPS-induced NO production, and in the present research we studied further the anti-inflammatory activity of DTCM-glutarimide in a macrophage cell line and in mice bearing transplanted hearts. MATERIALS AND METHODS: Mouse macrophage-like RAW264.7 cells were employed for the evaluation of cellular inflammatory activity. DTCM-glutarimide was synthesized in our laboratory. The AP-1 activity was measured by nuclear translocation and phosphorylation. For the heart transplantation experiment, male C57BL/6 (H-2b) and BALB/c (H-2d) mice were used as donor and recipient, respectively. DTCM-glutarimide was administered intraperitoneally. RESULTS: DTCM-glutarimide inhibited the LPS-induced expression of iNOS and COX-2 in macrophages; but, unexpectedly, it did not inhibit LPS-induced NF-κB activation. Instead, it inhibited the nuclear translocation of both c-Jun and c-Fos. It also inhibited LPS-induced c-Jun phosphorylation. Moreover, it inhibited the mixed lymphocyte reaction in primary cultures of mouse spleen cells; and furthermore, in mice it prolonged the graft survival in heart transplantation experiments. CONCLUSION: The novel piperidine compound, DTCM-glutarimide, was found to be a new inhibitor of macrophage activation, inhibiting AP-1 activity. It also inhibited graft rejection in mice, and thus may be a candidate for an anti-inflammatory agent.


Subject(s)
Anti-Inflammatory Agents/pharmacology , Graft Rejection/prevention & control , Macrophage Activation/drug effects , Macrophages/drug effects , Macrophages/immunology , Piperidones/chemistry , Piperidones/pharmacology , Active Transport, Cell Nucleus/drug effects , Animals , Anti-Inflammatory Agents/chemistry , Cell Line , Cyclooxygenase 2/metabolism , Graft Rejection/immunology , Graft Survival/drug effects , Graft Survival/immunology , Heart Transplantation/immunology , JNK Mitogen-Activated Protein Kinases/metabolism , Lipopolysaccharides/pharmacology , Macrophage Activation/immunology , Male , Mice , Mice, Inbred BALB C , Mice, Inbred C57BL , Molecular Structure , NF-kappa B/metabolism , Nitric Oxide Synthase Type II/metabolism , Proto-Oncogene Proteins c-fos/metabolism , Transcription Factor AP-1/metabolism
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