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    KAN Research Institute

    企业EST. 1997
    181论文总数
    1.1万引用总数

    论文量&引用量时间轴

    机构学者

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    Toshio Imai
    Toshio Imai
    Division of Pathology, National Institute of Health Sciences
    论文:76引用:0H-index:0
    Wataru Ikeda
    Wataru Ikeda
    Faculty of Medicine, Osaka University Graduate School of Medicine
    论文:29引用:0H-index:0
    Yoshikazu Kuboi
    Yoshikazu Kuboi
    KAN Research Institute, Inc
    论文:22引用:0H-index:0
    Tomoya Nakatani
    Tomoya Nakatani
    Group for Neuronal Differentiation, KAN Research Institute Inc
    论文:20引用:0H-index:0
    Yuichi Ono
    Yuichi Ono
    Group for Neuronal Differentiation, KAN Research Institute Inc
    论文:20引用:0H-index:0
    Shoichiro Tsukita
    Shoichiro Tsukita
    Department of Cell Biology, Kyoto University
    论文:15引用:0H-index:0
    Yoshimi Takai
    Yoshimi Takai
    Graduate School of Medicine, Faculty of Medical Sciences, Kobe University
    论文:13引用:0H-index:0
    Toshihiro Nanki
    Toshihiro Nanki
    Grad Sch Med & Dent Sci, Tokyo Med & Dent Univ
    论文:12引用:0H-index:0
    Koji Morimoto
    Koji Morimoto
    Science Center Build. 3, KAN Research Institute Inc
    论文:12引用:0H-index:0

    论文(181)

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    1Delivery of a BET Protein Degrader Via a CEACAM6-targeted Antibody–drug Conjugate Inhibits Tumour Growth in Pancreatic Cancer Models
    Youya Nakazawa,Masayuki Miyano,Shuntaro Tsukamoto, Hiroyuki Kogai,Akihiko Yamamoto,Kentaro Iso,Satoshi Inoue,Yoshinobu Yamane, Yuki Yabe, Hirotatsu Umihara, Junichi Taguchi,Tsuyoshi Akagi,

    Pancreatic ductal adenocarcinoma (PDAC) has the worst prognosis of all cancers. To improve PDAC therapy, we establish screening systems based on organoid and co-culture technologies and find a payload of antibody–drug conjugate (ADC), a bromodomain and extra-terminal (BET) protein degrader named EBET. We select CEACAM6/CD66c as an ADC target and developed an antibody, #84.7, with minimal reactivity to CEACAM6-expressing normal cells. EBET-conjugated #84.7 (84-EBET) has lethal effects on various PDAC organoids and bystander efficacy on CEACAM6-negative PDAC cells and cancer-associated fibroblasts. In mouse studies, a single injection of 84-EBET induces marked tumor regression in various PDAC-patient-derived xenografts, with a decrease in the inflammatory phenotype of stromal cells and without significant body weight loss. Combination with standard chemotherapy or PD-1 antibody induces more profound and sustained regression without toxicity enhancement. Our preclinical evidence demonstrates potential efficacy by delivering BET protein degrader to PDAC and its microenvironment via CEACAM6-targeted ADC.

    2024Nature Communications(2024)引用:19
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    2Development of the Complement C5 Assay by LC–MS/MS in Monkey Serum and Comparison with Enzyme-Linked Immunosorbent Assay
    Kiyomi Kikuchi,Yoko Ida, Tomohiro Yamada,Yuji Mano

    Complement C5 (C5) is the key component for the complement activation pathway, which is important for innate immunity, and inhibition of C5 is considered to be effective in antibody-mediated rejection in organ transplantation. Thus determination of C5 levels in systemic circulation is a simple way to understand efficacy of drugs that aim to inhibit C5 production. We have developed a simple liquid chromatography with tandem mass spectrometry (LC-MS/MS) assay for C5 in cynomolgus monkey serum. C5 in monkey serum was subjected to tryptic digestion, and two signature peptides, DSSVPNTGTAR and LQGTLPVEAR, were assayed by LC-MS/MS with electrospray ionization in the positive ion mode. Assay reproducibility in serum samples was evaluated, and the assay was applied to the C5 assay in monkey serum after administration of C5 siRNA encapsulated in lipid nanoparticles to monkeys. The time profiles of C5 after administration of C5 siRNA were comparable between the two signature peptides by LC-MS/MS and were also similar to those by an enzyme-linked immunosorbent assay using an assay kit. These findings suggest that the established LC-MS/MS assay of C5 is reliable to determine C5 levels in monkey serum.

    2024ACS omega(2024)引用:6
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    3Anti-CX3CL1 (fractalkine) Monoclonal Antibody Attenuates Lung and Skin Fibrosis in Sclerodermatous Graft-Versus-host Disease Mouse Model
    Takumi Hasegawa,Akira Utsunomiya,Takenao Chino,Hiroshi Kasamatsu,Tomomi Shimizu,Takashi Matsushita,Takashi Obara,Naoto Ishii,Hideaki Ogasawara,Wataru Ikeda,Toshio Imai,Noritaka Oyama,

    BACKGROUND:Systemic sclerosis (SSc) is an autoimmune disease characterized by vascular injury and inflammation, followed by excessive fibrosis of the skin and other internal organs, including the lungs. CX3CL1 (fractalkine), a chemokine expressed on endothelial cells, supports the migration of macrophages and T cells that express its specific receptor CX3CR1 into targeted tissues. We previously reported that anti-CX3CL1 monoclonal antibody (mAb) treatment significantly inhibited transforming growth factor (TGF)-β1-induced expression of type I collagen and fibronectin 1 in human dermal fibroblasts. Additionally, anti-mouse CX3CL1 mAb efficiently suppressed skin inflammation and fibrosis in bleomycin- and growth factor-induced SSc mouse models. However, further studies using different mouse models of the complex immunopathology of SSc are required before the initiation of a clinical trial of CX3CL1 inhibitors for human SSc. METHODS:To assess the preclinical utility and functional mechanism of anti-CX3CL1 mAb therapy in skin and lung fibrosis, a sclerodermatous chronic graft-versus-host disease (Scl-cGVHD) mouse model was analyzed with immunohistochemical staining for characteristic infiltrating cells and RNA sequencing assays. RESULTS:On day 42 after bone marrow transplantation, Scl-cGVHD mice showed increased serum CX3CL1 level. Intraperitoneal administration of anti-CX3CL1 mAb inhibited the development of fibrosis in the skin and lungs of Scl-cGVHD model, and did not result in any apparent adverse events. The therapeutic effects were correlated with the number of tissue-infiltrating inflammatory cells and α-smooth muscle actin (α-SMA)-positive myofibroblasts. RNA sequencing analysis of the fibrotic skin demonstrated that cGVHD-dependent induction of gene sets associated with macrophage-related inflammation and fibrosis was significantly downregulated by mAb treatment. In the process of fibrosis, mAb treatment reduced cGVHD-induced infiltration of macrophages and T cells in the skin and lungs, especially those expressing CX3CR1. CONCLUSIONS:Together with our previous findings in other SSc mouse models, the current results indicated that anti-CX3CL1 mAb therapy could be a rational therapeutic approach for fibrotic disorders, such as human SSc and Scl-cGVHD.

    2024Arthritis Research & Therapy(2024)引用:5
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    4Cultures Derived from Pancreatic Cancer Xenografts with Long-Term Gemcitabine Treatment Produce Chemoresistant Secondary Xenografts: Establishment of Isogenic Gemcitabine-Sensitive and -Resistant Models
    Yasuyo Kobayashi-Ooka,Tsuyoshi Akagi,Taiko Sukezane,Emmy Yanagita,Tomoo Itoh,Ken Sasai

    In attempts to establish sophisticated models to reproduce the process of acquired drug resistance, we transformed normal human pancreatic ductal epithelial cells by introducing genes for multiple cellular factors. We also created isogenic gemcitabine-sensitive and -resistant models by short- and long-term gemcitabine treatment, respectively. These models demonstrated differences in drug resistance in vivo, but not in vitro. Gemcitabine treatment also induced squamous transdifferentiation in xenografts in mice. The transcription factor p63 was identified as a possible resistance-determining factor but was unlikely to be solely responsible for the resistance to gemcitabine. This system would prove useful to discover novel molecular targets to overcome chemotherapy resistance, by allowing the evaluation of molecules of interest in xenograft models after in vitro genetic ablation.

    2024Pathology, research and practice(2024)引用:1
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    5ER-851, a Novel Selective Inhibitor of AXL, Overcomes Resistance to Antimitotic Drugs
    Shuntaro Tsukamoto,Kyoko Nishibata,Youya Nakazawa,Daisuke Ito,Sayo Fukushima,Takayuki Nakagawa,Kenji Ichikawa,Yu Kato,Dai Kakiuchi,Aya Goto,Machiko Itoh-Yagi,Tomoki Aota,

    Abstract Innate and adaptive resistance to cancer therapies, such as chemotherapies, molecularly targeted therapies, and immune-modulating therapies, is a major issue in clinical practice. Subpopulations of tumor cells expressing the receptor tyrosine kinase AXL become enriched after treatment with antimitotic drugs, causing tumor relapse. Elevated AXL expression is closely associated with drug resistance in clinical samples, suggesting that AXL plays a pivotal role in drug resistance. Although several molecules with AXL inhibitory activity have been developed, none have sufficient activity and selectivity to be clinically effective when administered in combination with a cancer therapy. Here, we report a novel small molecule, ER-851, which is a potent and highly selective AXL inhibitor. To investigate resistance mechanisms and identify driving molecules, we conducted a comprehensive gene expression analysis of chemoresistant tumor cells in mouse xenograft models of genetically engineered human lung cancer and human triple-negative breast cancer. Consistent with the effect of AXL knockdown, cotreatment of ER-851 and antimitotic drugs produced an antitumor effect and prolonged relapse-free survival in the mouse xenograft model of human triple-negative breast cancer. Importantly, when orally administered to BALB/c mice, this compound did not induce retinal toxicity, a known side effect of chronic MER inhibition. Together, these data strongly suggest that AXL is a therapeutic target for overcoming drug resistance and that ER-851 is a promising candidate therapeutic agent for use against AXL-expressing antimitotic-resistant tumors.

    2023MOLECULAR CANCER THERAPEUTICS(2023)引用:3
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    合作机构(100)

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