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Ponatinib

カタログ番号 T2372   CAS 943319-70-8
別名: AP24534

Ponatinib (AP24534) is an orally available, multitargeted kinase inhibitor (IC50s: 0.37/1.1/1.5/2.2/5.4 nM for Abl, PDGFRα, VEGFR2, FGFR1, and Src, respectively).

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Ponatinib, CAS 943319-70-8
パッケージサイズ 在庫状況 単価(税別)
サンプルについてお問い合わせ
10 mg 在庫あり ¥ 11,500
50 mg 在庫あり ¥ 15,000
100 mg 在庫あり ¥ 23,000
200 mg 在庫あり ¥ 32,500
1 mL * 10 mM (in DMSO) 在庫あり ¥ 11,500
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生物学的特性に関する説明
化学的特性
保存条件 & 溶解度情報
説明 Ponatinib (AP24534) is an orally available, multitargeted kinase inhibitor (IC50s: 0.37/1.1/1.5/2.2/5.4 nM for Abl, PDGFRα, VEGFR2, FGFR1, and Src, respectively).
ターゲット&IC50 PDGFRα:1.1 nM (cell free), c-Src:5.4 nM (cell free), Abl:0.37 nM (cell free), FGFR1:2.2 nM (cell free), Lyn:0.24 nM (cell free), VEGFR2:1.5 nM (cell free)
In vitro Ponatinib (AP24534) potently inhibited native ABL (IC50: 0.37 nM), ABL T315I (IC50: 2.0 nM), and other clinically important ABL kinase domain mutants (IC50: 0.30–0.44 nM). AP24534 also inhibited SRC (IC50: 5.4 nM) and members of the VEGFR, FGFR, and PDGFR families of receptor tyrosine kinases. AP24534 did not inhibit Aurora kinase family members, nor did it inhibit the insulin receptor or CDK2/Cyclin E. AP24534 potently inhibited proliferation of Ba/F3 cells expressing native BCR-ABL (IC50: 0.5 nM). All BCR-ABL mutants tested remained sensitive to AP24534 (IC50: 0.5–36 nM) including BCR-ABLT315I (IC50: 11 nM) [1]. Treatment with ponatinib efficiently inhibited the growth of CMPs expressing Hes1 with F/P, F/P-T674I, or F/P-D842V with an IC50 of 0.15 nM, 0.35 nM, or 1.71 nM, respectively. In accordance, ponatinib dose-dependently suppressed the activation of F/P and its downstream STAT5 and ERK in these cytokine-independent cells [2]. Ponatinib potently inhibits receptor phosphorylation and cellular proliferation with IC50 values comparable to those required for inhibition of BCR-ABL (0.3 to 20 nmol/L) [3].
In vivo Daily oral treatment with 2.5 or 5 mg/kg AP24534 for 19 days prolonged median survival to 27.5 and 30 days, respectively. In a xenograft model of Ba/F3 BCR-ABLT315I cells, tumor growth was inhibited by AP24534 in a dose-dependent manner compared to vehicle-treated mice, with significant suppression of tumor growth upon daily oral dosing at 10 and 30 mg/kg. Daily oral dosing of 50 mg/kg AP24534 caused significant tumor regression, with a 96% reduction in mean tumor volume at the final measurement compared to the start of treatment [1]. Ponatinib (1–25 mg/kg, p.o.) was administered orally, once daily for 28 days, to mice bearing MV4-11 xenografts. ponatinib potently inhibited tumor growth in a dose-dependent manner. Administration of 1 mg/kg led to significant inhibition of tumor growth (TGI = 46%) and doses of 2.5 mg/kg or greater resulted in tumor regression. Dosing with 10 or 25 mg/kg led to complete and durable tumor regression [3].
キナーゼ試験 AP24534 was profiled against >100 kinases by Reaction Biology Corporation using the Kinase Hotspot assay, which utilizes 10 μM [33P]-ATP, recombinant kinase domain, peptide substrate, and a range of 10 concentrations of inhibitor to establish an IC50 value [1].
細胞研究 Ba/F3 cell lines were distributed in 96-well plates (4 × 10^3 cells/well) and incubated with escalating concentrations of AP24534 for 72 hr. The inhibitor ranges used were: 0–625 nM for cells expressing BCR-ABL and 0–10,000 nM for BCR-ABL negative cells. Proliferation was measured using an MTS-based viability assay. IC50 values are reported as the mean of three independent experiments performed in quadruplicate. For cell proliferation experiments with CML or normal primary cells, mononuclear cells were plated in 96-well plates (5 × 10^4 cells/well) over graded concentrations of AP24534 (0–1000 nM) in RPMI supplemented with 10% FBS, L-glutamine, penicillin/streptomycin, and 100 μM β-mercaptoethanol. Following a 72 hr incubation, cell viability was assessed by subjecting cells to an MTS assay. All values were normalized to the control wells with no drug [1].
動物実験 Briefly, tumor xenografts were established by the subcutaneous implantation of MV4-11 cells (1 × 10^7 in 50% Matrigel) into the right flank of female CB.17 severe combined immunodeficient mice and dosing was initiated when the average tumor volume reached approximately 200 mm^3. Ponatinib was formulated in aqueous 25 mmol/L citrate buffer (pH = 2.75) and mice were dosed orally once daily for 4 weeks. The tumors were measured in 2 dimensions (length and width) with a caliper in millimeters. Tumor volume (mm3) was calculated with the following formula: tumor volume = (length × width^2)/2. Tumor growth inhibition (TGI) was calculated as follows: TGI = (1 ? ΔT/ΔC) × 100, where ΔT stands for mean tumor volume change of each treatment group and ΔC for mean tumor volume change of control group. The tumor volume data were collected and analyzed with a 1-way ANOVA test to determine the overall difference among groups. Each ponatinib treatment group was further compared to the vehicle control group for statistical significance using Dunnett's Multiple Comparison Test. A P-value less than 0.05 was considered to be statistically significant and a P-value less than 0.01 to be highly statistically significant [3].
別名 AP24534
分子量 532.56
分子式 C29H27F3N6O
CAS No. 943319-70-8

保存条件

Powder: -20°C for 3 years | In solvent: -80°C for 1 year

溶解度情報

Ethanol: 26.6 mg/mL (50 mM)

DMSO: 53.3 mg/mL (100 mM)

参考文献

1. O'Hare T, et al. AP24534, a pan-BCR-ABL inhibitor for chronic myeloid leukemia, potently inhibits the T315I mutant and overcomes mutation-based resistance. Cancer Cell, 2009, 16(5), 401-412. 2. Uchida T, et al. Hes1 upregulation contributes to the development of FIP1L1-PDGRA-positive leukemia in blast crisis. Exp Hematol. 2014 May;42(5):369-379.e3. 3. Gozgit JM, et al. Potent activity of ponatinib (AP24534) in models of FLT3-driven acute myeloid leukemia and other hematologic malignancies. Mol Cancer Ther, 2011, 10(6), 1028-1035. 4. Lin H, Lu P, Zhou M, et al. Purification of recombinant human fibroblast growth factor 13 in E. coli and its molecular mechanism of mitogenesis[J]. Applied microbiology and biotechnology. 2019: 1-11.

引用文献

1. Cheng S, Jin P, Li H, et al. Evaluation of CML TKI Induced Cardiovascular Toxicity and Development of Potential Rescue Strategies in a Zebrafish Model. Frontiers in Pharmacology. 2021: 2866. 2. Lin H, Lu P, Zhou M, et al. Purification of recombinant human fibroblast growth factor 13 in E. coli and its molecular mechanism of mitogenesis. Applied Microbiology and Biotechnology. 2019: 1-11 3. Yan H, Wu W, Hu Y, et al.Regorafenib inhibits EphA2 phosphorylation and leads to liver damage via the ERK/MDM2/p53 axis.Nature Communications.2023, 14(1): 2756. 4. Oeller M, Jaksch-Bogensperger H, Templin M, et al.Transcription Factors STAT3 and MYC Are Key Players of Human Platelet Lysate-Induced Cell Proliferation.International Journal of Molecular Sciences.2022, 23(24): 15782.

関連化合物ライブラリー

この製品は下記化合物ライブラリに含まれています:
Tyrosine Kinase Inhibitor Library Anti-Cancer Drug Library Inhibitor Library Kinase Inhibitor Library FDA-Approved Kinase Inhibitor Library Drug Repurposing Compound Library Anti-Cancer Approved Drug Library EMA Approved Drug Library Anti-Cancer Clinical Compound Library Anti-Cancer Active Compound Library

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投与量変換

You can also refer to dose conversion for different animals. 詳細

In vivo投与量計算 (透明溶液)

ステップ1: 以下の情報を入力してください
投与量
mg/kg
動物の平均体重
g
動物あたりの投与量
ul
動物数
溶媒の組成を入力してください
% DMSO
%
% Tween 80
% ddH2O
計算する リセット

計算器

モル濃度計算機
希釈計算機
再構成計算
分子量計算機
=
X
X

モル度計算機では以下の計算が可能です

  • 既知の体積と濃度の溶液を調製するために必要な化合物の質量
  • 質量が既知の化合物を目的の濃度まで溶解させるのに必要な溶液の量
  • 特定の体積の中に既知の質量の化合物を入れて得られる溶液の濃度
参考例

モル濃度計算機を使用したモル濃度計算の例
化合物の分子量が197.13g/molである場合、10mlの水に10mMのストック溶液を作るのに必要な化合物の質量はどれくらいですか?
[分子量(MW)]の欄に[197.13]と入力してください
[濃度]ボックスに10と入力し、正しい単位(millimolar)を選択します
[容量]ボックスに10と入力し、正しい単位(milliliter)を選択します
計算を押します
答えの19.713mgが質量欄に表示されます

X
=
X

溶液を作るのに必要な希釈率の計算

溶液の調製に必要な希釈率の算出
希釈計算機は、既知の濃度の原液をどのように希釈するかを計算することができる便利なツールです。V1を計算するためにC1、C2&V2を入力します。

参考例

Tocrisの希釈計算器を用いた希釈計算の一例
50μMの溶液を20ml作るためには、10mMの原液を何ml必要ですか?
C1V1=C2V2という式を用いて、C1=10mM、C2=50μM、V2=20ml、V1を未知数とします。
濃度(開始)ボックスに10を入力し正しい単位(millimolar)を選択してください
濃度(終了)ボックスに50を入力し正しい単位(millimolar)を選択してください
体積(終了)ボックスに20を入力し正しい単位(millimolar)を選択してください
計算を押します
100 microliter (0.1 ml) という答えが体積(開始)ボックスに表示されます。

=
/

バイアルを再構成するのに必要な溶媒の量を計算する.

再構成計算機を使えば、バイアルを再構成するための試薬の量をすぐに計算することができます.
試薬の質量と目標濃度を入力するだけで計算します。

g/mol

化合物の化学式を入力して、そのモル質量や元素組成を計算します

Tヒント:化学式は大文字と小文字を区別します。: C10H16N2O2 c10h16n2o2

化合物のモル質量(分子量)を計算する手順:
化学物質のモル質量を計算するには、その化学式を入力し、「計算」をクリックしてください。.
分子質量、分子量、モル質量、モル重量の定義:
分子質量(分子量)とは、物質の1分子の質量であり、統一された原子質量単位(u)で表されます。(1uは炭素12の1原子の質量の1/12に等しい)
モル質量(molar weight)とは、ある物質の1モルの質量のことで、単位はg/molです。

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技術サポート

Please see Inhibitor Handling Instructions for more frequently ask questions. Topics include: how to prepare stock solutions, how to store products, and cautions on cell-based assays & animal experiments, etc.

Keywords

Ponatinib 943319-70-8 Angiogenesis Autophagy Cytoskeletal Signaling Tyrosine Kinase/Adaptors c-Kit PDGFR Bcr-Abl Src VEGFR FGFR Platelet-derived growth factor receptor orally inhibit multi-targeted VEGFR2 Fibroblast growth factor receptor Abl active AP 24534 Inhibitor AP-24534 PDGFRα kinase FGFR1 AP24534 Vascular endothelial growth factor receptor inhibitor