JP7326306B2 - 免疫調節剤として有用な化合物 - Google Patents
免疫調節剤として有用な化合物 Download PDFInfo
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- JP7326306B2 JP7326306B2 JP2020545562A JP2020545562A JP7326306B2 JP 7326306 B2 JP7326306 B2 JP 7326306B2 JP 2020545562 A JP2020545562 A JP 2020545562A JP 2020545562 A JP2020545562 A JP 2020545562A JP 7326306 B2 JP7326306 B2 JP 7326306B2
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- chloro
- alkyl
- methoxy
- dihydro
- oxy
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Classifications
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- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D401/00—Heterocyclic compounds containing two or more hetero rings, having nitrogen atoms as the only ring hetero atoms, at least one ring being a six-membered ring with only one nitrogen atom
- C07D401/02—Heterocyclic compounds containing two or more hetero rings, having nitrogen atoms as the only ring hetero atoms, at least one ring being a six-membered ring with only one nitrogen atom containing two hetero rings
- C07D401/12—Heterocyclic compounds containing two or more hetero rings, having nitrogen atoms as the only ring hetero atoms, at least one ring being a six-membered ring with only one nitrogen atom containing two hetero rings linked by a chain containing hetero atoms as chain links
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D401/00—Heterocyclic compounds containing two or more hetero rings, having nitrogen atoms as the only ring hetero atoms, at least one ring being a six-membered ring with only one nitrogen atom
- C07D401/14—Heterocyclic compounds containing two or more hetero rings, having nitrogen atoms as the only ring hetero atoms, at least one ring being a six-membered ring with only one nitrogen atom containing three or more hetero rings
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/435—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom
- A61K31/44—Non condensed pyridines; Hydrogenated derivatives thereof
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/435—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom
- A61K31/44—Non condensed pyridines; Hydrogenated derivatives thereof
- A61K31/4427—Non condensed pyridines; Hydrogenated derivatives thereof containing further heterocyclic ring systems
- A61K31/4439—Non condensed pyridines; Hydrogenated derivatives thereof containing further heterocyclic ring systems containing a five-membered ring with nitrogen as a ring hetero atom, e.g. omeprazole
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/435—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom
- A61K31/44—Non condensed pyridines; Hydrogenated derivatives thereof
- A61K31/445—Non condensed piperidines, e.g. piperocaine
- A61K31/4523—Non condensed piperidines, e.g. piperocaine containing further heterocyclic ring systems
- A61K31/4545—Non condensed piperidines, e.g. piperocaine containing further heterocyclic ring systems containing a six-membered ring with nitrogen as a ring hetero atom, e.g. pipamperone, anabasine
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- C07D213/00—Heterocyclic compounds containing six-membered rings, not condensed with other rings, with one nitrogen atom as the only ring hetero atom and three or more double bonds between ring members or between ring members and non-ring members
- C07D213/02—Heterocyclic compounds containing six-membered rings, not condensed with other rings, with one nitrogen atom as the only ring hetero atom and three or more double bonds between ring members or between ring members and non-ring members having three double bonds between ring members or between ring members and non-ring members
- C07D213/04—Heterocyclic compounds containing six-membered rings, not condensed with other rings, with one nitrogen atom as the only ring hetero atom and three or more double bonds between ring members or between ring members and non-ring members having three double bonds between ring members or between ring members and non-ring members having no bond between the ring nitrogen atom and a non-ring member or having only hydrogen or carbon atoms directly attached to the ring nitrogen atom
- C07D213/60—Heterocyclic compounds containing six-membered rings, not condensed with other rings, with one nitrogen atom as the only ring hetero atom and three or more double bonds between ring members or between ring members and non-ring members having three double bonds between ring members or between ring members and non-ring members having no bond between the ring nitrogen atom and a non-ring member or having only hydrogen or carbon atoms directly attached to the ring nitrogen atom with hetero atoms or with carbon atoms having three bonds to hetero atoms with at the most one bond to halogen, e.g. ester or nitrile radicals, directly attached to ring carbon atoms
- C07D213/78—Carbon atoms having three bonds to hetero atoms, with at the most one bond to halogen, e.g. ester or nitrile radicals
- C07D213/84—Nitriles
- C07D213/85—Nitriles in position 3
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Description
mは、0、1、または2であり;
n'は、1、2、または3であり;
Zは、水素、-CH3、-O(CH2)nXおよび-O(CH2)nArから選択されるが;ここで
nは、1、2、3、または4であり;
Xは、水素、-CH3、-CF3、CN、-CO2R1、-C(O)NH2、OR1、およびピロリドニルから選択され;
R1は、HまたはC1-C3アルキルであるが;但し、nが1のとき、R1は、C1-C3アルキルであり;
Arは、ベンゾジオキサニル、インダゾリル、イソキノリニル、イソオキサゾリル、ナフチル、オキサジアゾリル、フェニル、ピリジニル、ピリミジニル、およびキノリニルから選択されるが;但し、各環は、C1-C4アルコキシ、C1-C4アルコキシカルボニル、C1-C4アルコキシカルボニルアミノ、C1-C4アルキル、(C1-C4アルキル)カルボニル、(C1-C4アルキル)スルホニル、アミド、アミノカルボニル、アミノカルボニル(C1-C3アルキル)、-(CH2)qCO2C1-C4アルキル、-(CH2)qOH、カルボキシ、シアノ、ホルミル、ハロゲン、ハロC1-C4アルキル、ハロC1-C4アルコキシ、ニトロ、1個のシアノ基で適宜置換されていてもよいフェニル、1個のハロゲンで適宜置換されていてもよいフェニルオキシ、フェニルカルボニル、ピロール、およびテトラヒドロピランから独立して選択される、1、2、3、または4個の置換基で適宜置換されていてもよく;ここで
qは、0、1、2、3、または4であり;
R2は、水素、C1-C3アルキル、シアノ、ハロゲン、およびハロC1-C3アルキルから選択され;
R3は、
から選択され;ここで
vは、1または2であり;
環Aは、1個の窒素原子を有する5または6員環であり、環中の炭素原子を介して親分子に接続し;および
Rvは、C1-C3アルキル、C1-C3アルキルカルボニルアミノ、およびヒドロキシから選択され;
但し、R3が
各R4は、C2-C4アルケニル、C1-C4アルコキシ、C1-C4アルキル、シアノ、ハロゲン、およびハロC1-C4アルキルから独立して選択され;および
R5は、-(CH2)pCHO、-(CH2)pCO2H、-(CH2)wOH、-C(O)NR100R101、-CH(CH3)NRqR8、および-(CH2)wNRqR8から選択され;ここで
R100およびR101は、水素、C1-C6アルキル、および別のヒドロキシ基で適宜置換されていてもよいヒドロキシ(C1-C6アルキル)から選択されるか;または
R100およびR101は、接続する窒素原子と一体になって、カルボキシ基で適宜置換されていてもよい6員環を形成し;
pは、0、1、2、または3であり;
wは、1、2、3、または4であり;
Rqは、水素、C1-C4アルキル、ベンジル、(C3-C6シクロアルキル)C1-C3アルキル、ハロC1-C4アルキル、別のヒドロキシ基で適宜置換されていてもよいヒドロキシC1-C6アルキル、およびシアノ基で適宜置換されていてもよいピリジニル(C1-C3アルキル)から選択され;および
R8は、水素、C1-C4アルキル、-(CH2)nN(CH3)2、カルボキシC2-C6アルケニル、カルボキシC1-C6アルキル、およびヒドロキシC1-C6アルキルから選択され;ここでカルボキシC1-C6アルキルおよびヒドロキシC1-C6アルキルのアルキル部分は、下記で適宜置換されてもよく:1個のヒドロキシ基またはフェニル基、そのフェニル基はさらに以下で適宜置換されてもよく、ヒドロキシ基;
Rwは-CONH2であり;
R9は、水素、ベンジル、およびメチルから選択され;
各R9'は、水素およびC1-C3アルキルから独立して選択され;
R10は、水素、C1-C3アルキル、およびベンジルから選択され;
R11は、C2-C4アルケニルおよびC1-C4アルキルから選択され;および
R60は、水素、C1-C6アルキル、およびC1-C6アルコキシカルボニルから選択されるか;または
R8およびRqは、接続する窒素原子と一体になって、
sは、0、1、または2であり;
zは、1、2、または3であり;
Q'は、CHR13''、S、O、NH、NC(O)OC1-C6アルキル、N(CH2)2OH、およびNCH3から選択され;
R12およびR12'は、水素、-CO2H、ヒドロキシC1-C4アルキル、オキソ、および-C(O)NHSO2R16から独立して選択され;
R13およびR13'は、水素、ヒドロキシC1-C4アルキル、オキソ、および-CO2Hから独立して選択され;
R13''は、ヒドロキシC1-C3アルキル、および-CO2Hから選択され;
各R14は、C1-C4アルコキシカルボニル、C1-C6アルキル、カルボキシ、ハロゲン、ヒドロキシ、ヒドロキシC1-C4アルキル、-NRc'Rd'、およびフェニルオキシカルボニル(ここでフェニルは、ニトロ基で適宜置換されていてもよく、Rc'およびRd'は、水素、C1-C4アルコキシカルボニルおよびC1-C4アルキルカルボニルから独立して選択される)から独立して選択され;および
R16は、トリフルオロメチル、シクロプロピル、C1-C4アルキル、ジメチルアミノ、およびメチル基で置換されたイミダゾリルから選択される]
の化合物、またはその医薬的に許容される塩を提供する。
Zは、-O(CH2)nArであるが;但し、nは1であり、およびArは1個のシアノ基で置換されたピリジニルであり;
R2は、ハロゲンであり;
R3は、
mは、1であり;
R4は、ハロゲンであり;および
R5は、
の化合物、またはその医薬的に許容される塩を提供する。
a) The Practice of Medicinal Chemistry, Camille G. Wermuth et al., Ch 31, (Academic Press, 1996);
b) Design of Prodrugs, edited by H. Bundgaard, (Elsevier, 1985);
c) A Textbook of Drug Design and Development, P. Krogsgaard-Larson and H. Bundgaard, eds. Ch 5, pgs 113 - 191 (Harwood Academic Publishers, 1991);および
d) Hydrolysis in Drug and Prodrug Metabolism, Bernard Testa and Joachim M. Mayer, (Wiley-VCH, 2003)
に記載されている。
インジェクション1条件: カラム: Waters Acquity UPLC BEH C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.75分間溶出; 流速: 1.0mL/分; 検出: UV(220nm)
インジェクション1結果: 純度: 100.0%; 観測質量: 755.2; 保持時間: 1.71分
インジェクション2条件: カラム: Waters Acquity UPLC BEH C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.75分間溶出; 流速: 1.0mL/分; 検出: UV(220nm)
インジェクション1結果: 純度: 94.7%; 観測質量: 755.2; 保持時間: 1.50分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.75分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 100.0%; 観測質量: 745.15; 保持時間: 1.46分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.75分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 99.2%; 観測質量: 745.15; 保持時間: 1.67分
インジェクション1条件: カラム: Waters XBridge C18、2.1 mm x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.75分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 100.0%; 観測質量: 644.11; 保持時間: 1.76分
インジェクション2条件: カラム: Waters XBridge C18、2.1 mm x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.75分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 100.0%; 観測質量: 644.11; 保持時間: 2.01分
1H NMR (500 MHz、メタノール-d4) δ 8.95 (br s, 1H), 8.90 (br s, 1H), 8.35 (br s, 1H), 7.41 (br s, 1H), 7.37 - 7.31 (m, 2H), 7.30 - 7.25 (m, 1H), 7.17 (br d, J=6.7 Hz, 1H), 7.11 (br d, J=7.6 Hz, 1H), 6.99 - 6.87 (m, 2H), 5.92 (br s, 1H), 5.30 (br s, 2H), 4.64 (br s, 2H), 4.14 - 4.08 (m, 1H), 4.00 (br t, J=7.3 Hz, 1H), 3.43 (br d, J=8.2 Hz, 1H), 3.38 - 3.35 (m, 1H), 3.20 (br d, J=9.8 Hz, 1H), 3.05 - 2.70 (series of m, 3H), 2.63 (br s, 3H), 2.58 - 2.44 (m, 3H), 2.34 (br s, 1H), 2.16 (br s, 1H), 1.86 - 1.74 (m, 1H), 1.46 - 1.35 (m, 1H)
(S)-4-ブロモ-2,3-ジヒドロ-1H-インデン-1-オール(ピーク1、2.58g、灰白色固体): LCMS: tR=1.20分; LCMS 条件: 注入量=3μL; グラジエント=2-98%B; グラジエント時間=1.5分; 流速=0.8mL/分; 波長=220nm; 移動相A=0:100 アセトニトリル:水(0.05%トリフルオロ酢酸含有); 移動相B=100:0 アセトニトリル:水(0.05%トリフルオロ酢酸含有); カラム=Waters Aquity BEH C18、2.1 x 50mm、1.7U; オーブン温度=40℃
1H NMR (400 MHz、クロロホルム-d) δ 7.43 (d, J=8.0 Hz, 1H), 7.36 (d, J=7.5 Hz, 1H), 7.17 - 7.10 (m, 1H), 5.32 (q, J=5.5 Hz, 1H), 3.08 (ddd, J=16.7, 8.8, 4.6 Hz, 1H), 2.89 - 2.78 (m, 1H), 2.53 (dddd, J=13.4, 8.5, 7.0, 4.5 Hz, 1H), 2.03 - 1.91 (m, 1H), 1.84 (br d, J=6.0 Hz, 1H)
(R)-4-ブロモ-2,3-ジヒドロ-1H-インデン-1-オール(ピーク2、2.53g、灰白色固体): LCMS: tR=1.205分; LCMS 条件: 注入量=3μL; グラジエント=2-98%B; グラジエント時間=1.5分; 流速=0.8mL/分; 波長=220nm; 移動相A=0:100 アセトニトリル:水(0.05%トリフルオロ酢酸含有); 移動相B=100:0 アセトニトリル:水(0.05%トリフルオロ酢酸含有); カラム=Waters Aquity BEH C18、2.1 x 50mm、1.7U; オーブン温度=40℃
1H NMR (400 MHz、クロロホルム-d) δ 7.43 (d, J=8.0 Hz, 1H), 7.36 (d, J=7.5 Hz, 1H), 7.17 - 7.10 (m, 1H), 5.31 (br t, J=6.0 Hz, 1H), 3.08 (ddd, J=16.6, 8.7, 4.5 Hz, 1H), 2.89 - 2.77 (m, 1H), 2.53 (dddd, J=13.4, 8.5, 7.0, 4.5 Hz, 1H), 2.03 - 1.91 (m, 1H), 1.85 (br s, 1H)
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 99.2%; 観測質量: 745.15; 保持時間: 1.48分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 98.9%; 観測質量: 745.16; 保持時間: 1.45分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 94.5%; 観測質量: 644.08; 保持時間: 1.82分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 93.3%; 観測質量: 644.08; 保持時間: 1.79分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 98.4%; 観測質量: 745.13; 保持時間: 1.6分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 99.5%; 観測質量: 745.16; 保持時間: 1.54分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 98.2%; 観測質量: 644.11; 保持時間: 1.76分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 98.7%; 観測質量: 644.12; 保持時間: 1.9分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 100.0%; 観測質量: 745.13; 保持時間: 1.56分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 99.4%; 観測質量: 745.14; 保持時間: 1.46分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 98.1%; 観測質量: 644.11; 保持時間: 1.92分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 93.3%; 観測質量: 644.08; 保持時間: 1.77分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 100.0%; 観測質量: 745.17; 保持時間: 1.55分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 100.0%; 観測質量: 745.13; 保持時間: 1.42分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 93.2%; 観測質量: 644.12; 保持時間: 1.89分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 93.2%; 観測質量: 644.11; 保持時間: 1.72分
LCMS: tR=1.46分; LCMS 条件: 注入量=3μL; グラジエント=2-98%B; グラジエント時間=1.5分; 流速=0.8mL/分; 波長=220nm; 移動相A=0:100 アセトニトリル:水(0.05%トリフルオロ酢酸含有); 移動相B=100:0 アセトニトリル:水(0.05%トリフルオロ酢酸含有); カラム=Waters Aquity BEH C18、2.1 x 50mm、1.7U; オーブン温度=40℃
1H NMR (500 MHz、CDCl3) δ 7.26 (dd, J=8.0, 1.1 Hz, 1H), 7.09 (t, J=8.2 Hz, 1H), 6.91 (d, J=8.4 Hz, 1H), 4.18 (t, J=5.8 Hz, 2H), 3.67 (t, J=6.3 Hz, 2H), 2.38 (quin, J=6.0 Hz, 2H)
LCMS: tR=1.76分; LCMS 条件: 注入量=3μL; グラジエント=2-98%B; グラジエント時間=1.5分; 流速=0.8mL/分; 波長=220nm; 移動相A=0:100 アセトニトリル:水(0.05%トリフルオロ酢酸含有); 移動相B=100:0 アセトニトリル:水(0.05%トリフルオロ酢酸含有); カラム=Waters Aquity BEH C18、2.1 x 50mm、1.7U; オーブン温度=40℃
1H NMR (500 MHz、CDCl3) δ 7.18 (d, J=8.0 Hz, 1H), 7.02 (t, J=8.1 Hz, 1H), 6.81 (d, J=8.0 Hz, 1H), 4.11 (t, J=5.8 Hz, 2H), 3.63 (t, J=6.4 Hz, 2H), 2.39 - 2.34 (m, 2H), 2.33 (s, 3H)
LCMS: tR=0.86分; LCMS (ESI) m/z=388.90および390.90 [M+H]+; LCMS 条件: 注入量=3μL; グラジエント=2-98%B; グラジエント時間=1.5分; 流速=0.8mL/分; 波長=220nm; 移動相A=0:100 アセトニトリル:水(0.05%トリフルオロ酢酸含有); 移動相B=100:0 アセトニトリル:水(0.05%トリフルオロ酢酸含有); カラム=Waters Aquity BEH C18、2.1 x 50mm、1.7U; オーブン温度=40℃
1H NMR (500 MHz、CDCl3) δ 7.23 (dd, J=8.1, 1.2 Hz, 1H), 7.07 (t, J=8.2 Hz, 1H), 6.88 (dd, J=8.2, 0.9 Hz, 1H), 5.38 - 5.10 (m, 1H), 4.08 (t, J=6.2 Hz, 2H), 3.94 - 3.64 (m, 1H), 2.86 (br d, J=11.7 Hz, 2H), 2.55 (t, J=7.3 Hz, 2H), 2.13 (br t, J=11.0 Hz, 2H), 2.05 - 1.99 (m, 2H), 1.98 (s, 3H), 1.94 (br d, J=12.1 Hz, 2H), 1.43 (qd, J=11.6, 3.7 Hz, 2H)
LCMS: tR=1.07分; LCMS (ESI) m/z=368.95および370.90 [M+H]+; LCMS 条件: 注入量=3μL; グラジエント=2-98%B; グラジエント時間=1.5分; 流速=0.8mL/分; 波長=220nm; 移動相A=0:100 アセトニトリル:水(0.05%トリフルオロ酢酸含有); 移動相B=100:0 アセトニトリル:水(0.05%トリフルオロ酢酸含有); カラム=Waters Aquity BEH C18、2.1 x 50mm、1.7U; オーブン温度=40℃
1H NMR (500 MHz、クロロホルム-d) δ 7.15 (d, J=8.0 Hz, 1H), 6.99 (t, J=8.1 Hz, 1H), 6.77 (d, J=8.0 Hz, 1H), 5.31 (s, 1H), 4.00 (t, J=6.2 Hz, 2H), 3.90 - 3.68 (m, 1H), 2.87 (br d, J=11.5 Hz, 2H), 2.53 (t, J=7.4 Hz, 2H), 2.31 (s, 3H), 2.12 (br t, J=10.6 Hz, 2H), 2.01 - 1.88 (m, 4H), 1.98 (s, 3H), 1.44 (qd, J=11.7, 3.6 Hz, 2H)
LCMS: tR=1.04分; LCMS (ESI) m/z=338.00および340.00 [M+H]+; LCMS 条件: 注入量=3μL; グラジエント=2-98%B; グラジエント時間=1.5分; 流速=0.8mL/分; 波長=220nm; 移動相A=0:100 アセトニトリル:水(0.05%トリフルオロ酢酸含有); 移動相B=100:0 アセトニトリル:水(0.05%トリフルオロ酢酸含有); カラム=Waters Aquity BEH C18、2.1 x 50mm、1.7U; オーブン温度=40℃
1H NMR (500 MHz、メタノール-d4) δ 7.30 (dd, J=8.0, 0.9 Hz, 1H), 7.19 (t, J=8.2 Hz, 1H), 7.12 - 7.05 (m, 1H), 4.21 (t, J=5.7 Hz, 2H), 3.91 (br dd, J=8.7, 3.6 Hz, 1H), 3.63 - 3.50 (m, 2H), 3.35 (s, 1H), 3.29 - 3.24 (m, 2H), 3.18 (dd, J=12.5, 3.1 Hz, 1H), 3.02 (dd, J=12.5, 9.3 Hz, 1H), 2.32 - 2.16 (m, 2H)
LCMS: tR=1.07分; LCMS (ESI) m/z=318.07、観測質量: 318.05および320.05 [M+H]+
LCMS 条件: 注入量=3μL; グラジエント=2-98%B; グラジエント時間=1.5分; 流速=0.8mL/分; 波長=220nm; 移動相A=0:100 アセトニトリル:水(0.05%トリフルオロ酢酸含有); 移動相B=100:0 アセトニトリル:水(0.05%トリフルオロ酢酸含有); カラム=Waters Aquity BEH C18、2.1 x 50mm、1.7U; オーブン温度=40℃
1H NMR (500 MHz、メタノール-d4) δ 7.16 (d, J=7.9 Hz, 1H), 7.05 (t, J=8.1 Hz, 1H), 6.92 (d, J=8.2 Hz, 1H), 4.12 (t, J=5.8 Hz, 2H), 3.90 (br dd, J=8.5, 3.6 Hz, 1H), 3.63 - 3.47 (m, 2H), 3.26 - 3.19 (m, 2H), 3.16 (dd, J=12.5, 3.1 Hz, 1H), 3.00 (dd, J=12.5, 9.2 Hz, 1H), 2.32 (s, 3H), 2.25 - 2.14 (m, 2H)
インジェクション1条件: カラム: Waters Acquity UPLC BEH C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.75分間溶出; 流速: 1.0mL/分; 検出: UV(220nm)
インジェクション1結果: 純度: 98.2%; 観測質量: 314.0; 保持時間: 1.37分
インジェクション2条件: カラム: Waters Acquity UPLC BEH C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.75分間溶出; 流速: 1.0mL/分; 検出: UV(220nm)
インジェクション2結果: 純度: 98.5%; 観測質量: 314.0; 保持時間: 1.38分
LCMS: tR=1.72分; LCMS (ESI) m/z=531.10 [M+H]+; LCMS 条件: 注入量=1μL; グラジエント=2-98%B; グラジエント時間=1.5分; 流速=0.8mL/分; 波長=220nm; 移動相A=0:100 アセトニトリル:水(0.05%トリフルオロ酢酸含有); 移動相B=100:0 アセトニトリル:水(0.05%トリフルオロ酢酸含有); カラム=Waters Aquity BEH C18、2.1 x 50mm、1.7U; オーブン温度=40℃
1H NMR (400 MHz、DMSO-d6) δ 10.25 (s, 1H), 9.05 (s, 1H), 9.05 (s, 1H), 8.57 (t, J=2.0 Hz, 1H), 7.71 (s, 1H), 7.68 (dd, J=7.3, 1.0 Hz, 1H), 7.52 (d, J=7.3 Hz, 1H), 7.27 (s, 1H), 7.25 (s, 1H), 6.20 (br d, J=3.0 Hz, 1H), 5.53 (s, 2H), 3.27 - 3.16 (m, 1H), 3.13 - 3.03 (m, 1H), 2.64 - 2.53 (m, 1H), 2.06 - 1.99 (m, 1H), 1.31 (s, 12H)
LCMS: tR=1.86分; LCMS (ESI) m/z=638.50 [M+H]+; LCMS 条件: 注入量=1μL; グラジエント=2-98%B; グラジエント時間=1.5分; 流速=0.8mL/分; 波長=220nm; 移動相A=0:100 アセトニトリル:水(0.05%トリフルオロ酢酸含有); 移動相B=100:0 アセトニトリル:水(0.05%トリフルオロ酢酸含有); カラム=Waters Aquity BEH C18、2.1 x 50mm、1.7U; オーブン温度=40℃
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 100.0%; 観測質量: 741.19; 保持時間: 1.51分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 99.1%; 観測質量: 741.19; 保持時間: 1.5分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 93.6%; 観測質量: 640.24; 保持時間: 1.81分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 95.1%; 観測質量: 640.25; 保持時間: 1.92分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 95.7%; 観測質量: 751.23; 保持時間: 1.61分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 93.1%; 観測質量: 751.21; 保持時間: 1.52分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 98.7%; 観測質量: 741.19; 保持時間: 1.55分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 メタノール:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 メタノール:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3.5分かけて溶出後、次いで100%Bで0.5分間溶出; 流速: 0.5mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 96.6%; 観測質量: 741.19; 保持時間: 2.87分
LCMS: tR =1.29分; LCMS (ESI) m/z=713.15および715.10 [M+H]+; LCMS 条件: 注入量=3μL; グラジエント=2-98%B; グラジエント時間=1.5分; 流速=0.8mL/分; 波長=220nm; 移動相A=0:100 アセトニトリル:水(0.05%トリフルオロ酢酸含有); 移動相B=100:0 アセトニトリル:水(0.05%トリフルオロ酢酸含有); カラム=Waters Aquity BEH C18、2.1 x 50mm、1.7U; オーブン温度=40℃
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 95.4%; 観測質量: 816.17; 保持時間: 1.78分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 99.0%; 観測質量: 816.18; 保持時間: 1.49分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 100.0%; 観測質量: 826.19; 保持時間: 1.59分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 91.1%; 観測質量: 826.19; 保持時間: 1.53分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 98.4%; 観測質量: 816.2; 保持時間: 1.52分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 97.2%; 観測質量: 816.15; 保持時間: 1.38分
LCMS: tR=1.26分; LCMS (ESI) m/z=662.10および664.05 [M+H]+; LCMS 条件: 注入量=1μL; グラジエント=2-98%B; グラジエント時間=1.5分; 流速=0.8mL/分; 波長=220nm; 移動相A=0:100 アセトニトリル:水(0.05%トリフルオロ酢酸含有); 移動相B=100:0 アセトニトリル:水(0.05%トリフルオロ酢酸含有); カラム=Waters Aquity BEH C18、2.1 x 50mm、1.7U; オーブン温度=40℃
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 100.0%; 観測質量: 765.16; 保持時間: 1.64分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 100.0%; 観測質量: 765.17; 保持時間: 1.61分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 92.4%; 観測質量: 664.09; 保持時間: 1.9分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 89.8%; 観測質量: 664.07; 保持時間: 1.87分
インジェクション1条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(10mM酢酸アンモニウム含有); 移動相B: 95:5 アセトニトリル:水(10mM酢酸アンモニウム含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション1結果: 純度: 98.5%; 観測質量: 765.18; 保持時間: 1.5分
インジェクション2条件: カラム: Waters XBridge C18、2.1 x 50mm、1.7U; 移動相A: 5:95 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 移動相B: 95:5 アセトニトリル:水(0.1%トリフルオロ酢酸含有); 温度: 50℃; グラジエント: 0-100%Bで3分かけて溶出後、次いで100%Bで0.50分間溶出; 流速: 1mL/分; 検出: MSおよびUV(220nm)
インジェクション2結果: 純度: 97.1%; 観測質量: 765.2; 保持時間: 1.41分
式(I)の化合物のPD-L1に対する結合能を、PD-1/PD-L1ホモジニアス時間分解蛍光(HTRF)バインディングアッセイを用いて調査した。
PD-1およびPD-L1の相互作用は、可溶性かつ精製された、その2つのタンパク質の細胞外ドメインの標品を用いることで評価され得る。PD-1およびPD-L1のタンパク質細胞外ドメインは、検出タグにより融合タンパク質として発現され、PD-1におけるタグは、免疫グロブリン(PD-1-Ig)のFc部分であり、PD-L1におけるタグは、6ヒスチジンモチーフ(PD-L1-His)であった。全てのバインディングの研究は、0.1%ウシ血清アルブミンおよび0.05%(v/v)Tween-20が添加されたdPBSを含む、HTRFアッセイ緩衝液中で行われた。h/PD-L1-Hisバインディングアッセイには、阻害剤をPD-L1-His(最終濃度10nM)と共に15分間アッセイ緩衝液(4μL)中、予めインキュベートし、次いでPD-1-Ig(最終濃度20nM)/アッセイ緩衝液(1μL)を加え、さらに15分間インキュベートした。HTRFの検出は、ユウロピウムクリプテート標識抗Ig(最終濃度1nM)およびアロフィコシアニン(APC)標識抗His(最終濃度20nM)を用いて行った。抗体をHTRF検出緩衝液に希釈し、その5μLを結合反応液の上部に分注した。反応混合物を30分間平衡化し、生じたシグナル(665nm/620nmの比)を、蛍光光度計(EnVision)を用いて得た。別のバインディングアッセイを、ヒトタンパク質のPD-1-Ig/PD-L2-His(それぞれ20nM/5nM)間およびCD80-His/PD-L1-Ig(それぞれ100nM/10nM)間で行った。
Claims (14)
- 式(I):
mは、0、1、または2であり;
n'は、1、2、または3であり;
Zは、水素、-CH3、-O(CH2)nXおよび-O(CH2)nArから選択され;ここで
nは、1、2、3、または4であり;
Xは、-CF3、CN、-CO2R1、-C(O)NH2、OR1、およびピロリドニルから選択され;
R1は、HまたはC1-C3アルキルであるが;但し、nが1のとき、R1は、C1-C3アルキルであり;
Arは、ベンゾジオキサニル、インダゾリル、イソキノリニル、イソオキサゾリル、ナフチル、オキサジアゾリル、フェニル、ピリジニル、ピリミジニル、およびキノリニルから選択されるが;但し、各環は、C1-C4アルコキシ、C1-C4アルコキシカルボニル、C1-C4アルコキシカルボニルアミノ、C1-C4アルキル、(C1-C4アルキル)カルボニル、(C1-C4アルキル)スルホニル、アミド、アミノカルボニル、アミノカルボニル(C1-C3アルキル)、-(CH2)qCO2C1-C4アルキル、-(CH2)qOH、カルボキシ、シアノ、ホルミル、ハロゲン、ハロC1-C4アルキル、ハロC1-C4アルコキシ、ニトロ、1個のシアノ基で適宜置換されていてもよいフェニル、1個のハロゲンで適宜置換されていてもよいフェニルオキシ、フェニルカルボニル、ピロール、およびテトラヒドロピランから独立して選択される、1、2、3、または4個の置換基で適宜置換されていてもよく;ここで
qは、0、1、2、3、または4であり;
R2は、水素、C1-C3アルキル、シアノ、ハロゲン、およびハロC1-C3アルキルから選択され;
R3は、
但し、R3が
各R4は、C2-C4アルケニル、C1-C4アルコキシ、C1-C4アルキル、シアノ、ハロゲン、およびハロC1-C4アルキルから独立して選択され;および
R5は、-(CH2)pCHO、-(CH2)pCO2H、-(CH2)wOH、-C(O)NR100R101、-CH(CH3)NRqR8、および-(CH2)wNRqR8から選択され;ここで
R100およびR101は、水素、C1-C6アルキル、および別のヒドロキシ基で適宜置換されていてもよいヒドロキシ(C1-C6アルキル)から選択されるか;または
R100およびR101は、接続する窒素原子と一体になって、カルボキシ基で適宜置換されていてもよい6員環を形成し;
pは、0、1、2、または3であり;
wは、1、2、3、または4であり;
Rqは、水素、C1-C4アルキル、ベンジル、(C3-C6シクロアルキル)C1-C3アルキル、ハロC1-C4アルキル、別のヒドロキシ基で適宜置換されていてもよいヒドロキシC1-C6アルキル、およびシアノ基で適宜置換されていてもよいピリジニル(C1-C3アルキル)から選択され;および
R8は、水素、C1-C4アルキル、-(CH2)nN(CH3)2、カルボキシC2-C6アルケニル、カルボキシC1-C6アルキル、およびヒドロキシC1-C6アルキルから選択され;ここでカルボキシC1-C6アルキルおよびヒドロキシC1-C6アルキルのアルキル部分は、1個のヒドロキシ基またはフェニル基で適宜置換されてもよく、該フェニル基は、さらにヒドロキシ基、
Rwは、-CONH2であり;
R9は、水素、ベンジル、およびメチルから選択され;
各R9'は、水素およびC1-C3アルキルから独立して選択され;
R10は、水素、C1-C3アルキル、およびベンジルから選択され;
R11は、C2-C4アルケニルおよびC1-C4アルキルから選択され;および
R60は、水素、C1-C6アルキル、およびC1-C6アルコキシカルボニルから選択されるか;または
R8およびRqは、接続する窒素原子と一体になって、
sは、0、1、または2であり;
zは、1、2、または3であり;
Q'は、CHR13''、S、O、NH、NC(O)OC1-C6アルキル、N(CH2)2OH、およびNCH3から選択され;
R12およびR12'は、水素、-CO2H、ヒドロキシC1-C4アルキル、オキソ、および-C(O)NHSO2R16から独立して選択され;
R13およびR13'は、水素、ヒドロキシC1-C4アルキル、オキソ、および-CO2Hから独立して選択され;
R13''は、ヒドロキシC1-C3アルキル、および-CO2Hから選択され;
各R14は、C1-C4アルコキシカルボニル、C1-C6アルキル、カルボキシ、ハロゲン、ヒドロキシ、ヒドロキシC1-C4アルキル、-NRc'Rd'、およびフェニルオキシカルボニル(ここでフェニルは、ニトロ基で適宜置換されていてもよく、Rc'およびRd'は、水素、C1-C4アルコキシカルボニルおよびC1-C4アルキルカルボニルから独立して選択される)から独立して選択され;および
R16は、トリフルオロメチル、シクロプロピル、C1-C4アルキル、ジメチルアミノ、およびメチル基で置換されたイミダゾリルから選択される]
の化合物、またはその医薬的に許容される塩。 - R2が、ハロゲンである請求項1の化合物、またはその医薬的に許容される塩。
- Zが、-O(CH2)nArであり;但し、nが、1であり、およびArが、1個のシアノ基で置換されたピリジニルである請求項1の化合物、またはその医薬的に許容される塩。
- mが、1であり、およびR4が、ハロゲンである請求項1の化合物、またはその医薬的に許容される塩。
- R5が、-CH2OHである請求項1の化合物、またはその医薬的に許容される塩。
- (2S)-1-(5-クロロ-4-((4-(2-クロロ-3-((1-メチルピペリジン-3-イル)メトキシ)フェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-2-((5-シアノピリジン-3-イル)メトキシ)ベンジル)ピペリジン-2-カルボン酸;
(2R)-2-((5-クロロ-4-((4-(2-クロロ-3-((1-メチルピペリジン-3-イル)メトキシ)フェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-2-((5-シアノピリジン-3-イル)メトキシ)ベンジル)アミノ)-3-ヒドロキシ-2-メチルプロパン酸;
5-((4-クロロ-5-((4-(2-クロロ-3-((1-メチルピペリジン-3-イル)メトキシ)フェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-2-(ヒドロキシメチル)フェノキシ)-メチル)ニコチノニトリル;
((R)-2-((5-クロロ-4-(((S)-4-(2-クロロ-3-(((R)-1-メチルピペリジン-3-イル)メトキシ)フェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-2-((5-シアノピリジン-3-イル)メトキシ)ベンジル)アミノ)-3-ヒドロキシ-2-メチルプロパン酸;
5-((4-クロロ-5-(((S)-4-(2-クロロ-3-(((R)-1-メチルピペリジン-3-イル)メトキシ)フェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-2-(ヒドロキシメチル)フェノキシ)メチル)ニコチノニトリル;
(R)-2-((5-クロロ-4-(((R)-4-(2-クロロ-3-(((R)-1-メチルピペリジン-3-イル)メトキシ)フェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-2-((5-シアノピリジン-3-イル)メトキシ)ベンジル)アミノ)-3-ヒドロキシ-2-メチルプロパン酸;
5-((4-クロロ-5-(((R)-4-(2-クロロ-3-(((R)-1-メチルピペリジン-3-イル)メトキシ)フェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-2-(ヒドロキシメチル)フェノキシ)メチル)ニコチノニトリル;
(R)-2-((5-クロロ-4-(((S)-4-(2-クロロ-3-(((S)-1-メチルピペリジン-3-イル)メトキシ)フェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-2-((5-シアノピリジン-3-イル)メトキシ)ベンジル)アミノ)-3-ヒドロキシ-2-メチルプロパン酸;
5-((4-クロロ-5-(((S)-4-(2-クロロ-3-(((S)-1-メチルピペリジン-3-イル)メトキシ)フェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-2-(ヒドロキシメチル)フェノキシ)メチル)ニコチノニトリル;
(R)-2-((5-クロロ-4-(((R)-4-(2-クロロ-3-(((S)-1-メチルピペリジン-3-イル)メトキシ)フェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-2-((5-シアノピリジン-3-イル)メトキシ)ベンジル)アミノ)-3-ヒドロキシ-2-メチルプロパン酸;
5-((4-クロロ-5-(((R)-4-(2-クロロ-3-(((S)-1-メチルピペリジン-3-イル)メトキシ)フェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-2-(ヒドロキシメチル)フェノキシ)メチル)ニコチノニトリル;
(2R)-2-((5-クロロ-2-((5-シアノピリジン-3-イル)メトキシ)-4-((4-(3-(3-((R)-3-ヒドロキシピロリジン-1-イル)プロポキシ)-2-メチルフェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)ベンジル)-アミノ)-3-ヒドロキシ-2-メチルプロパン酸;
5-((4-クロロ-2-(ヒドロキシメチル)-5-((4-(3-(3-((R)-3-ヒドロキシピロリジン-1-イル)プロポキシ)-2-メチルフェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)フェノキシ)メチル)ニコチノニトリル;
(2S)-1-(5-クロロ-2-((5-シアノピリジン-3-イル)メトキシ)-4-((4-(3-(3-((R)-3-ヒドロキシピロリジン-1-イル)プロポキシ)-2-メチルフェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)ベンジル)-ピペリジン-2-カルボン酸;
(5-クロロ-2-((5-シアノピリジン-3-イル)メトキシ)-4-((4-(3-(3-((R)-3-ヒドロキシピロリジン-1-イル)プロポキシ)-2-メチルフェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)ベンジル)-L-ホモセリン;
(2R)-2-((4-((4-(3-(3-(4-アセトアミドピペリジン-1-イル)プロポキシ)-2-クロロフェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-5-クロロ-2-((5-シアノピリジン-3-イル)メトキシ)ベンジル)アミノ)-3-ヒドロキシ-2-メチルプロパン酸;
(2S)-1-(4-((4-(3-(3-(4-アセトアミドピペリジン-1-イル)プロポキシ)-2-クロロフェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-5-クロロ-2-((5-シアノピリジン-3-イル)メトキシ)ベンジル)ピペリジン-2-カルボン酸;
(4-((4-(3-(3-(4-アセトアミドピペリジン-1-イル)プロポキシ)-2-クロロフェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-5-クロロ-2-((5-シアノピリジン-3-イル)メトキシ)ベンジル)-L-ホモセリン;
(2R)-2-((5-クロロ-4-((4-(2-クロロ-3-(3-(((S)-2,3-ジヒドロキシプロピル)アミノ)プロポキシ)フェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-2-((5-シアノピリジン-3-イル)メトキシ)ベンジル)アミノ)-3-ヒドロキシ-2-メチルプロパン酸;
5-((4-クロロ-5-((4-(2-クロロ-3-(3-(((S)-2,3-ジヒドロキシプロピル)アミノ)プロポキシ)フェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-2-(ヒドロキシメチル)フェノキシ)メチル)ニコチノニトリル;および
(5-クロロ-4-((4-(2-クロロ-3-(3-(((S)-2,3-ジヒドロキシプロピル)アミノ)プロポキシ)フェニル)-2,3-ジヒドロ-1H-インデン-1-イル)オキシ)-2-((5-シアノピリジン-3-イル)メトキシ)ベンジル)-L-ホモセリン;
から選択される化合物、またはその医薬的に許容される塩。 - 請求項1~11のいずれか一項の化合物またはその医薬的に許容される塩、および医薬的に許容される担体を含む、医薬組成物。
- 免疫応答を強化、刺激、調節、および/または増幅するための、請求項1~11のいずれか一項の化合物またはその医薬的に許容される塩を含む、医薬組成物。
- がん細胞の成長、増殖、または転移を阻害するための、請求項1~11のいずれか一項の化合物または医薬的に許容される塩を含む、医薬組成物。
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