JP2010501519A - アザビシクロヘキサン誘導体の使用 - Google Patents
アザビシクロヘキサン誘導体の使用 Download PDFInfo
- Publication number
- JP2010501519A JP2010501519A JP2009525046A JP2009525046A JP2010501519A JP 2010501519 A JP2010501519 A JP 2010501519A JP 2009525046 A JP2009525046 A JP 2009525046A JP 2009525046 A JP2009525046 A JP 2009525046A JP 2010501519 A JP2010501519 A JP 2010501519A
- Authority
- JP
- Japan
- Prior art keywords
- methyl
- fluoro
- azabicyclo
- phenyl
- trifluoromethyl
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
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- 125000002023 trifluoromethyl group Chemical group FC(F)(F)* 0.000 claims description 52
- -1 4-methyl-1,3-oxazol-5-yl Chemical group 0.000 claims description 46
- 125000000446 sulfanediyl group Chemical group *S* 0.000 claims description 45
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- 229920000036 polyvinylpyrrolidone Polymers 0.000 description 1
- 235000013855 polyvinylpyrrolidone Nutrition 0.000 description 1
- 229910000027 potassium carbonate Inorganic materials 0.000 description 1
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- 238000011321 prophylaxis Methods 0.000 description 1
- 102000004169 proteins and genes Human genes 0.000 description 1
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- 208000020016 psychiatric disease Diseases 0.000 description 1
- 239000001397 quillaja saponaria molina bark Substances 0.000 description 1
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Abstract
Description
(i) (1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2R,3R)酒石酸塩;
(ii) (1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2S,3S)酒石酸塩;
(iii) (1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (メソ)酒石酸塩;
(iv) (1R,5S)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2R,3R)酒石酸塩;
(v) (1R,5S)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2S,3S)酒石酸塩;
(vi) (1R,5S)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (メソ)酒石酸塩;
(vii) (1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2R,3R)酒石酸塩および(1R,5S)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2R,3R)酒石酸塩の混合物;
(viii) 上記の(i)、(ii)、(iii)、(iv)、(v)および/または(vi)の任意の組み合わせを含む混合物を包含する。
(ix) (1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2R,3R)酒石酸塩;
(x) (1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2S,3S)酒石酸塩;
(xi) (1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (メソ)酒石酸塩;
(xii) 上記の(ix)、(x)および/または(xi)の任意の組み合わせを含む混合物を包含する。
いくつかのまたは全ての溶媒の蒸発によりあるいは高温、次いで、好ましくは段階的に、制御冷却することにより得られる。沈殿温度および種の慎重な調節は、製造方法および粒径分布および生成物の形態の再現性を改善するために用いられうる。個々の多形体は、好ましくは、塩の溶液から直接結晶化されるけれども、1の多形体の溶液を別の多形体の種を用いて再結晶することもまた行われうる。
本発明の化合物の機能的能力および内活性は、以下のGTPγSシンチレーション近接アッセイ(GTPγS−SPA)により測定されうる。研究に用いられる細胞は、チャイニーズハムスター卵巣(CHO)細胞である。
10−6Mロイペプチン(Sigma L2884)−5000xストック=バッファー中5mg/mL
25ug/mLバシトラシン(Sigma B0125)−1000xストック=バッファー中25mg/mL
1mM PMSF−1000xストック=100%エタノール中17mg/mL
2x10−6MペプスタチンA−1000xストック=100%DMSO中2mM
実施例において、特に明記しない限り、
全温度は℃を表す。
赤外線スペクトルは、FT−IR機器上で測定された。
化合物は、正のエレクトロスプレー(ES+)イオン化モードで操作される質量スペクトル中のアセトニトリルで溶解された試料の直接注入により分析された。
プロトン磁気共鳴(1H−NMR)スペクトルは、400MHzで記録され、化学シフトは、内部標準として用いられる、Me4Siからppm低磁場(d)で記録され、シングレット(s)、ブロード・シングレット(bs)、ダブレット(d)、ダブレット・ダブレット(dd)、トリプレット(t)、カルテット(q)またはマルチプレット(m)として帰属する。
カラムクロマトグラフィーは、シリカゲル(Merck AG Darmstaadt、Germany)上で実施された。以下の略語は、文中で用いられる:T3P=N−プロパンホスホン酸環状無水物;DMSO=ジメチルスルホキシド。
HPLCアッセイ(短時間):
カラム型 Phenomenex LUNA
カラム長[cm] 5
内径[cm] 0.2
粒径[um] 3.0
移動相 A:0.05%v/v水中TFA/B:0.05%v
/vアセトニトリル中TFA
工程1:時間−保持A−保持B 時間0分 100%A
工程2:時間−保持A−保持B 時間8分 5%A
工程3:時間−保持A−保持B 時間8.01分 100%A
流速[mL/分] 1
カラム温度[℃] 40
オートサンプラー温度[℃] AMB
検出型 UV
波長[nm] 220
注入量[uL] 1
実行時間 8分
カラム型 Chiracel OD−H
カラム長[cm] 25
内径[cm] 4.6
粒径[um] 5
移動相 ヘプタン/IPA 85/15%v/v
流速[mL/分] 1
カラム温度[℃] 30
オートサンプラー温度[℃] AMB
検出型 UV
波長[nm] 220
注入量[uL] 10
希釈係数 5
カラム型 LUNA 3u フェニル−ヘキシル
カラム長[cm] 15
内径[cm] 0.46
粒径[um] 3.0
移動相 A:0.05%v/v水中TFA/B:0.05%v
/vアセトニトリル中TFA
工程1:時間−保持A−保持B 時間0分 95%A−5%B
工程2:時間−保持A−保持B 時間30分 5%A−95%B
工程3:時間−保持A−保持B 時間30.01分 95%A−5%B
流速[mL/分] 1
カラム温度[℃] 40
オートサンプラー温度[℃] AMB
検出型 UV
波長[nm] 220
注入量[uL] 10
実行時間 30分。
カラム型 CHIRALPAK AD
カラム長[cm] 25
内径[cm] 4.6
粒径[um] 10
移動相 ヘプタン/IPA 85/15%v/v
流速[mL/分] 0.8
カラム温度[℃] 25
オートサンプラー温度[℃] AMB
検出型 UV
波長[nm] 270
注入量[uL] 10
希釈係数 10
MS(m/z):128[MH]+
MS(m/z):197[MH]+
MS(m/z):273[MH]+
水酸化カリウム(258.1g)を、N2下、ヨウ化トリメチルスルホキソニウム(1013g)のジメチルスルホキシド(4470mL)中攪拌溶液に加えた。得られた混合物を室温で1時間(または透明溶液を観測するまで)攪拌した。
NaBH4(351g)、次いで、テトラヒドロフラン(3600mL)をN2下で充填し、次いで、前段階において調製された1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−アザビシクロ[3.1.0]ヘキサンのテトラヒドロフラン中溶液を1時間で滴下し、得られた懸濁液を室温で1時間攪拌した。
HPLCアッセイ(短時間):>99%a/a
HPLCキラル1:鏡像体過剰率(e.e.)>80%
HPLCキラル1:鏡像体過剰率(e.e.)>97%
エナンチオマー1を白色固体として回収した、Rt=15.4分。
エナンチオマー2を白色固体として回収した、Rt=16.3分。
エナンチオマー2は、エナンチオマー1より高いlog単位fpKi(D3)>1を示した。
HPLCキラル2:鏡像体過剰率(e.e.)>98%
NMR(1H,DMSO−d6,δ ppm):8.55(s,1H),7.61(d,1H),7.53(m,2H),4.27(s,2H),3.67(s,3H),3.33(d,1H),3.19(t,2H),3.13(d,1H),2.64(t,2H),2.58(dd,1H),2.50(m,1H),2.37(s,3H),1.94(m,1H),1.86(m,2H),1.35(t,1H),0.82(dd,1H)。
MS(m/z):482[MH]+
前段階からの(1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサンおよび(2R,3R)酒石酸塩(150g)を、0.75Lの酢酸エチルおよび0.3Lのメタノールで懸濁し、50℃に加熱した。該温度に達するとすぐに、水(0.15L)、次いで、真正の(L)−酒石酸の(1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン塩(上記のとおりに調製した、0.45g)を加えた。混合物を30分かけて20℃に冷却し、沈殿し始めた。
HPLCキラル2:鏡像体過剰率(e.e.)>98%
NMR(1H,DMSO−d6,δ ppm):8.55(s,1H),7.61(d,1H),7.53(m,2H),4.27(s,2H),3.67(s,3H),3.33(d,1H),3.19(t,2H),3.13(d,1H),2.64(t,2H),2.58(dd,1H),2.50(m,1H),2.37(s,3H),1.94(m,1H),1.86(m,2H),1.35(t,1H),0.82(dd,1H)。
MS(m/z):482[MH]+
X粉末回折(XRPD)分析は、Sol−X検出器を用いて、Siemens D5005上で実施された。取得条件は、放射線:Cu Kα、ジェネレーター電圧:40kV、ジェネレーター電流:50mA、開始角度:2.0° 2θ、終了角度:45.0° 2θ、刻み幅:0.02° 2θ、1工程当たりの時間:0.5秒であった。試料は、低バックグラウンド試料保持器上で調製された。
機器構成:Kaiser RXN1 Kaiser Optical System Micro Raman。4cm−1分解能のAl試料パン上の試料、レーザー λ=785nm、出力 100mw。
機器構成:TA Q1000、密封試料パン、10K/分の実行、N2流速=30mL/分。
図1は、本明細書に記載の(1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2R,3R)酒石酸塩について得られたX線粉末回折データを示す。
図2は、本明細書に記載の(1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2R,3R)酒石酸塩のラマンスペクトルを示す。
図3は、本明細書に記載の(1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2R,3R)酒石酸塩の示差走査熱量測定法(DSC)サーモグラムを示す。
前述の調製例4と類似の手法で調製された、[(1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−アザビシクロ[3.1.0]ヘキサン (1R,4S)−7,7−ジメチル−2−オキソビシクロ[2.2.1]ヘプト−1−イル]メタンスルホン酸塩(310g)は、tert−ブチルメチルエーテル(3.1L)で懸濁し、1NのNaOH(1.55L)で処理した。相分離後、有機層を水で2回(各々1.55L)洗浄し、次いで、約620mLに蒸発した。新しいtert−ブチルメチルエーテル(620mL)を加え、溶液を再度、620mLに蒸発した。DMF(0.93L)の添加後、溶液を約0.93Lに蒸発した。K2CO3325メッシュ(143g)、KI(171g)および調製例1と同様に調製された3−[(3−クロロプロピル)チオ]−4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール(283g)を室温で加えた。次いで、得られた懸濁液を62−63℃で5時間加温し、次いで、20℃に冷却した。酢酸エチル(1.55L)で希釈した後、水(1.55L)を加え、層を分離した。有機層を水で2回(各々775mL)洗浄し、さらに酢酸エチル(0.31L)で希釈し、620mLに濃縮し、さらなる酢酸エチル(620mL)で希釈し、再度蒸発乾固した。そのように得られた黄色ろう状固体の一部(総量330gの315g)をアセトン(2.30L)で溶解し、L−酒石酸(93.3g)を20℃で加えた。20分後、水(74mL)を加え、完全に酸を溶解した。白色固体の沈殿がすぐに生じた。混合物を20℃で3時間攪拌し、次いで、濾過し、ケークを2/1のアセトン/水混合液(0.9L)で洗浄した。真空下40℃で20時間乾燥した後、標記化合物を、灰白色固体(347g)としてHPLC(短時間)により典型的な純度97.8%a/aを得た。
図4は、実施例2に記載の条件における本明細書に記載の(1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2R,3R)酒石酸塩について得られたX線粉末回折データを示す。
機器構成:PE DSC 7、密封サンプルパン、10K/分の実行、N2流速=30mL/分
(1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2R,3R)酒石酸塩および塩酸塩の安定性
前述の実施例3および調製例7各々と類似の手法で調製された、薬剤原料(1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン 酒石酸塩および塩酸塩を、空気雰囲気下、6mL容量を琥珀色ガラスバイアル中に充填し、テフロンコーティング栓で密封し、直立保存した。
カラム型: Phenomenex LUNA C18(2)
カラム長(cm): 5
内径(cm): 0.21
粒径(μm): 3
移動相: A:0.05%v/v水中TFA/B:0.05%
v/vアセトニトリル中TFA
工程−1 時間−保持A−保持B: 時間0分 100%A
工程−2 時間−保持A−保持B 時間8分 5%A
工程−3 時間−保持A−保持B 時間8.01分 100A
流速(mL/分): 1
カラム温度[℃]: 40
検出型: UV
波長(nm): 220
注入量(μL): 2
典型的な保持時間: 3.9分
(1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2R,3R)酒石酸塩カプセル剤
以下の処方例は、単に説明するものであって、本発明の範囲を限定することを意図とするものではない。
Claims (24)
- 1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン 酒石酸塩またはその医薬上許容される溶媒和物。
- (1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン 酒石酸塩またはその医薬上許容される溶媒和物。
- (1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2R,3R)酒石酸塩またはその医薬上許容される溶媒和物。
- 1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]−ヘキサンまたは(1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサンの酒石酸に対するモル比率が1:1である、請求項1、請求項2または請求項3記載の化合物。
- (1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサンの(2R,3R)酒石酸に対するモル比率が1:1である、請求項2−4のいずれか1項に記載の化合物。
- 水和物である、請求項2−5のいずれか1項に記載の化合物。
- セスキ水和物である、請求項2−6のいずれか1項に記載の化合物。
- 結晶形である、請求項2−7のいずれか1項に記載の化合物。
- (1S,5R)−1−[2−フルオロ−4−(トリフルオロメチル)フェニル]−3−(3−{[4−メチル−5−(4−メチル−1,3−オキサゾール−5−イル)−4H−1,2,4−トリアゾール−3−イル]チオ}プロピル)−3−アザビシクロ[3.1.0]ヘキサン (2R,3R)酒石酸塩であり、セスキ水和物である、請求項2−7のいずれか1項に記載の結晶化合物。
- DSCが10K/分の走査速度で実行された、図2に実質上示される示差走査熱量測定法サーモグラムを有する請求項2−9のいずれか1項に記載の結晶化合物。
- T=約122℃で開始する示差走査熱量測定法サーモグラムを有する請求項2−10のいずれか1項に記載の結晶化合物。
- 2θ値で表される、以下のピーク:5.9+/−0.15、6.9+/−0.15、10.2+/−0.15、11.8+/−0.15、11.9+/−0.15、16.4+/−0.15、17.6+/−0.15を含み、銅Kα放射線を用いて回折計で得たX線粉末回折スペクトルを有する請求項2−12のいずれか1項に記載の結晶化合物。
- スペクトルが、399.87MHzのプロトン周波数、8kHzのスピン速度で作動する分光計で取得された、図7に関する実質上同一の炭素−13固体核磁気共鳴(SSNMR)スペクトルを有する請求項2−13のいずれか1項に記載の結晶化合物。
- SSNMRが、182.9、173.4、151.6、137.7、135.6、129.3、119.5、74.6、59.8、32.9、31.5、25.7、21.7、13.9+/−0.3ppmで共鳴を示す、スペクトルが、399.87MHzのプロトン周波数、8kHzのスピン速度で作動する分光計で得られた、図7に関する実質上同一の炭素−13固体核磁気共鳴(SSNMR)スペクトルを有する請求項2−14のいずれか1項に記載の結晶化合物。
- SSNMRが182.9、173.4、151.6、59.8、25.7、21.7、13.9+/−0.3ppmで共鳴を示す、399.87MHzのプロトン周波数、8kHzのスピン速度で作動する分光計で得られた、図7に関する実質上同一の炭素−13固体核磁気共鳴(SSNMR)スペクトルを有する請求項2−14のいずれか1項に記載の結晶化合物。
- ドーパミンD3受容体の調節が有益である病態の治療方法であって、請求項1−16のいずれか1項に記載の化合物の有効量を哺乳動物(例えば、ヒト)に投与することを含む、方法。
- 病態が物質関連障害である、請求項17記載の方法。
- ドーパミンD3受容体の調節が有益である哺乳動物における病態の治療のための医薬の製造における請求項1−16のいずれか1項に記載に化合物の使用。
- 病態が物質関連障害である、請求項19記載の使用。
- 療法における使用のための請求項1−16のいずれか1項に記載の化合物。
- ドーパミンD受容体が有益である哺乳動物における病態の治療における使用のための請求項1−16のいずれか1項に記載の化合物。
- 物質関連障害の治療における使用のための請求項1−16のいずれか1項に記載の化合物。
- 請求項1−16のいずれか1項に記載の化合物および医薬上許容される担体を含む医薬組成物。
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| ATE451364T1 (de) * | 2004-02-23 | 2009-12-15 | Glaxo Group Ltd | Als modulatoren des dopamin-d3-rezeptors geeignete azabicycloä3.1.0ühexanderivate |
| GB0507602D0 (en) * | 2005-04-14 | 2005-05-18 | Glaxo Group Ltd | Compounds |
| GB0507601D0 (en) * | 2005-04-14 | 2005-05-18 | Glaxo Group Ltd | Compounds |
| GB0512099D0 (en) * | 2005-06-14 | 2005-07-20 | Glaxo Group Ltd | Compounds |
| WO2006133945A1 (en) * | 2005-06-14 | 2006-12-21 | Glaxo Group Limited | Novel compounds |
| US7799815B2 (en) * | 2005-08-22 | 2010-09-21 | Glaxo Group Limited | Triazole derivatives as modulators of dopamine D3 receptors |
| GB0517193D0 (en) * | 2005-08-22 | 2005-09-28 | Glaxo Group Ltd | Novel use |
| GB0517187D0 (en) * | 2005-08-22 | 2005-09-28 | Glaxo Group Ltd | Compounds |
| GB0517191D0 (en) | 2005-08-22 | 2005-09-28 | Glaxo Group Ltd | Compounds |
| GB0517175D0 (en) | 2005-08-22 | 2005-09-28 | Glaxo Group Ltd | Compounds |
| EP2010518B1 (en) * | 2006-04-03 | 2011-02-16 | Glaxo Group Limited | Azabicyclo [3. 1. o] hexane derivatives as modulators of dopamine d3 receptors |
| JP5189076B2 (ja) * | 2006-04-03 | 2013-04-24 | グラクソ グループ リミテッド | ドーパミンd3受容体のモジュレーターとしてのアザビシクロ[3.1.0]ヘキシル誘導体 |
| US9133159B2 (en) | 2007-06-06 | 2015-09-15 | Neurovance, Inc. | 1-heteroaryl-3-azabicyclo[3.1.0]hexanes, methods for their preparation and their use as medicaments |
| EP2167083B1 (en) * | 2007-06-06 | 2015-10-28 | Euthymics Bioscience, Inc. | 1- heteroaryl-3-azabicyclo[3.1.0]hexanes, methods for their preparation and their use as medicaments |
| JP7250405B2 (ja) | 2018-01-26 | 2023-04-03 | 塩野義製薬株式会社 | ドーパミンd3受容体拮抗作用を有する環式化合物 |
| US12115154B2 (en) | 2020-12-16 | 2024-10-15 | Srx Cardio, Llc | Compounds for the modulation of proprotein convertase subtilisin/kexin type 9 (PCSK9) |
| AR127055A1 (es) * | 2021-09-14 | 2023-12-13 | Lilly Co Eli | Sales agonistas de sstr4 |
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| JP2000143622A (ja) * | 1998-11-09 | 2000-05-26 | Katayama Seiyakushiyo:Kk | アゼチジン−3−オール |
| JP2002539194A (ja) * | 1999-03-15 | 2002-11-19 | ノボ ノルディスク アクティーゼルスカブ | 新規の(2r,3r,4r)−3,4−ジヒドロキシ−2−ヒドロキシメチルピロリジンの塩 |
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| SE526837C2 (sv) * | 2004-02-24 | 2005-11-08 | Kongsberg Automotive Asa | Växelspakstransmission |
| GB0517193D0 (en) * | 2005-08-22 | 2005-09-28 | Glaxo Group Ltd | Novel use |
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- 2007-08-20 BR BRPI0716454-8A2A patent/BRPI0716454A2/pt not_active IP Right Cessation
- 2007-08-20 AU AU2007287527A patent/AU2007287527B2/en not_active Ceased
- 2007-08-20 CN CN2007800392082A patent/CN101528221B/zh not_active Expired - Fee Related
- 2007-08-20 WO PCT/EP2007/058636 patent/WO2008022994A1/en not_active Ceased
- 2007-08-20 EA EA200970211A patent/EA017917B1/ru not_active IP Right Cessation
- 2007-08-20 US US11/841,015 patent/US20080058398A1/en not_active Abandoned
- 2007-08-20 KR KR1020097003484A patent/KR101495362B1/ko not_active Expired - Fee Related
- 2007-08-20 MX MX2009001941A patent/MX2009001941A/es active IP Right Grant
- 2007-08-20 CL CL200702422A patent/CL2007002422A1/es unknown
- 2007-08-20 JP JP2009525046A patent/JP5315244B2/ja not_active Expired - Fee Related
- 2007-08-20 TW TW096130644A patent/TW200825074A/zh unknown
- 2007-08-20 CA CA002661437A patent/CA2661437A1/en not_active Abandoned
- 2007-08-20 EP EP07788490A patent/EP2054054A1/en not_active Withdrawn
- 2007-08-21 AR ARP070103715A patent/AR062471A1/es not_active Application Discontinuation
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2009
- 2009-02-06 ZA ZA2009/00886A patent/ZA200900886B/en unknown
- 2009-02-09 IL IL196976A patent/IL196976A0/en unknown
- 2009-02-20 CO CO09017330A patent/CO6150139A2/es unknown
- 2009-02-23 NO NO20090834A patent/NO20090834L/no not_active Application Discontinuation
- 2009-02-25 CR CR10638A patent/CR10638A/es not_active Application Discontinuation
- 2009-02-27 MA MA31673A patent/MA30672B1/fr unknown
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| JP2004505972A (ja) * | 2000-08-04 | 2004-02-26 | スミスクライン ビーチャム パブリック リミテッド カンパニー | チアゾリジンジオン誘導体の酒石酸塩 |
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Also Published As
| Publication number | Publication date |
|---|---|
| GB0616574D0 (en) | 2006-09-27 |
| IL196976A0 (en) | 2009-11-18 |
| MA30672B1 (fr) | 2009-08-03 |
| AU2007287527B2 (en) | 2013-01-31 |
| AR062471A1 (es) | 2008-11-12 |
| CO6150139A2 (es) | 2010-04-20 |
| ZA200900886B (en) | 2011-05-25 |
| CL2007002422A1 (es) | 2008-03-14 |
| EP2054054A1 (en) | 2009-05-06 |
| NO20090834L (no) | 2009-03-19 |
| KR101495362B1 (ko) | 2015-02-24 |
| CA2661437A1 (en) | 2008-02-28 |
| CN101528221A (zh) | 2009-09-09 |
| WO2008022994A1 (en) | 2008-02-28 |
| EA200970211A1 (ru) | 2009-08-28 |
| EA017917B1 (ru) | 2013-04-30 |
| BRPI0716454A2 (pt) | 2014-03-04 |
| KR20090052327A (ko) | 2009-05-25 |
| US20080058398A1 (en) | 2008-03-06 |
| JP5315244B2 (ja) | 2013-10-16 |
| CN101528221B (zh) | 2013-05-08 |
| CR10638A (es) | 2009-03-20 |
| MX2009001941A (es) | 2009-03-05 |
| AU2007287527A1 (en) | 2008-02-28 |
| PE20080609A1 (es) | 2008-07-26 |
| TW200825074A (en) | 2008-06-16 |
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