JP2014515406A - ヒドラジノ1h−イミダゾキノリン−4−アミン及びこれから調製された複合体 - Google Patents
ヒドラジノ1h−イミダゾキノリン−4−アミン及びこれから調製された複合体 Download PDFInfo
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- JP2014515406A JP2014515406A JP2014513746A JP2014513746A JP2014515406A JP 2014515406 A JP2014515406 A JP 2014515406A JP 2014513746 A JP2014513746 A JP 2014513746A JP 2014513746 A JP2014513746 A JP 2014513746A JP 2014515406 A JP2014515406 A JP 2014515406A
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Abstract
Description
本願は、いずれも2011年6月3日出願の米国仮特許出願第61/493,051号及び同第61/493,143号に基づく優先権を主張するものであり、当該出願の開示の全容を本明細書に援用するものである。
Xは、場合により−O−によって分断されるか又は終端する8個以下の炭素原子を有するアルキレンであり、
R2は、水素、アルキル、アルコキシアルキレニル、アルキルアミノアルキレニル、又はヒドロキシアルキレニルであり、
Pは、アミノ基、保護されたアミノ基、又はNH3 +Y−(式中、Y−は、対アニオンである)であり、
Aは、CH又はNであり、
Rは、ハロゲン、ヒドロキシル、アルキル、ハロアルキル、又はアルコキシであり、
nは、0〜4の整数である。]、
又は、薬学的に許容されるその塩を提供する。
Xは、場合により−O−によって分断されるか又は終端する8個以下の炭素原子を有するアルキレンであり、
R2は、水素、アルキル、アルコキシアルキレニル、アルキルアミノアルキレニル、又はヒドロキシアルキレニルであり、
Aは、CH又はNであり、
Rは、ハロゲン、ヒドロキシル、アルキル、ハロアルキル、又はアルコキシであり、
nは、0〜4の整数である。]、
又はその塩を提供する。
Xは、場合により−O−によって分断されるか又は終端する8個以下の炭素原子を有するアルキレンであり、
R2は、水素、アルキル、アルコキシアルキレニル、アルキルアミノアルキレニル、又はヒドロキシアルキレニルであり、
Aは、CH又はNであり、
Rは、ハロゲン、ヒドロキシル、アルキル、ハロアルキル、又はアルコキシであり、
nは、0〜4の整数であり、
Zは、結合又は−C(O)−NH−(CH2CH2O)p−CH2CH2−(式中、pは1〜50の範囲である)であり、
N*により示される窒素原子は、抗原と共有結合する。]により表される少なくとも1つのセグメントを有する、抗原の複合体、
又は、薬学的に許容されるその塩を提供する。
本発明の化合物は、特に本明細書に記載される説明を考慮することで、化学分野においてよく知られるものと類似のプロセスを含む合成経路によって合成することができる。開始物質は、アルドリッチ・ケミカルズ社(Aldrich Chemicals)(米国、ウィスコンシン州、ミルウォーキー)などの商業的供給元から一般的に入手されるか、又は当業者には周知の方法を用いて容易に調製される(例えば、Louis F.Fieser and Mary Fieser,Reagents for Organic Synthesis,v.1〜19,Wiley,New York,(1967〜1999 ed.);Alan R.Katritsky,Otto Meth−Cohn,Charles W.Rees,Comprehensive Organic Functional Group Transformations,v 1〜6,Pergamon Press,Oxford,England,(1995);Barry M.Trost and Ian Fleming,Comprehensive Organic Synthesis,v.1〜8,Pergamon Press,Oxford,England,(1991);又は、Beilsteins Handbuch der organischen Chemie,4,Aufl.Ed.Springer−Verlag,Berlin,Germany,(補遺を含む)(Beilsteinオンラインデータベースから入手することも可能)に一般的に述べられる方法により調整される。)。
式1又はI−Aの化合物をアルデヒド結合抗原と反応させることによって本発明の複合体を得ることができる。したがって、本発明の複合体は、式I又はI−Aの化合物若しくはその塩とアルデヒド結合抗原との反応生成物である。これらの反応生成物は、一般的にヒドラゾノベンズアミド又はヒドラゾノニコチンアミド1H−イミダゾ[4,5−c]キノリン−4−アミンである。
式I又はI−Aの化合物とアルデヒド結合抗原(特定の実施形態では式IIの複合体)とから調製される複合体は、本明細書に開示される医薬組成物中で、任意の適当な方法(例えば経口又は非経口)で投与することができる。本明細書で用いるところの腸管内とは、経口摂取によるものを含む消化管を経由する投与のことを指す。腸管外とは、経鼻投与(例えば、吸入による経粘膜投与)、局所投与、眼内投与、及び頬側投与を含む、消化管を経由するもの以外の投与法のことを指すが、実際には、例えば従来の針注射、マイクロニードルアレイを使用した注射、又は他の任意の公知の注射法を用いた注射(例えば、静脈内、筋内、皮下、腫瘍内、又は経皮注射)のことを通常は指す。
(a)アデノウイルス、ヘルペスウイルス(例えば、HSV−I、HSV−II、CMV、又はVZV)、ポックスウイルス(例えば、天然痘若しくはワクシニアなどのオルソポックスウイルス、又は伝染性軟属腫)、ピコルナウイルス(例えば、ライノウイルス又はエンテロウイルス)、オルソミクソウイルス(例えばインフルエンザウイルス)、パラミクソウイルス(例えば、パラインフルエンザウイルス、ムンプスウイルス、麻疹ウイルス、及び呼吸器合胞体ウイルス(RSV))、コロナウイルス(例えばSARS)、パポバウイルス(例えば、性器疣贅、尋常性疣贅、又は足底疣贅を引き起こすものなどのパピローマウイルス)、ヘパドナウイルス(例えばB型肝炎ウイルス)、フラビウイルス(例えば、C型肝炎ウイルス又はデングウイルス)、又はレトロウイルス(例えば、HIVなどのレンチウイルス)による感染によって引き起こされる疾患などのウイルス性疾患;
(b)例えば、エシェリキア属、エンテロバクター属、サルモネラ属、スタフィロコッカス属、シゲラ属、リステリア属、エアロバクター属、ヘリコバクター属、クレブシラ属、プロテウス属、シュードモナス属、ストレプ卜コッカス属、クラミジア属、マイコプラズマ属、ニューモコッカス属、ナイセリア属、クロストリジウム属、バチルス属、コリネバクテリウム属、マイコバクテリウム属、カンピロバクター属、ビブリオ属、セラチア属、プロビデンシア属、クロモバクテリウム属、ブルセラ属、エルシニア属、ヘモフィルス属、又はボルデテラ属の細菌による感染によって引き起こされる疾患などの細菌性疾患;
(c)クラミジア、真菌性疾患(例えば、カンジダ症、アスペルギルス症、ヒストプラスマ症、又はクリプトコッカス髄膜炎)、又は寄生虫疾患(例えば、マラリア、ニューモシスチスカリニ肺炎、リーシュマニア症、クリプトスポリジウム症、トキソプラズマ症、及びトリパノソーマ感染)などの他の感染症;
(d)上皮内腫瘍、子宮頚部異形成、日光角化症、基底細胞癌、扁平上皮細胞癌、腎細胞癌、カポジ肉腫、メラノーマ、白血病(例えば、骨髄性白血病、慢性リンパ性白血病、多発性骨髄腫、非ホジキンリンパ腫、皮膚T細胞リンパ腫、B細胞リンパ腫、及びヘアリーセル白血病)、乳癌、肺癌、前立腺癌、結腸癌、及び他の癌などの腫瘍性疾患;
(e)アトピー性皮膚炎又は湿疹、好酸球増加、喘息、アレルギー、アレルギー性鼻炎、オメン症候群などのTH2媒介性アトピー性疾患;
(f)全身性エリテマトーデス、原発性血小板血症、多発性硬化症,円板状エリテマトーデス、及び円形脱毛症などの特定の自己免疫疾患;並びに、
(g)ケロイド形成及び他の種類の瘢痕化の阻害などの創傷修復に関連する疾患(例えば、慢性創傷を含む創傷治癒の促進)が挙げられる。
第1の実施形態では、本発明は、式(I)の化合物:
Xは、場合により−O−によって分断されるか又は終端する8個以下の炭素原子を有するアルキレンであり、
R2は、水素、アルキル、アルコキシアルキレニル、アルキルアミノアルキレニル、又はヒドロキシアルキレニルであり、
Pは、アミノ基、保護されたアミノ基、又はNH3 +Y−(式中、Y−は、対アニオンである)であり、
Aは、CH又はNであり、
Rは、ハロゲン、ヒドロキシル、アルキル、ハロアルキル、又はアルコキシであり、
nは、0〜4の整数である。]
又は、薬学的に許容されるその塩を提供する。
Xは、場合により−O−によって分断されるか又は終端する8個以下の炭素原子を有するアルキレンであり、
R2は、水素、アルキル、アルコキシアルキレニル、アルキルアミノアルキレニル、又はヒドロキシアルキレニルであり、
Aは、CH又はNであり、
Rは、ハロゲン、ヒドロキシル、アルキル、ハロアルキル、又はアルコキシであり、
nは、0〜4の整数である。]
又は、薬学的に許容されるその塩を提供する。
Xは、場合により−O−によって分断されるか又は終端する8個以下の炭素原子を有するアルキレンであり、
R2は、水素、アルキル、アルコキシアルキレニル、アルキルアミノアルキレニル、又はヒドロキシアルキレニルであり、
Aは、CH又はNであり、
Rは、ハロゲン、ヒドロキシル、アルキル、ハロアルキル、又はアルコキシであり、
nは、0〜4の整数であり、
Zは、結合又は−C(O)−NH−(CH2CH2O)p−CH2CH2−(式中、pは1〜50の範囲である)であり、
N*により示される窒素原子は、抗原と共有結合する。]により表される少なくとも1つのセグメントを有する、抗原の複合体、
又は、薬学的に許容されるその塩を提供する。
Pが保護されたアミノ基である、第1の実施形態、又は第2若しくは第3の実施形態に従属している場合を除き第4〜第7又は第10の実施形態のいずれか1つの化合物又はその塩、アルデヒド結合抗原、及び担体を、前記保護されたアミノ基が脱保護され、複合体が形成されるような条件下で合わせることを含む方法を提供する。
N−(4−{[4−アミノ−2−ブチル−1H−イミダゾ[4,5−c]キノリン−1−イル]オキシ}ブチル)−6−(N’−イソプロピリデンヒドラジノ)ニコチンアミド(化合物1)及び
N−(4−{[4−アミノ−2−ブチル−1H−イミダゾ[4,5−c]キノリン−1−イル]オキシ}ブチル)−6−ヒドラジノニコチンアミド(化合物2)
吉草酸無水物(6.03g)及び塩酸ピリジン(0.198g)をピリジン(8.28g)に加えた溶液を、3−アミノ−4−クロロキノリン(2.94g)をピリジン(5.0g)に加えた溶液に加え、反応液を室温で16時間攪拌した後、60℃で3時間加熱した。反応液を減圧下濃縮し、炭酸ナトリウム(15mLの10%水溶液)を加えた。反応液を30分間攪拌してから濾過した。得られた固体を水(60mL)で洗浄し、真空下で4時間乾燥して4.59gのN−(4−クロロキノリン−3−イル)バレルアミドの粗生成物を褐色のフレークとして得た。この粗生成物をヘプタン(10mL)から再結晶化し、回収された生成物をソックスレー抽出によりヘプタンを16時間還流して更に精製した。ソックスレー抽出装置からの回収フラスコをフリーザー内で2時間冷却した。得られた固体を濾過により回収し、真空下で乾燥して2.00gのN−(4−クロロキノリン−3−イル)バレルアミドを白色の固体として得た。
4−アミノ−1−ブタノール(7.68g)及びピリジン(7.00g)をジクロロメタン(100mL)に加えた溶液を氷浴中で冷やし、クロロギ酸ベンジル(14.37g)をジクロロメタン(100mL)に加えた溶液を攪拌しながら30分間かけて徐々に加えた。氷浴を外し、反応液を更に16時間攪拌した。塩酸(1.2M、200mL)を加え、各相を分離した。有機相を乾燥(MgSO4)、濾過し、減圧下で濃縮した。得られた残渣をトルエンから再結晶化し、真空下で乾燥して5.15gのベンジル(4−ヒドロキシブチル)カルバメートを得た。
N−(4−クロロキノリン−3−イル)バレルアミド(1.97g)、ベンジル(4−アミノオキシブチル)カルバメート(2.99g)、トリエチルアミン(0.89g)、及び2−プロパノール(40.69g)を加え合わせて、80℃で3.5時間加熱した。反応液を室温にまで冷却し、濾過してから、濾液を減圧下で濃縮した。得られた固体にジクロロメタン(20mL)を加え、混合物を20分間攪拌した。溶解しなかった固体を濾去し、20滴の塩酸(1.2M)を加えることによって弱酸性とした水を10mLずつ2回使用して濾液を洗浄した。有機画分を乾燥し、減圧下で濃縮した。この固体粗生成物をテトラヒドロフランから再結晶化して、2.56gのベンジル4−{[2−ブチル−1H−イミダゾ[4,5−c]キノリン−1−イル]オキシ}ブチルカルバメートを得た。
ベンジル4−{[2−ブチル−1H−イミダゾ[4,5−c]キノリン−1−イル]オキシ}ブチルカーバメート塩酸塩(10.05g)をジクロロメタン(80mL)に溶解し、炭酸ナトリウム(2.02g)を30mLのH2Oに加えた溶液で抽出した。有機層を氷浴中で冷却し、m−クロロ過安息香酸(5.93g,1.24当量)をジクロロメタン(30mL)に溶解した溶液を徐々に加えた。6時間後、水酸化アンモニウム(10mLの28〜30%水溶液)を反応液に加えた。ベンゼンスルホニルクロリド(6.96g)を10mLのジクロロメタンに加えた溶液を、激しく攪拌しながら徐々に加えた。冷却浴を外し、反応液を更に12時間攪拌した。反応液を水(100mL)で希釈し、有機画分と水性画分とを分離した。水性画分をジクロロメタン(30mL)で抽出した。合わせた有機画分を、5%炭酸ナトリウムを90mLずつ2回使用して洗浄した。
1−(4−アミノブトキシ)−2−ブチル−1H−イミダゾ[4,5−c]キノリン−4−アミンビスマレエート塩(0.2g)を1−ブタノール(5mL)に懸濁し、2×5mL量の5%炭酸ナトリウム溶液で順次洗浄した後、5mLの飽和塩化ナトリウム溶液で洗浄した。イリノイ州ロックフォード所在のサーモ・サイエンティフィック社(Thermo Scientific)より販売されるスクシンイミジル4−ヒドラジノニコチネートアセトンヒドラゾン(SANH,0.0216g)を加え、この溶液を室温で17.5時間撹拌した。薄層クロマトグラフィー(シリカゲル、メチル−tert−ブチルエーテル:エタノール=1:1の溶離液)により反応液を分析したところ、1−(4−アミノブトキシ)−2−ブチル−1H−イミダゾ[4,5−c]キノリン−4−アミン(Rf<0.05)及び所望の生成物であるN−(4−{[4−アミノ−2−ブチル−1H−イミダゾ[4,5−c]キノリン−1−イル]オキシ}ブチル)−6−(N’−イソプロピリデンヒドラジノ)ニコチンアミド(Rf0.30)の存在のみが示された。反応液を減圧下で濃縮し、5mLのジクロロメタンを残渣に加えた。少量の不溶性物質を濾去し、試料をカラムクロマトグラフィー(シリカゲル、メチル−tert−ブチルエーテル:エタノール=1:1の溶離液)により精製した。生成物を含む各画分を加え合わせ、減圧下で溶媒を除去してN−(4−{[4−アミノ−2−ブチル−1H−イミダゾ[4,5−c]キノリン−1−イル]オキシ}ブチル)−6−(N’−イソプロピリデンヒドラジノ)ニコチンアミドを淡黄色固体として得た(化合物1)。
パートEで得たN−(4−{[4−アミノ−2−ブチル−1H−イミダゾ[4,5−c]キノリン−1−イル]オキシ}ブチル)−6−(N’−イソプロピリデンヒドラジノ)ニコチンアミドを、1mLの塩酸(0.6M)に懸濁し、60℃に90分間加熱した。得られた均質な溶液を室温にまで冷却し、反応液を減圧下で濃縮した。得られた残渣を水に溶解してから凍結乾燥して43.6mgのN−(4−{[4−アミノ−2−ブチル−1H−イミダゾ[4,5−c]キノリン−1−イル]オキシ}ブチル)−6−ヒドラジノニコチンアミド塩酸塩を黄色の固体として得た(化合物2)。MS(ESI)m/z 463.25661(C24H31N8O2に対する計算値463.25645,M+H+)。
H1N1 PR8由来の組換えヘマグルチニン1(HA)をクローニングし、大腸菌で発現させ、標準的な方法により精製した。分子量が32083.11ダルトンであり、C末端に6個のヒスチジンを有するこのHAを、0.15MのNaClを含むpH 7.5、0.1Mのリン酸緩衝溶液に入れた。HAの分子量及びタンパク質の質量に基づいて、HA溶液のモル濃度を確立した。ジメチルスルホキシド(DMSO)に溶解したスクシンイミジル4−ホルミルベンゾエート(SFB)(サーモ・サイエンティフィック社(Thermo Scientific)、イリノイ州ロックフォード)を10倍のモル過剰量でHAに加えた。次いでこの溶液を室温で2時間インキュベートした。HAのコントロール試料を同じ体積のDMSOと同様にしてインキュベートした。SFB修飾HA(HA−SFBとして表される)を、0.15MのNaClを含むpH 6.0、0.1Mのリン酸緩衝溶液で予め平衡化したZEBAスピンカラム(サーモ・サイエンティフィック社(Thermo Scientific)、イリノイ州ロックフォード)を使用して遊離SFBから分離した。この工程により、複合化反応に備えてHA−SFB溶液をpH 6.0に変化させた。
実施例2に述べた手順にしたがって10倍のモル過剰量の化合物1をHA−SFBに加えることによって、共有結合により複合体化した生成物(HA−SFB−化合物2)を調製した。複合体化生成物による、ヒト末梢血単核球(PBMC)におけるインターフェロン−α(IFN)及び腫瘍壊死因子(TNF)の産生のインビトロでの誘導を測定した。PBMCをヒト提供者より調製し、96穴マイクロタイタープレートに播種した。HA、HA−SFB、及びHA−SFB−化合物2複合体を、1μMタンパク質の最終濃度で各ウェルにそれぞれ加えた。この後、細胞を37℃で一晩インキュベートした。培地を除去し、IFN濃度(pg/mL)及びTNF濃度(ng/mL)をELISAアッセイにより測定した。アッセイの結果を下記表2に示す。
組換えヘマグルチニン1(HA)と共有結合により複合体化した化合物2(HA−SFB−化合物2)のワクチンアジュバント活性を、Balb/C雄性マウス(チャールズ・リバー・ラボラトリーズ・インターナショナル社(Charles River Laboratories, International)マサチューセッツ週ウィルミントン)において評価した。各群5匹のマウスを、PBSに加えたHA抗原10μg(コントロール)、SFBと複合体化したHA抗原10μg(コントロール)、又はSFBで修飾してから実施例1の化合物2と複合体化したHA抗原を皮下注射することにより免疫化した。共有結合により複合体化した生成物は、実施例2に述べた手順にしたがって10倍のモル過剰量の化合物1をHA−SFBに加えることによって調製した。最初の免疫化の2週間後及び4週間後に、同じ組み合わせによってマウスを追加免疫した。最後の追加免疫の3週間後及び12週間後に再び、マウスから採血してHA特異的抗体の抗体価を測定した。この測定は、HAをコーティングしたマイクロタイタープレート中で標準的な血清ELISAにより、血清試料を連続希釈することにより行った。抗体のデータは、エンドポイント(ベースラインの2倍)が得られた血清の希釈度として示したものであり、1群当たり5匹のマウスについての幾何平均である。免疫反応のTH1への偏りの指数として、HA特異的な全IgG以外に、HA特異的なIgG1及びIgG2aのサブタイプを測定した。実験結果を表3に示す。
乾燥ジクロロメタン(0.5mL)に溶解したCA(PEG)12((式H2N−CH2CH2−(OCH2CH2)12−CO2H)MW=617.7、サーモ・サイエンティフィック社(Thermo Scientific)(イリノイ州ロックフォード)より販売されるもの、115mg)、N−スクシンイミジル−4−ホルミルベンゾエート(乾燥ジクロロメタン(0.5mL)に52mgを溶解したもの;イー・エム・ディー・ケミカルズ社(EMD Chemicals)(ニュージャージー州ギブスタウン)より販売されるもの)、乾燥トリエチルアミン(52μL)、及び触媒量のDMAPを窒素雰囲気下で加え合わせた。反応液を3時間撹拌した後、ジクロロメタン(25mL)で希釈した。有機画分を0.1Mリン酸ナトリウム(2×10mL)、次いで食塩水で洗浄した。有機画分を硫酸ナトリウム上で乾燥し、濾過してから減圧下で濃縮した。水性洗浄画分を加え合わせ、ジクロロメタンで数回に分けて抽出した。次いで、水性画分を希塩酸により約pH 2まで酸性化し、ジクロロメタンで更に2回抽出した。有機抽出液を加え合わせ、硫酸ナトリウム上で乾燥し、減圧下で濃縮した。得られた物質を、最初の抽出から得られた物質と加え合わせ、シリカゲルの細いカラムを使用して精製した。水で飽和させた10〜25%メタノール/クロロホルムで溶出し、58mgのアミド生成物を無色の固体として得た。1H NMR(クロロホルム−d,500MHz)δ 10.08(s,1H),8.00(d,J=8.2Hz,2H),7.95(d,J=8.4Hz,2H),7.19(m,1H),3.77(t,J=6.1Hz,2H),3.70−3.60(m,48H),2.60(t,J=6.1Hz,2H)。
パートAで得られた物質を、乾燥N,N−ジメチルホルムアミド(0.5mL)及び乾燥ピリジン(0.5mL)に溶解した。O−(N−スクシンイミジル)−1,1,3,3−テトラメチルウロニウムテトラフルオロボレート(TSTU;46mg;シグマ・アルドリッチ社(Sigma-Aldrich)(ミズーリ州セントルイス)より販売されるもの)を加え、反応液を窒素雰囲気下で3時間撹拌した。溶媒の大部分を減圧下で除去した。得られた物質をクロロホルム(25mL)及びメタノール(5mL)に溶解し、分液漏斗に入れた。緩衝溶液(水酸化ナトリウムによりpH 7.5に調整した0.10M塩化ナトリウム、0.05Mリン酸ナトリウム、1.0mM EDTAの溶液10mL)を加え、混合物を2時間振盪した。有機画分を回収し、更なる量の緩衝溶液(10mL)、水(3×10mL)、及び食塩水で順次洗浄した。有機画分を硫酸ナトリウム上で乾燥し、濾過してから、減圧下で濃縮して55mgの化合物3を無色のシロップ状物として得た。1H NMR(クロロホルム−d,500MHz)δ 10.08(s,1H),7.99(d,J=8.2Hz,2H),7.95(d,J=8.1Hz,2H),7.10(m,1H),3.85(t,J=6.5Hz,2H),3.70−3.60(m,48H),2.90(t,J=6.9Hz,2H)2.84(brs,4H)。
実施例5は、ジメチルスルホキシド(DMSO)に溶解した化合物3を10倍のモル過剰量でHAに加える改変を行って実施例2の方法にしたがって調製し、化合物3で修飾されたHA(HA−化合物3として表される)を得た。
Claims (17)
- Pがアミノ基である、請求項1に記載の化合物又はその塩。
- nが0である、請求項1又は2に記載の化合物又はその塩。
- R2が、メチル、エチル、プロピル、ブチル、エトキシメチル、メトキシメチル、エチルアミノメチル、又は2−メトキシエチルである、請求項1〜3のいずれか一項に記載の化合物又はその塩。
- Xが−O−C3〜8アルキレンである、請求項1〜4のいずれか一項に記載の化合物又はその塩。
- XがC3〜8アルキレンである、請求項1〜4のいずれか一項に記載の化合物又はその塩。
- 請求項1〜7のいずれか一項に記載の化合物又はその塩とアルデヒド結合抗原との反応生成物を含む複合体。
- 前記アルデヒド結合抗原がアルデヒド結合タンパク質である、請求項8に記載の複合体。
- 前記反応生成物を与えるため、前記アルデヒド結合タンパク質に対する前記化合物又はその塩の比が、30:1〜1:3の範囲である、請求項9に記載の複合体。
- 前記アルデヒド結合抗原がアルデヒド結合脂質である、請求項8に記載の複合体。
- 下式:
Xは、場合により−O−によって分断されるか又は終端する8個以下の炭素原子を有するアルキレンであり、
R2は、水素、アルキル、アルコキシアルキレニル、アルキルアミノアルキレニル、又はヒドロキシアルキレニルであり、
Aは、CH又はNであり、
Rは、ハロゲン、ヒドロキシル、アルキル、ハロアルキル、又はアルコキシであり、
nは、0〜4の整数であり、
Zは、結合又は−C(O)−NH−(CH2CH2O)p−CH2CH2−(式中、pは1〜50の範囲である)であり、
N*により示される窒素原子は、抗原と共有結合する。]
により表される少なくとも1つのセグメントを有する、抗原の複合体、
又は、薬学的に許容されるその塩。 - 薬学的に許容される担体、及び請求項8〜12のいずれか一項に記載の複合体の有効量を含む、医薬組成物。
- 動物にワクチン接種するための方法であって、請求項8〜12のいずれか一項に記載の複合体の有効量、又は請求項13に記載の医薬組成物を前記動物に投与することを含む方法。
- 動物においてサイトカイン生合成を誘導するための方法であって、請求項8〜12のいずれか一項に記載の複合体の有効量、又は請求項13に記載の医薬組成物を前記動物に投与することを含む方法。
- 請求項1〜7のいずれか一項に記載の化合物、アルデヒド結合抗原、及び薬学的に許容される担体を含む組成物。
- 複合体を調製するための方法であって、
Pが保護されたアミノ基である請求項1に記載の化合物又はその塩、アルデヒド結合抗原、及び担体を、前記保護されたアミノ基が脱保護され、前記複合体が形成されるような条件下で加え合わせることを含む方法。
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JP6415979B2 (ja) | 2018-10-31 |
EP2718292A1 (en) | 2014-04-16 |
EP3366311A1 (en) | 2018-08-29 |
CA2838023C (en) | 2019-08-13 |
JP2017160220A (ja) | 2017-09-14 |
CN103582640B (zh) | 2015-11-25 |
MX355623B (es) | 2018-04-25 |
CA2838023A1 (en) | 2012-12-06 |
EP2718292A4 (en) | 2014-10-15 |
AU2012261959B2 (en) | 2015-12-03 |
US9107958B2 (en) | 2015-08-18 |
JP2017160219A (ja) | 2017-09-14 |
AU2012261959A1 (en) | 2013-12-19 |
US20150352218A1 (en) | 2015-12-10 |
ZA201309687B (en) | 2015-05-27 |
BR112013031039A2 (pt) | 2016-11-29 |
US10406142B2 (en) | 2019-09-10 |
BR112013031039B1 (pt) | 2020-04-28 |
JP6430574B2 (ja) | 2018-11-28 |
US20170173164A1 (en) | 2017-06-22 |
EP2718292B1 (en) | 2018-03-14 |
US20140286988A1 (en) | 2014-09-25 |
EP3153180A1 (en) | 2017-04-12 |
EP3366311B1 (en) | 2020-02-26 |
MX2013014145A (es) | 2014-01-31 |
US9585968B2 (en) | 2017-03-07 |
CN103582640A (zh) | 2014-02-12 |
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