JP6411328B2 - T細胞受容体欠損t細胞組成物 - Google Patents
T細胞受容体欠損t細胞組成物 Download PDFInfo
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Description
本出願が2012年4月19日に提出された米国特許出願第13/502,978号の一部継続出願であり、2010年10月29日に提出された国際特許出願第PCT/US2010/54846号の国内段階の出願であり、2009年10月29日に提出された米国特許仮出願番号第61/255,980号の優先権の利益を主張し、その開示は参照によりその全体が本明細書に取り込まれる。
本発明は、それ自体として変化するように、特定の方法論、プロトコル、細胞株、動物種または属、および記載の試薬に限定されないことを理解されたい。本明細書に使用する用語は、特定の実施形態を記述する目的のためだけにあり、添付の請求項によってのみ限定される本発明の範囲を限定することを意図しないことも理解されたい。
様々なアプローチを使用して、本発明の機能的TCRの発現を安定的に欠損しているT細胞を生成してもよい。T細胞を内部移行し、ソートし、複合体としてのT細胞受容体全体を、休止しているT細胞内で約10時間の半減期、刺激を受けたT細胞内で3時間の半減期で、分解する(von Essen、M.ら2004.J.Immunol.173:384−393)。TCR複合体の適切な機能は、TCR複合体を構成するタンパク質の適切な化学量論比を必要とする。TCR機能はまた、ITAMモチーフを伴う2つの機能性TCRゼータタンパク質も必要とする。MHCペプチドリガンドの会合のときのTCRの活性化は、同T細胞上のいくつかのTCRの会合を必要とし、全てが適切にシグナル伝達をする。そのため、TCR複合体は適切に付随しないタンパク質で不安定になり、または適切にシグナル伝達しない場合、T細胞は、分子応答を開始するのに十分なだけ活性化しない。
表1
本発明の別の実施形態では、機能的TCR発現が安定的に欠損しているT細胞は、機能的、非TCR受容体を発現する。当該実施形態では、(前述のように)TCR機能の除去は、1つ以上の外因性非TCR標的受容体(例えば、キメラNKG2D(chNKG2D)またはFv分子等)とさらに組み合わされる。当該実施形態は、適切な標的受容体が使用された場合に、任意の種類の癌である患者を将来、治療するために保存することのできる「普遍的な」細胞生成物を提供する。
本発明は、また、本明細書に記載のTCR欠損T細胞、その単離された個体群、または同細胞を含む治療的組成物を使用して、疾患および障害を低減若しくは寛解、または予防若しくは治療する方法に関する。ある実施形態では、本明細書に記載のTCR欠損T細胞、その単離された個体群、または同細胞を含む治療的組成物を使用して、癌、感染症、1つ以上の自己免疫障害、放射線疾患を低減若しくは寛解、または予防若しくは治療し、または移植手術を受けている対象の移植片対宿主病(GVHD)または移植拒絶を予防若しくは治療する。
本発明のある実施形態では、TCR欠損T細胞を約106〜1011細胞個の量で、レシピエントの対象に投与する。本発明の好ましい実施形態では、TCR欠損T細胞を約108〜109細胞個の量で、レシピエントの対象に投与する。本発明の好ましい実施形態では、TCR欠損T細胞を、16週間未満毎に1回、8週間未満毎に1回、4週間未満毎に1回等の26週間未満毎に1回の頻度で、レシピエントの対象に投与する。
〔出願時の特許請求の範囲〕
〔請求項1〕
単離されたT細胞受容体(TCR)欠損T細胞を生成させる方法であって、TCR複合体の要素の発現を減少し、またはブロックすることによって、TCR複合体を不安定にするTCR抑制分子(TIM)をT細胞中で発現させることを含み、当該細胞はさらに操作されて、キメラの腫瘍標的受容体を発現するものであってもよい、方法。
〔請求項2〕
前記TCR欠損T細胞は、TCR複合体の少なくとも1つの要素の細胞表面発現を欠いている、請求項1に記載の方法。
〔請求項3〕
前記TCR欠損T細胞は、TCR複合体の全要素の細胞表面発現を欠いている、請求項1に記載の方法。
〔請求項4〕
前記TCR欠損T細胞は、機能的TCRを発現しない、請求項1に記載の方法。
〔請求項5〕
TCR欠損T細胞中で少なくとも1つの機能的非TCR受容体を発現させることをさらに含む、請求項1に記載の方法。
〔請求項6〕
少なくとも1つの機能的非TCR受容体は、シグナリングドメインに結合されるリガンド結合ドメインを含むキメラ受容体である、請求項5に記載の方法。
〔請求項7〕
リガンド結合ドメインはNKG2D、NKG2A、NKG2C、NKG2F、LLT1、AICL、CD26、NKRP1、NKp30、NKp44、NKp46、CD244(2B4)、DNAM−1、またはNKp80から得られる、請求項6に記載の方法。
〔請求項8〕
リガンド結合ドメインは抗腫瘍キメラ抗原受容体または抗腫瘍抗体から得られる、請求項6に記載の方法。
〔請求項9〕
抗腫瘍抗体は、抗Her2neu抗体または抗EGFR抗体から得られる、請求項8に記載の方法。
〔請求項10〕
シグナリングドメインはCD3ゼータ、Dap10、CD28、41BB、またはCD40Lから得られる、請求項6に記載の方法。
〔請求項11〕
少なくとも1つの機能的非TCR受容体はMIC−A、MIC−B、Her2neu、EGFR、メソテリン、CD38、CD20、CD19、PSA、MUC1、MUC2、MUC3A、MUC3B、MUC4、MUC5AC、MUC5B、MUC6、MUC7、MUC8、MUC12、MUC13、MUC15、MUC16、MUC17、MUC19、MUC20、エストロゲン受容体、プロゲステロン受容体、RON、またはULBP/RAET1ファミリーの1つ以上のメンバーを結合する、請求項5に記載の方法。
〔請求項12〕
ULBP/RAET1ファミリーの1つ以上のメンバーは、ULBP1、ULBP2、ULBP3、ULBP4、ULBP5、およびULBP6を包含する、請求項11に記載の方法。
〔請求項13〕
少なくとも1つの機能的非TCR受容体は、感染された細胞の表面に認められるウイルス抗原またはウイルス誘導抗原に結合する、請求項5に記載の方法。
〔請求項14〕
ウイルスは、HCMV、HIV、EBV、HBV、HCV、エボラウイルス、ハンタウイルス、またはVSVから選択される、請求項13に記載の方法。
〔請求項15〕
T細胞はヒトT細胞である、請求項1に記載の方法。
〔請求項16〕
前記T細胞中で優性な選択マーカーを発現させることをさらに含む、請求項1に記載の方法。
〔請求項17〕
TIMは低分子ヘアピン型RNAである、請求項1に記載の方法。
〔請求項18〕
TIMはドミナントネガティブ阻害タンパク質である、請求項1に記載の方法。
〔請求項19〕
ドミナントネガティブ阻害タンパク質は、シグナルモチーフを欠損し、その他のTCR要素との結合を妨害し、リガンド結合を妨害し、または抑制性シグナルモチーフを含むように修飾される少なくとも1つの全長または短縮TCR要素をコードするポリヌクレオチドを組み込んだミニ遺伝子によってコードされる、請求項18に記載の方法。
〔請求項20〕
キメラ受容体はNKG2Dからのリガンド結合ドメイン、およびCD3-ゼータからのシグナリングドメインを含む、請求項6に記載の方法。
〔請求項21〕
キメラ受容体はchNKG2Dである、請求項20に記載の方法。
〔請求項22〕
異なるHLAハプロタイプを有するバンクTCR欠損T細胞を生成させる方法であって、
特定のHLAハプロタイプを有する単離されたT細胞のプールを得て、
TCR複合体の要素の発現を減少させ、またはブロックすることによって、TCR複合体を不安定にする特定のHLAハプロタイプを有するT細胞中でTCR抑制分子(TIM)を発現させ、および
特定のHLAハプロタイプを有するTCR欠損T細胞のプールと、別の特定のHLAハプロタイプを有するTCR欠損T細胞の別のプールと組み合わせることを含み、当該T細胞バンクは、特定のHLAタイプのTCR欠損T細胞をそれぞれ含む、異なるT細胞プールを含む、方法。
〔請求項23〕
T細胞バンクは少なくとも10個の異なるHLA組織タイプのT細胞を含む、請求項22に記載の方法。
〔請求項24〕
T細胞バンクは少なくとも100個の異なるHLA組織タイプのT細胞を含む、請求項22に記載の方法。
〔請求項25〕
T細胞は、T細胞受容体複合体の少なくとも1つの要素の細胞表面発現を安定に欠損する、請求項22に記載の方法。
〔請求項26〕
TCR抑制分子は、TIM1、2、3、4、5、6、7、8、9、10、11、12、13、14、15、16、17、18、19またはその組み合わせの1つである、請求項21に記載の方法。
〔請求項27〕
前記TCR抑制分子は、配列番号80、81、82、83、84、85、86、87、88、89、90、91、92、93、94、95、96、97、98、99、100若しくは101、またはその断片若しくは変異体の1つから選択される配列を有する、請求項26に記載の方法。
〔請求項28〕
抑制性シグナルモチーフはKIRポリペプチドを含む、請求項1または22に記載の方法。
〔請求項29〕
KIR2DL1からの抑制シグナルを含むように改変されたCD3-ゼータを含むドミナントネガティブ阻害タンパク質を使用して、TCR発現が抑制される、請求項1または22に記載の方法。
〔請求項30〕
少なくとも2つのTCR抑制分子の組み合わせを使用して、TCR発現が抑制される、請求項1または22に記載の方法。
〔請求項31〕
TIM7およびTIM8の組み合わせを使用して、TCR発現が抑制される、請求項1または22に記載の方法。
〔請求項32〕
得られるT細胞を患者に投与する、請求項1〜29のいずれか1つに記載の方法。
〔請求項33〕
治療を受ける患者は癌またはウイルス感染症である、請求項30に記載の方法。
Claims (14)
- 1以上の修飾初代ヒトT細胞を生成させる方法であって、修飾初代ヒトT細胞はヒトドナーから単離された初代ヒトT細胞に由来し、配列番号75、77又は79の短縮CD3−ゼータポリペプチドをコードする少なくとも1つの核酸分子を導入することにより、内因性T細胞受容体(TCR)の発現が低下するように修飾された、修飾初代ヒトT細胞を生成させる方法であり、
該修飾初代ヒトT細胞は、組織適合性のないヒトレシピエントにおける移植片対宿主病(GVHD)反応を、前記少なくとも一つの核酸分子を導入することにより修飾されていない同じヒトドナーから単離された初代ヒトT細胞により誘発されるGVHD反応と比較して、誘発しないか又は低減させる、
前記修飾初代ヒトT細胞を生成させる方法。 - 核酸分子は、配列番号77または79の短縮CD3−ゼータポリペプチドをコードする、請求項1に記載の方法。
- 核酸分子は、配列番号76または78の核酸配列を含む、請求項1または請求項2に記載の方法。
- キメラ腫瘍標的受容体を発現するようにT細胞をさらに操作する、請求項1〜3のいずれか1項に記載の方法。
- T細胞表面でのTCR複合体の要素の発現を減少するか又はブロックすることによって、短縮CD3−ゼータポリペプチドはTCR複合体を不安定にする、請求項1〜4のいずれか1項に記載の方法。
- 前記少なくとも一つの核酸分子を導入することにより修飾されていない同じヒトドナーから単離された初代ヒトT細胞と比較して、修飾初代ヒトT細胞が減少したガンマーインターフェロンの発現を誘発することにより、GVHD反応の低減は証明される、請求項1〜5のいずれか1項に記載の方法。
- 前記少なくとも一つの核酸分子を導入することにより修飾されていない同じヒトドナーから単離された初代ヒトT細胞と比較して、修飾初代ヒトT細胞がガンマーインターフェロンの発現の増加を誘発しないことにより、GVHD反応の低減は証明される、請求項1〜5のいずれか1項に記載の方法。
- 修飾初代ヒトT細胞はヒト対象におけるGVHD反応を誘発しない、請求項1〜7のいずれか1項に記載の方法。
- ヒトドナーから単離された初代ヒトT細胞に由来し、配列番号75、77又は79の短縮CD3−ゼータポリペプチドをコードする少なくとも1つの核酸分子を包含する1以上の修飾初代ヒトT細胞であって、
該修飾初代ヒトT細胞は低下した量の内因性T細胞受容体(TCR)を発現し、同じヒトドナーから単離された前記少なくとも一つの核酸分子を包含しない初代ヒトT細胞により誘発される移植片対宿主病(GVHD)反応と比較して、組織適合性のないヒトレシピエントにおけるGVHD反応を誘発しないか又は低減させる、前記修飾初代ヒトT細胞。 - 請求項9に記載の1以上の修飾初代ヒトT細胞を含む医薬組成物。
- 癌の治療剤の製造における、請求項9に記載の修飾初代ヒトT細胞の使用。
- 配列番号77または79の短縮CD3−ゼータポリペプチドをコードする核酸配列を含むベクターであって:
該ベクターを導入されたヒトドナーから単離された初代ヒトT細胞が内因性T細胞受容体(TCR)の発現を低下させることを特徴とする、前記ベクター。 - 短縮CD3−ゼータポリペプチドをコードする核酸配列が配列番号76または78である、請求項12に記載のベクター。
- 配列番号77または79の短縮CD3−ゼータポリペプチドを発現する細胞。
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R250 | Receipt of annual fees |
Free format text: JAPANESE INTERMEDIATE CODE: R250 |
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R250 | Receipt of annual fees |
Free format text: JAPANESE INTERMEDIATE CODE: R250 |