JP6410271B2 - 薬の安全な移送のための配合システムおよび方法 - Google Patents
薬の安全な移送のための配合システムおよび方法 Download PDFInfo
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Description
本出願は、2014年4月25日に出願された米国仮出願第61/984,144号および2013年8月2日に出願された米国仮出願第61/861,680号のそれぞれの利益を主張するものであり、それらの各開示内容全体が参照により本明細書に組み込まれる。
調製システム1000は、最高級の調製システムに統合されるサブシステムを構成する多くの部品を備える。この手法は2つの理由で考案された。すなわち、この手法により、調製システム1000をより早期に開発するためにパーツに分けることができ、製造事例においては、保守、修理およびアップグレードのための「プラグ・アンド・プレイ」動作が可能になる。
調製システム1000の動作は、多くの独立したサブルーチンに依存する。調製システム1000は、注射器「I」、注射器アダプタ11、バイアル「V」およびバイアルアダプタ13のそれぞれ1つを利用して、流体「L」(すなわち、薬など)のバイアル「V」から注射器「I」への移送を実行することができる。このプログラムの流れは、以下の表1のとおりである。
Claims (14)
- 液体および非液体材料のうちの一方を含むバイアルから薬溶液を調製するための自動または半自動の調製システムであって、前記調製システムは、
3つの運動軸を提供するように構成された回転コンベアを備え、前記回転コンベアは、
第1の軸を画定する少なくとも1つの第1のレールと、
前記第1の軸に対して直角に方向づけられた第2の軸を画定する少なくとも1つの第2のレールと、
前記第1の軸および第2の軸のそれぞれに対して直角に方向づけられた第3の軸を画定する少なくとも1つの第3のレールと、
前記第1のレール、前記第2のレールまたは前記第3のレールのうちの少なくとも1つに移動可能に支持され、かつ一連のスプロケットに移動可能に支持された第1のギアベルトと、
前記第1のレール、前記第2のレールまたは前記第3のレールのうちの少なくとも1つに移動可能に支持され、かつ一連のスプロケットに移動可能に支持された第2のギアベルトであって、前記第1のギアベルトと前記第2のギアベルトは、互いに離間され、かつ互いに平行に配置されている、第2のギアベルトと、
前記第1のギアベルトおよび前記第2のギアベルトのうちの少なくとも1つに支持され、かつそれぞれが、注射器、バイアル、注射器アダプタまたはバイアルアダプタを選択的に保持するように構成された少なくとも1つの部品ホルダと、
前記回転コンベアの周りに配置された回転ステーション、移送ステーションおよび重量測定ステーションのうちの少なくとも1つと、
を有する遠隔操作機を備え、
前記回転ステーションは、注射器−バイアルアセンブリを反転および元に戻すように構成されており、
前記移送ステーションは、材料をバイアルから注射器まで移送するように構成されており、かつ
前記重量測定ステーションは、前記注射器、前記バイアルおよび前記注射器−バイアルアセンブリのうちの少なくとも1つの重量を測定するように構成されている調製システム。 - 前記第1のギアベルトは、前記第1のレールによって画定された前記第1の軸と前記第2のレールによって画定された前記第2の軸とによって画定された第1の平面において移動可能である、請求項1に記載の調製システム。
- 前記第2のギアベルトは、前記第1のレールによって画定された前記第1の軸と前記第2のレールによって画定された前記第2の軸とによって画定された第2の平面において移動可能であり、前記第2の平面は、前記第1の平面に平行であり、かつそこから一定の距離で離間されている、請求項2に記載の調製システム。
- 少なくとも1つの部品ホルダは、前記第1の平面と前記第2の平面との間を前記第3の軸に沿って移動可能である、請求項3に記載の調製システム。
- 前記回転コンベアの部品ホルダによって操作可能な少なくとも1つの注射器アダプタであって、それぞれが、
そこを通る内腔を画定する本体部と、
前記本体部の遠位端に接続され、かつその前記内腔を横切って延在するシール部材と、
を備えた注射器アダプタと、
バイアルの首に接続可能であり、かつ前記注射器アダプタの前記本体部を受け入れるように構成された少なくとも1つのバイアルアダプタであって、
前記バイアルの前記首に係合するように構成された少なくとも1つの保持装置を有し、かつその中に配置されたシール部材を有する開口部を画定する基部と、
前記基部から延在し、そこを通る内腔を画定し、前記基部の前記開口部と動作可能に連通し、かつその壁を通る開口部を画定するステムと、
前記ステムの前記内腔内に摺動可能に配置され、前記ステムと液密シールを形成し、移送針がその第1および第2の端部から延びるように前記移送針を支持し、かつ真空針が針シャトル弁の前記第1の端部から延びるように前記真空針を支持する針シャトル弁と、
前記ステムに摺動可能に支持され、かつ前記ステムおよび前記基部と液密接触している真空カップであって、真空室が、前記基部、前記ステムおよび前記真空カップの間の空間に画定されており、前記真空室は、前記ステムの前記壁に形成された前記開口部を通って、前記ステムの前記内腔と流体連通している真空カップと、
を備えたバイアルアダプタと、
をさらに備える、請求項1に記載の調製システム。 - 前記移送針および前記真空針が前記バイアルアダプタの前記基部の前記シール部材を通って延びないように、前記バイアルアダプタの前記針シャトル弁が後退位置にあり、かつ前記真空室の体積が最小であるように前記真空カップが前進位置にあるという第1の状態を有する移送ステーションをさらに備える、請求項5に記載の調製システム。
- 前記移送ステーションは、前記移送針の前記第2の端部が前記本体部の前記シール部材を貫通するように、前記注射器アダプタの前記本体部が前記ステムの前記内腔を通って前進し、かつ前記針シャトル弁が前記ステムの前記内腔を通って前進して、前記バイアルアダプタの前記シール部材を通って前記移送針の前記第1の端部および前記真空針の先端を貫通し、前記真空針を前記ステムの前記壁に形成された前記開口部と流体連通させるという第2の状態を有する、請求項6に記載の調製システム。
- 前記移送ステーションは、前記真空カップを近位位置に移動させ、それにより前記真空室を拡張させ、かつ前記真空針により真空にするという第3の状態を有する、請求項7に記載の調製システム。
- 前記回転コンベアは、注射器アダプタを注射器に接続し、かつ前記組み立てられた注射器および注射器アダプタを、バイアルアダプタが接続されたバイアルまで移送するように構成されている、請求項8に記載の調製システム。
- 前記回転コンベアは、前記注射器に接続された前記注射器アダプタを前記バイアルに接続された前記バイアルアダプタに接続するように構成されている、請求項9に記載の調製システム。
- 部品ホルダは、
第1の顎および第2の顎を含む第1の対の固定および離間された顎と、
第1の顎および第2の顎を含む第2の対の固定および離間された顎と、
を有する把持部を備え、
前記第1の対の顎は、前記第2の対の顎に対して並進可能であり、かつ
前記第1の対の顎の前記第1の顎は、前記第2の対の顎の間に挿入され、かつ前記第2の対の顎の前記第2の顎は、前記第1の対の顎の間に挿入される、
請求項1に記載の調製システム。 - 前記把持部の動作は、
前記第1の対の顎の前記第1の顎と前記第2の対の顎の前記第1の顎との間に位置する第1の把持位置、
前記第1の対の顎の前記第2の顎と前記第2の対の顎の前記第1の顎との間に位置する第2の把持位置、および
前記第1の対の顎の前記第2の顎と前記第2の対の顎の前記第2の顎との間に位置する第3の把持位置で、
部品を把持するための前記第1の対の顎の前記第2の対の顎に対する並進を含む、
請求項11に記載の調製システム。 - 前記第1の対の顎は、1つのラックを支持し、かつ前記第2の対の顎は、1つのラックを支持し、ピニオンにより前記各ラックを相互接続し、前記ピニオンの回転により、前記第1の対の顎および前記第2の対の顎を互いに対して軸方向並進させる、請求項12に記載の調製システム。
- 正しい部品が互いに対して前記回転コンベアの周りで操作されていることを点検および確認するためのエラートラッピング手順をさらに備え、
当該プロセスの特定の段階のために、前記エラートラッピング手順は、前記把持部において期待される部品の公知の寸法を前記把持部内で把持される部品のリアルタイム寸法と比較し、かつ前記部品の公知の期待寸法が前記把持部に存在する前記部品のリアルタイム測定寸法と異なる場合に警報を発する、請求項12に記載の調製システム。
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AU2018256583B2 (en) | 2020-09-10 |
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CA2920199A1 (en) | 2015-02-05 |
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NZ716552A (en) | 2020-02-28 |
NZ755641A (en) | 2021-02-26 |
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CA2920199C (en) | 2018-06-12 |
EP3415136B1 (en) | 2020-10-07 |
AU2018256583A1 (en) | 2018-11-22 |
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EP3415136A3 (en) | 2019-03-06 |
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