JP2016514589A - 投薬速度制御機構および注射デバイス - Google Patents
投薬速度制御機構および注射デバイス Download PDFInfo
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- RWHUEXWOYVBUCI-ITQXDASVSA-N nafarelin Chemical compound C([C@@H](C(=O)N[C@H](CC=1C=C2C=CC=CC2=CC=1)C(=O)N[C@@H](CC(C)C)C(=O)N[C@@H](CCCN=C(N)N)C(=O)N1[C@@H](CCC1)C(=O)NCC(N)=O)NC(=O)[C@H](CO)NC(=O)[C@H](CC=1C2=CC=CC=C2NC=1)NC(=O)[C@H](CC=1NC=NC=1)NC(=O)[C@H]1NC(=O)CC1)C1=CC=C(O)C=C1 RWHUEXWOYVBUCI-ITQXDASVSA-N 0.000 description 1
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- 125000002924 primary amino group Chemical group [H]N([H])* 0.000 description 1
- 125000001500 prolyl group Chemical group [H]N1C([H])(C(=O)[*])C([H])([H])C([H])([H])C1([H])[H] 0.000 description 1
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- VXKHXGOKWPXYNA-PGBVPBMZSA-N triptorelin Chemical compound C([C@@H](C(=O)N[C@H](CC=1C2=CC=CC=C2NC=1)C(=O)N[C@@H](CC(C)C)C(=O)N[C@@H](CCCNC(N)=N)C(=O)N1[C@@H](CCC1)C(=O)NCC(N)=O)NC(=O)[C@H](CO)NC(=O)[C@H](CC=1C2=CC=CC=C2NC=1)NC(=O)[C@H](CC=1N=CNC=1)NC(=O)[C@H]1NC(=O)CC1)C1=CC=C(O)C=C1 VXKHXGOKWPXYNA-PGBVPBMZSA-N 0.000 description 1
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Abstract
Description
ここで、一実施形態において、薬学的に活性な化合物は、最大1500Daまでの分子量を有し、および/または、ペプチド、タンパク質、多糖類、ワクチン、DNA、RNA、酵素、アンチハウジングもしくはそのフラグメント、ホルモンもしくはオリゴヌクレオチド、または上述の薬学的に活性な化合物の混合物であり、
ここで、さらなる実施形態において、薬学的に活性な化合物は、糖尿病、または糖尿病性網膜症などの糖尿病関連の合併症、深部静脈血栓塞栓症または肺血栓塞栓症などの血栓塞栓症、急性冠症候群(ACS)、狭心症、心筋梗塞、がん、黄斑変性症、炎症、枯草熱、アテローム性動脈硬化症および/または関節リウマチの処置および/または予防に有用であり、
ここで、さらなる実施形態において、薬学的に活性な化合物は、糖尿病または糖尿病性網膜症などの糖尿病に関連する合併症の処置および/または予防のための少なくとも1つのペプチドを含み、
ここで、さらなる実施形態において、薬学的に活性な化合物は、少なくとも1つのヒトインスリンもしくはヒトインスリン類似体もしくは誘導体、グルカゴン様ペプチド(GLP−1)もしくはその類似体もしくは誘導体、またはエキセンジン−3もしくはエキセンジン−4もしくはエキセンジン−3もしくはエキセンジン−4の類似体もしくは誘導体を含む。
H−(Lys)4−desPro36,desPro37エキセンジン−4(1−39)−NH2、
H−(Lys)5−desPro36,desPro37エキセンジン−4(1−39)−NH2、
desPro36エキセンジン−4(1−39)、
desPro36[Asp28]エキセンジン−4(1−39)、
desPro36[IsoAsp28]エキセンジン−4(1−39)、
desPro36[Met(O)14,Asp28]エキセンジン−4(1−39)、
desPro36[Met(O)14,IsoAsp28]エキセンジン−(1−39)、
desPro36[Trp(O2)25,Asp28]エキセンジン−4(1−39)、
desPro36[Trp(O2)25,IsoAsp28]エキセンジン−4(1−39)、
desPro36[Met(O)14,Trp(O2)25,Asp28]エキセンジン−4(1−39)、
desPro36[Met(O)14Trp(O2)25,IsoAsp28]エキセンジン−4(1−39);または
desPro36[Asp28]エキセンジン−4(1−39)、
desPro36[IsoAsp28]エキセンジン−4(1−39)、
desPro36[Met(O)14,Asp28]エキセンジン−4(1−39)、
desPro36[Met(O)14,IsoAsp28]エキセンジン−(1−39)、
desPro36[Trp(O2)25,Asp28]エキセンジン−4(1−39)、
desPro36[Trp(O2)25,IsoAsp28]エキセンジン−4(1−39)、
desPro36[Met(O)14,Trp(O2)25,Asp28]エキセンジン−4(1−39)、
desPro36[Met(O)14,Trp(O2)25,IsoAsp28]エキセンジン−4(1−39)、
(ここで、基−Lys6−NH2が、エキセンジン−4誘導体のC−末端に結合していてもよい);
desPro36エキセンジン−4(1−39)−Lys6−NH2(AVE0010)、
H−(Lys)6−desPro36[Asp28]エキセンジン−4(1−39)−Lys6−NH2、
desAsp28Pro36,Pro37,Pro38エキセンジン−4(1−39)−NH2、
H−(Lys)6−desPro36,Pro38[Asp28]エキセンジン−4(1−39)−NH2、
H−Asn−(Glu)5desPro36,Pro37,Pro38[Asp28]エキセンジン−4(1−39)−NH2、
desPro36,Pro37,Pro38[Asp28]エキセンジン−4(1−39)−(Lys)6−NH2、
H−(Lys)6−desPro36,Pro37,Pro38[Asp28]エキセンジン−4(1−39)−(Lys)6−NH2、
H−Asn−(Glu)5−desPro36,Pro37,Pro38[Asp28]エキセンジン−4(1−39)−(Lys)6−NH2、
H−(Lys)6−desPro36[Trp(O2)25,Asp28]エキセンジン−4(1−39)−Lys6−NH2、
H−desAsp28Pro36,Pro37,Pro38[Trp(O2)25]エキセンジン−4(1−39)−NH2、
H−(Lys)6−desPro36,Pro37,Pro38[Trp(O2)25,Asp28]エキセンジン−4(1−39)−NH2、
H−Asn−(Glu)5−desPro36,Pro37,Pro38[Trp(O2)25,Asp28]エキセンジン−4(1−39)−NH2、
desPro36,Pro37,Pro38[Trp(O2)25,Asp28]エキセンジン−4(1−39)−(Lys)6−NH2、
H−(Lys)6−desPro36,Pro37,Pro38[Trp(O2)25,Asp28]エキセンジン−4(1−39)−(Lys)6−NH2、
H−Asn−(Glu)5−desPro36,Pro37,Pro38[Trp(O2)25,Asp28]エキセンジン−4(1−39)−(Lys)6−NH2、
H−(Lys)6−desPro36[Met(O)14,Asp28]エキセンジン−4(1−39)−Lys6−NH2、
desMet(O)14,Asp28Pro36,Pro37,Pro38エキセンジン−4(1−39)−NH2、
H−(Lys)6−desPro36,Pro37,Pro38[Met(O)14,Asp28]エキセンジン−4(1−39)−NH2、
H−Asn−(Glu)5−desPro36,Pro37,Pro38[Met(O)14,Asp28]エキセンジン−4(1−39)−NH2;
desPro36,Pro37,Pro38[Met(O)14,Asp28]エキセンジン−4(1−39)−(Lys)6−NH2、
H−(Lys)6−desPro36,Pro37,Pro38[Met(O)14,Asp28]エキセンジン−4(1−39)−(Lys)6−NH2、
H−Asn−(Glu)5desPro36,Pro37,Pro38[Met(O)14,Asp28]エキセンジン−4(1−39)−(Lys)6−NH2、
H−Lys6−desPro36[Met(O)14,Trp(O2)25,Asp28]エキセンジン−4(1−39)−Lys6−NH2、
H−desAsp28,Pro36,Pro37,Pro38[Met(O)14,Trp(O2)25]エキセンジン−4(1−39)−NH2、
H−(Lys)6−desPro36,Pro37,Pro38[Met(O)14,Asp28]エキセンジン−4(1−39)−NH2、
H−Asn−(Glu)5−desPro36,Pro37,Pro38[Met(O)14,Trp(O2)25,Asp28]エキセンジン−4(1−39)−NH2、
desPro36,Pro37,Pro38[Met(O)14,Trp(O2)25,Asp28]エキセンジン−4(1−39)−(Lys)6−NH2、
H−(Lys)6−desPro36,Pro37,Pro38[Met(O)14,Trp(O2)25,Asp28]エキセンジン−4(S1−39)−(Lys)6−NH2、
H−Asn−(Glu)5−desPro36,Pro37,Pro38[Met(O)14,Trp(O2)25,Asp28]エキセンジン−4(1−39)−(Lys)6−NH2;
または前述のいずれか1つのエキセンジン−4誘導体の薬学的に許容される塩もしくは溶媒和化合物
から選択される。
Claims (12)
- 注射デバイスで使用するための投薬速度制御機構であって、
設定用量の投薬を開始するように変位可能な解放ボタン(71)と、
用量投薬中にパワーリザーバ(90)によって駆動される第1の構成要素部材(42)と、
用量投薬中に静止している第2の構成要素部材(12)とを有し、
解放ボタン(71)の位置に応じて用量投薬中に第1の構成要素部材(42)を遅くする摩擦手段(120)を含む前記速度制御機構。 - 摩擦手段(120)は、第1の構成要素部材と第2の構成要素部材との間に作用する多板クラッチシステムを含み、該多板クラッチシステムは、ばね(125)と、第1の構成要素部材(42)に回転方向に拘束される少なくとも1つの第1のクラッチ板(121)と、第2の構成要素部材(12)に回転方向に拘束される少なくとも1つの第2のクラッチ板(122)とを含む、請求項1に記載の投薬速度制御機構。
- 多板クラッチシステムは、第2の構成要素部材(12)に回転方向に拘束され、かつ少なくとも1つの第2のクラッチ板(122)に回転方向に拘束されるケージ(123)をさらに含み、ばね(125)は、ケージ(123)を第1の構成要素部材(42)の方へ付勢する、請求項2に記載の投薬速度制御機構。
- 第1の構成要素部材(42)は、第2の構成要素部材(12)に対して変位可能であり、解放ボタン(71)は、第1の構成要素部材(42)を同伴するように第1の構成要素部材(42)に作用する、請求項2または3に記載の投薬速度制御機構。
- 注射デバイスであって、
ハウジング(10)と、
投薬すべき用量を設定するように動作可能な用量設定手段(60、70)と、
設定用量の投薬を開始するように変位可能な解放ボタン(71)と、
用量投薬中にドライバ(40)に作用するパワーリザーバ(90)と
を含み、
ここで、請求項1〜4のいずれか1項に記載の投薬速度制御機構をさらに含み、第1の構成要素部材(42)はドライバ(40)の一部であり、第2の構成要素部材(12)はハウジング(10)または用量設定手段(60、70)の一部である、前記注射デバイス。 - ドライバ(40)に連結されたピストンロッド(30)と、用量設定中にはドライバ(40)の回転を防止し、用量投薬中にはドライバ(40)の回転を可能にする解放クラッチ(15、45)とをさらに含み、ここで、ピストンロッド(30)は、ハウジング(10)内に第1の長手方向軸(I)を画成し、用量設定手段(60、70)は、第2の長手方向軸(II)を画成し、第1の長手方向軸(I)は、第2の長手方向軸(II)に対して平行であり、そこから隔置される、請求項5に記載の注射デバイス。
- パワーリザーバは、第1の長手方向軸(I)上に位置する第1のスプール(91)に取り付けられる第1の端部と、第2の長手方向軸(II)上に位置する第2のスプール(92)に取り付けられる第2の端部とを有する逆巻きのゼンマイばね(90)を含み、スプールの一方(92)は、ドライバ(40)に連結される、請求項5〜6のいずれか1項に記載の注射デバイス。
- ドライバ(40)は、第1の長手方向軸(I)の周りを回転可能であり、ピストンロッド(30)に直接連結される駆動管(43)と、第2の長手方向軸(II)の周りを回転可能であり、パワーリザーバ(90)に連結される駆動スリーブ(41、42)とを含む、請求項6または7に記載の注射デバイス。
- 用量設定中および/または用量投薬中に可聴および/または触覚の第1のフィードバックを生じさせる少なくとも1つのクリッカ(100、73;18、46)と、用量投薬中でデバイスが最小用量(ゼロ)位置に近接する点に到達したときに第1のフィードバックとは別個の可聴および/または触覚の第2のフィードバックを生じさせる少なくとも1つのさらなるクリッカ(82、103)とをさらに含む、請求項5〜8のいずれか1項に記載の注射デバイス。
- 最大設定可能用量および最小設定可能用量を画成するリミッタ機構(10、80)、ならびに/またはカートリッジ(20)内に残っている液体の量を超過する用量の設定を防止する最終用量保護機構(40、50、60)を含む、請求項5〜9のいずれか1項に記載の注射デバイス。
- 用量設定前後のデバイスの長さが同じである、請求項5〜10のいずれか1項に記載の注射デバイス。
- 薬剤を収容するカートリッジ(20)をさらに含む、請求項5〜11のいずれか1項に記載の注射デバイス。
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FR3036967B1 (fr) * | 2015-06-05 | 2021-10-01 | Aptar France Sas | Autoinjecteur |
FR3036965B1 (fr) * | 2015-06-05 | 2021-10-01 | Aptar France Sas | Autoinjecteur |
DE202015006845U1 (de) | 2015-09-30 | 2016-01-15 | Haselmeier Ag | Injektionsgerät |
DE202015006842U1 (de) | 2015-09-30 | 2016-01-15 | Haselmeier Ag | Injektionsgerät |
DE202015006844U1 (de) * | 2015-09-30 | 2016-01-15 | Haselmeier Ag | Injektionsgerät |
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CN118079140B (zh) * | 2024-04-17 | 2024-06-25 | 淄博侨森医疗用品股份有限公司 | 一种注射速度可控的注射装置 |
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