JP2017524942A - デバイス内部に配置されたカートリッジの機械的完全性を試験するための方法、構成、および薬物送達デバイス - Google Patents
デバイス内部に配置されたカートリッジの機械的完全性を試験するための方法、構成、および薬物送達デバイス 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、抗体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。
11 バレル
12 近位端
13 ピストン
14 遠位端
15 シール
16 キャップ
17 セプタム
18 ネック部分
19 ショルダ部分
20 薬物送達デバイス
21 ハウジング
22 貫通口
23 デバイス構成要素
24 デバイス構成要素
25 デバイス構成要素
26 デバイス構成要素
27 デバイス構成要素
28 デバイス構成要素
30 プローブ
32 音響信号
34 センサ
40 試験装置
42 プロセッサ
44 記憶装置
46 入出力ポート
50 直接的結合
52 間接的結合
60 音響応答
61 ピーク
62 標準応答
63 ピーク
64 ピーク
110 薬物送達デバイス
112 本体
114 カートリッジホルダ
116 検査窓
120 ソケット
122 用量ダイヤル
124 用量ボタン
126 駆動機構
Claims (15)
- 薬剤を含み、薬物送達デバイス(20)内部に配置されたカートリッジ(10)の機械的完全性を試験する方法であって、
カートリッジ(10)を音響的に刺激する工程と、
音響刺激(32)に対するカートリッジ(10)の音響応答(60)を測定する工程と、
音響応答(60)を無傷のカートリッジ(10)の標準応答(62)と比較する工程と、
該比較に基づいて、カートリッジ(10)の機械的完全性を決定する工程と
を含む前記方法。 - 少なくとも音響信号(32)を放出するためのプローブ(30)は、カートリッジ(10)を直接音響的に刺激するためにカートリッジ(10)と直接接触する請求項1に記載の方法。
- カートリッジ(10)と直接機械的に接触する薬物送達デバイス(20)のデバイス構成要素(23、24、25、26、27、28)は、カートリッジ(10)を間接的に音響的に刺激するためのプローブ(30)と結合される請求項1または2に記載の方法。
- プローブ(30)は、薬物送達デバイスのハウジング(21)と結合され、該ハウジングは、カートリッジ(10)と直接機械的に接触するデバイス構成要素(23、24、25、26、27、28)に音響的に結合される請求項3に記載の方法。
- 音響刺激は、異なる周波数の一連の音響信号(32)を放出することを含む請求項1〜4のいずれか1項に記載の方法。
- 音響応答の比較は、測定された音響応答のパワースペクトルに基づいて、および無傷のカートリッジ(10)の標準応答のパワースペクトルに基づいて行われる請求項1〜5のいずれか1項に記載の方法。
- 液体薬剤を投与するための薬物送達デバイスであって、
ハウジング(21)と、
薬剤を充填され、ハウジング(21)内部に配置されたカートリッジ(10)と、
音響信号(32)を放出するためにプローブ(30)によってデバイスの外部からカートリッジ(10)を音響的に刺激するための、直接的結合(50)および間接的結合(52)の少なくとも一方と
を含む前記薬物送達デバイス。 - 直接的結合(50)は、プローブ(30)を受け、該プローブ(30)をカートリッジ(10)と直接接触させるために、ハウジング(21)に貫通口(22)を含む請求項7に記載の薬物送達デバイス。
- 間接的結合(52)は、カートリッジ(10)と直接的または間接的に接触し、ハウジング(21)に音響的に結合された少なくとも1つのデバイス構成要素(23、24、25、26、27、28)を含む請求項7または8に記載の薬物送達デバイス。
- 間接的結合(52)は、ハウジング(21)内部のカートリッジ(10)のための取付部を形成する請求項7〜9のいずれか1項に記載の薬物送達デバイス。
- 間接的結合(52)は、カートリッジ(10)と直接的に接触し、ハウジング(21)と直接的または間接的に結合する、またはハウジング(21)を通って延びるもしくは該ハウジングの外部に延びるデバイス構成要素(28)と直接的または間接的に結合する、少なくとも1つのデバイス構成要素(23)を含む請求項7〜10のいずれか1項に記載の薬物送達デバイス。
- 薬剤を含み、薬物送達デバイス(20)内部に配置されたカートリッジ(10)の完全性を試験するための試験装置であって、
カートリッジ(10)を音響的に刺激するためのプローブ(30)と、
カートリッジ(10)の音響応答(60)を測定するためのセンサ(34)と、
音響応答(60)を無傷のカートリッジ(10)の標準応答(62)と比較するため、および該比較に基づいて、カートリッジ(10)の機械的完全性を決定するためのプロセッサ(42)と
を含む前記試験装置。 - プローブ(30)は、異なる周波数の一連の音響信号によってカートリッジ(10)を刺激するように動作可能である請求項12に記載の試験装置。
- プロセッサ(42)は、カートリッジの音響応答(60)のパワースペクトルを生成するように動作可能である請求項12または13に記載の試験装置。
- プローブ(30)は、音響信号(32)を放出するように動作可能であり、プローブ(30)は、カートリッジの音響応答(60)を検出および捕捉するように動作可能である請求項12〜14のいずれか1項に記載の試験装置。
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