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Clinical Evaluation of MDT-2111 in Subjects With Small Aortic Annuli and Symptomatic Severe Aortic Stenosis

2019年10月7日 更新者:Medtronic Cardiovascular

Medtronic MDT-2111 CoreValve Japan 23mm Study

The primary objective of the present trial is to demonstrate the safety and effectiveness of the MDT-2111 in the treatment of symptomatic severe aortic stenosis in subjects with small aortic annuli and deemed difficult for surgical operation.

調査の概要

状態

完了

詳細な説明

The purpose of this trial is to evaluate the effectiveness and safety of the MDT-2111 TAV system in subjects with small annuli and symptomatic severe AS deemed difficult for surgical intervention. The primary endpoint is a composite of functional effectiveness as measured by improvement of at least 1 New York Heart Association (NYHA) class from baseline to 6 months and anatomical effectiveness as measured by Effective Orifice Area (EOA) ≥1.0 cm² at 6 months.

研究の種類

介入

入学 (実際)

20

段階

  • 適用できない

連絡先と場所

このセクションには、調査を実施する担当者の連絡先の詳細と、この調査が実施されている場所に関する情報が記載されています。

研究場所

    • Kanagawa
      • Kamakura、Kanagawa、日本
        • Shonan Kamakura General Hospital
    • Osaka
      • Suita、Osaka、日本
        • Osaka University Hospital
      • Suita、Osaka、日本
        • National Cerebral and Cardiovascular Center
    • Saitama
      • Hidaka、Saitama、日本
        • Saitama Medical University

参加基準

研究者は、適格基準と呼ばれる特定の説明に適合する人を探します。これらの基準のいくつかの例は、人の一般的な健康状態または以前の治療です。

適格基準

就学可能な年齢

  • 子
  • 大人
  • 高齢者

健康ボランティアの受け入れ

いいえ

受講資格のある性別

全て

説明

Inclusion Criteria:

  1. Subject must have co-morbidities such that one cardiologist and one cardiac surgeon agree that medical factors preclude operation, based on a conclusion that the probability of death or serious morbidity exceeds the probability of meaningful improvement.
  2. Subject has senile degenerative aortic valve stenosis with:

    mean gradient > 40 mmHg or jet velocity greater than 4.0 m/s by either resting or dobutamine stress echocardiogram, or simultaneous pressure recordings at cardiac catheterization (either resting or dobutamine stress), AND an initial aortic valve area of ≤ 0.8 cm² (or aortic valve area index ≤ 0.5 cm²/m²) by resting echocardiogram.

  3. Subject is symptomatic from his/her aortic valve stenosis, as demonstrated by NYHA Functional Class Class III or greater. If screening committee agrees the eligibility of a patient with class II , based on medical factors, he/she can be enrolled.
  4. Patient has been informed of the nature of the trial and has signed an Informed Consent Form.
  5. Patient agrees to comply with specified follow-up evaluations and to return to the same investigational site where the procedure was performed.

Exclusion Criteria:

  1. Evidence of an acute myocardial infarction ≤ 30 days prior to the intended treatment.
  2. Any percutaneous coronary or peripheral interventional procedure performed within 30 days prior to the procedure.
  3. Blood dyscrasias as defined:

    • Leukopenia (WBC count < 1,000 cells/mm³)
    • Thrombocytopenia (platelet count <50,000 cells/mm³)
    • History of bleeding diathesis or coagulopathy
    • Hypercoagulable states
  4. Untreated clinically significant coronary artery disease requiring revascularization.
  5. Cardiogenic shock manifested by low cardiac output, vasopressor dependence, or mechanical hemodynamic support.
  6. Need for emergency surgery for any reason.
  7. Severe ventricular dysfunction with left ventricular ejection fraction (LVEF) < 20% as measured by resting echocardiogram.
  8. Recent (within 6 months) cerebrovascular accident (CVA) or transient ischemic attack(TIA).
  9. End stage renal disease requiring chronic dialysis.
  10. GI bleeding within the past 3 months.
  11. A known hypersensitivity or contraindication to any of the following which cannot be adequately pre-medicated:

    • Aspirin
    • Ticlopidine
    • Heparin
    • Contrast media
    • Nitinol (titanium and nickel alloy)
  12. Ongoing sepsis, including active endocarditis.
  13. Subject refuses a blood transfusion.
  14. Life expectancy < 12 months due to associated non-cardiac co-morbid conditions.
  15. Other medical, social, or psychological conditions that in the opinion of an Investigator precludes the subject from appropriate consent.
  16. Severe dementia (resulting in either inability to provide informed consent for the trial/procedure, prevents independent lifestyle outside of a chronic care facility, or will fundamentally complicate rehabilitation from the procedure or compliance with follow-up visits).
  17. Currently participating in an investigational drug or another device trial. Note: Trials requiring extended follow-up for products that were investigational, but have since become commercially available, are not considered investigational trials.
  18. Symptomatic carotid or vertebral artery disease.
  19. Native aortic annulus size < 18 mm or > 20 mm per the screening diagnostic imaging.
  20. Pre-existing prosthetic heart valve in any position.
  21. Mixed aortic valve disease (aortic stenosis and aortic regurgitation with predominant aortic regurgitation).
  22. Mitral regurgitation (moderate to severe) or severe tricuspid regurgitation.
  23. Moderate to severe mitral stenosis.
  24. Hypertrophic obstructive cardiomyopathy.
  25. Echocardiographic evidence of intracardiac mass, thrombus or vegetation.
  26. Severe basal septal hypertrophy with an outflow gradient.
  27. Ascending aorta diameter > 34 mm
  28. Congenital bicuspid or unicuspid valve verified by echocardiography.
  29. For patients with native coronary artery dependent circulation:

    • Sinus of valsalva width < 25 mm OR
    • Height of the left or right coronary sinus of valsalva (to the tubular aorta) < 15mm.
  30. Femoral or iliac artery of the first choice corresponding to any one of the following:

    • Angle at aortic root (the angle between aortic valve annulus plane and horizontal plane/vertebra) exceeds 70°.
    • Vessel diameter of femoral or iliac artery is less than 6 mm.
    • Aorta has severe calcification, excess tortuosity or severe atherosclerosis.
    • Transarterial access not able to accommodate an 18Fr sheath.
  31. Subclavian artery of the second choice corresponding to any one of the following:

    • Angle at aortic root (the angle between aortic valve annulus plane and horizontal plane/vertebra) exceeds 70° (in the case of left subclavian artery) and 30° (in the case of right subclavian artery).
    • Vessel diameter of subclavian artery is less than 6 mm.
    • Transarterial access not able to accommodate an 18Fr sheath.
  32. Direct Aortic Artery as third line choice of access. Patients are excluded from Direct Aortic access if:

    • Access site is less than 6 cm from the aortic valve basal plane
    • Access site has calcification or porcelain aorta
    • Access site and delivery trajectory contain RIMA or patent RIMA graft

研究計画

このセクションでは、研究がどのように設計され、研究が何を測定しているかなど、研究計画の詳細を提供します。

研究はどのように設計されていますか?

デザインの詳細

  • 主な目的:処理
  • 割り当て:なし
  • 介入モデル:単一グループの割り当て
  • マスキング:なし(オープンラベル)

武器と介入

参加者グループ / アーム
介入・治療
実験的:MDT-2111 TAVI 23 mm
Subjects with small annuli and symptomatic severe AS deemed difficult for surgical intervention.
Device: 23 mm MDT-2111 System for Transcatheter Aortic Valve Implantation (TAVI) Transcatheter Aortic Valve Implantation (TAVI) using the 23 mm MDT-2111 system.

この研究は何を測定していますか?

主要な結果の測定

結果測定
メジャーの説明
時間枠
Composite Score of Change in New York Heart Association (NYHA) Class and Effective Orifice Area (EOA).
時間枠:baseline and 6 months
The primary endpoint is a composite of functional effectiveness as measured by improvement of at least 1 NYHA class from baseline to 6 months and anatomical effectiveness as measured by Effective Orifice Area (EOA) ≥1.0 cm² at 6 months.
baseline and 6 months

二次結果の測定

結果測定
メジャーの説明
時間枠
New York Heart Classification (NYHA) Over Time
時間枠:30 days

NEW YORK HEART ASSOCIATION CLASSIFICATION (NYHA) Class I: Subject with cardiac disease but without resulting limitations of physical activity.

Class II: Subjects with cardiac disease resulting in slight limitation of physical activity.

Class III: Subjects with cardiac disease resulting in marked limitation of physical activity.

Class IV: Subjects with cardiac disease resulting in inability to carry on any physical activity without discomfort.

30 days
New York Heart Classification (NYHA) Over Time
時間枠:6 months

NEW YORK HEART ASSOCIATION CLASSIFICATION (NYHA) Class I: Subject with cardiac disease but without resulting limitations of physical activity.

Class II: Subjects with cardiac disease resulting in slight limitation of physical activity.

Class III: Subjects with cardiac disease resulting in marked limitation of physical activity.

Class IV: Subjects with cardiac disease resulting in inability to carry on any physical activity without discomfort.

6 months
New York Heart Classification (NYHA) Over Time
時間枠:12 months

NEW YORK HEART ASSOCIATION CLASSIFICATION (NYHA) Class I: Subject with cardiac disease but without resulting limitations of physical activity.

Class II: Subjects with cardiac disease resulting in slight limitation of physical activity.

Class III: Subjects with cardiac disease resulting in marked limitation of physical activity.

Class IV: Subjects with cardiac disease resulting in inability to carry on any physical activity without discomfort.

12 months
New York Heart Classification (NYHA) Over Time
時間枠:24 months

NEW YORK HEART ASSOCIATION CLASSIFICATION (NYHA) Class I: Subject with cardiac disease but without resulting limitations of physical activity.

Class II: Subjects with cardiac disease resulting in slight limitation of physical activity.

Class III: Subjects with cardiac disease resulting in marked limitation of physical activity.

Class IV: Subjects with cardiac disease resulting in inability to carry on any physical activity without discomfort.

24 months
重大な心血管および脳血管有害事象 (MACCE)
時間枠:0日~30日

MACCE は以下の複合体として定義されます。

  • 全死因死
  • 心筋梗塞(MI)
  • すべての脳卒中、そして
  • 再介入(以前に植え込まれた弁を修復、変更または調整、または交換する心臓手術または経皮的再介入カテーテル処置として定義される)
0日~30日
重大な心血管および脳血管有害事象 (MACCE)
時間枠:0日から6ヶ月まで

MACCE は以下の複合体として定義されます。

  • 全死因死
  • 心筋梗塞(MI)
  • すべての脳卒中、そして
  • 再介入(以前に植え込まれた弁を修復、変更または調整、または交換する心臓手術または経皮的再介入カテーテル処置として定義される)
0日から6ヶ月まで
重大な心血管および脳血管有害事象 (MACCE)
時間枠:0日から12ヶ月まで

MACCE は以下の複合体として定義されます。

  • 全死因死
  • 心筋梗塞(MI)
  • すべての脳卒中、そして
  • 再介入(以前に植え込まれた弁を修復、変更または調整、または交換する心臓手術または経皮的再介入カテーテル処置として定義される)
0日から12ヶ月まで
重大な心血管および脳血管有害事象 (MACCE)
時間枠:0日から24ヶ月まで

MACCE は以下の複合体として定義されます。

  • 全死因死
  • 心筋梗塞(MI)
  • すべての脳卒中、そして
  • 再介入(以前に植え込まれた弁を修復、変更または調整、または交換する心臓手術または経皮的再介入カテーテル処置として定義される)
0日から24ヶ月まで
Device Success as Defined in the Description.
時間枠:after procedure or discharge

The following components must be satisfied for device success:

  1. successful vascular access, delivery and deployment of device and successful retrieval of delivery system
  2. correct position of device in the proper anatomical location
  3. EOA≥1.0 cm² AND mean gradient <20 mmHg or peak velocity <3 m/s, without moderate or severe AR
  4. only one valve implanted.
after procedure or discharge
Procedural Success, Defined as Device Success and Absence of In-hospital MACCE
時間枠:from admission for procedure to discharge
Procedural success is defined as device success and absence of in-hospital MACCE.
from admission for procedure to discharge
人工弁の性能の心エコー検査による評価 - 平均勾配
時間枠:30日
30日
Echocardiographic Assessment of Prosthetic Valve Performance - Mean Gradient
時間枠:6 months
6 months
人工弁の性能の心エコー検査による評価 - 平均勾配
時間枠:12ヶ月
12ヶ月
人工弁の性能の心エコー検査による評価 - 平均勾配
時間枠:24ヶ月
24ヶ月
Echocardiographic Assessment of Prosthetic Valve Performance - Effective Orifice Area (EOA)
時間枠:30 days
30 days
Echocardiographic Assessment of Prosthetic Valve Performance - Effective Orifice Area (EOA)
時間枠:6 months
6 months
Echocardiographic Assessment of Prosthetic Valve Performance - Effective Orifice Area (EOA)
時間枠:12 months
12 months
Echocardiographic Assessment of Prosthetic Valve Performance - Effective Orifice Area (EOA)
時間枠:24 months
24 months
人工弁の性能の心エコー検査による評価 - 左心室駆出率 (LVEF)
時間枠:30日
30日
人工弁の性能の心エコー検査による評価 - 左心室駆出率 (LVEF)
時間枠:6ヵ月
6ヵ月
人工弁の性能の心エコー検査による評価 - 左心室駆出率 (LVEF)
時間枠:12ヶ月
12ヶ月
人工弁の性能の心エコー検査による評価 - 左心室駆出率 (LVEF)
時間枠:24ヶ月
24ヶ月
Echocardiographic Assessment of Prosthetic Valve Performance - Total Aortic Regurgitation (Transvalvular & Paravalvular) (Total AR)
時間枠:30 days
30 days
Echocardiographic Assessment of Prosthetic Valve Performance - Total Aortic Regurgitation (Transvalvular & Paravalvular) (Total AR)
時間枠:6 months
6 months
Echocardiographic Assessment of Prosthetic Valve Performance - Total Aortic Regurgitation (Transvalvular & Paravalvular) (Total AR)
時間枠:12 months
12 months
Echocardiographic Assessment of Prosthetic Valve Performance - Total Aortic Regurgitation (Transvalvular & Paravalvular) (Total AR)
時間枠:24 months
24 months
入院を繰り返す
時間枠:0日~30日
0日~30日
入院を繰り返す
時間枠:0日から6ヶ月まで
0日から6ヶ月まで
入院を繰り返す
時間枠:0日から12ヶ月まで
0日から12ヶ月まで
入院を繰り返す
時間枠:0日から24ヶ月まで
0日から24ヶ月まで
バルブ関連の死亡数
時間枠:0日~30日
0日~30日
バルブ関連の死亡数
時間枠:0日から6ヶ月まで
0日から6ヶ月まで
Valve-related Deaths
時間枠:0 day to 12 months
0 day to 12 months
バルブ関連の死亡数
時間枠:0日から24ヶ月まで
0日から24ヶ月まで
Quality of Life Assessment Using SF-36 Questionnaire - Physical Component Summary (Paired Change From Baseline)
時間枠:Baseline to 30 days
The SF-36 assessment was used to evaluate subject Quality of life (QoL) by assessing change in physical function and general health status. The SF-36 v2 ͭ ͫ Scoring Program was used to convert raw scores ranging from 0 to 100 into norm-based scores, allowing direct comparison to the reference values for the Japanese population. The Z-score of each subdomain is calculated as the numbers of standard deviation away from the Japanese population mean of the corresponding raw score. Norm-based score is then derived as fifty plus 10 times of the z-score. A norm-based score of less than 50 was interpreted as below average when compared to the Japanese population whereas norm-based scores greater than 50 were interpreted as above average.
Baseline to 30 days
Quality of Life Assessment Using SF-36 Questionnaire - Physical Component Summary (Paired Change From Baseline)
時間枠:Baseline to 6 months
The SF-36 assessment was used to evaluate subject Quality of life (QoL) by assessing change in physical function and general health status. The SF-36 v2 ͭ ͫ Scoring Program was used to convert raw scores ranging from 0 to 100 into norm-based scores, allowing direct comparison to the reference values for the Japanese population. The Z-score of each subdomain is calculated as the numbers of standard deviation away from the Japanese population mean of the corresponding raw score. Norm-based score is then derived as fifty plus 10 times of the z-score. A norm-based score of less than 50 was interpreted as below average when compared to the Japanese population whereas norm-based scores greater than 50 were interpreted as above average.
Baseline to 6 months
Quality of Life Assessment Using SF-36 Questionnaire - Physical Component Summary (Paired Change From Baseline)
時間枠:Baseline to 12 months
The SF-36 assessment was used to evaluate subject Quality of life (QoL) by assessing change in physical function and general health status. The SF-36 v2 ͭ ͫ Scoring Program was used to convert raw scores ranging from 0 to 100 into norm-based scores, allowing direct comparison to the reference values for the Japanese population. The Z-score of each subdomain is calculated as the numbers of standard deviation away from the Japanese population mean of the corresponding raw score. Norm-based score is then derived as fifty plus 10 times of the z-score. A norm-based score of less than 50 was interpreted as below average when compared to the Japanese population whereas norm-based scores greater than 50 were interpreted as above average.
Baseline to 12 months
Quality of Life Assessment Using SF-36 Questionnaire - Physical Component Summary (Paired Change From Baseline)
時間枠:Baseline to 24 months
The SF-36 assessment was used to evaluate subject Quality of life (QoL) by assessing change in physical function and general health status. The SF-36 v2 ͭ ͫ Scoring Program was used to convert raw scores ranging from 0 to 100 into norm-based scores, allowing direct comparison to the reference values for the Japanese population. The Z-score of each subdomain is calculated as the numbers of standard deviation away from the Japanese population mean of the corresponding raw score. Norm-based score is then derived as fifty plus 10 times of the z-score. A norm-based score of less than 50 was interpreted as below average when compared to the Japanese population whereas norm-based scores greater than 50 were interpreted as above average.
Baseline to 24 months

協力者と研究者

ここでは、この調査に関係する人々や組織を見つけることができます。

スポンサー

捜査官

  • 主任研究者:Yoshi Sawa, Professor、Osaka University Hospital

出版物と役立つリンク

研究に関する情報を入力する責任者は、自発的にこれらの出版物を提供します。これらは、研究に関連するあらゆるものに関するものである可能性があります。

研究記録日

これらの日付は、ClinicalTrials.gov への研究記録と要約結果の提出の進捗状況を追跡します。研究記録と報告された結果は、国立医学図書館 (NLM) によって審査され、公開 Web サイトに掲載される前に、特定の品質管理基準を満たしていることが確認されます。

主要日程の研究

研究開始

2012年7月1日

一次修了 (実際)

2014年2月1日

研究の完了 (実際)

2019年9月1日

試験登録日

最初に提出

2012年7月2日

QC基準を満たした最初の提出物

2012年7月2日

最初の投稿 (見積もり)

2012年7月6日

学習記録の更新

投稿された最後の更新 (実際)

2019年10月15日

QC基準を満たした最後の更新が送信されました

2019年10月7日

最終確認日

2019年10月1日

詳しくは

本研究に関する用語

個々の参加者データ (IPD) の計画

個々の参加者データ (IPD) を共有する予定はありますか?

未定

この情報は、Web サイト clinicaltrials.gov から変更なしで直接取得したものです。研究の詳細を変更、削除、または更新するリクエストがある場合は、register@clinicaltrials.gov。 までご連絡ください。 clinicaltrials.gov に変更が加えられるとすぐに、ウェブサイトでも自動的に更新されます。

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