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Applications of Nanotechnology in Multiple Sclerosis by Respiratory Samples (MS-NANOSE)

2017年2月19日 更新者:Ariel Miller、Carmel Medical Center

Applications of Nanotechnology and Chemical Sensors for the Detection and Identification of Multiple Sclerosis by Respiratory Samples

Multiple Sclerosis (MS) is a complex multi-factorial disease, with underlying both genetic and environmental factors. Different populations have different susceptibility. The disease is characterized by 2 main phenotypes: relapsing-remitting or progressive course. Clinical disability is due to distraction of the CNS myelin.

Repair processes are mainly noted after the acute attack - and recovery of function can be spontaneous. However, in severe attacks sometimes there is need for adding STEROID TREATMENT (6 days IV) for the acute attack.

For the long term prophylactics - following the increased understanding of the disease, in the last 10-15 years there are new immunotherapies available (COPAXON / TEVA; Interferon -beta). However these can attenuate the disease (reduce the number of relapses per year) but are not cure. Also, they are beneficial in only ~40 % of the Relapsing -Remitting patients.

Currently there are no biomarkers available for MS (other than oligoclonal IgG in the CSF - which help confirm diagnosis but require invasive procedure and are not correlated with disease activity nor response to therapy) and - monitoring of MS and its treatment is by MRI - which is expensive.

Dr Hossam Haick from the Technion developed an electronic nose based nanomaterials for diagnosis of diseases (e.g., cancer, kidney failure, etc.) via breath samples.The research hypothesis is that Biomarkers of CNS inflammation and/or neurodegeneration and/or CNS repair can be detected by "electronic nose".

調査の概要

詳細な説明

Multiple Sclerosis (MS) is a complex multi-factorial disease, with underlying both genetic and environmental factors. Different populations have different susceptibility. The disease is characterized by 2 main phenotypes: relapsing-remitting or progressive course. Clinical disability is due to distraction of the CNS myelin (mainly oligodendrocytes) due to 3 processes:

  1. Inflammation- immune cells with aberrant activity invade the brain and spinal cord and cause distraction of CNS myelin.
  2. Primary neurodegeneration - without prominent inflammation
  3. Repair - the inflammatory and neurodegenerative processes are followed by an attempt of the CNS to repair - however, this is partial and incomplete repair is often the basis of residual deficits and disability.

    • The acute MS attack- are considered to be due to an aberrant acute immune activation and inflammatory process in the CNS
    • The chronic accumulating disability - is considered to be due to the Neuro-degenerative process.

Repair processes are mainly noted after the acute attack - and recovery of function can be spontaneous. However, in severe attacks sometimes there is need for adding STEROID TREATMENT (6 days IV) for the acute attack.

For the long term prophylactics - following the increased understanding of the disease, in the last 10-15 years there are new immunotherapies available (COPAXON / TEVA; Interferon -beta). However these can attenuate the disease (reduce the number of relapses per year) but are not cure. Also, they are beneficial in only ~40 % of the Relapsing -Remitting patients.

Currently there are no biomarkers available for MS (other than oligoclonal IgG in the CSF - which help confirm diagnosis but require invasive procedure and are not correlated with disease activity nor response to therapy) and - monitoring of MS and its treatment is by MRI - which is expensive.

Dr Hossam Haick from the Technion developed an electronic nose based nanomaterials for diagnosis of diseases (e.g., cancer, kidney failure, etc.) via breath samples. Research hypothesis Biomarkers of CNS inflammation and/or neurodegeneration and/or CNS repair can be detected by "electronic nose".

Aim(s)

Identification of biomarkers of:

  1. CNS inflammation and CNS-autoimmunity
  2. Neurodegeneration
  3. CNS repair o that may serve as markers for disease (vs controls), of disease activity (predicting aggressive disease course (predicting Relapse; predicting Malignant vs Benign MS); predicting response to therapy (Steroid , immunotherapies or neuroprotective agents).

Work plan outline:

Evaluate few groups clinically:

  • MS patients at acute relapse pre - vs- after 7 and 30 days of steroids treatment.
  • Relapsing MS patients vs Progressive MS patients vs Healthy controls.
  • MS patients who are Good- vs Poor- Responders to immunotherapy When available, MRI will be used as a surrogate marker, together with the clinical assessment.

Evaluation of the Electronic Nose for Diagnosis of MS We will apply a four-phase approach in order to achieve the objectives of this research. In the first phase we will collect suitable breath samples from each patient and compare the patient data to age-adjusted healthy controls. In the second phase we will analyze the collected breath samples with the electronic nose setup. In the third phase we will carry out auxiliary chemical analysis, using gas-chromatography linked with mass spectrometry (GC-MS), of the breath samples under different aspects. The fourth phase will aim at the improvement of our electronic nose setup and will be conducted in parallel to the first three phases.

We will collect breath samples of a representative group of MS patients of all types and of age-matched controls. Our GC-MS chemical analysis will address: (1) the dependence of the MS breath biomarker levels on the type/stage of the MS disease; and (2) the effect of environmental factors such as age, diet, lifestyle (especially smoking and drinking habits) on the chemical composition of the breath. Based on the results of the GC-MS chemical analysis, we will improve and optimize our array of nanosensors setup so as to achieve: (1) maximum sensitivity to the MS biomarkers and their stage dependent concentration profiles; (2) minimum sensitivity to non-MS related changes of the chemical composition of the breath, and (3) minimum sensitivity to the major ingredients of the breath, such as water vapor. We will attempt to define MS sub-categories, supported by the information from the clinical/imaging reports, which might be relevant for clinical management, by more sophisticated statistical treatment of the collected data. Towards the end of this proof-of-concept study we will compare the performance of our electronic nose setup to the conventional MS diagnostic tools. The comparison will be done in terms of true positive, true negative, false positive, false negative, sensitivity and specificity.

研究の種類

観察的

入学 (実際)

71

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

      • Haifa、イスラエル
        • MS Clinic, Carmel Medical Center
      • Haifa、イスラエル、34362
        • MS Clinic, Carmel Medical Center

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

18年~60年 (大人)

健康ボランティアの受け入れ

はい

受講資格のある性別

全て

サンプリング方法

非確率サンプル

調査対象母集団

Patients of the Multiple Sclerosis Clinic, Carmel Medical Center, Israel will be invited to participate.

Healthy volunters accompanying patients to the clinic will be invited to participate as control subjects.

説明

Inclusion Criteria:

MS patients:

  1. Relapsing remitting (RRMS) meeting the clinical criteria of McDonald (Polman, Reingold et al. 2005) that presented in the MS clinic in Carmel hospital, Haifa Israel. Relapsing MS patients that never received, or have received in the past, or, are currently receiving, or, are about to commence immunomodulator treatment.
  2. MS patients presenting in acute relapse and about to commence a treatment regimen of corticosteroids (IV-Methylprednisolone and oral prednisone)
  3. Primary progressive (PPMS) meeting the clinical criteria of McDonald (Polman, Reingold et al. 2005)that presented in the MS clinic in Carmel hospital, Haifa Israel. Tissue will be collected as previously described.
  4. Willing and able to give inform consent

Control subjects:

  1. Age and gender match control individuals that do not have MS or any other condition that is defined as "autoimmune". These individuals will be recruited as "Healthy Population Reference" group.
  2. Willing and able to give informed consent

Exclusion Criteria:

  1. Patients age 18 or less, pregnant women
  2. Presence of HIV, hepatitis or any other potentially severe and infectious disease. Healthy individual with up to third degree relatives with MS or any other autoimmune diseases.

Exclusion from the experiment during the study period:

  1. Any new clinical information that is not consistent with inclusion criteria.
  2. Technical problems in the performance of the tests.

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

コホートと介入

グループ/コホート
介入・治療
Multiple Sclerosis
Multiple Sclerosis patients
NA-NOSEは、ナノマテリアルをベースとし、機械学習と連携した人工嗅覚システムです。 NA-NOSE は、呼気、血液、または臨床組織から放出される揮発性バイオマーカーに基づいて、疾患または障害を診断できます。
他の名前:
  • 電子鼻
Healthy controls
healthy individuals
NA-NOSEは、ナノマテリアルをベースとし、機械学習と連携した人工嗅覚システムです。 NA-NOSE は、呼気、血液、または臨床組織から放出される揮発性バイオマーカーに基づいて、疾患または障害を診断できます。
他の名前:
  • 電子鼻

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
時間枠
Successful discrimination between healthy and MS
時間枠:2 years
2 years

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:Ariel Miller, MD,Ph.D、Multiple Sclerosis Center Carmel Medical Center

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

2010年11月1日

一次修了 (実際)

2011年11月1日

研究の完了 (実際)

2012年11月1日

試験登録日

最初に提出

2010年9月19日

QC基準を満たした最初の提出物

2010年9月20日

最初の投稿 (見積もり)

2010年9月21日

学習記録の更新

投稿された最後の更新 (実際)

2017年2月23日

QC基準を満たした最後の更新が送信されました

2017年2月19日

最終確認日

2017年2月1日

詳しくは

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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