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化学療法誘発神経障害を管理するための耳介ツボ指圧

2026年7月9日 更新者:Jennifer Kawi、The University of Texas Health Science Center, Houston

提案された無作為化対照試験では、化学療法誘発性神経障害(CIN)に対する耳介点指圧(APA)を評価し、自己報告測定、心理物理学的測定(QST)、内因性バイオマーカー(サイトカイン)、および神経を統合することにより、点特異性とプラセボ効果を厳密に考慮します。 -APAの有効性と根底にあるメカニズムを調査するためのイメージング。

治験責任医師は、無作為化対照試験の 3 つのグループ デザインを使用します: (1) APA グループ、(2) 偽の APA コントロール、および (3) 通常のケア コントロール。 生態学的瞬間評価 (EMA) 用のスマートフォン アプリケーションを使用して、APA の順守を監視し、瞬間的な CIN の重症度と鎮痛剤の使用をキャプチャします。

調査の概要

詳細な説明

化学療法誘発性神経障害 (CIN) - 手足に分布する痛み、しびれ、またはうずき - は、がん生存者の感覚とバランスに影響を与える持続的な症状を引き起こします。 がんサバイバーの最大 50% が、治療後 6 年も CIN に苦しんでいます。 米国臨床腫瘍学会が推奨する唯一の薬剤であるデュロキセチンは、プラセボよりも優れていることが判明しましたが、CIN は 0.73 ポイント (0-10 スケール) しか改善しませんでした。 運動以外にCINの効果的な治療法は確立されておらず、効果量は<0.508です。 オピオイドは CIN の痛みを和らげますが、オピオイドの過剰使用のため、長期使用は強くお勧めしません。

研究者らは、耳介鍼治療から開発された革新的でスケーラブルなソリューションである耳介ツボ指圧 (APA) をテストすることを提案しています。 APA は非侵襲的 (無針) で痛みのある患者に対する能動的治療ですが、鍼治療は侵襲的 (針を使用) かつ受動的治療 (認可を受けた開業医が実施) です。 APA では、熟練した医療従事者が特定の耳のポイントに小さなシードをテープで貼り、患者はシードを押して、1 日 3 回、1 回 3 分間、1 日合計 9 分間、耳のポイントを刺激します。 APA は、耳の刺激後 1 ~ 2 分以内に痛みを軽減し、4 週間の APA 介入後 1 か月間、痛みの軽減を維持します。 APAは台湾、中国、ヨーロッパで人気があります。 その使用は米国ではまばらですが、限られた数の臨床試験が疼痛管理におけるAPAを支持しています.

研究の種類

介入

入学 (実際)

238

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

    • Maryland
      • Baltimore、Maryland、アメリカ、21205
        • Johns Hopkins University
    • Texas
      • Houston、Texas、アメリカ、77030
        • The University of Texas Health Science Center at Houston

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年歳以上 (大人、高齢者)

健康ボランティアの受け入れ

はい

説明

包含基準:

  • 18歳以上のがん患者
  • 次のいずれかのカテゴリーの投薬を受けている:プラチナベース、ビンカアルカロイド、ボルテゾミブ、エリブリン、および/またはタキサン
  • -登録の3か月以上前に化学療法のコースを完了している
  • がんに対する神経毒性化学療法を受けているためにCINを持っているか、化学療法後に悪化した別の病因の既存の末梢神経障害がある
  • 11 段階の数値スケールで CIN ≥ 4 により、前の週の四肢の痛み、しびれ、またはうずきの平均強度の 1 つがあります。

除外基準:

  • -同時にまたは過去30日以内の疼痛管理のための治験薬の使用
  • 移植可能な薬物送達システムの使用。 メドトロニック SynchroMed®
  • -以前の腹腔神経叢ブロックまたは他の神経溶解性疼痛管理治療
  • -化学療法の前に存在する痛みを伴う感覚異常の他の特定された原因(例:放射線または悪性神経叢症、腰椎または頸部神経根障害)
  • ラテックスアレルギー(APAのテープにはラテックスが含まれています)。

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:ランダム化
  • 介入モデル:並列代入
  • マスキング:ダブル

武器と介入

参加者グループ / アーム
介入・治療
実験的:耳介点指圧 (APA)
APA部門は、毎週の対面治療と、APAを理解して投与するためのビデオを備えたセルフガイドのスマートフォンアプリケーションを受け取ります。 APA 部門は、対面でシードを 1 回配置し、参加者またはその介護者が耳のポイントにシードを配置するためのトレーニングを受けます。また、最初の訪問から 1 週間後に、参加者および/または介護者にシードについてコーチングするための 1 回のズーム ミーティングを受けます。配置。
対面でのシード配置と、参加者またはその介護者がイヤーポイントにシードを配置するためのトレーニング。
シード配置と APA コーチングのための Zoom セッション。最初の APA およびシード配置トレーニングの後に行われます (最初のトレーニングは対面で行われるか、スマートフォン アプリのビデオでガイドされます)。
実験的:仮想耳介点指圧 (vAPA)
VAPA 部門は、APA を理解して管理するためのセルフガイド スマートフォン アプリケーションにあるビデオ指示に従ってシードを配置することにより、APA を自己管理します。 参加者および/または介護者は、シード配置に関するビデオ指示に従い、ベースライン訪問の 1 週間後に APA コーチングのための 1 回のズーム セッションを受けます。
シード配置と APA コーチングのための Zoom セッション。最初の APA およびシード配置トレーニングの後に行われます (最初のトレーニングは対面で行われるか、スマートフォン アプリのビデオでガイドされます)。
APA を理解して管理するためのセルフガイド スマートフォン アプリケーションにあるビデオ指示に従ってシードを配置することにより、APA を自己管理します。 参加者および/または介護者は、種子の配置に関するビデオ指示に従います。
他の名前:
  • 種子の配置とAPAに関するビデオ説明付きのセルフガイドスマートフォンアプリ
アクティブコンパレータ:いつものケアコントロール
通常のケア アームは通常のケアを継続します。
参加者は腫瘍専門医による通常の治療を継続します。

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
Pain Severity as Assessed by the Brief Pain Inventory
時間枠:Baseline, 1 month after baseline
Brief Pain Inventory (BPI) assesses worst pain severity. The scale ranges from 0 (no pain) to 10 (severe pain), a higher score indicates greater pain
Baseline, 1 month after baseline
Numbness as Assessed by the Brief Pain Inventory
時間枠:Baseline, 1 month after Baseline
Brief Pain Inventory (BPI) assesses worst numbness. The scale ranges from 0 (no numbness) to 10 (severe numbness), a higher score indicates greater numbness.
Baseline, 1 month after Baseline
Tingling as Assessed by the Brief Pain Inventory
時間枠:Baseline, 1 month after baseline
Brief Pain Inventory (BPI) assesses worst Tingling. The scale ranges from 0 (no tingling) to 10 (severe tingling), a higher score indicates greater tingling.
Baseline, 1 month after baseline
Stiffness as Assessed by the Brief Pain Inventory
時間枠:Baseline, 1 month after baseline
Brief Pain Inventory (BPI) assesses worst stiffness. The scale ranges from 0 (no stiffness) to 10 (severe stiffness), a higher score indicates greater stiffness.
Baseline, 1 month after baseline
Grade of Peripheral Motor Neuropathy as Assessed by the Common Terminology Criteria for Adverse Events (CTCAE) Version 4
時間枠:Baseline, 1 month after baseline
Peripheral motor neuropathy is graded using the NCI Common Terminology Criteria for Adverse Events (CTCAE) v4.0. Severity is graded on a scale that ranges from 1 to 5, with higher grade indicating greater severity of neuropathy.
Baseline, 1 month after baseline
Grade of Peripheral Sensory Neuropathy as Assessed by the Common Terminology Criteria for Adverse Events (CTCAE) Version 4
時間枠:Baseline, 1 month after baseline
Peripheral sensory neuropathy is graded using the NCI Common Terminology Criteria for Adverse Events (CTCAE) v4.0. Severity is graded on a scale that ranges from 1 to 5, with higher grade indicating greater severity of neuropathy.
Baseline, 1 month after baseline
Physical Function as Assessed by The Revised BPI-CIN Pain Interference Subscale
時間枠:Baseline, 1 month after Baseline
The BPI-CIN Interference subscale will be used to measure physical function caused by CIN. The seven items evaluate interference with general activity, mood, walking ability, normal work, relations with other persons, sleep, and enjoyment of life. Each item is rated on a 0-10 numeric scale (0 = does not interfere; 10 = completely interferes). The overall score is calculated as the mean of the seven items with a total score ranging from 0 to 10 to determine the level of interference, with higher scores indicating greater interference.
Baseline, 1 month after Baseline
Functional Ability as Assessed by Eastern Cooperative Oncology Group (ECOG) Performance Status Scale
時間枠:Baseline, 1 month after Baseline

The ECOG Performance Status Scale describes level of functioning in terms of ability to care for oneself, daily activity, and physical. Score on the ECOG ranges from 0 (fully active and able) to 5 (dead) with higher score indicating lower function:

0 - Fully active, able to carry on all pre-disease performance without restriction

  1. - Restricted in physically strenuous activity but ambulatory and able to carry out work of a light or sedentary nature, e.g., light house work, office work
  2. - Ambulatory and capable of all selfcare but unable to carry out any work activities; up and about more than 50% of waking hours
  3. - Capable of only limited selfcare; confined to bed or chair more than 50% of waking hours
  4. - Completely disabled; cannot carry on any selfcare; totally confined to bed or chair
  5. - Dead
Baseline, 1 month after Baseline
Quality of Life as Assessed by Patient-Reported Outcomes Measurement Information System (PROMIS) 29 -Physical Function Subscale
時間枠:Baseline, 1 month after baseline
Patient-Reported Outcomes Measurement Information System (PROMIS) 29 - physical function subscale assesses physical function using 4 items, each scored on a 5-point likert scale (1 = Unable to do; 5 = Without any difficulty). Raw scores ranging from 4 to 20 are converted to standardized T-scores (population mean = 50, Standard deviation = 10) using HealthMeasures tables with a range of approximately 20-80. The higher T-scores indicate better physical function.
Baseline, 1 month after baseline
Quality of Life as Assessed by Patient-Reported Outcomes Measurement Information System (PROMIS) 29 -Fatigue Subscale
時間枠:Baseline, 1 month after baseline
Patient-Reported Outcomes Measurement Information System (PROMIS) 29 - fatigue subscale assesses fatigue using 4 items, each scored on a 5-point likert scale (1 = Unable to do; 5 = Without any difficulty). Raw scores ranging from 4 to 20 are converted to standardized T-scores (population mean = 50, Standard deviation = 10) using HealthMeasures tables with a range of approximately 20-80. The higher T-scores indicate greater fatigue.
Baseline, 1 month after baseline
Quality of Life as Assessed by Patient-Reported Outcomes Measurement Information System (PROMIS) 29 -Pain Interference Subscale
時間枠:Baseline, 1 month after baseline
Patient-Reported Outcomes Measurement Information System (PROMIS) 29 - pain interference subscale assesses how pain interferes with daily activities using 4 items, each scored on a 5-point likert scale (1 = Unable to do; 5 = Without any difficulty). Raw scores ranging from 4 to 20 are converted to standardized T-scores (population mean = 50, Standard deviation = 10) using HealthMeasures tables with a range of approximately 20-80. The higher T-scores indicate greater pain interference.
Baseline, 1 month after baseline
Quality of Life as Assessed by Patient-Reported Outcomes Measurement Information System (PROMIS) 29 -Depression Subscale
時間枠:Baseline, 1 month after baseline
Patient-Reported Outcomes Measurement Information System (PROMIS) 29 - depression subscale assesses depression using 4 items, each scored on a 5-point likert scale (1 = Unable to do; 5 = Without any difficulty). Raw scores ranging from 4 to 20 are converted to standardized T-scores (population mean = 50, Standard deviation = 10) using HealthMeasures tables with a range of approximately 20-80. The higher T-scores indicate greater depression severity.
Baseline, 1 month after baseline
Quality of Life as Assessed by Patient-Reported Outcomes Measurement Information System (PROMIS) 29 -Anxiety Subscale
時間枠:Baseline, 1 month after baseline
Patient-Reported Outcomes Measurement Information System (PROMIS) 29 - anxiety subscale assesses anxiety using 4 items, each scored on a 5-point likert scale (1 = Unable to do; 5 = Without any difficulty). Raw scores ranging from 4 to 20 are converted to standardized T-scores (population mean = 50, Standard deviation = 10) using HealthMeasures tables with a range of approximately 20-80. The higher T-scores indicate greater anxiety.
Baseline, 1 month after baseline
Quality of Life as Assessed by Patient-Reported Outcomes Measurement Information System (PROMIS) 29 -Sleep Disturbance Subscale
時間枠:Baseline, 1 month after baseline
Patient-Reported Outcomes Measurement Information System (PROMIS) 29 - sleep disturbance subscale assesses sleep disturbance using 4 items, each scored on a 5-point Likert scale (1 = Unable to do; 5 = Without any difficulty). Raw scores ranging from 4 to 20 are converted to standardized T-scores (population mean = 50, Standard deviation = 10) using HealthMeasures tables with a range of approximately 20-80. The higher T-scores indicate greater sleep disturbance.
Baseline, 1 month after baseline
Quality of Life as Assessed by Patient-Reported Outcomes Measurement Information System (PROMIS) 29 -Ability to Participate in Social Activities Subscale
時間枠:Baseline, 1 month after baseline
Patient-Reported Outcomes Measurement Information System (PROMIS) 29 - ability to participate in social activities subscale assesses a participant's perceived ability to engage in usual social roles and activities using 4 items, each scored on a 5-point likert scale (1 = Unable to do; 5 = Without any difficulty). Raw scores ranging from 4 to 20 are converted to standardized T-scores (population mean = 50, Standard deviation = 10) using HealthMeasures tables with a range of approximately 20-80. The higher T-scores indicate better and higher functioning social participation.
Baseline, 1 month after baseline
Upper Limb Function as Assessed by the Quick Dash Index
時間枠:Baseline, 1 month after baseline
The QuickDASH Index assesses upper limb disability and symptoms. It evaluates limitations in daily activities (e.g., opening jars, performing housework), as well as pain, tingling, and sleep disturbances. The total score ranges from 0 (no disability) to 100 (most severe disability), with higher scores indicating greater disability.
Baseline, 1 month after baseline
Symptoms Severity as Assessed by the MD Anderson Symptom Severity Inventory
時間枠:Baseline, 1 month after Baseline
The MD Anderson Sympton Severity Inventory assesses severity of 13 common symptoms experienced by patients with cancer. Each item is rated on a 0-10 numeric scale (0 = not present; 10 = as bad as you can imagine). The overall symptom severity score is calculated as the mean of the 13 items with a range of 0 to 10, higher scores indicating greater symptom severity.
Baseline, 1 month after Baseline
Pain Self Efficacy as Assessed by Pain Self-Efficacy Questionnaire (PSEQ)
時間枠:Baseline, 1 month after Baseline
Pain self-efficacy is assessed using the Pain Self-Efficacy Questionnaire (PSEQ). This 10-item instrument measures a participant's confidence in performing daily activities, social life and function despite pain. Each item is rated on a 0-6 scale (0 = Not at all confident; 6 = Completely confident) and total score ranges from 0 to 60, with higher scores indicating greater self-efficacy and greater confidence in coping.
Baseline, 1 month after Baseline
Psychological Impact of Pain as Assessed by the Pain Catastrophizing Score
時間枠:Baseline, 1 month after Baseline
The Pain Catastrophizing Scale (PCS) assesses components of catastrophizing: rumination, magnification, and helplessness. The total score ranges from 0 to 52, with higher scores indicating greater pain catastrophizing.
Baseline, 1 month after Baseline
Number of Chronic Overlapping Pain Conditions as Assessed by the Chronic Overlapping Pain Conditions (COPC)
時間枠:Baseline, 1 month after Baseline
Chronic Overlapping Pain Conditions (COPC) are assessed using the Chronic Overlapping Pain Conditions Screener (COPCS). This instrument identifies the presence of up to 10 common chronic pain conditions. The COPC total score is calculated as the number of positively identified conditions (answered "Yes"), with higher scores indicating greater pain impact, central sensitization, and severity.
Baseline, 1 month after Baseline
Charlson Comorbidity Index
時間枠:Baseline
The Charlson Comorbidity index assesses a participant's comorbidity burden and predicted risk of mortality. The total score ranges from 0 to 37. A higher score indicates greater comorbidity burden and higher risk of mortality.
Baseline
Pain Impact as Assessed by Pain, Enjoyment and General Activity (PEG) Scale
時間枠:Baseline, 1 month after baseline
Pain, Enjoyment and General Activity (PEG) is a three-item questionnaire that assesses pain intensity and its impact patient's daily life. Each item is rated on a 0-10 scale. The PEG score is calculated as the mean of three items, resulting in score range of 0 to 10, with a higher scores indicating greater pain severity and functional interference.
Baseline, 1 month after baseline
Number of Participants Reporting Opioid Use
時間枠:Baseline, Day 28
Baseline, Day 28
Opioid Use Per Day as Measured by the Morphine Milligram Equivalents (MME) Per Day
時間枠:Baseline, Day 28
Opioid use will be collected via EMA diary using a questionnaire. Milligram Morphine Equivalent (MME) will be determined by using an equivalency factor to calculate a dose of morphine equivalent to the ordered opioid. Daily morphine equivalent dosing is sum of the MME of all opioids a patient is likely to take within 24 hours, and will be calculated to MME for analysis. Baseline was defined as the first day of opioid use recorded in the EMA diary.
Baseline, Day 28

二次結果の測定

結果測定
メジャーの説明
時間枠
Experimental Pain Sensitivity as Assessed by a Multimodal Quantitative Sensory Testing (QST) Battery - Pressure Pain Threshold (PPT)-Trapezius
時間枠:Baseline, 1 month after Baseline
In order to measure experimental pain sensitivity, a multimodal Quantitative Sensory Testing (QST) battery will be completed: pressure pain threshold (PPT), Mechanical Temporal Summation (MTS), and Conditioned Pain Modulation (CPM). To assess PPT, a handheld digital pressure algometer (Wagner, Greenwich, CT) was applied at a constant rate of 2.9 Newton per centimeter squared (N/cm^2) per second to the participant's trapezius and thumbs. Participants were asked to notify the experimenter when the pressure sensation ''first becomes painful." The pressure at which participants indicated that the pressure sensation ''first becomes painful" is reported.
Baseline, 1 month after Baseline
Experimental Pain Sensitivity as Assessed by a Multimodal Quantitative Sensory Testing (QST) Battery - Pressure Pain Threshold (PPT)-Thumb
時間枠:Baseline, 1 month after Baseline
In order to measure experimental pain sensitivity, a multimodal Quantitative Sensory Testing (QST) battery will be completed: pressure pain threshold (PPT), Mechanical Temporal Summation (MTS), and Conditioned Pain Modulation (CPM). To assess PPT, a handheld digital pressure algometer (Wagner, Greenwich, CT) was applied at a constant rate of 2.9 Newton per centimeter squared (N/cm^2) per second to the participant's trapezius and thumbs. Participants were asked to notify the experimenter when the pressure sensation ''first becomes painful." The pressure at which participants indicated that the pressure sensation ''first becomes painful" is reported.
Baseline, 1 month after Baseline
Experimental Pain Sensitivity as Assessed by a Multimodal Quantitative Sensory Testing (QST) Battery - Mechanical Temporal Summation (MTS)
時間枠:Baseline, 1 month after Baseline
In order to measure experimental pain sensitivity, a multimodal Quantitative Sensory Testing (QST) battery will be completed: pressure pain threshold (PPT), Mechanical Temporal Summation (MTS), and Conditioned Pain Modulation (CPM). To assess MTS, a single pinprick stimulus (e.g., via a weighted pinprick stimulator or Neuropen) is applied, followed by a series of 10 rapid, identical stimuli at the same location, usually at a rate of 1/second, to measure the change in pain sensation. Participants rate their pain after the stimuli using a Numeric Rating Scale (NRS) ranging from 0 to 10, where 0 = no pain and 10 = worst pain imaginable. A higher score means greater pain sensitivity and increased temporal summation. MTS is calculated as the increase in pain intensity rating (Δ change score) between the first stimulus and the end of the series.
Baseline, 1 month after Baseline
Experimental Pain Sensitivity as Assessed by a Multimodal Quantitative Sensory Testing (QST) Battery - Conditioned Pain Modulation (CPM)
時間枠:Baseline, 1 month after Baseline
In order to measure experimental pain sensitivity, a multimodal Quantitative Sensory Testing (QST) battery will be completed: pressure pain threshold (PPT), Mechanical Temporal Summation (MTS), and Conditioned Pain Modulation (CPM). CPM was assessed as the change in PPT on the trapezius immediately after the immersion of the contralateral hand up to the wrist in a cold-water bath (Neslab, Portsmouth, NH) at 4 degrees Celsius for 20 seconds. [ [To assess PPT, a handheld digital pressure algometer (Wagner, Greenwich, CT) was applied at a constant rate of 2.9 Newton per centimeter squared (N/cm^2) per second to the participant's trapezius. Participants were asked to notify the experimenter when the pressure sensation ''first becomes painful" to assess pressure pain threshold (PPT).]
Baseline, 1 month after Baseline
Functional Connectivity Changes in Salience Network - Basal Ganglia Network (SAL-BGN) as Assessed by fMRI Neuroimaging
時間枠:Baseline
Functional Magnetic Resonance Imaging (fMRI) will be used to assess changes in functional connectivity between the Salience Network and Basal Ganglia Network (SAL-BGN) from baseline to post-intervention (1 month after baseline). Functional connectivity is calculated based on the correlations in Blood Oxygen Level Dependent (BOLD) signal fluctuations in different brain regions. Connectivity strength will be quantified using Fisher z-transformed correlation coefficients, with higher values indicating stronger functional connectivity.
Baseline
Functional Connectivity Changes in Language Network - Basal Ganglia Network (LAN-BGN) as Assessed by fMRI Neuroimaging
時間枠:Baseline, 1 month after Baseline
Functional Magnetic Resonance Imaging (fMRI) will be used to assess changes in functional connectivity between the Salience Network and Basal Ganglia Network (SAL-BGN) from baseline to post-intervention (1 month after baseline). Functional connectivity is calculated based on the correlations in Blood Oxygen Level Dependent (BOLD) signal fluctuations in different brain regions. Connectivity strength will be quantified using Fisher z-transformed correlation coefficients, with higher values indicating stronger functional connectivity.
Baseline, 1 month after Baseline
The Grooved Pegboard Test-Dominant Hand
時間枠:Baseline, 1 month after baseline
The Grooved Pegboard Test assesses fine motor skills, speed, and visual-motor coordination. Participants are asked to place 25 pegs into slots as quickly as possible. The total time to complete the task is recorded in seconds with dominant hand. Higher times indicate slower performance and reduced dexterity
Baseline, 1 month after baseline
The Grooved Pegboard Test-Non Dominant Hand
時間枠:Baseline, 1 month after Baseline
The Grooved Pegboard Test assesses fine motor skills, speed, and visual-motor coordination. Participants are asked to place 25 pegs into slots as quickly as possible. The total time to complete the task is recorded in seconds with non-dominant hand. Higher times indicate slower performance and reduced dexterity
Baseline, 1 month after Baseline
Interleukin-1 Alpha Level (From Plasma)
時間枠:Baseline, 1 month after Baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after Baseline
Interleukin-1 Beta Level (From Plasma)
時間枠:Baseline, 1 month after Baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after Baseline
Interleukin-2 Level (From Plasma)
時間枠:Baseline, 1 month after Baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after Baseline
Interleukin-4 Level (From Plasma)
時間枠:Baseline, 1 month after Baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after Baseline
Interleukin-6 Level (From Plasma)
時間枠:Baseline, 1 month after Baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after Baseline
Interleukin-8 Level (From Plasma)
時間枠:Baseline, 1 month after Baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after Baseline
Interleukin-10 Level (From Plasma)
時間枠:Baseline, 1 month after Baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after Baseline
Interleukin-12 Level (p40) (From Plasma)
時間枠:Baseline, 1 month after Baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after Baseline
Interleukin-12 Level (p70)-(From Plasma)
時間枠:Baseline, 1 month after Baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after Baseline
Interleukin-13 Level (From Plasma)
時間枠:Baseline, 1 month after Baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after Baseline
Interleukin-17 Level (From Plasma)
時間枠:Baseline, 1 month after Baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after Baseline
Interferon-gamma Level (From Plasma)
時間枠:Baseline, 1 month after Baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after Baseline
Tumor Necrosis Factor-alpha Level (From Plasma)
時間枠:Baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline
Tumor Necrosis Factor-alpha Level (From Plasma)
時間枠:1 month after baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
1 month after baseline
Transforming Growth Factor-beta Level 1(From Plasma)
時間枠:Baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline
Transforming Growth Factor-beta Level 1 (From Plasma)
時間枠:1 month after baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines (including IL-1α, IL-1β, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12 (p40 and p70), IL-13, IL-17, IFN-γ, TNF-α, TGF-β) were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
1 month after baseline
Calcitonin Gene-related Peptide Level(From Plasma)
時間枠:Baseline, 1 month after baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after baseline
Monocyte Chemoattractant Protein-1 Level (From Plasma)
時間枠:Baseline, 1 month after baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after baseline
Eotaxin Level (From Plasma)
時間枠:Baseline, 1 month after baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after baseline
C-reactive Protein Level (From Plasma)
時間枠:Baseline, 1 month after baseline
Blood samples were collected to measure cytokines and inflammatory biomarkers. Serum concentrations of cytokines and chemokines were quantified using a multiplex bead-based immunoassay. Biomarker concentrations were analyzed as indicators of inflammatory response at baseline and 1 month after baseline.
Baseline, 1 month after baseline

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。

捜査官

  • 主任研究者:Nada Lukkahatai, PHD, MSN, RN、Johns Hopkins University
  • 主任研究者:Jennifer Kawi, PhD, MSN, FNP-BC, CNE, FAAN、The University of Texas Health Science Center, Houston

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。

一般刊行物

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 (実際)

2021年7月8日

一次修了 (実際)

2025年5月30日

研究の完了 (実際)

2026年3月19日

試験登録日

最初に提出

2021年6月3日

QC基準を満たした最初の提出物

2021年6月3日

最初の投稿 (実際)

2021年6月9日

学習記録の更新

投稿された最後の更新 (実際)

2026年8月4日

QC基準を満たした最後の更新が送信されました

2026年7月9日

最終確認日

2026年7月1日

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個々の参加者データ (IPD) を共有する予定はありますか?

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医薬品およびデバイス情報、研究文書

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いいえ

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