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The Interaction of Social Factors With Air Pollution (SOZIAL)

2017년 7월 25일 업데이트: David Diaz-Sanchez, Environmental Protection Agency (EPA)

Purpose:

The purpose of this protocol is to understand how social factors such as psychosocial stress may modify how people respond to air pollution. Ultimately this will help us understand health disparities from poor air quality.

Participants:

Up to 40 healthy adults,18-33 years old with different perception of stress will participate and complete this study.

Procedures (methods):

Subjects will be exposed to clean air and to ozone ( 300ppb) for 2 hours in a controlled environment chamber. Cardiac, vascular, pulmonary and cognitive function will be evaluated pre, immediately post and 18 hr post exposure.

The primary endpoint will be Heart Rate Variability . Secondary endpoints will include pulmonary function, analysis of blood clotting/coagulation factors, biomarkers of stress, cognitive function, radial artery pulse wave measurements and analysis of soluble factors present in plasma.

연구 개요

상세 설명

Over the past decades, air quality in the U.S. has improved significantly. Even so, millions of people in the U.S. still live in counties that do not meet air quality standards for one or more pollutants. Ozone is a major component of photochemical smog and is one of the most thoroughly studied gaseous pollutants. Controlled human exposure studies have been critical in demonstrating that it can cause airway inflammation 1-3, including increases in neutrophil infiltration into the lung and the production of pro-inflammatory mediators 4,5[, and ultimately decrements in lung function [reviewed in 6]. More recent studies have shown that ozone can also increase vascular inflammation, as well as alter autonomic nervous system control of heart rate and cardiac repolarization 7. Numerous epidemiological studies have also demonstrated an association between acute and chronic exposure to ambient levels of ozone and various health effects most notably asthma 6. These studies have also highlighted a need to incorporate social and nonchemical factors into risk assessments 8. Similarly, social factors such as psychological stress are now regarded as important contributors to asthma outcomes 9,10. This protocol is aimed at investigating how stress impacts health responses to air pollutants. Since psychosocial stress-related susceptibility has been proposed to explain social disparities, this will help us understand which populations and individuals are at increased risk from air pollution.

This protocol is designed to determine whether nonchemical stressors exacerbate ozone effects. In particular we will focus on elevated psychosocial stress as it has been shown to contribute to several adverse health outcomes, most notably, to cardiovascular disease. The physiological mechanism by which psychosocial stress leads to health effects is due, at least in part, to elevated circulating glucocorticoids, or stress hormones, which are regulated by the hypothalamic-pituitary-adrenal (HPA). In the last 30 years the concept of allostasis has evolved. Allostasis is the process whereby an organism adapts to the demands of the environment. An allostatic load model applies this concept to chronic stress11. In this model the perception of threat over long time intervals (perceived stress) can cause over-activation of the HPA-axis resulting in changes in physiological systems as chemical imbalances in autonomic nervous system, central nervous system, neuroendocrine, and immune system activity. Factors such as genetics, behavior, life events and diet can impact this model. To our knowledge no clinical study has investigated the link between air pollution effects on cardiovascular disease and psychosocial stress. However, several studies have now shown an association between stress and respiratory outcomes to air pollution. Claugherty and colleagues (2007) found an association between traffic-related air pollution and asthma solely among children exposed to violence 12. Shankardass and colleagues demonstrated that children from stressful households are more susceptible to the effects of traffic-related pollution on the development of asthma 13. In that study, stress was evaluated using the Perceived Stress Scale (PSS) developed by Dr. Sheldon Cohen of Carnegie Mellon University. This is the most widely used psychological instrument for measuring the perception of stress and has been validated in multiple studies. We will use this scale to evaluate the degree to which subjects appraise situations in their life as stressful. Heart rate variability (HRV) is considered to be a reliable biomarker of stress. Chronic stress has been shown to be associated with decreases in HRV 14. Since acute ozone exposure can also cause changes in HRV, we have chosen HRV as our primary endpoint. We hypothesize that the imbalance between the sympathetic and the parasympathetic nervous system caused by chronic stress will result in altered responses to ozone exposure that will be reflected by HRV.

연구 유형

중재적

등록 (실제)

40

단계

  • 해당 없음

연락처 및 위치

이 섹션에서는 연구를 수행하는 사람들의 연락처 정보와 이 연구가 수행되는 장소에 대한 정보를 제공합니다.

연구 장소

    • North Carolina
      • Chapel Hill, North Carolina, 미국, 27514
        • U.S. EPA Human Studies Facility

참여기준

연구원은 적격성 기준이라는 특정 설명에 맞는 사람을 찾습니다. 이러한 기준의 몇 가지 예는 개인의 일반적인 건강 상태 또는 이전 치료입니다.

자격 기준

공부할 수 있는 나이

18년 (성인)

건강한 자원 봉사자를 받아들입니다

연구 대상 성별

모두

설명

Inclusion Criteria:

  • Healthy men and women between 18 and 33 years of age.

    1. 4-point Perceived Stress Symptom score <2 or >6
    2. Physical conditioning allowing intermittent, moderate exercise for two hours.
    3. Ability to complete the exposure exercise regimen without reaching 80% of predicted maximal heart rate.

      Predicted maximal heart rate will be calculated using the equation (described by Tanaka et al. [2001] J. Am. Coll. Cardiol.): [208bpm-((0.7) x (age in years))]

    4. Normal baseline 12-lead resting EKG, or if the automated reading is not normal the EKG must be approved by a study cardiologist.
    5. Normal lung function Forced vital capacity (FVC) ≥ 80% of that predicted for gender, ethnicity, age and height (according to NHANESIII guidelines).

      Forced expiratory volume in one second (FEV1) ≥ 80%of that predicted for gender, ethnicity, age and height.

      FEV1/FVC ratio ≥ 80% of predicted values.

    6. Oxygen saturation ≥ 96% on room air.

Exclusion Criteria:

  • . Individuals with a history of acute or chronic cardiovascular disease, chronic respiratory disease, diabetes, rheumatologic diseases, or immunodeficiency state.

    2. Individuals with a Framingham risk score (Hard Coronary Heart Disease; HCHD; 10-year risk) ≥10.

    3. Individuals with asthma or a history of asthma. 4. Individuals who are allergic to chemical vapors or gases. 5. Females who are pregnant, attempting to become pregnant, or breastfeeding. 6. Individuals that are unwilling or unable to stop taking vitamin C or E, or medications that may impact the results of ozone challenge such at least two weeks prior to the study and for the duration of the study. Medications not specifically mentioned here may be reviewed by the investigators prior to an individual's inclusion in the study.

    7. Individuals who have smoked tobacco during the last five years or those with a history of >5 pack years.

    8. Individuals living with a smoker who smokes inside the house. 9. Individuals with a body mass index (BMI) >35 or <18. Body mass index is calculated by dividing the weight in kilograms by the square of the height in meters.

    10. Individuals with occupational exposures to high levels of vapors, dust, gases, or fumes on an on-going basis.

    11. Individuals with uncontrolled hypertension (≥150 systolic or ≥90 diastolic).

    12. Individuals that do not understand or speak English. 13. Individuals that are unable to perform the exercise required for the study. 14. Individuals that are taking beta blocker medications. 15. Individuals with a history of skin allergies to adhesives used in securing EKG electrodes.

    16. Individuals with unspecified diseases, conditions, or medications that might influence the responses to the exposures, as judged by the medical staff.

    17. Individuals that are unwilling or unable to stop taking over-the-counter pain medications such as aspirin, ibuprofen (Advil, Motrin), naproxen (Aleve), or other non-steroidal anti-inflammatory ("NSAID") medications for 48 hours prior to the exposures and post-exposure visits.

    18. Individuals that are taking systemic steroids or beta-blocker medications. 19. Individuals with a hemoglobin A1c (HbA1c) level > 6.4%.

Temporary Exclusion Criteria

  1. Individuals with active seasonal allergies during the time of participation in the study.
  2. Individuals suffering from acute respiratory illness within four weeks prior to any of the study exposure series.
  3. Individuals that have been exposed to smoke and fumes within 24 hours of any study visit.
  4. Individuals that have consumed alcohol within 24 hours of any study visit.
  5. Individuals that have engaged in strenuous exercise within 24 hours of any study visit.
  6. Individuals that have been exposed to ozone-based home air purifiers within 24 hours of any study visit.
  7. Individuals that have been exposed to unvented household combustion sources (gas stoves, lit fireplaces, oil/kerosene heaters) within 48 hours of any study visit.

공부 계획

이 섹션에서는 연구 설계 방법과 연구가 측정하는 내용을 포함하여 연구 계획에 대한 세부 정보를 제공합니다.

연구는 어떻게 설계됩니까?

디자인 세부사항

  • 주 목적: 기초 과학
  • 할당: 무작위
  • 중재 모델: 크로스오버 할당
  • 마스킹: 더블

무기와 개입

참가자 그룹 / 팔
개입 / 치료
실험적: 오존
오존에 대한 노출은 UNC 캠퍼스의 EPA 인간 연구 시설에 있는 노출 챔버에서 수행됩니다.
Each subject will be exposed up to 0.3ppm ozone for 2 hours. Subjects will exercise on a bike or treadmill. Each exercise session will consist of a 15 minute exercise interval at a level of up to 25 L/min/m2BSA followed by a 15 minute rest period.
다른 이름들:
  • O3
가짜 비교기: 깨끗한 공기
깨끗한 공기에 대한 노출은 UNC 캠퍼스의 EPA 인간 연구 시설에 있는 노출 챔버에서 수행됩니다.
Each subject will be exposed to clean air for 2 hours. Subjects will exercise on a bike or treadmill. Each exercise session will consist of a 15 minute exercise interval at a level of up to 25 L/min/m2BSA followed by a 15 minute rest period.

연구는 무엇을 측정합니까?

주요 결과 측정

결과 측정
측정값 설명
기간
심박 변이도의 변화
기간: 노출 전 ~ 노출 후 24시간
피험자가 20분 전에 휴식을 취한 10분 심전도 기록(Holter ECG로 측정). Mortara H12+ 12-리드 ECG 기록기(Mortara Instrument, Inc., Milwaukee, WI)에서 수집했습니다. 디지털로 기록된 ECG는 180Hz에서 샘플링됩니다.
노출 전 ~ 노출 후 24시간

2차 결과 측정

결과 측정
측정값 설명
기간
1초 만에 강제 만료된 볼륨(FEV1)
기간: 노출 전 ~ 노출 후 24시간
1초의 강제 호기량(FEV1)은 컴퓨터와 연결된 건식 폐활량계에서 수행되는 폐활량계에 의해 결정됩니다.
노출 전 ~ 노출 후 24시간
응고/응고 인자 지수
기간: 노출 전 ~ 노출 후 24시간
응고/응고 인자 지수는 깨끗한 공기에 대한 오존 노출 후 혈액 내 응고/응고 인자(d-dimer, PA-1, tPA, vWillebrand 인자 및 플라스미노겐) 바스켓의 평균 % 변화입니다.
노출 전 ~ 노출 후 24시간
염증 마커 지수
기간: 노출 전 ~ 노출 후 24시간
염증 표지자 지수는 오존 대 깨끗한 공기에 노출된 후 혈액에서 전신 염증(IL-6, IL-8, TNF-a, IL-b, CRP)과 관련된 요인 바구니의 평균 % 변화입니다.
노출 전 ~ 노출 후 24시간
강제 폐활량
기간: 노출 전 ~ 노출 후 24시간
강제 폐활량(FVC)은 컴퓨터에 연결된 건식 폐활량계에서 수행되는 폐활량계에 의해 결정됩니다.
노출 전 ~ 노출 후 24시간
Cortisol
기간: Pre exposure to 24hours post exposure
The mean % change of cortisol levels in the blood following exposure to ozone vs. clean air.
Pre exposure to 24hours post exposure
Cognitive function performance
기간: Pre exposure to 24hours post exposure
Index of cognitive function tests measured using six tests of the Cantab Research Suite (Reaction Time Test (RTI), Attention Switching Task (AST), Spatial Working Memory (SWM), Paired Associate Learning (PAL), Rapid Visual Information Processing (RVP), and Stop Signal Task (SST)) following exposure to ozone vs. clean air.
Pre exposure to 24hours post exposure

공동 작업자 및 조사자

여기에서 이 연구와 관련된 사람과 조직을 찾을 수 있습니다.

수사관

  • 수석 연구원: David Diaz-Sanchez, PhD, U.S. Environmental Protection Agency

간행물 및 유용한 링크

연구에 대한 정보 입력을 담당하는 사람이 자발적으로 이러한 간행물을 제공합니다. 이것은 연구와 관련된 모든 것에 관한 것일 수 있습니다.

일반 간행물

연구 기록 날짜

이 날짜는 ClinicalTrials.gov에 대한 연구 기록 및 요약 결과 제출의 진행 상황을 추적합니다. 연구 기록 및 보고된 결과는 공개 웹사이트에 게시되기 전에 특정 품질 관리 기준을 충족하는지 확인하기 위해 국립 의학 도서관(NLM)에서 검토합니다.

연구 주요 날짜

연구 시작

2014년 7월 1일

기본 완료 (실제)

2016년 9월 1일

연구 완료 (실제)

2017년 1월 1일

연구 등록 날짜

최초 제출

2014년 7월 30일

QC 기준을 충족하는 최초 제출

2014년 7월 30일

처음 게시됨 (추정)

2014년 8월 1일

연구 기록 업데이트

마지막 업데이트 게시됨 (실제)

2017년 7월 26일

QC 기준을 충족하는 마지막 업데이트 제출

2017년 7월 25일

마지막으로 확인됨

2017년 7월 1일

추가 정보

이 연구와 관련된 용어

이 정보는 변경 없이 clinicaltrials.gov 웹사이트에서 직접 가져온 것입니다. 귀하의 연구 세부 정보를 변경, 제거 또는 업데이트하도록 요청하는 경우 register@clinicaltrials.gov. 문의하십시오. 변경 사항이 clinicaltrials.gov에 구현되는 즉시 저희 웹사이트에도 자동으로 업데이트됩니다. .

Clean Air에 대한 임상 시험

구독하다