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TerminatedNCT03275688Updated Jul 22, 2020

NanoSpectrometer Biomarker Discovery and Confirmation Study

An observational study in Lung Cancer, sponsored by Johns Hopkins University. Terminated at 1 site in United States. Open to participants aged 18 Years and older, including healthy volunteers. Per ClinicalTrials.gov, last updated 2020-07-22.

Sponsored by Johns Hopkins University · Observational

Why this study was terminated
Interim analysis showed sample size sufficient for final analysis
Study type
Observational
Model
Case-control
Time perspective
Prospective
Enrollment
332
Ages
18 Years and older
Sex
All
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Study summary

This study will evaluate exhaled volatile organic compounds (VOC's) in the breath of participants with stage 1 lung cancer, their house-mates, and matched controls. The goal of the study is to identify VOC fingerprints that are only detectable in those with stage 1 lung cancer.

Read the detailed description

Lung cancer is by far the leading cause of cancer death in the United States. More people die annually of lung cancer than of colon, breast, and prostate cancers combined. Worldwide it is already the leading cause of cancer death among males, and with smoking rates substantially higher in developing countries relative to the United States the worldwide burden of lung cancer is projected to increase considerably in the future.

For lung cancer, as for many cancers, early diagnosis allowing for full resection offers the greatest chance for long-term survival, but unfortunately these individuals currently constitute only a minority of the lung-cancer population. Screening technologies that allow for the earliest detection of lung cancer would therefore have tremendous potential to substantially improve outcomes. Recently, and for the first time, a screening test for lung cancer of high risk individuals has been recommended by the US Preventive Services Task Force, as well as others, for the reduction of lung cancer mortality. This recommendation was based primarily on the results of the National Lung Screening Trial (NLST) that randomized over 53,000 individuals considered at high risk for lung cancer to 3 annual screenings with either low-dose CT (LDCT) or a chest x-ray and then followed for a median of 6.5 years. In this study LDCT scanning was associated with a statistically significant 20% relative decrease in lung cancer mortality, and a smaller, but still significant 6.7% decrease in overall mortality. Despite these encouraging results of LDCT, as a screening tool it has substantial limitations. Beyond the costs, inconvenience and radiation exposure associated with LDCT, its performance characteristics are far from optimal. For example, nearly a quarter of the LDCT population had a positive screening test, with the vast majority - 96.4% - proving to be false-positive. With a positive predictive value of \<4% LDCT screening will lead to a great number of unnecessary diagnostic procedures as well as substantial anxiety in the screened population and their family.

Breath analytics is a new and very promising tool for diagnosing lung cancer, as well as multiple other conditions. Previous studies identified that dog's heightened olfactory senses were able to detect cancer in an individual's breath with an accuracy of nearly 100%. Since then attempts have been made to mimic canine capabilities with "electronic noses" to detect and quantitate the nearly 3000 compounds, many in the parts per billion or even parts per trillion ranges, in exhaled breath. Early studies of these technologies support great potential as a diagnostic and screening tool. As a screening tool it could be ideal as it is noninvasive, painless and free of any undesirable side effects. In addition, new advances in nanotechnology have allowed these extremely sensitive detection technologies to be miniaturized to the point that they can be linked to a smartphone, providing future possibilities to almost continuously surveil individuals for the development of lung cancer and other life-threatening conditions. This study is concerned with comparing the concentrations of volatile organic compounds (VOCs) in the breath of lung cancer patients (cases) and lung-cancer-free individuals (controls).

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Conditions studied

  • Lung Cancer

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Keywords

  • lung cancer
  • volatile organic compound
  • screening
  • VOC
  • clinical trial
03

Who can participate

Ages eligible
18 Years and older
Sexes eligible
All
Accepts healthy volunteers
Yes
Sampling method
Non-probability sample

Study population

The study population will consist of three groups. Our cases will be those who have been diagnosed with stage 1 lung cancer. Our type 1 controls will consist of participants who do not have lung cancer, but otherwise have similar clinical characteristics of our cases. the type 2 controls will be people who live in the same house as our stage 1 lung cancer patients (cases).

Inclusion criteria

  • Adults age 18 and over with diagnosed Stage 1 Lung Cancer (cases)
  • Adults age 18 and over without Lung cancer (type 1 controls)
  • Adults age 18 and over who live in the same environment as the cases (type 2 controls)

Exclusion criteria

Exclusion Criteria N/A

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Study design

Observational model
Case-control
Time perspective
Prospective
Enrollment
332 participants (actual)
Patient registry
No
Biospecimen retention
Samples without dna

Groups and cohorts

  • Stage 1 Lung Cancer (Case)

    These are the participants with identified stage 1 lung cancer.

    Diagnostic Test: Breath Analysis

  • Type 1 Control

    These are participants who have similar clinical characteristics as our cases, but do not have any history of cancer.

    Diagnostic Test: Breath Analysis

  • Type 2 Control

    These are housemates of the participants with stage 1 lung cancer (cases).

    Diagnostic Test: Breath Analysis

Interventions

  • Diagnostic testBreath Analysis

    Breath will be analyzed in all three groups using gas chromatography mass spectrometry.

    Also known as: Gas Chromatography Mass Spectrometry

05

What researchers measure

Primary outcomes

  1. Volatile organic compounds present in our cases but not controls.

    Volatile organic compounds will be measured between the cases and both types of controls. We will report the different volatile organic compound fingerprints that are present in cases and not in controls.

    Time frame: 1.5 years

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Study locations

1 site
  • Johns Hopkins Hospital
    Baltimore, Maryland 21287, United States
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References and documents

Individual participant data

Plan to share: No

No publications or documents are linked to this record.

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Registry details

Key details

Study ID
NCT03275688
Lead sponsor
Johns Hopkins University
Collaborators
Nanobeak Inc.
Responsible party
Sponsor
First posted
Sep 7, 2017
Start date
Sep 5, 2017
Primary completion
Jul 6, 2020
Completion
Jul 6, 2020
Last update
Jul 22, 2020

Study contacts

Lonny Yarmus, DO
principal investigator · Johns Hopkins University

Oversight

Data monitoring committee
Yes
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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This study is terminated, as verified in Jul 2020. You cannot join it, but the record below documents what was studied.

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