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E-cigarette, or vaping, product use-associated lung injury in adolescents: a review of imaging features

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Abstract

Background

There has been a recent increase in recognition of lung disease related to the use of electronic cigarettes (called “vaping”). These patients present with acute respiratory illness following exposure to vaporized cannabis or nicotine products and sometimes require hospitalization and intensive care. We describe the imaging findings of this disease entity in the pediatric population.

Objective

To describe the radiologic findings of lung injury associated with electronic cigarette use (vaping) in the adolescent pediatric population.

Materials and methods

We identified all adolescents with acute respiratory illness and a history of electronic cigarette use who presented at our institution within a 3-month period (June 2019 through August 2019). We excluded adolescents with potential intercurrent pulmonary disease. We reviewed the charts for symptomatology and laboratory and pathology data. In addition, we reviewed the chest radiographs and chest CTs of these adolescents.

Results

The review group consisted of 12 teenage pediatric patients (10 boys and 2 girls; mean age 16.9 years, range 16.0–17.7 years) with acute respiratory illness found to have a temporal association with electronic cigarette use for cannabis products, nicotine, or both. Other etiologies for illness in these adolescents had been excluded by clinical and laboratory evaluation. All of the adolescents were admitted to the hospital for treatment. The clinical presentations included dyspnea, abdominal pain and constitutional symptoms. Pulmonary function testing that was performed in all patients during admission or follow-up demonstrated reduced diffusion capacity in 4/12 (33%), an obstructive ventilatory pattern in 4/12 (33%), a restrictive pattern in 1/12 (8%), and a mixed obstructive and restrictive pattern in 2/12 (17%) adolescents. Bronchoalveolar lavage studies, performed in 9 of the 12 adolescents, revealed inflammatory cells and lipid-laden macrophages. All of the patients underwent CT of the chest; the findings were notable for centrilobular ground-glass nodules (11/12; 92%) and confluent ground-glass opacities (12/12; 100%), with frequent subpleural sparing (9/12; 75%). Additionally, 6/12 (50%) adolescents demonstrated small pleural effusions; 6/12 (50%) had mild bronchial wall thickening; 9/12 (75%) had enlarged hilar or mediastinal lymph nodes; and 2/12 (17%) had a small pericardial effusion.

Conclusion

As seen in our teenage population, e-cigarette, or vaping, product use-associated lung injury (EVALI) is characterized by centrilobular ground-glass nodules and ground-glass opacities with subpleural sparing. The imaging findings are most consistent with acute lung injury resulting from toxic inhalation. Because adolescent pediatric patients might not be forthcoming with their history of electronic cigarette use, it is important for the pediatric radiologist to be aware of the imaging patterns of this disease.

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References

  1. Hopkins Tanne J (2019) Vaping: CDC investigates severe lung injuries. BMJ 366:l5228

    Article  Google Scholar 

  2. Rimmer A, Iacobucci G (2019) Vaping: CDC investigation continues after patient dies from severe lung injuries. BMJ 366:l5320

    Article  Google Scholar 

  3. Layden JE, Ghinai I, Pray I et al (2019) Pulmonary illness related to e-cigarette use in Illinois and Wisconsin — preliminary report. N Engl J Med. https://doi.org/10.1056/NEJMoa1911614

  4. Centers for Disease Control and Prevention (2019) Severe pulmonary disease associated with electronic-cigarette–product use — interim guidance. https://www.cdc.gov/mmwr/volumes/68/wr/mm6836e2.htm. Accessed 31 Oct 2019

  5. Centers for Disease Control and Prevention (2016) E-cigarette use among youth and young adults: a report of the surgeon general. https://www.ncbi.nlm.nih.gov/books/NBK538684/. Accessed 31 Oct 2019

  6. Cooke A, Fergeson J, Bulkhi A, Casale TB (2015) The electronic cigarette: the good, the bad, and the ugly. J Allergy Clin Immunol Pract 3:498–505

    Article  Google Scholar 

  7. Wang MP, Ho SY, Leung LT, Lam TH (2016) Electronic cigarette use and respiratory symptoms in Chinese adolescents in Hong Kong. JAMA Pediatr 170:89–91

    Article  Google Scholar 

  8. McConnell R, Barrington-Trimis JL, Wang K et al (2017) Electronic cigarette use and respiratory symptoms in adolescents. Am J Respir Crit Care Med 195:1043–1049

    Article  Google Scholar 

  9. Sommerfeld CG, Weiner DJ, Nowalk A, Larkin A (2018) Hypersensitivity pneumonitis and acute respiratory distress syndrome from e-cigarette use. Pediatrics 141

    Article  Google Scholar 

  10. Agustin M, Yamamoto M, Cabrera F, Eusebio R (2018) Diffuse alveolar hemorrhage induced by vaping. Case Rep Pulmonol 2018:9724530

    PubMed  PubMed Central  Google Scholar 

  11. Arter ZL, Wiggins A, Hudspath C et al (2019) Acute eosinophilic pneumonia following electronic cigarette use. Respir Med Case Rep 27:100825

    PubMed  PubMed Central  Google Scholar 

  12. Viswam D, Trotter S, Burge PS, Walters GI (2018) Respiratory failure caused by lipoid pneumonia from vaping e-cigarettes. BMJ Case Rep. https://doi.org/10.1136/bcr-2018-224350

  13. Itoh M, Aoshiba K, Herai Y et al (2018) Lung injury associated with electronic cigarettes inhalation diagnosed by transbronchial lung biopsy. Respirol Case Rep 6:e00282

    PubMed  Google Scholar 

  14. Centers for Disease Control and Prevention (2019) Outbreak of lung injury associated with e-cigarette use, or vaping. https://www.cdc.gov/tobacco/basic_information/e-cigarettes/severe-lung-disease.html. Accessed 31 Oct 2019

  15. Attili AK, Kazerooni EA, Gross BH et al (2008) Smoking-related interstitial lung disease: radiologic-clinical-pathologic correlation. Radiographics 28:1383–1396

    Article  Google Scholar 

  16. Franks TJ, Galvin JR (2015) Smoking-related “interstitial” lung disease. Arch Pathol Lab Med 139:974–977

    Article  Google Scholar 

  17. Henry TS, Kligerman SJ, Raptis CA et al (2019) Imaging findings of vaping-associated lung injury. AJR Am J Roentgenol. https://doi.org/10.2214/AJR.19.22251

  18. Rossi G, Cavazza A, Spagnolo P et al (2017) The role of macrophages in interstitial lung diseases: number 3 in the series “Pathology for the clinician” edited by Peter Dorfmuller and Alberto Cavazza. Eur Respir Rev 26

    Article  Google Scholar 

  19. Butt YM, Smith ML, Tazelaar HD et al (2019) Pathology of vaping-associated lung injury. N Engl J Med 381:1780–1781

    Article  Google Scholar 

  20. Stockley J, Sapey E, Gompertz S et al (2018) Pilot data of the short-term effects of e-cigarrette [sic] vaping on lung function. Eur Respir J 52

  21. Cao L, Zhang XG, Wang JG et al (2016) Pulmonary function test findings in patients with acute inhalation injury caused by smoke bombs. J Thorac Dis 8:3160–3167

    Article  Google Scholar 

  22. Choi JW, Lee KS, Chung MP et al (2005) Giant cell interstitial pneumonia: high-resolution CT and pathologic findings in four adult patients. AJR Am J Roentgenol 184:268–272

    Article  Google Scholar 

  23. Elicker BM, Jones KD, Henry TS, Collard HR (2016) Multidisciplinary approach to hypersensitivity pneumonitis. J Thorac Imaging 31:92–103

    Article  Google Scholar 

  24. Betancourt SL, Martinez-Jimenez S, Rossi SE et al (2010) Lipoid pneumonia: spectrum of clinical and radiologic manifestations. AJR Am J Roentgenol 194:103–109

    Article  Google Scholar 

  25. Bell MM (2015) Lipoid pneumonia: an unusual and preventable illness in elderly patients. Can Fam Physician 61:775–777

    PubMed  PubMed Central  Google Scholar 

  26. Centers for Disease Control and Prevention (2019) Update: interim guidance for health care providers evaluating and caring for patients with suspected e-cigarette, or vaping, product use associated lung injury — United States, October 2019. https://www.cdc.gov/mmwr/volumes/68/wr/mm6841e3.htm. Accessed 31 Oct 2019

  27. Hsu G, Sun JY, Zhu SH (2018) Evolution of electronic cigarette brands from 2013-2014 to 2016-2017: analysis of brand websites. J Med Internet Res 20:e80

    Article  Google Scholar 

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Correspondence to Sachin S. Kumbhar.

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Thakrar, P.D., Boyd, K.P., Swanson, C.P. et al. E-cigarette, or vaping, product use-associated lung injury in adolescents: a review of imaging features. Pediatr Radiol 50, 338–344 (2020). https://doi.org/10.1007/s00247-019-04572-5

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  • DOI: https://doi.org/10.1007/s00247-019-04572-5

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