Obesity increases inflammation and impairs lymphatic function in a mouse model of lymphedema Journal Article


Authors: Savetsky, I. L.; Torrisi, J. S.; Cuzzone, D. A.; Ghanta, S.; Albano, N. J.; Gardenier, J. C.; Joseph, W. J.; Mehrara, B. J.
Article Title: Obesity increases inflammation and impairs lymphatic function in a mouse model of lymphedema
Abstract: Although obesity is a major clinical risk factor for lymphedema, the mechanisms that regulate this effect remain unknown. Recent reports have demonstrated that obesity is associated with acquired lymphatic dysfunction. The purpose of this study was to determine how obesity-induced lymphatic dysfunction modulates the pathological effects of lymphatic injury in a mouse model. We used a diet-induced model of obesity in adult male C57BL/6J mice in which experimental animals were fed a high-fat diet and control animals were fed a normal chow diet for 8-10 wk. We then surgically ablated the superficial and deep lymphatics of the midportion of the tail. Six weeks postoperatively, we analyzed changes in lymphatic function, adipose deposition, inflammation, and fibrosis. We also compared responses to acute inflammatory stimuli in obese and lean mice. Compared with lean control mice, obese mice had baseline decreased lymphatic function. Lymphedema in obese mice further impaired lymphatic function and resulted in increased subcutaneous adipose deposition, increased CD45+ and CD4+ cell inflammation (P < 0.01), and increased fibrosis, but caused no change in the number of lymphatic vessels. Interestingly, obese mice had a significantly increased acute inflammatory reaction to croton oil application. In conclusion, obese mice have impaired lymphatic function at baseline that is amplified by lymphatic injury. This effect is associated with increased chronic inflammation, fibrosis, and adipose deposition. These findings suggest that obese patients are at higher risk for lymphedema due to impaired baseline lymphatic clearance and an increased propensity for inflammation in response to injury.© 2014 the American Physiological Society.
Keywords: inflammation; obesity; lymphedema; fibrosis
Journal Title: American Journal of Physiology - Heart and Circulatory Physiology
Volume: 307
Issue: 2
ISSN: 0363-6135
Publisher: American Physiological Society  
Date Published: 2014-07-15
Start Page: H165
End Page: H172
Language: English
DOI: 10.1152/ajpheart.00244.2014
PROVIDER: scopus
PMCID: PMC4101643
PUBMED: 24858842
DOI/URL:
Notes: Export Date: 1 August 2014 -- CODEN: AJPPD -- Source: Scopus
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MSK Authors
  1. Babak Mehrara
    448 Mehrara
  2. Nicholas James Albano
    19 Albano
  3. Daniel Adam Cuzzone
    24 Cuzzone
  4. Swapna Ghanta
    19 Ghanta
  5. Walter John Joseph
    14 Joseph
  6. Jeremy   Torrisi
    27 Torrisi