Case Report of Painful Nodules in Lipedema: Correlation between Qualitative Ultrasonographic Classification and Histological Findings
- 1 Ultrasound Department of Rede D’Or Radiology, São Paulo, Brazil
- 2 Ultrasound Department of Rede D’Or Radiology, São Paulo, Brazil
- 3 Ultrasound Department of Rede D’Or Radiology, São Paulo, Brazil
- 4 Ultrasound Department of Rede D’Or Radiology, São Paulo, Brazil
- 5 Ultrasound Department of Rede D’Or Radiology, São Paulo, Brazil
- 6 Ultrasound Department of Rede D’Or Radiology, São Paulo, Brazil
- 7 Ultrasound Department of Rede D’Or Radiology, São Paulo, Brazil
- 8 Ultrasound Department of Rede D’Or Radiology, São Paulo, Brazil
- 9 Ultrasound Department of Rede D’Or Radiology, São Paulo, Brazil
- 10 Ultrasound Department of Rede D’Or Radiology, São Paulo, Brazil
- 11 Ultrasound Department of Rede D’Or Radiology, São Paulo, Brazil
- 12 Ultrasound Department of Rede D’Or Radiology, São Paulo, Brazil
- 13 Ultrasound Department of Rede D’Or Radiology, São Paulo, Brazil
Abstract
Lipedema is a chronic and progressive condition characterized by the disproportionate accumulation of subcutaneous adipose tissue predominantly in the upper and lower limbs, sparing the trunk, hands, and feet. It affects approximately 12.3% of the female population in Brazil. Clinically diagnosed, its most common symptoms include tenderness upon palpation and spontaneous bruising. During the development of a qualitative ultrasonographic classification for lipedema, termed Lipedema Dermis and Hypodermis Classification (LDHC), an echogenic nodule was identified in the superficial hypodermis. This nodule was painful upon superficial palpation and lacked ultrasonographic features of a lipoma. The patient presented with a nodule in the distal posterior region of the right thigh and another on the distal posterior of the right arm. Given the possible differential diagnoses, including neoplasia and angiodysplasia, an ultrasound-guided biopsy was performed. Macroscopic analysis revealed an oval-shaped, reddish nodule, suggestive of blood content. Histological analysis revealed areas of steatonecrosis, hemorrhagic foci, and neoangiogenesis with irregular architecture and fragile vessel walls. Complementary analysis of the resistance index (RI) of superficial hypodermal arteries demonstrated an increased RI in the lipedema patient compared to the control. All these findings suggest that the tissue is hypoxic and characterized by chronic inflammation, supporting the hypothesis of increased subcutaneous compartment pressure in lipedema. This case report elucidates the ultrasonographic findings of nodules classified by LDHC through microscopic anatomical correlation and aids in understanding the pathophysiological mechanisms underlying lipedema.
- Amato, A.C.M., Amato, F.C.M., Amato, J.L.S. and Benitti, D.A. (2022) Lipedema Prevalence and Risk Factors in Brazil. Jornal Vascular Brasileiro , 21, e20210198. https://doi.org/10.1590/1677-5449.202101982
- Forner‐Cordero, I., Szolnoky, G., Forner‐Cordero, A. and Kemény, L. (2012) Lipedema: An Overview of Its Clinical Manifestations, Diagnosis and Treatment of the Disproportional Fatty Deposition Syndrome—Systematic Review. Clinical Obesity , 2, 86-95. https://doi.org/10.1111/j.1758-8111.2012.00045.x
- Herbst, K.L., Mirkovskaya, L., Bharhagava, A., Chava, Y. and Te, C.H.T. (2015) Lipedema Fat and Signs and Symptoms of Illness, Increase with Advancing Stage. https://www.archivesofmedicine.com/abstract/lipedema-fat-and-signs-and-symptoms-of-illness-increase-with-advancing-stage-6744.html
- Allen, M., Schwartz, M. and Herbst, K.L. (2020) Interstitial Fluid in Lipedema and Control Skin. Women ’ s Health Reports , 1, 480-487. https://doi.org/10.1089/whr.2020.0086
- Rasmussen, J.C., Aldrich, M.B., Fife, C.E., Herbst, K.L. and Sevick‐Muraca, E.M. (2022) Lymphatic Function and Anatomy in Early Stages of Lipedema. Obesity , 30, 1391-1400. https://doi.org/10.1002/oby.23458
- Herbst, K.L. (2012) Rare Adipose Disorders (Rads) Masquerading as Obesity. Acta Pharmacologica Sinica , 33, 155-172. https://doi.org/10.1038/aps.2011.153
- Amato, A.C.M., Saucedo, D.Z., Santos, K.d.S. and Benitti, D.A. (2021) Ultrasound Criteria for Lipedema Diagnosis. Phlebology : The Journal of Venous Disease , 36, 651-658. https://doi.org/10.1177/02683555211002340
- van la Parra, R.F.D., Deconinck, C. and Krug, B. (2023) Diagnostic Imaging in Lipedema: A Systematic Review. Obesity Reviews , 25, e13648. https://doi.org/10.1111/obr.13648
- Vargas, D., Santos, A.M.R., Bueno, A.N., Bezerra, A.S., Bianchi, M.d.A. and Amato, A.C.M. (2025) The Challenge of a Qualitative Ultrasonographic Classification in Lipedema. Journal of Biomedical Science and Engineering , 18, 106-112. https://doi.org/10.4236/jbise.2025.184008
- Katzer, K., Hill, J.L., McIver, K.B. and Foster, M.T. (2021) Lipedema and the Potential Role of Estrogen in Excessive Adipose Tissue Accumulation. International Journal of Molecular Sciences , 22, Article 11720. https://doi.org/10.3390/ijms222111720
- Alosaimi, K., Mortada, H. and Alshomer, F. (2024) Characteristics and Clinical Features of Patients with Lipedema in Saudi Arabia: A Cross-Sectional Comprehensive Assessment. Plastic and Reconstructive Surgery — Global Open , 12, e6173. https://doi.org/10.1097/gox.0000000000006173