Identifying Potential Regulators of Infantile Hemangioma Progression through Large-scale Expression Analysis: A Possible Role for the Immune System and Indoleamine 2,3 Dioxygenase (IDO) during Involution
- 1 December 2003
- journal article
- research article
- Published by Mary Ann Liebert Inc in Lymphatic Research and Biology
- Vol. 1 (4) , 291-299
- https://doi.org/10.1089/153968503322758094
Abstract
Hemangiomas are benign endothelial tumors. Often referred to as hemangiomas of infancy (HOI), these tumors are the most common tumor of infancy. Most of these lesions proliferate rapidly in the first months of life, and subsequently slowly involute during early childhood without significant complications. However, they often develop on the head or neck, and may pose a significant cosmetic concern for families. In addition, a fraction of these tumors can grow explosively and ulcerate, bleed, or obstruct vision or airway structures. Current treatments for these tumors are associated with significant side effects, and our knowledge of the biology of hemangiomas is limited. The natural evolution of these lesions creates a unique opportunity to study the changes in gene expression that occur as the endothelium of these tumors proliferates and then subsequently regresses. Such information may also increase our understanding of the basic principals of angiogenesis in normal and abnormal tissue. We have performed largescale genomic analysis of hemangioma gene expression using DNA microarrays. We recently identified insulin-like growth factor 2 as a potentially important regulator of hemangioma growth using this approach. However, little is known about the mechanisms involved in hemangioma involution. Here we explore the idea that hemangioma involution might be an immune-mediated process and present data to support this concept. We also demonstrate that proliferating hemangiomas express indoleamine 2,3 dioxygenase (IDO) and discuss a possible mechanism that accounts for the often slow regression of these lesions.Keywords
This publication has 30 references indexed in Scilit:
- Tryptophan-derived Catabolites Are Responsible for Inhibition of T and Natural Killer Cell Proliferation Induced by Indoleamine 2,3-DioxygenaseThe Journal of Experimental Medicine, 2002
- The G2/M Regulator 14-3-3ς Prevents Apoptosis through Sequestration of BaxJournal of Biological Chemistry, 2001
- Clonality and altered behavior of endothelial cells from hemangiomasJournal of Clinical Investigation, 2001
- A Novel In Vitro Human Model of HemangiomaLaboratory Investigation, 2000
- Vessel Cooption, Regression, and Growth in Tumors Mediated by Angiopoietins and VEGFScience, 1999
- Increased Apoptosis Coincides with Onset of Involution in Infantile HemangiomaMicrocirculation, 1998
- Successful Treatment of Infantile Hemangiomas with Interferon-α-2bJournal of Pediatric Hematology/Oncology, 1997
- Proliferation and Apoptosis Within Juvenile Capillary HemangiomasThe American Journal of Dermatopathology, 1996
- Requirement of Vascular Integrin α v β 3 for AngiogenesisScience, 1994
- Interferon alpha therapy of haemangiomas in newborns and infantsBritish Journal of Haematology, 1991