Insulin-like growth factor-I receptor activity is essential for Kaposi's sarcoma growth and survival

被引:0
作者
S-B Catrina
M Lewitt
C Massambu
A Dricu
J Grünler
M Axelson
P Biberfeld
K Brismar
机构
[1] Diabetes Center Karolinska,Department of Molecular Medicine
[2] Karolinska Hospital,Department of Clinical Chemistry
[3] M1:02,undefined
[4] Karolinska Institutet,undefined
[5] Immunopathology Lab,undefined
[6] Karolinska Hospital,undefined
[7] M1:02,undefined
[8] Karolinska Institutet,undefined
[9] Karolinska Hospital,undefined
[10] M1:02,undefined
[11] Karolinska Institutet,undefined
来源
British Journal of Cancer | 2005年 / 92卷
关键词
Kaposi's sarcoma; IGF-I; IGF-II IGF-IR; VEGF; proliferation; growth factors; apoptosis; picropodophyllin;
D O I
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学科分类号
摘要
Kaposi's sarcoma (KS) is a highly vascular tumour and is the most common neoplasm associated with human immunodeficiency virus (HIV-1) infection. Growth factors, in particular vascular endothelial growth factor (VEGF), have been shown to play an important role in its development. The role of insulin-like growth factors (IGFs) in the pathophysiology of different tumours led us to evaluate the role of IGF system in KS. The IGF-I receptors (IGF-IR) were identified by immunohistochemistry in biopsies taken from patients with different AIDS/HIV-related KS stages and on KSIMM cells (an established KS-derived cell line). Insulin-like growth factor-I is a growth factor for KSIMM cells with a maximum increase of 3H-thymidine incorporation of 130±27.6% (P<0.05) similar to that induced by VEGF and with which it is additive (281±13%) (P<0.05). Moreover, specific blockade of the receptor (either by α IR3 antibody or by picropodophyllin, a recently described selective IGF-IR tyrosine phosphorylation inhibitor) induced KSIMM apoptosis, suggesting that IGF-IR agonists (IGF-I and -II) mediate antiapoptotic signals for these cells. We were able to identify an autocrine loop essential for KSIMM cell survival in which IGF-II is the IGF-IR agonist secreted by the cells. In conclusion, IGF-I pathway inhibition is a promising therapeutical approach for KS tumours.
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页码:1467 / 1474
页数:7
相关论文
共 236 条
  • [1] Albini A(1999)Somatostatin controls Kaposi's sarcoma tumor growth through inhibition of angiogenesis FASEB J 13 647-655
  • [2] Florio T(1997)The beta-core fragment of human chorionic gonadotrophin inhibits growth of Kaposi's sarcoma-derived cells and a new immortalized Kaposi's sarcoma cell line AIDS 11 713-721
  • [3] Giunciuglio D(2000)The role of vascular endothelial growth factor (VEGF) in AIDS-related Kaposi's sarcoma Oncologist 5 28-31
  • [4] Masiello L(1991)Comparison of acid ethanol extraction and acid gel filtration prior to IGF-I and IGF-II radioimmunoassays: improvement of determinations in acid ethanol extracts by the use of truncated IGF-I as radioligand Acta Endocrinol (Copenh) 124 620-629
  • [5] Carlone S(2002)AIDS-related malignancies Nat Rev Cancer 2 373-382
  • [6] Corsaro A(1999)Highly active anti-retroviral therapy (HAART) prolongs time to treatment failure in Kaposi's sarcoma AIDS 13 2105-2111
  • [7] Thellung S(2004)Role of Pax2 in apoptosis resistance and proinvasive phenotype of Kaposi's sarcoma cells J Biol Chem 279 4136-4143
  • [8] Cai T(2004)Role of Pax2 in apoptosis resistance and proinvasive phenotype of Kaposi's sarcoma cells J Biol Chem 279 4136-4143
  • [9] Noonan DM(2002)Low levels of apoptosis and high FLIP expression in early rheumatoid arthritis synovium Ann Rheum Dis 61 934-936
  • [10] Schettini G(1999)A cytotoxic, apoptotic, low-molecular weight factor from pineal gland Life Sci 65 1047-1057