Synthetic oligosaccharide stimulates and stabilizes angiogenesis: Structure-function relationships and potential mechanisms

被引:18
|
作者
Mousa, S. A.
Feng, X.
Xie, J.
Du, Y.
Hua, Y.
He, H.
O'Connor, L.
Linhardt, R. J.
机构
[1] Albany Coll Pharm, Pharmaceut Res Inst, Albany, NY 12208 USA
[2] Rensselaer Polytech Inst, Ctr Biotechnol, Dept Biol Chem & Chem Biol, Troy, NY USA
[3] Rensselaer Polytech Inst, Ctr Biotechnol, Dept Chem & Biol Engn, Troy, NY USA
[4] Chinese Acad Sci, Ecoenvironm Sci Res Ctr, Beijing, Peoples R China
关键词
angiogenesis; oligosaccharides; alpha v beta 3 integrin; growth factors; mitogen-activated protein kinase;
D O I
10.1097/01.fjc.0000238591.90062.62
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
To determine the proangiogenesis effect of series of saccharides and a synthetic oligosaccharide and potential mechanisms, an in vitro 3-dimensional endothelial cell sprouting (3D-ECS) assay and the chick chorioallantoic membrane (CAM) model were used. We demonstrated that a sulfated oligosaccharide significantly promotes the endothelial capillary network initiated by vascular endothelial growth factor (VEGF) and basic fibroblast growth factor (b-FGF). Furthermore, although the capillary network initiated by VEGF and b-FGF lasts no more than 7 days, addition of a sulfated oligosaccharide significantly amplifies angiogenesis and stabilizes the capillary network of new blood vessels. In the CAM model, sulfated oligosaccharide also stimulated angiogenesis. In both the CAM and the 3D-ECS assay, structure-function studies reveal that increased saccharide chain length up to the hexa-to decasaccharide show optimal proangiogenesis efficacy. In addition, the sulfation and molecular shape (branched vs linear) of oligosaccharide are important for sustained proangiogenesis efficacy. Data indicate that chemically defined synthetic oligosaccharides can play an important role in regulation of capillary structure and stability, which may contribute to future advances in therapeutic angiogenesis. The proangiogenesis efficacy of an oligosaccharide is mediated via integrin alpha v beta 3 and involves mitogen-activated protein kinase signaling mechanisms.
引用
收藏
页码:6 / 13
页数:8
相关论文
共 50 条
  • [2] INTERPRETATION OF THE STRUCTURE-FUNCTION RELATIONSHIPS IN SYNTHETIC HDL NANODISCS
    Giorgi, L.
    Niemela, A.
    Kumpula, E. -P.
    Parkkila, P.
    Natri, O.
    Huiskonen, J.
    Koivuniemi, A.
    ATHEROSCLEROSIS, 2023, 379 : S58 - S59
  • [3] Structure-function relationships in the complexation of steroids by a synthetic receptor
    Fürer, A
    Marti, T
    Diederich, F
    Kunzer, H
    Brehm, M
    HELVETICA CHIMICA ACTA, 1999, 82 (11) : 1843 - 1859
  • [4] Production, structure-function relationships, mechanisms, and applications of antifreeze peptides
    Chen, Xu
    Wu, Jinhong
    Cai, Xixi
    Wang, Shaoyun
    COMPREHENSIVE REVIEWS IN FOOD SCIENCE AND FOOD SAFETY, 2021, 20 (01) : 542 - 562
  • [5] Molecular mechanisms of bisphosphonate action: insight into structure-function relationships
    Rogers, M. J.
    Roelofs, A. J.
    Coxon, F. P.
    CLINICAL & EXPERIMENTAL METASTASIS, 2008, 25 : 27 - 28
  • [6] MEMBRANE POTENTIAL CONTROL OF CONTRACTILITY - APPROACH TO STRUCTURE-FUNCTION RELATIONSHIPS
    NASSAR, R
    JOHNSON, EA
    MANRING, A
    JOURNAL OF GENERAL PHYSIOLOGY, 1971, 58 (06): : 705 - &
  • [7] Structure-function relationships of epoxide hydrolases and their potential use in biocatalysis
    Widersten, Mikael
    Gurell, Ann
    Lindberg, Diana
    BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS, 2010, 1800 (03): : 316 - 326
  • [8] STRUCTURE-FUNCTION RELATIONSHIPS IN SUBTILISIN
    ESTELL, DA
    GRAYCAR, TP
    ADAMS, R
    POWER, SD
    ULLTSCH, M
    BOTT, RR
    CUNNINGHAM, BC
    CARTER, P
    WELLS, JA
    BIOCHEMISTRY, 1988, 27 (08) : 3078 - 3078
  • [9] ACTIVATION AND STRUCTURE-FUNCTION RELATIONSHIPS
    ROBBINS, KC
    SUMMARIA, L
    MICROVASCULAR RESEARCH, 1973, 6 (02) : 253 - 253
  • [10] Structure-function relationships in the ferritins
    Harrison, PM
    Hempstead, PD
    Artymiuk, PJ
    Andrews, SC
    METAL IONS IN BIOLOGICAL SYSTEMS, VOL 35: IRON TRANSPORT AND STORAGE IN MICROORGANISMS, PLANTS, AND ANIMALS, 1998, 35 : 435 - 477