Structure-activity relationship study of WSS25 derivatives with anti-angiogenesis effects

被引:19
作者
Chen, Xia [1 ]
Xiao, Fei [1 ]
Wang, Ying [1 ]
Fang, Jianping [1 ]
Ding, Kan [1 ]
机构
[1] Chinese Acad Sci, Shanghai Inst Mat Med, Glycochem & Glycobiol Lab, Shanghai 201203, Peoples R China
关键词
Gastrodia elata; Sulfated polysaccharide derivative; Anti-angiogenesis; WSS25; BONE MORPHOGENETIC PROTEIN; HEPARAN-SULFATE; TUMOR ANGIOGENESIS; GANODERMA-LUCIDUM; MOLECULAR-WEIGHT; IN-VITRO; GROWTH; POLYSACCHARIDES; CELLS; DEGRADATION;
D O I
10.1007/s10719-012-9424-z
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
WGEW, an alpha(1-4) linked glucan with an alpha(1-4) linked branch attached to C-6, was isolated from the rhizoma of Gastrodia elata Bl. WSS25, a sulfated derivative of WGEW, was reported to inhibit angiogenesis by disrupting BMP2/Smad/Id1 signaling pathway. However, the structure-activity relationship (SAR) for WSS25 is not known. To study the SAR, seven sulfated saccharides derived from WGEW degradation products, six sulfated polysaccharides with varying degrees of substitution, and four aminopropylated, carboxymethylated, phosphorylated, and acetylated derivatives of WGEW were prepared. A sulfated, unbranched product of polysaccharide was also obtained. The structural features of these derivatives were characterized by infrared spectroscopy and nuclear magnetic resonance spectroscopy. An HMEC-1 cell tube formation assay was employed to measure the antiangiogenic effect of the derivatives. The results indicated that only sulfated polysaccharides with molecular weights of more than 41,000 Da could inhibit HMEC-1 cell tube formation. The inhibition effect was dependent on the presence of a sulfate group, since the tube formation was not blocked by aminopropylated, carboxymethylated, phosphorylated, or acetylated WGEW. A higher degree of sulfate substitution on the polysaccharide led to a stronger inhibitory effect, and the degree of sulfate substitution between 0.173 and 0.194 was found to be optimal. Interestingly, the WGEW side chain was not required for anti-tube formation activity. All these preliminary results may provide a clue for further modification of the core structure of WSS25 to discover polysaccharide derivatives as novel anti-angiogenic inhibitors.
引用
收藏
页码:389 / 398
页数:10
相关论文
共 33 条
[1]   Chemical modifications of the (1→3)-α-D-glucan from spores of Ganoderma lucidum and investigation of their physicochemical properties and immunological activity [J].
Bao, XF ;
Duan, JY ;
Fang, XY ;
Fang, JN .
CARBOHYDRATE RESEARCH, 2001, 336 (02) :127-140
[2]   Molecular mechanisms and clinical applications of angiogenesis [J].
Carmeliet, Peter ;
Jain, Rakesh K. .
NATURE, 2011, 473 (7347) :298-307
[3]   Heparin-derived heparan sulfate mimics to modulate heparan sulfate-protein interaction in inflammation and cancer [J].
Casu, Benito ;
Naggi, Annamaria ;
Torri, Giangiacomo .
MATRIX BIOLOGY, 2010, 29 (06) :442-452
[4]   Role of angiogenesis in tumor growth and metastasis [J].
Folkman, J .
SEMINARS IN ONCOLOGY, 2002, 29 (06) :15-18
[5]   Opinion - Angiogenesis: an organizing principle for drug discovery? [J].
Folkman, Judah .
NATURE REVIEWS DRUG DISCOVERY, 2007, 6 (04) :273-286
[6]   The kinetics of FGF-2 binding to heparan sulfate proteoglycans and MAP kinase signaling [J].
Forsten-Williams, K ;
Chua, CC ;
Nugent, MA .
JOURNAL OF THEORETICAL BIOLOGY, 2005, 233 (04) :483-499
[7]   HpSulf, a heparan sulfate 6-O-endosulfatase, is involved in the regulation of VEGF signaling during sea urchin development [J].
Fujita, Kazumasa ;
Takechi, Eriko ;
Sakamoto, Naoaki ;
Sumiyoshi, Noriko ;
Izumi, Shunsuke ;
Miyamoto, Tatsuo ;
Matsuura, Shinya ;
Tsurugaya, Toko ;
Akasaka, Koji ;
Yamamoto, Takashi .
MECHANISMS OF DEVELOPMENT, 2010, 127 (3-4) :235-245
[8]   New oligosaccharides prepared by acid hydrolysis of the polysaccharides from Nerium indicum Mill and their anti-angiogenesis activities [J].
Hu, Ke ;
Liu, Qin ;
Wang, Shunchun ;
Ding, Kan .
CARBOHYDRATE RESEARCH, 2009, 344 (02) :198-203
[9]   Enzymatic degradation of cell wall polysaccharides from soybean meal [J].
Huisman, MMH ;
Schols, HA ;
Voragen, AGJ .
CARBOHYDRATE POLYMERS, 1999, 38 (04) :299-307
[10]   CHEMICAL MODIFICATION AND ANTI-TUMOR ACTIVITY OF A D-MANNO-D-GLUCAN FROM MICROELLOBOSPORIA-GRISEA [J].
INOUE, K ;
KAWAMOTO, K ;
NAKAJIMA, H ;
KOHNO, M ;
KADOYA, S ;
MIZUNO, D .
CARBOHYDRATE RESEARCH, 1983, 115 (APR) :199-208