Designer blood vessels and therapeutic revascularization

被引:30
作者
Berglund, JD
Galis, ZS
机构
[1] Emory Univ, Dept Med, Div Cardiol, Atlanta, GA 30322 USA
[2] Emory Univ, Georgia Inst Technol, Wallace H Coulter Sch Biomed Engn, Atlanta, GA 30322 USA
关键词
therapeutic revascularization; arterial grafts/replacement; biodegradable scaffolds; angiogenesis; arteriogenesis; tissue engineering; controlled drug delivery; nanofabricated devices;
D O I
10.1038/sj.bjp.0705457
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Inadequate vascular perfusion leads to fatal heart attacks, chronic ulcers, and other serious clinical conditions. The body's capacity to restore vascular perfusion through angiogenesis and arteriogenesis is often impaired by pre-existing disease, and availability of native replacements for nonfunctional arteries is limited in many patients. Thus, recreating blood vessels of various calibres through novel engineering technologies has emerged as a radical option among therapeutic strategies for revascularization. Ranging from artificial, recycled or reassembled natural conduits to sophisticated microdevices, we refer to these as 'designer blood vessels'. Our common efforts to continuously improve vascular replacement design have provided many clues about our own blood vessels, but nature's ability to create nonthrombogenic, immunocompatible, strong, yet biologically responsive blood vessels remains unparalleled. Just as art reproductions never equal the original masterpiece, designer blood vessels may never attain nature's perfection. Nevertheless, they will provide a valuable option as long as they come close enough and are available to many.
引用
收藏
页码:627 / 636
页数:10
相关论文
共 77 条
[1]   Fabrication of topologically complex three-dimensional microfluidic systems in PDMS by rapid prototyping [J].
Anderson, JR ;
Chiu, DT ;
Jackman, RJ ;
Cherniavskaya, O ;
McDonald, JC ;
Wu, HK ;
Whitesides, SH ;
Whitesides, GM .
ANALYTICAL CHEMISTRY, 2000, 72 (14) :3158-3164
[2]   SMALL INTESTINAL SUBMUCOSA AS A LARGE DIAMETER VASCULAR GRAFT IN THE DOG [J].
BADYLAK, SF ;
LANTZ, GC ;
COFFEY, A ;
GEDDES, LA .
JOURNAL OF SURGICAL RESEARCH, 1989, 47 (01) :74-80
[3]   Engineered alignment in media equivalents: Magnetic prealignment and Mandrel compaction [J].
Barocas, VH ;
Girton, TS ;
Tranquillo, RT .
JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME, 1998, 120 (05) :660-666
[4]   A biological hybrid model for collagen-based tissue engineered vascular constructs [J].
Berglund, JD ;
Mohseni, MM ;
Nerem, RM ;
Sambanis, A .
BIOMATERIALS, 2003, 24 (07) :1241-1254
[5]   CD28 function: A balance of costimulatory and regulatory signals [J].
Bour-Jordan, H ;
Bluestone, JA .
JOURNAL OF CLINICAL IMMUNOLOGY, 2002, 22 (01) :1-7
[6]   Bio-smart hydrogels: co-joined molecular recognition and signal transduction in biosensor fabrication and drug delivery [J].
Brahim, S ;
Narinesingh, D ;
Guiseppi-Elie, A .
BIOSENSORS & BIOELECTRONICS, 2002, 17 (11-12) :973-981
[7]  
Campbell JH, 1999, CIRC RES, V85, P1173
[8]  
Carmeliet, 1999, Curr Interv Cardiol Rep, V1, P322
[9]   IMPLANTABLE BIOHYBRID ARTIFICIAL ORGANS [J].
COLTON, CK .
CELL TRANSPLANTATION, 1995, 4 (04) :415-436
[10]   Effects of locally applied vascular endothelial growth factor (VEGF) and VEGF-inhibitor to the rabbit tibia during distraction osteogenesis [J].
Eckardt, H ;
Bundgaard, KG ;
Christensen, KS ;
Lind, M ;
Hansen, ES ;
Hvid, I .
JOURNAL OF ORTHOPAEDIC RESEARCH, 2003, 21 (02) :335-340