Prostaglandin E2, collagenase, and cell death responses depend on cyclical load magnitude in an explant model of tendinopathy

被引:11
作者
Devkota, Aaditya C.
Weinhold, Paul S. [1 ,2 ]
机构
[1] Univ N Carolina, Orthopaed Res Labs, Dept Orthopaed, Chapel Hill, NC 27599 USA
[2] Univ N Carolina, Dept Biomed Engn, Chapel Hill, NC 27599 USA
关键词
tendon overuse injury; tendinosis; tendon explant; PGE(2); collagenase; cell death; MESSENGER-RNA EXPRESSION; HUMAN TENDON FIBROBLASTS; DIGITAL FLEXOR TENDON; MECHANICAL-PROPERTIES; BIOCHEMICAL-PROPERTIES; EXTRACELLULAR-MATRIX; STRESS DEPRIVATION; EXERCISE; FORCES; TISSUE;
D O I
10.3109/03008200903318261
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Tendinopathy is a significant clinical problem that can result from repetitive activity. While the precise etiology of this condition remains unclear, the cellular response to cyclical loading is believed to have a contributory role to the pathology of tendinopathy. This study examined the short-term biochemical response of avian flexor digitorum profundus tendon to repetitive cyclic loadings of varying magnitude. An in vitro tendon explant model was utilized to apply four levels of haversine tensile stress (peak stress of 0, 3, 12, and 18 MPa) at 1.0 Hz, 8 hr/day for 3 days. The 12 and 18 MPa levels were known to cause significant mechanical damage based on previous work. Tissue media was recovered and analyzed for prostaglandin E-2 (PGE(2)), lactate dehydrogenase (LDH, measure of cell death), and collagenase levels. Tissue samples were recovered and analyzed for cell viability, total collagen, and sulfated glycosaminoglycan content. Collagenase, LDH, and PGE(2) levels were found to be influenced by loading magnitude (p < 0.05) with higher levels being present at higher load magnitudes. Varying cyclical load magnitude caused minimal compositional changes as collagen content and glycosaminoglycan did not change. These results indicate that elevated cyclical mechanical loading of tendon quickly results in altered biochemical tissue responses indicative of tissue injury. More sustained cyclical loading over time may be required for these initial responses to induce more dramatic tissue changes as observed in clinical tendinopathy.
引用
收藏
页码:306 / 313
页数:8
相关论文
共 59 条
[41]   FLEXOR TENDON FORCES - INVIVO MEASUREMENTS [J].
SCHUIND, F ;
GARCIAELIAS, M ;
COONEY, WP ;
AN, KN .
JOURNAL OF HAND SURGERY-AMERICAN VOLUME, 1992, 17A (02) :291-298
[42]   High strain mechanical loading rapidly induces tendon apoptosis: an ex vivo rat tibialis anterior model [J].
Scott, A ;
Khan, KM ;
Heer, J ;
Cook, JL ;
Lian, O ;
Duronio, V .
BRITISH JOURNAL OF SPORTS MEDICINE, 2005, 39 (05)
[43]   Current concepts review tendon injury and tendinopathy: Healing and repair [J].
Sharma, P ;
Maffulli, N .
JOURNAL OF BONE AND JOINT SURGERY-AMERICAN VOLUME, 2005, 87A (01) :187-202
[45]   Neer Award 1999 - Overuse activity injures the supraspinatus tendon in an animal model: A histologic and biomechanical study [J].
Soslowsky, LJ ;
Thomopoulos, S ;
Tun, S ;
Flanagan, CL ;
Keefer, CC ;
Mastaw, J ;
Carpenter, JE .
JOURNAL OF SHOULDER AND ELBOW SURGERY, 2000, 9 (02) :79-84
[46]   Cytokine-induced tendinitis: A preliminary study in rabbits [J].
Stone, D ;
Green, C ;
Rao, U ;
Aizawa, H ;
Yamaji, T ;
Niyibizi, C ;
Carlin, G ;
Woo, SLY .
JOURNAL OF ORTHOPAEDIC RESEARCH, 1999, 17 (02) :168-177
[47]  
Sullo A, 2001, J Orthop Sci, V6, P349, DOI 10.1007/s007760100031
[48]   Leukotriene B4 at low dosage negates the catabolic effect of prostaglandin E2 in human patellar tendon fibroblasts [J].
Thampatty, Bhavani P. ;
Im, Hee-Jeong ;
Wang, James H. -C. .
GENE, 2006, 372 :103-109
[49]   ATP modulates load-inducible IL-1β, COX 2, and MMP-3 gene expression in human tendon cells [J].
Tsuzaki, M ;
Bynum, D ;
Almekinders, L ;
Yang, X ;
Faber, J ;
Banes, AJ .
JOURNAL OF CELLULAR BIOCHEMISTRY, 2003, 89 (03) :556-562
[50]   Stress deprivation simultaneously induces over-expression of interleukin-lbeta, tumor necrosis factor-alpha, and transforming growth factor-beta in fibroblasts and mechanical deterioration of the tissue in the patellar tendone [J].
Uchida, H ;
Tohyama, H ;
Nagashima, K ;
Ohba, Y ;
Matsumoto, H ;
Toyama, Y ;
Yasuda, K .
JOURNAL OF BIOMECHANICS, 2005, 38 (04) :791-798