231
Views
11
CrossRef citations to date
0
Altmetric
Original Articles

Metabolic and cytoprotective effects of in vivo peri-patellar hyaluronic acid injections in cultured tenocytes

, , , , , , , , & show all
Pages 35-43 | Received 01 Jul 2014, Accepted 01 Oct 2014, Published online: 13 Nov 2014

References

  • Clegg PD, Strassburg S, Smith RK. Cell phenotypic variation in normal and damaged tendons. Int J Exp Pathol 2007;88:227–35
  • Maffulli N, Wong J, Almekinders LC. Types and epidemiology of tendinopathy. Clin Sports Med 2003;22:675–92
  • Sharma P, Maffulli N. Tendon injury and tendinopathy: healing and repair. J Bone Joint Surg Am 2005;87:187–202
  • Stanley RL, Goodship AE, Edwards B, Firth EC, Patterson-Kane JC. Effects of exercise on tenocyte cellularity and tenocyte nuclear morphology in immature and mature equine digital tendons. Equine Vet J 2008;40:141–6
  • Torricelli P, Veronesi F, Pagani S, Maffulli N, Masiero S, Frizziero A, Fini M. In vitro tenocyte metabolism in aging and oestrogen deficiency. Age (Dordr) 2013;35:2125–36
  • Frizziero A, Fini M, Salamanna F, Veicsteinas A, Maffulli N, Marini M. Effect of training and sudden detraining on the patellar tendon and its enthesis in rats. BMC Musculoskelet Disord 2011;12:20
  • Kubo K, Ikebukuro T, Maki A, Yata H, Tsunoda N. Time course of changes in the human Achilles tendon properties and metabolism during training and detraining in vivo. Eur J Appl Physiol 2012;112:2679–91
  • Andersen LL, Andersen JL, Magnusson SP, Suetta C, Madsen JL, Christensen LR, Aagaard P. Changes in the human muscle force-velocity relationship in response to resistance training and subsequent detraining. J Appl Physiol 2005;99:87–94
  • Abate M, Schiavone C, Salini V. The use of hyaluronic acid after tendon surgery and in tendinopathies. Biomed Res Int 2014;2014:783632. doi: 10.1155/2014/783632
  • Ozgenel GY, Etöz A. Effects of repetitive injections of hyaluronic acid on peritendinous adhesions after flexor tendon repair: a preliminary randomized, placebo-controlled clinical trial. Ulusal Travma ve Acil Cerrahi Dergisi 2012;18:11–17
  • Park JB, Kwak HJ, Lee SH. Role of hyaluronan in glioma invasion. Cell Adhes Migration 2008;2:202–7
  • Zou X, Li H, Chen L, Baatrup A, Bünger C, Lind M. Stimulation of porcine bone marrow stromal cells by hyaluronan, dexamethasone and rhBMP-2. Biomaterials 2004;25:5375–85
  • Frizziero A, Salamanna F, Giavaresi G, Ferrari A, Martini L, Marini M, Veicsteinas A, Maffulli N, Masiero S, Fini M. Hyaluronic acid injections protect patellar tendon from detraining-associated damage. Histol Histopathol 2014; accepted for publication
  • Salucci S, Burattini S, Baldassarri V, Battistelli M, Canonico B, Valmori A, Papa S, Falcieri E. The peculiar apoptotic behavior of skeletal muscle cells. Histol Histopathol 2013;28:1073–87
  • Zhou Z, Akinbiyi T, Xu L, Ramcharan M, Leong DJ, Ros SJ, Colvin AC, Schaffler MB, Majeska RJ, Flatow EL, Sun HB. Tendon-derived stem/progenitor cell aging: defective self-renewal and altered fate. Aging Cell 2010;9:911–15
  • Rui YF, Lui PP, Li G, Fu SC, Lee YW, Chan KM. Isolation and characterization of multipotent rat tendon-derived stem cells. Tissue Eng Part A 2010;16:1549–58
  • Wang JH, Guo Q, Li B. Tendon biomechanics and mechanobiology – a minireview of basic concepts and recent advancements. J Hand Ther 2012;25:133–40
  • Schulze-Tanzil G, Mobasheri A, Clegg PD, Sendzik J, John T, Shakibaei M. Cultivation of human tenocytes in high-density culture. Histochem Cell Biol 2004;122:219–28
  • Takahasih S, Nakajima M, Kobayashi M, Wakabayashi I, Miyakoshi N, Minagawa H, Itoi E. Effect of recombinant basic fibroblast growth factor (bFGF) on fibroblast-like cells from human rotator cuff tendon. Tohoku J Exp Med 2002;198:207–14
  • Ehlers TW, Vogel KG. Proteoglycan synthesis by fibroblasts from different regions of bovine tendon cultured in alginate beads. Comp Biochem Physiol A Mol Integr Physiol 1998;121:355–63
  • Mazzocca AD, Chowaniec D, McCarthy MB, Beitzel K, Cote MP, McKinnon W, Arciero R. In vitro changes in human tenocyte cultures obtained from proximal biceps tendon: multiple passages result in changes in routine cell markers. Knee Surg Sports Traumatol Arthrosc 2012;20:1666–72
  • Yao L, Bestwick CS, Bestwick LA, Aspden RM, Maffulli N. Non-immortalized human tenocyte cultures as a vehicle for understanding cellular aspects to tendinopathy. Transl Med UniSa 2011;1:173–94
  • Zhang J, Wang JH. Characterization of differential properties of rabbit tendon stem cells and tenocytes. BMC Musculoskelet Disord 2010;11:10
  • Maffulli N, Ewen SW, Waterston SW, Reaper J, Barrass V. Tenocytes from ruptured and tendinopathic achilles tendons produce greater quantities of type III collagen than tenocytes from normal achilles tendons. An in vitro model of human tendon healing. Am J Sports Med 2000;28:499–505
  • Magnusson SP, Hansen P, Kjaer M. Tendon properties in relation to muscular activity and physical training. Scand J Med Sci Sports 2003;13:211–23
  • Gao Y, Kostrominova TY, Faulkner JA, Wineman AS. Age-related changes in the mechanical properties of the epimysium in skeletal muscles of rats. J Biomech 2008;41:465–9
  • Pankov R, Yamada KM. Fibronectin at a glance. J Cell Sci 2002;115:3861–3
  • Kadler KE, Hill A, Canty-Laird EG. Collagen fibrillogenesis: fibronectin, integrins, and minor collagens as organizers and nucleators. Curr Opin Cell Biol 2008;20:495–501
  • Ilic MZ, Carter P, Tyndall A, Dudhia J, Handley CJ. Proteoglycans and catabolic products of proteoglycans present in ligament. Biochem J 2005;385:381–8
  • Samiric T, Ilic MZ, Handley CJ. Characterisation of proteoglycans and their catabolic products in tendon and explant cultures of tendon. Matrix Biol 2004;23:127–40
  • Kannus P, Jozsa L, Järvinen TA, Järvinen TL, Kvist M, Natri A, Järvinen M. Location and distribution of non-collagenous matrix proteins in musculoskeletal tissues of rat. Histochem J 1998;30:799–810
  • Brandau O, Meindl A, Fässler R, Aszódi A. A novel gene, tendin, is strongly expressed in tendons and ligaments and shows high homology with chondromodulin-I. Dev Dyn 2001;221:72–80
  • Mackie EJ, Ramsey S. Expression of tenascin in joint-associated tissues during development and postnatal growth. J Anat 1996;188:157–65
  • Jones GC, Corps AN, Pennington CJ, Clark IM, Edwards DR, Bradley MM, Hazleman BL, Riley GP. Expression profiling of metalloproteinases and tissue inhibitors of metalloproteinases in normal and degenerate human achilles tendon. Arthritis Rheum 2006;54:832–42
  • Archambault JM, Elfervig-Wall MK, Tsuzaki M, Herzog W, Banes AJ. Rabbit tendon cells produce MMP-3 in response to fluid flow without significant calcium transients. J Biomech 2002;35:303–9
  • Tsuzaki M, Guyton G, Garrett W, Archambault JM, Herzog W, Almekinders L, Bynum D, Yang X, Banes AJ. IL-1 beta induces COX2, MMP-1, -3 and -13, ADAMTS-4, IL-1 beta and IL-6 in human tendon cells. J Orthop Res 2003;21:256–64
  • Corps AN, Harrall RL, Curry VA, Fenwick SA, Hazleman BL, Riley GP. Ciprofloxacin enhances the stimulation of matrix metalloproteinase 3 expression by interleukin-1beta in human tendon-derived cells. A potential mechanism of fluoroquinolone-induced tendinopathy. Arthritis Rheum 2002;46:3034–40
  • Yang G, Im HJ, Wang JH. Repetitive mechanical stretching modulates IL-1beta induced COX-2, MMP-1 expression, and PGE2 production in human patellar tendon fibroblasts. Gene 2005;363:166–72
  • Fu SC, Cheuk YC, Chan KM, Hung LK, Wong MW. Is cultured tendon fibroblast a good model to study tendon healing? J Orthop Res 2008;26:374–83
  • Leigh DR, Abreu EL, Derwin KA. Changes in gene expression of individual matrix metalloproteinases differ in response to mechanical unloading of tendon fascicles in explant culture. J Orthop Res 2008;26:1306–12
  • Torricelli P, Fini M, Giavaresi G, Carpi A, Nicolini A, Giardino R. Effects of systemic glucocorticoid administration on tenocytes. Biomed Pharmacother 2006;60:380–5
  • Fini M, Torricelli P, Giavaresi G, Rotini R, Castagna A, Giardino R. In vitro study comparing two collageneous membranes in view of their clinical application for rotator cuff tendon regeneration. J Orthop Res 2007;25:98–107

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.