Galllagher J, Tierney P, Murray P, O’Brien M. The infrapatellar fat pad: anatomy and clinical correlations. Knee Surg Sports Traumatol Arthrosc. 2005;13(4):268–72.
Article
Google Scholar
Jacobson JA, Lenchik L, Ruhoy MK, Schweitzer ME, Resnick D. MR imaging of the infrapatellar fat pad of Hoffa. Radiographics. 1997;17:675–91.
CAS
PubMed
Article
Google Scholar
Ballegaard C, Riis RG, Bliddal H, Christensen R, Henriksen M, Bartels EM, Lohmander LS, Hunter DJ, Bouert R, Boesen M. Knee pain and inflammation in the infrapatellar fat pad estimated by conventional and dynamic contrast-enhanced magnetic resonance imaging in obese patients with osteoarthritis: a cross-sectional study. Osteoarthr Cartil. 2014;22(7):933–40.
CAS
PubMed
Article
Google Scholar
Clockaerts S, Bastiaansen-Jenniskens YM, Van Osch GV, et al. The infrapatellar fat pad should be considered as an active osteoarthritic joint tissue. Osteoarthr Cartil. 2010;18(7):876–82.
CAS
PubMed
Article
Google Scholar
Neuman P, Kostogiannis I, Fridén T, et al. Patellofemoral osteoarthritis 15 years after anterior cruciate ligament injury—a prospective cohort study. Osteoarthr Cartil. 2009;17(3):284–90.
CAS
PubMed
Article
Google Scholar
Gillquist J, Messner K. Anterior cruciate ligament reconstruction and the long-term incidence of gonarthrosis. Sports Med. 1999;27(3):143–56.
CAS
PubMed
Article
Google Scholar
Daniel DM, Stone ML, Dobson BE, et al. Fate of the ACL-injured patient. A prospective outcome study. Am J Sports Med. 1994;22(5):632–44.
CAS
PubMed
Article
Google Scholar
Heard BJ, Achari Y, Chung M, et al. Early joint tissue changes are highly correlated with a set of inflammatory and degradative synovial biomarkers after ACL autograft and its sham surgery in an ovine model. J Orthop Res. 2011;29(8):1185–92.
PubMed
Article
Google Scholar
Heard BJ, Solbak NM, Achari Y, et al. Changes of early post-traumatic osteoarthritis in an ovine model of simulated ACL reconstruction are associated with transient acute post-injury synovial inflammation and tissue catabolism. Osteoarthr Cartil. 2013;21(12):1942–9.
CAS
PubMed
Article
Google Scholar
Frayn KN, Karpe F, Fielding BA, et al. Integrative physiology of human adipose tissue. Int J Obes Metab Disord. 2003;27(8):875–88.
CAS
Article
Google Scholar
Ushiyama T, Chano T, Inoue K, Matsusue Y. Cytokine production in the infrapatellar fat pad: another source of cytokines in knee synovial fluids. Ann Rheum Dis. 2003;62(2):108–12.
CAS
PubMed Central
PubMed
Article
Google Scholar
Abreu MR, Chung CB, Trudell D, Resnick D. Hoffa’s fat pad injuries and their relationship with anterior cruciate ligament tears: new observations based on MR imaging in patients and MR imaging and anatomic correlation in cadavers. Skelet Radiol. 2008;37(4):301–6.
Article
Google Scholar
Drez DJ, DeLee J, Holden JP, et al. Anterior cruciate ligament reconstruction using bone- patellar tendon-bone allografts. A biological and biomechanical evaluation in goats. Am J Sports Med. 1991;19(3):256–63.
PubMed
Article
Google Scholar
Adams ME, Billingham ME, Muir H. The glycosaminoglycans in menisci in experimental and natural osteoarthritis. Arthritis Rheum. 1983;26(1):69–76.
CAS
PubMed
Article
Google Scholar
Cummings JF, Grood ES, Levy MS, et al. The effects of graft width and graft laxity on the outcome of caprine anterior cruciate ligament reconstruction. J Orthop Res. 2002;20(2):338–45.
CAS
PubMed
Article
Google Scholar
Reno C, Marchuk L, Sciore P, et al. Rapid isolation of total RNA from small samples of hypocellular, dense connective tissues. Biotechniques. 1997;22(6):1082–6.
CAS
PubMed
Google Scholar
Lemor A, Mielenz M, Altmann M, et al. mRNA abundance of adiponectin and its receptors, leptin and visfatin and of G-protein coupled receptor 41 in five different fat depots from sheep. J Anim Physiol Anim Nutr. 2010;94(5):96–101.
Article
Google Scholar
Remst DF, Blom AB, Vitters EL, Bank RA, van den Berg WB, Blaney Davidson EN, van der Kraan PM. Gene expression analysis of murine and human osteoarthritis synovium reveals elevation of transforming growth factor β-responsive genes in osteoarthritis-related fibrosis. Arthritis Rheumatol. 2014;66(3):647–56.
CAS
PubMed
Article
Google Scholar
Golbidi S, Laher I. Exercise induced adipokine changes and the metabolic syndrome. J Diabetes Res. 2014;2014:726861 Epub 2014 Jan 19.
PubMed Central
PubMed
Article
Google Scholar
Warrington K, Hillarby MC, Li C, Letarte M, Kumar S. Functional role of CD105 in TGF-beta1 signalling in murine and human endothelial cells. Anticancer Res. 2005;25(3B):1851–64 PubMed PMID: 16158917.
CAS
PubMed
Google Scholar
Jantsch J, Binger KJ, Müller DN, Titze J. Macrophages in homeostatic immune function. Front Physiol. 2014;5:146. doi:10.3389/fphys.2014.00146. eCollection 2014.
PubMed Central
PubMed
Article
Google Scholar
Stålman A, Bring D, Ackermann PW. Chemokine expression of CCL2, CCL3, CCL5 and CXCL10 during early inflammatory tendon healing precedes nerve regeneration: an immuno-histochemical study in the rat. Knee Surg Sports Traumatol Arthrosc. 2014. [Epub ahead of print].
Ackermann PW, Salo PT, Hart DA. Neuronal pathways in tendon healing. Front Biosci (Landmark Ed). 2009;14:5165–87. Review. PubMed PMID: 19482611.
CAS
PubMed
Article
Google Scholar
Ackermann PW, Franklin SL, Dean BJ, Carr AJ, Salo PT, Hart DA. Neuronal pathways in tendon healing and tendinopathy–update. Front Biosci (Landmark Ed). 2014;1(19):1251–78.
Article
Google Scholar
O’Brien EJ, Beveridge JE, Huebner KD, et al. Osteoarthritis develops in the operated joint of an ovine model following ACL reconstruction with immediate anatomic reattachment of the native ACL. J Orthop Res. 2013;31(1):35–43.
PubMed
Article
Google Scholar
Turhan E, Doral MN, Atay AO, Demirel M. A giant extrasynovial osteochondroma in the infrapatellar fat pad: end stage Hoffa’s disease. Arch Orthop Trauma Surg. 2008;128(5):515–9.
PubMed
Article
Google Scholar
Sun K, Tordjman J, Cle’ment K, Scherer PE. Fibrosis and adipose tissue dysfunction. Cell Metab. 2013;18(4):470–7.
CAS
PubMed Central
PubMed
Article
Google Scholar
Stramer BM, Mori R, Martin P. The inflammation-fibrosis link? A Jekyll and Hyde role for blood cells during wound repair. J Investig Dermatol. 2007;127(5):1009–17.
CAS
PubMed
Article
Google Scholar
Clements KM, Ball AD, Jones HB, Brinckmann S, Read SJ, Murray F. Cellular and histopathological changes in the infrapatellar fat pad in the monoiodoacetate model of osteoarthritis pain. Osteoarthr Cartil. 2009;17(6):805–12.
CAS
PubMed
Article
Google Scholar
Murakami S, Muneta T, Furuya K, Saito I, Miyasaka N, Yamamoto H. Immunohistologic analysis of synovium in infrapatellar fat pad after anterior cruciate ligament injury. Am J Sports Med. 1995;23(6):763–8.
CAS
PubMed
Article
Google Scholar
Felson DT. Developments in the clinical understanding of osteoarthritis. Arthritis Res Ther. 2009;11:203.
PubMed Central
PubMed
Article
Google Scholar
Frank CB, Shrive NG, Lo IKY, Hart DA. Form and function of tendon and ligament. In: Buckwalter JA, Einhorn TA, Simon SR, editors. Orthopaedic basic science: biology and biomechanics of the musculoskeletal system. Rosemont: American Academy of Orthopaedic Surgeons; 2007.
Google Scholar
Loeser RF, Goldring SR, Scanzello CR, Goldring MB. Osteoarthritis: a disease of the joint as an organ [review]. Arthritis Rheum. 2012;64:1697–707.
PubMed Central
PubMed
Article
Google Scholar
Klein-Wieringa IR, Kloppenburg M, Bastiaansen-Jenniskens YM, Yusuf E, Kwekkeboom JC, El-Bannoudi H, et al. The infrapatellar fat pad of patients with osteoarthritis has an inflammatory phenotype. Ann Rheum Dis. 2011;70:851–7.
CAS
PubMed
Article
Google Scholar
Gierman LM, Wopereis S, van El B, Verheij ER, der Vat Werff-van BJ, Bastiaansen-Jenniskens YM, van Osch GJ, Kloppenburg M, Stojanovic-Susulic V, Huizinga TW, Zuurmond AM. Metabolic profiling reveals differences in concentrations of oxylipins and fatty acids secreted by the infrapatellar fat pad of donors with end-stage osteoarthritis and normal donors. Arthritis Rheum. 2013;65(10):2606–14.
CAS
PubMed
Google Scholar
Iwata M, Ochi H, Hara Y, et al. 2013 Initial responses of articular tissues in a murine high fat diet induced osteoarthritis model: pivotal role of the IPFP as a cytokine fountain. PLoS One. 2013;8(4):e60706.
CAS
PubMed Central
PubMed
Article
Google Scholar
Clockaerts S, Bastiaansen-Jenniskens YM, Feijt C, et al. Cytokine production by infrapatellar fat pad can be stimulated by interleukin 1β and inhibited by peroxisome proliferator activated receptor α agonist. Ann Rheum Dis. 2012;71(6):1012–8.
CAS
PubMed
Article
Google Scholar
Van Beeck A, Clockaerts S, Somville J, et al. Does infrapatellar fat pad resection in total knee arthroplasty impair clinical outcome? A systematic review. The Knee. 2013;20(4):226–31.
PubMed
Article
Google Scholar
Pappa CA, Alexandrakis MG, Boula A, Psarakis FE, Kolovou A, Bantouna V, Stavroulaki E, Tsirakis G. Emerging roles of endoglin/CD105 and angiogenic cytokines for disease development and progression in multiple myeloma patients. Hematol Oncol. 2013;31(4):201–5.
CAS
PubMed
Article
Google Scholar
Lim J, Hotchin NA. Signalling mechanisms of the leukocyte integrin alphaM-beta2: current and future perspectives. Biol Cell. 2012;104(11):631–40.
CAS
PubMed
Article
Google Scholar
Blom AB, van Lent PE, Holthuysen AE, et al. Synovial lining macrophages mediate osteophyte formation during experimental osteoarthritis. Osteoarthr Cartil. 2004;12(8):627–35.
PubMed
Article
Google Scholar
Van Lent PL, Blom AB, van der Kraan P, et al. Crucial role of synovial lining macrophages in the promotion of transforming growth factor beta-mediated osteophyte formation. Arthritis Rheum. 2004;50(1):103–11.
PubMed
Article
Google Scholar
Summan M, Warren GL, Mercer RR, Chapman R, Hulderman T, Van Rooijen N, Simeonova PP. Macrophages and skeletal muscle regeneration: a clodronate-containing liposome depletion study. Am J Physiol Regul Integr Comp Physiol. 2006;290(6):R1488–95.
CAS
PubMed
Article
Google Scholar
Bondesen BA, Mills ST, Kegley KM, Pavlath GK. The COX-2 pathway is essential during early stages of skeletal muscle regeneration. Am J Physiol Cell Physiol. 2004;287:C475–83.
CAS
PubMed
Article
Google Scholar
Tanaka N, Sakahashi H, Sato E, et al. Influence of the infrapatellar fat pad resection in a synovectomy during total knee arthroplasty in patients with rheumatoid arthritis. J Arthroplast. 2003;18(7):897–902.
Article
Google Scholar
Bastiaansen-Jenniskens YM, Clockaerts S, Feijt C. Infrapatellar fat pad of patients with end-stage osteoarthritis inhibits catabolic mediators in cartilage. Ann Rheum Dis. 2012;71(2):288–94.
CAS
PubMed
Article
Google Scholar
Felimban R, Ye K, Traianedes K, Di Bella C, Crook J, Wallace GG, Quigley A, Choong PF, Myers DE. Differentiation of stem cells from human infrapatellar fat pad: characterization of cells undergoing chondrogenesis. Tissue Eng Part A. 2014;20(15–16):2213–23.
CAS
PubMed
Article
Google Scholar