Purpose Certain types of repetitive sub-maximal knee loading cause microfatigue damage in the human anterior cruciate ligament (ACL) that can accumulate to produce macroscopic tissue failure. However, monitoring the progression of that ACL microfatigue damage as a function of loading cycles has not been reported. To explore the fatigue process, a confocal laser endomicroscope (CLEM) was employed to capture sub-micron resolution fluorescence images of the tissue in situ. The goal of this study was to quantify the in situ changes in ACL autofluorescence (AF) signal intensity and collagen microstructure as a function of the number of loading cycles. Methods Three paired and four single cadaveric knees were subjected to a repeated 4 times bodyweight landing maneuver known to strain the ACL. The paired knees were used to compare the development of ACL microfatigue damage on the loaded knee after 100 consecutive loading cycles, relative to the contralateral unloaded control knee, through second harmonic generation (SHG) and AF imaging using confocal microscopy (CM). The four single knees were used for monitoring progressive ACL microfatigue damage development by AF imaging using CLEM. Results The loaded knees from each pair exhibited a statistically significant increase in AF signal intensity and decrease in SHG signal intensity as compared to the contralateral control knees. Additionally, the anisotropy of the collagen fibers in the loaded knees increased as indicated by the reduced coherency coefficient. Two out of the four single knee ACLs failed during fatigue loading, and they exhibited an order of magnitude higher increase in autofluorescence intensity per loading cycle as compared to the intact knees. Of the three regions of the ACL - proximal, midsubstance and distal - the proximal region of ACL fibers exhibited the highest AF intensity change and anisotropy of fibers. Conclusions CLEM can capture changes in ACL AF and collagen microstructures in situ during and after microfatigue damage development. Results suggest a large increase in AF may occur in the final few cycles immediately prior to or at failure, representing a greater plastic deformation of the tissue. This reinforces the argument that existing microfatigue damage can accumulate to induce bulk mechanical failure in ACL injuries. The variation in fiber organization changes in the ACL regions with application of load is consistent with the known differences in loading distribution at the ACL femoral enthesis.
机构:
Univ Cape Town, MRC UCT Res Unit Exercise Sci & Sports Med, ZA-7725 Cape Town, South AfricaUniv Cape Town, MRC UCT Res Unit Exercise Sci & Sports Med, ZA-7725 Cape Town, South Africa
O'Connell, Kevin
Knight, Hayley
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Univ Cape Town, MRC UCT Res Unit Exercise Sci & Sports Med, ZA-7725 Cape Town, South AfricaUniv Cape Town, MRC UCT Res Unit Exercise Sci & Sports Med, ZA-7725 Cape Town, South Africa
Knight, Hayley
Ficek, Krzysztof
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Univ Szczecin, Dept Phys Culture & Hlth Promot, PL-70453 Szczecin, PolandUniv Cape Town, MRC UCT Res Unit Exercise Sci & Sports Med, ZA-7725 Cape Town, South Africa
Ficek, Krzysztof
Leonska-Duniec, Agata
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Acad Phys Educ & Sport, Dept Tourism & Recreat, Gdansk, PolandUniv Cape Town, MRC UCT Res Unit Exercise Sci & Sports Med, ZA-7725 Cape Town, South Africa
Leonska-Duniec, Agata
Maciejewska-Karlowska, Agnieszka
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Univ Szczecin, Dept Phys Culture & Hlth Promot, PL-70453 Szczecin, PolandUniv Cape Town, MRC UCT Res Unit Exercise Sci & Sports Med, ZA-7725 Cape Town, South Africa
Maciejewska-Karlowska, Agnieszka
Sawczuk, Marek
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Univ Szczecin, Dept Phys Culture & Hlth Promot, PL-70453 Szczecin, PolandUniv Cape Town, MRC UCT Res Unit Exercise Sci & Sports Med, ZA-7725 Cape Town, South Africa
Sawczuk, Marek
Stepien-Slodkowska, Marta
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Univ Szczecin, Dept Phys Culture & Hlth Promot, PL-70453 Szczecin, PolandUniv Cape Town, MRC UCT Res Unit Exercise Sci & Sports Med, ZA-7725 Cape Town, South Africa
Stepien-Slodkowska, Marta
O'Cuinneagain, Dion
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Sports Sci Orthopaed Clin, Cape Town, South AfricaUniv Cape Town, MRC UCT Res Unit Exercise Sci & Sports Med, ZA-7725 Cape Town, South Africa
O'Cuinneagain, Dion
van der Merwe, Willem
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Sports Sci Orthopaed Clin, Cape Town, South AfricaUniv Cape Town, MRC UCT Res Unit Exercise Sci & Sports Med, ZA-7725 Cape Town, South Africa
van der Merwe, Willem
Posthumus, Michael
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Univ Cape Town, MRC UCT Res Unit Exercise Sci & Sports Med, ZA-7725 Cape Town, South AfricaUniv Cape Town, MRC UCT Res Unit Exercise Sci & Sports Med, ZA-7725 Cape Town, South Africa
Posthumus, Michael
Cieszczyk, Pawel
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Acad Phys Educ & Sport, Dept Tourism & Recreat, Gdansk, PolandUniv Cape Town, MRC UCT Res Unit Exercise Sci & Sports Med, ZA-7725 Cape Town, South Africa
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Juntendo Univ, Grad Sch Med, Dept Med Orthopaed & Motor Organs, Bunkyo Ku, 2-1-1 Hongo, Tokyo 1138421, JapanJuntendo Univ, Grad Sch Med, Dept Med Orthopaed & Motor Organs, Bunkyo Ku, 2-1-1 Hongo, Tokyo 1138421, Japan
Fukusato, Shin
Nagao, Masashi
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Juntendo Univ, Grad Sch Med, Dept Med Orthopaed & Motor Organs, Bunkyo Ku, 2-1-1 Hongo, Tokyo 1138421, Japan
Juntendo Univ, Med Technol Innovat Ctr, Bunkyo Ku, 2-1-1 Hongo, Tokyo 1138421, Japan
Juntendo Univ, Grad Sch Hlth & Sports Sci, 1-1 Hiragagakuenndai, Inzai 2701695, JapanJuntendo Univ, Grad Sch Med, Dept Med Orthopaed & Motor Organs, Bunkyo Ku, 2-1-1 Hongo, Tokyo 1138421, Japan
Nagao, Masashi
Fujihara, Kei
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Okayama Univ Sci, Fac Vet Sci, Dept Lab Anim Sci, 1-3 Ikoinooka, Imabari 7948555, JapanJuntendo Univ, Grad Sch Med, Dept Med Orthopaed & Motor Organs, Bunkyo Ku, 2-1-1 Hongo, Tokyo 1138421, Japan
Fujihara, Kei
Yoneda, Taiju
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Okayama Univ Sci, Fac Vet Sci, Dept Lab Anim Sci, 1-3 Ikoinooka, Imabari 7948555, JapanJuntendo Univ, Grad Sch Med, Dept Med Orthopaed & Motor Organs, Bunkyo Ku, 2-1-1 Hongo, Tokyo 1138421, Japan
Yoneda, Taiju
Arai, Kiyotaka
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Okayama Univ Sci, Fac Vet Sci, Dept Vet Surg, Kita Ku, 1-1 Ridai Cho, Okayama 7000005, JapanJuntendo Univ, Grad Sch Med, Dept Med Orthopaed & Motor Organs, Bunkyo Ku, 2-1-1 Hongo, Tokyo 1138421, Japan
Arai, Kiyotaka
Koch, Manuel
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Univ Cologne, Med Fac, Inst Dent Res & Oral Musculoskeletal Biol, D-50931 Cologne, Germany
Univ Cologne, Med Fac, Ctr Biochem, D-50931 Cologne, GermanyJuntendo Univ, Grad Sch Med, Dept Med Orthopaed & Motor Organs, Bunkyo Ku, 2-1-1 Hongo, Tokyo 1138421, Japan
Koch, Manuel
Kaneko, Kazuo
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Juntendo Univ, Grad Sch Med, Dept Med Orthopaed & Motor Organs, Bunkyo Ku, 2-1-1 Hongo, Tokyo 1138421, JapanJuntendo Univ, Grad Sch Med, Dept Med Orthopaed & Motor Organs, Bunkyo Ku, 2-1-1 Hongo, Tokyo 1138421, Japan
Kaneko, Kazuo
Ishijima, Muneaki
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Juntendo Univ, Grad Sch Med, Dept Med Orthopaed & Motor Organs, Bunkyo Ku, 2-1-1 Hongo, Tokyo 1138421, JapanJuntendo Univ, Grad Sch Med, Dept Med Orthopaed & Motor Organs, Bunkyo Ku, 2-1-1 Hongo, Tokyo 1138421, Japan