Literature DB >> 23186207

Age-related changes in the cellular, mechanical, and contractile properties of rat tail tendons.

Michael Lavagnino1, Keri Gardner, Steven P Arnoczky.   

Abstract

Tendon laxity following injury, cyclic creep, or repair has been shown to alter the normal homeostasis of tendon cells, which can lead to degenerative changes in the extracellular matrix. While tendon cells have been shown to have an inherent contractile mechanism that gives them some ability to retighten lax tendons and reestablish a homeostatic cellular environment, the effect of age on this process is unknown. To determine the effect of aging on cell number, cell shape, and tensile modulus on tendons as well as the rate of cell-mediated contraction of lax tendons, tail tendon fascicles from 1-, 3-, and 12-month-old rats were analyzed. Aging results in a decrease (p < 0.001) in cell number per mm(2): 1 m (981 ± 119), 3 m (570 ± 108), and 12 m (453 ± 23), a more flattened (p < 0.001) cell nuclei shape and a higher (p < 0.001) tensile modulus (MPa) of the tendons: 1 m (291 ± 2), 3 m (527 ± 38), and 12 m (640 ± 102). Both the extent and rate of contraction over 7 days decreased with age (p = 0.007). This decrease in contraction rate with age correlates to the observed changes seen in aging tendons [increased modulus (r(2) = 0.95), decreased cell number (r(2) = 0.89)]. The ability of tendons to regain normal tension following injury or exercise-induced laxity is a key factor in the recovery of tendon function. The decreased contraction rate as a function of age observed in the current study may limit the ability of tendon cells to retighten lax tendons in older individuals. This, in turn, may place these structures at further risk for injury or altered function.

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Year:  2012        PMID: 23186207     DOI: 10.3109/03008207.2012.744973

Source DB:  PubMed          Journal:  Connect Tissue Res        ISSN: 0300-8207            Impact factor:   3.417


  13 in total

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Authors:  Nicoletta Gagliano; Alessandra Menon; Federico Cabitza; Riccardo Compagnoni; Pietro Randelli
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2.  Tendon cell ciliary length as a biomarker of in situ cytoskeletal tensional homeostasis.

Authors:  Michael Lavagnino; Keri Gardner; Aleksa Michele Sedlak; Steven Paul Arnoczky
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3.  Aging and the effects of a half marathon on Achilles tendon force-elongation relationship.

Authors:  Thijs Maria Anne Ackermans; Gaspar Epro; Christopher McCrum; Kai Daniel Oberländer; Frank Suhr; Maarten Robert Drost; Kenneth Meijer; Kiros Karamanidis
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4.  Interfibrillar shear behavior is altered in aging tendon fascicles.

Authors:  Jared R Muench; Darryl G Thelen; Corinne R Henak
Journal:  Biomech Model Mechanobiol       Date:  2019-11-09

Review 5.  An overview of structure, mechanical properties, and treatment for age-related tendinopathy.

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Journal:  J Nutr Health Aging       Date:  2014-04       Impact factor: 4.075

6.  Investigating tendon mineralisation in the avian hindlimb: a model for tendon ageing, injury and disease.

Authors:  Natacha A Agabalyan; Darrell J R Evans; Rachael L Stanley
Journal:  J Anat       Date:  2013-07-05       Impact factor: 2.610

7.  Aging does not alter tendon mechanical properties during homeostasis, but does impair flexor tendon healing.

Authors:  Jessica E Ackerman; Ibrahima Bah; Jennifer H Jonason; Mark R Buckley; Alayna E Loiselle
Journal:  J Orthop Res       Date:  2017-05-03       Impact factor: 3.494

8.  Quantification of cell density in rat Achilles tendon: development and application of a new method.

Authors:  Christian Couppé; René B Svensson; Katja M Heinemeier; Emilie Wøjdemann Thomsen; Monika Lucia Bayer; Lise Christensen; Michael Kjær; S Peter Magnusson; Peter Schjerling
Journal:  Histochem Cell Biol       Date:  2016-08-26       Impact factor: 4.304

9.  Structural and Ultrastructural Characteristics of Bone-Tendon Junction of the Calcaneal Tendon of Adult and Elderly Wistar Rats.

Authors:  Diego Pulzatto Cury; Fernando José Dias; Maria Angélica Miglino; Ii-sei Watanabe
Journal:  PLoS One       Date:  2016-04-14       Impact factor: 3.240

10.  Adaptive Remodeling of Achilles Tendon: A Multi-scale Computational Model.

Authors:  Stuart R Young; Bruce Gardiner; Arash Mehdizadeh; Jonas Rubenson; Brian Umberger; David W Smith
Journal:  PLoS Comput Biol       Date:  2016-09-29       Impact factor: 4.475

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