4.5 Review

Molecular Mechanisms of Biological Aging in Intervertebral Discs

Journal

JOURNAL OF ORTHOPAEDIC RESEARCH
Volume 34, Issue 8, Pages 1289-1306

Publisher

WILEY
DOI: 10.1002/jor.23195

Keywords

intervertebral disc; aging; oxidative damage; inflammation; cellular senescence

Categories

Funding

  1. Public Health Service [R01 AG044376-01, R01-AR055655, R01-AR064733]
  2. National Institute of Health
  3. UPMC Rehabilitation Institute Pilot Grant

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Advanced age is the greatest risk factor for the majority of human ailments, including spine-related chronic disability and back pain, which stem from age-associated intervertebral disc degeneration (IDD). Given the rapid global rise in the aging population, understanding the biology of intervertebral disc aging in order to develop effective therapeutic interventions to combat the adverse effects of aging on disc health is now imperative. Fortunately, recent advances in aging research have begun to shed light on the basic biological process of aging. Here we review some of these insights and organize the complex process of disc aging into three different phases to guide research efforts to understand the biology of disc aging. The objective of this review is to provide an overview of the current knowledge and the recent progress made to elucidate specific molecular mechanisms underlying disc aging. In particular, studies over the last few years have uncovered cellular senescence and genomic instability as important drivers of disc aging. Supporting evidence comes from DNA repair-deficient animal models that show increased disc cellular senescence and accelerated disc aging. Additionally, stress-induced senescent cells have now been well documented to secrete catabolic factors, which can negatively impact the physiology of neighboring cells and ECM. These along with other molecular drivers of aging are reviewed in depth to shed crucial insights into the underlying mechanisms of age-related disc degeneration. We also highlight molecular targets for novel therapies and emerging candidate therapeutics that may mitigate age-associated IDD. (C) 2016 Orthopaedic Research Society. Published by Wiley Periodicals, Inc.

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