Literature DB >> 19180518

Associations of 25 structural, degradative, and inflammatory candidate genes with lumbar disc desiccation, bulging, and height narrowing.

Tapio Videman1, Janna Saarela, Jaakko Kaprio, Annu Näkki, Esko Levälahti, Kevin Gill, Leena Peltonen, Michele C Battié.   

Abstract

OBJECTIVE: To examine the allelic diversity of structural, inflammatory, and matrix-modifying gene candidates and their association with disc degeneration.
METHODS: Subjects were 588 men ages 35-70 years. We investigated associations of single-nucleotide polymorphisms in AGC1 and in 12 collagen, 8 interleukin, and 4 matrix metalloproteinase genes with quantitative magnetic resonance imaging measurements of disc desiccation and disc bulging and height narrowing scores, after controlling for age and suspected risk factors. Analyses were performed using QTDT software. P values were derived from 1,000 permutations, and empirical P values for global significance also were applied.
RESULTS: Twelve of the 99 variants in 25 selected candidate genes provided evidence of association (P < 0.05) with disc signal intensity in the upper and/or lower lumbar regions. Allelic variants of AGC1 (rs1042631; P = 0.001), COL1A1 (rs2075555; P = 0.005), COL9A1 (rs696990; P = 0.00008), and COL11A2 (rs2076311; P = 0.018) genes provided the most significant evidence of association with disc signal intensity. The same variants of AGC1 (P = 0.010) and COL9A1 (P = 0.014), as well as variants in the COL11A1 gene (rs1463035 [P = 0.004]; rs1337185 [P = 0.015]) were also associated with disc bulging, as was AGC1 with disc height narrowing (rs1516797; P = 0.005). In addition, 4 allelic variants in the immunologic candidate genes (rs2071375 in IL1A [P = 0.027]; rs1420100 in IL18RAP [P = 0.005]) were associated with disc signal intensity.
CONCLUSION: Genetic variants account for interindividual differences in disc matrix synthesis and degradation. The accuracy of the quantitative disc signal intensity measurements we used likely enhanced our ability to observe these associations. Our findings shed light on possible mechanisms of degeneration and support the view that disc degeneration is a polygenetic condition.

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Year:  2009        PMID: 19180518     DOI: 10.1002/art.24268

Source DB:  PubMed          Journal:  Arthritis Rheum        ISSN: 0004-3591


  39 in total

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2.  Age-related changes in human cervical, thoracal and lumbar intervertebral disc exhibit a strong intra-individual correlation.

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3.  Association of rs731236 polymorphism in the vitamin D receptor gene with degenerative disc disease: evidence from a meta-analysis.

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Review 4.  Genetics of disc-related disorders: current findings and lessons from other complex diseases.

Authors:  Annu Näkki; Michele C Battié; Jaakko Kaprio
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5.  Stemming the Degeneration: IVD Stem Cells and Stem Cell Regenerative Therapy for Degenerative Disc Disease.

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6.  Meta-analysis of the effects of genetic polymorphisms on intervertebral disc degeneration.

Authors:  J Rigal; A Léglise; T Barnetche; A Cogniet; S Aunoble; J C Le Huec
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7.  Association of CILP, COL9A2 and MMP3 Gene Polymorphisms with Lumbar Disc Degeneration in an Indian Population.

Authors:  Harshitha S M; Sibin M K; Chetan G K; Dhananjaya I Bhat
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Review 8.  Genetic polymorphisms associated with intervertebral disc degeneration.

Authors:  Jillian E Mayer; James C Iatridis; Danny Chan; Sheeraz A Qureshi; Omri Gottesman; Andrew C Hecht
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9.  Modic changes and interleukin 1 gene locus polymorphisms in occupational cohort of middle-aged men.

Authors:  Jaro Karppinen; Svetlana Solovieva; Katariina Luoma; Raili Raininko; Päivi Leino-Arjas; Hilkka Riihimäki
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10.  Association of rs2228570 polymorphism of vitamin D receptor gene with degenerative disc disease: a meta-analysis involving 2947 subjects.

Authors:  Qiang Zong; Dongkui Ni; Lijun Li; Yubo Shi
Journal:  Int J Clin Exp Med       Date:  2015-12-15
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