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Research ArticleLumbar Spine

Does Type II Diabetes Induce Early Senescence and Degeneration in Human Intervertebral Discs? A Tissue Biomarker Evaluation

G. Sudhir, Subalakshmi Balasubramaniam, Vignesh Jayabalan, Sandhya Sundaram, Venkatesh Kumar and Karthik Kailash
International Journal of Spine Surgery June 2020, 7045; DOI: https://doi.org/10.14444/7045
G. Sudhir
Sri Ramachandra Medical University, Chennai, Tamil Nadu, India
DNB, MNAMS, FNB
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Subalakshmi Balasubramaniam
Sri Ramachandra Medical University, Chennai, Tamil Nadu, India
MD
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Vignesh Jayabalan
Sri Ramachandra Medical University, Chennai, Tamil Nadu, India
MS
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Sandhya Sundaram
Sri Ramachandra Medical University, Chennai, Tamil Nadu, India
MD
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Venkatesh Kumar
Sri Ramachandra Medical University, Chennai, Tamil Nadu, India
MS
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Karthik Kailash
Sri Ramachandra Medical University, Chennai, Tamil Nadu, India
D ORTHO, MCH
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ABSTRACT

Background Diabetes mellitus is one of the leading causes of morbidity resulting in multi-organ dysfunction. Animal studies have shown that hyperglycemia results in stress-induced senescence through the p16-pRb pathway, thereby accelerating early disc degeneration. There is a paucity of literature on the effect of hyperglycemia in human intervertebral disc cells. We aimed to analyze the effect of diabetes mellitus in human intervertebral disc cells.

Methods This is a prospective study done in patients with degenerative disc disease. Patients were categorized into a control group (no diabetes: 26 patients) and a study group (type 2 diabetes for > 3 years: 24 patients). All patients underwent either discectomy or transforaminal lumbar interbody fusion and the removed disc was transported to pathology department. Tissue was prepared and histopathological grading was done followed by immunohistochemistry studies using antibodies for MMP-1, p21, p16, and pRb.

Results Samples from diabetic patients had severe (grade 2) degenerative changes compared with the control group (grade 1). Changes were more intense in the nucleus pulposus with increased cellularity and clustering of chondrocytes, and disorganization and loss of nuclear matrix. Immunohistochemical staining for MMP1, p16, and pRb was more intense (Q score = 4) whereas the staining for p21 was less intense (Q score = 1) in the diabetic group compared with the control group.

Conclusion Our study demonstrates that type 2 diabetes mellitus accelerates stress-induced senescence in human intervertebral discs resulting in early disc degeneration. Also, the severity of disc degeneration is severe compared with the normal subjects.

Clinical Relevance Hyperglycemia can affect the intervertebral discs similar to other organs and hence adequate control of blood glucose in diabetics can prevent the disc degeneration, which is the initiator of degeneration cascade in spine.

  • type II diabetes
  • stress-induced senescence
  • disc degeneration

Footnotes

  • Disclosures and COI: The authors received funding from AO Spine Asia Pacific Research Grant–2017 and report no conflicts of interest.

  • ©International Society for the Advancement of Spine Surgery
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International Journal of Spine Surgery: 19 (S2)
International Journal of Spine Surgery
Vol. 19, Issue S2
1 Apr 2025
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Does Type II Diabetes Induce Early Senescence and Degeneration in Human Intervertebral Discs? A Tissue Biomarker Evaluation
G. Sudhir, Subalakshmi Balasubramaniam, Vignesh Jayabalan, Sandhya Sundaram, Venkatesh Kumar, Karthik Kailash
International Journal of Spine Surgery Jun 2020, 7045; DOI: 10.14444/7045

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Does Type II Diabetes Induce Early Senescence and Degeneration in Human Intervertebral Discs? A Tissue Biomarker Evaluation
G. Sudhir, Subalakshmi Balasubramaniam, Vignesh Jayabalan, Sandhya Sundaram, Venkatesh Kumar, Karthik Kailash
International Journal of Spine Surgery Jun 2020, 7045; DOI: 10.14444/7045
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Keywords

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  • stress-induced senescence
  • disc degeneration

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