Literature DB >> 16317418

Immunohistochemistry of symptomatic hypertrophy of the posterior longitudinal ligament with special reference to ligamentous ossification.

J Song1, J Mizuno, Y Hashizume, H Nakagawa.   

Abstract

STUDY
DESIGN: Immnunohistochemical staining of the thickened posterior longitudinal ligament of the cervical spine.
OBJECTIVES: To clarify the histological characteristics of hypertrophy of the posterior longitudinal ligament (HPLL) of the cervical spine and the relationship between HPLL and ossification of the posterior longitudinal ligament (OPLL).
SETTING: Aichi Medical University, Aichi, Japan.
METHODS: Eight specimens of HPLL and two of OPLL were obtained during anterior decompressive surgery on the cervical spine from patients with myelopathy. Hematoxylin and eosin staining, alcian blue staining and immunohistochemical staining with antibodies against bone morphogenetic protein (BMP), transforming growth factor (TGF)-beta, proliferating cell nuclear antigen (PCNA), alkaline phosphatase (ALP) and osteopontin (OPN) were carried out on the specimens.
RESULTS: HPLL showed hyalinoid degeneration, the proliferation of chondrocytes and fibroblast-like spindle cells, infiltration of vessels and small ossification. In four cases, chondroid tissue was prominent with chondrocytes, which were expressed by ALP and OPN. The cells in HPLL were weakly or moderately stained by BMP, TGF-beta and PCNA. Their expression was similar to that of OPLL. Immunohistochemical staining was negative for all cells in the control cases.
CONCLUSIONS: Histological and biochemical evidence supports the hypothesis that HPLL transforms into OPLL. The positive expression of BMP and TGF-beta in HPLL cells of myelopathic patients, and their similarity to OPLL, suggest that these cells have the potential to differentiate into osteogenic cells. Of note, neither BMP nor TGF-beta was demonstrated in the PLL of control subjects. Furthermore, the expression of chondrocytes by ALP and OPN in cartilage-prominent HPLL suggests that the cartilage can be replaced by new bone.

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Year:  2005        PMID: 16317418     DOI: 10.1038/sj.sc.3101881

Source DB:  PubMed          Journal:  Spinal Cord        ISSN: 1362-4393            Impact factor:   2.772


  9 in total

1.  TGF-β1 related inflammation in the posterior longitudinal ligament of cervical spondylotic myelopathy patients.

Authors:  Jia-Zeng Wang; Xiu-Tong Fang; E Lv; Fang Yu; Zhen-Wei Wang; Hong-Xing Song
Journal:  Int J Clin Exp Med       Date:  2015-02-15

2.  Cervical Ossification of the Posterior Longitudinal Ligament (OPLL) in Native Hawaiians and/or Polynesians: A 3-year Retrospective Demographic and Descriptive Pilot Study.

Authors:  Morgan Hasegawa; John P Livingstone; Ryan Bickley; Collin Walsh; Joshua Radi; Kyle Mitsunaga
Journal:  Hawaii J Health Soc Welf       Date:  2022-03

3.  High glucose promotes collagen synthesis by cultured cells from rat cervical posterior longitudinal ligament via transforming growth factor-beta1.

Authors:  Hai Li; Da Liu; Chang-Qing Zhao; Lei-Sheng Jiang; Li-Yang Dai
Journal:  Eur Spine J       Date:  2008-04-04       Impact factor: 3.134

4.  Ossification of the posterior longitudinal ligament: a review of literature.

Authors:  Byung-Wan Choi; Kyung-Jin Song; Han Chang
Journal:  Asian Spine J       Date:  2011-11-28

5.  Ossification process involving the human thoracic ligamentum flavum: role of transcription factors.

Authors:  Kenzo Uchida; Takafumi Yayama; Hong-Xin Cai; Hideaki Nakajima; Daisuke Sugita; Alexander Rodríguez Guerrero; Shigeru Kobayashi; Ai Yoshida; Ke-Bing Chen; Hisatoshi Baba
Journal:  Arthritis Res Ther       Date:  2011-09-13       Impact factor: 5.156

6.  Posterior decompression and internal fixation in treatment of hypertrophy of posterior longitudinal ligament at C1-2 level accompanied with lower cervical spinal stenosis: A case report.

Authors:  Huan Liu; Tao Wang; Hui Wang; Wen-Yuan Ding
Journal:  Medicine (Baltimore)       Date:  2016-12       Impact factor: 1.889

7.  Atlantoaxial and subaxial cervical spinal fixation: Can it revolutionize surgical treatment of cervical myelopathy related to Ossified posterior longitudinal ligament?

Authors:  Atul Goel
Journal:  J Craniovertebr Junction Spine       Date:  2017 Jan-Mar

8.  Ossification of the Posterior Longitudinal Ligament: Surgical Approaches and Associated Complications.

Authors:  Jeffery Head; George Rymarczuk; Geoffrey Stricsek; Lohit Velagapudi; Christopher Maulucci; Christian Hoelscher; James Harrop
Journal:  Neurospine       Date:  2019-09-30

9.  Ossification of Posterior Longitudinal Ligament of Cervical Spine Among Omani Patients Referred for CT Scan at a Tertiary Care Hospital in Oman.

Authors:  Srinivasa R Sirasanagandla; Shaher Ali Al-Kaabi; Humoud Al Dhuhli; Ghaliya Al-Hinai; Mohamed Al Mushaiqri; Sanjay Jaju
Journal:  Oman Med J       Date:  2019-09
  9 in total

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