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Genetic insights into ossification of the posterior longitudinal ligament of the spine.
Koike Y, Takahata M, Nakajima M, Otomo N, Suetsugu H, Liu X, Endo T, Imagama S, Kobayashi K, Kaito T, Kato S, Kawaguchi Y, Kanayama M, Sakai H, Tsuji T, Miyamoto T, Inose H, Yoshii T, Kashii M, Nakashima H, Ando K, Taniguchi Y, Takeuchi K, Ito S, Tomizuka K, Hikino K, Iwasaki Y, Kamatani Y, Maeda S, Nakajima H, Mori K, Seichi A, Fujibayashi S, Kanchiku T, Watanabe K, Tanaka T, Kida K, Kobayashi S, Takahashi M, Yamada K, Takuwa H, Lu HF, Niida S, Ozaki K, Momozawa Y; Genetic Study Group of Investigation Committee on Ossification of the Spinal Ligaments; Yamazaki M, Okawa A, Matsumoto M, Iwasaki N, Terao C, Ikegawa S. Koike Y, et al. Elife. 2023 Jul 18;12:e86514. doi: 10.7554/eLife.86514. Elife. 2023. PMID: 37461309 Free PMC article.
Single-cell RNA sequencing of Achilles tendon cells from a mouse Achilles tendon ossification model confirmed the expression of genes in GWAS and post-GWAS analyses in mesenchymal and immune cells. Genetic correlations with 96 complex traits showed positive correlations wi …
Single-cell RNA sequencing of Achilles tendon cells from a mouse Achilles tendon ossification model confirmed the expression of genes in GWA …
A genome-wide sib-pair linkage analysis of ossification of the posterior longitudinal ligament of the spine.
Karasugi T, Nakajima M, Ikari K; Genetic Study Group of Investigation Committee on Ossification of the Spinal Ligaments; Tsuji T, Matsumoto M, Chiba K, Uchida K, Kawaguchi Y, Mizuta H, Ogata N, Iwasaki M, Maeda S, Numasawa T, Abumi K, Kato T, Ozawa H, Taguchi T, Kaito T, Neo M, Yamazaki M, Tadokoro N, Yoshida M, Nakahara S, Endo K, Imagama S, Demura S, Sato K, Seichi A, Ichimura S, Watanabe M, Watanabe K, Nakamura Y, Mori K, Baba H, Toyama Y, Ikegawa S. Karasugi T, et al. J Bone Miner Metab. 2013 Mar;31(2):136-43. doi: 10.1007/s00774-012-0404-y. Epub 2012 Nov 9. J Bone Miner Metab. 2013. PMID: 23138351
The OPLL presents with serious neurological abnormalities due to compression of the spinal cord and nerve roots. The OPLL is caused by genetic and environment factors; however, its etiology and pathogenesis still remain to be elucidated. ...Fine mapping using additional ma …
The OPLL presents with serious neurological abnormalities due to compression of the spinal cord and nerve roots. The OPLL is caused by ge
A genome-wide association study identifies susceptibility loci for ossification of the posterior longitudinal ligament of the spine.
Nakajima M, Takahashi A, Tsuji T, Karasugi T, Baba H, Uchida K, Kawabata S, Okawa A, Shindo S, Takeuchi K, Taniguchi Y, Maeda S, Kashii M, Seichi A, Nakajima H, Kawaguchi Y, Fujibayashi S, Takahata M, Tanaka T, Watanabe K, Kida K, Kanchiku T, Ito Z, Mori K, Kaito T, Kobayashi S, Yamada K, Takahashi M, Chiba K, Matsumoto M, Furukawa K, Kubo M, Toyama Y; Genetic Study Group of Investigation Committee on Ossification of the Spinal Ligaments; Ikegawa S. Nakajima M, et al. Nat Genet. 2014 Sep;46(9):1012-6. doi: 10.1038/ng.3045. Epub 2014 Jul 27. Nat Genet. 2014. PMID: 25064007
Ossification of the posterior longitudinal ligament of the spine (OPLL) is a common spinal disorder among the elderly that causes myelopathy and radiculopathy. To identify genetic factors for OPLL, we performed a genome-wide association study (GWAS) in 8,000 individ …
Ossification of the posterior longitudinal ligament of the spine (OPLL) is a common spinal disorder among the elderly that causes myelopathy …