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1 ss and the resulting prolapse of the nucleus pulposus.
2 tervertebral disc, especially in the nucleus pulposus.
3 ed to measure CCN3 expression in the nucleus pulposus.
4 the intervertebral disc, called the nucleus pulposus.
5 tiation and function of cells of the nucleus pulposus.
6 ed to measure CTGF expression in the nucleus pulposus.
7 regulator of CTGF expression in the nucleus pulposus.
8 ory protein, TonEBP, in cells of the nucleus pulposus.
9 of sciatica secondary to a herniated nucleus pulposus.
10 ho are suspected of having herniated nucleus pulposus.
11 e was a significant increase in both nucleus pulposus and annulus fibrosus MR elastography-derived sh
13 raphy-derived shear stiffness of the nucleus pulposus and annulus fibrosus regions of all lumbar IVDs
16 d pro-angiogenic phenotype in bovine nucleus pulposus and cartilage endplate cells at the gene level.
17 tracted from the anulus fibrosus and nucleus pulposus, and of these aggrecan preparations following e
18 d yet unstained samples resolved the nucleus pulposus, annulus fibrosus and constituent lamellae, and
19 hibitory than that isolated from the nucleus pulposus, but enzymic pretreatments to reduce the glycos
24 d the suppression of CCN2 by CCN3 in nucleus pulposus cells further the paradigm that these CCN prote
26 Adenovirus-mediated gene transfer to nucleus pulposus cells may be the initial stage of a new form of
31 sion of HIF-1alpha and HIF-2alpha in nucleus pulposus cells resulted in a significant suppression of
32 cally in disc tissue, and numbers of nucleus pulposus cells staining positive for ADAMTS 4, 5, 9, and
33 expression in Smad3-null mice and in nucleus pulposus cells transduced with lentiviral short hairpin
36 sults of this study indicate that in nucleus pulposus cells, HIF-2 and HIF-1 modulate their own trans
38 ed GlcAT-1 promoter activity only in nucleus pulposus cells, suggesting a cell type-specific regulati
46 s indicate that the matrix of bovine nucleus pulposus contains only the short form of alpha1(IX) that
48 (IX)COL3 domain purified from bovine nucleus pulposus gave a different sequence to that of the long a
49 easing Pfirrmann degeneration grade (nucleus pulposus grade 1, 12.5 kPa +/- 1.3; grade 5, 16.5 kPa +/
50 of the annulus fibrosus and into the nucleus pulposus in 21 (46%) and ten (22%) samples, respectively
54 ors of cells that populate the adult nucleus pulposus (NP) and are an important source of secreted si
56 cell therapies for regenerating the nucleus pulposus (NP) are hindered by the lack of specific marke
57 regulation of ADAMTS-4 expression in nucleus pulposus (NP) cells and its role in aggrecan degradation
58 in regulating HIF-1 activity in the nucleus pulposus (NP) cells and the control of this regulation b
59 tor LPS and IL-1 in bovine and human nucleus pulposus (NP) cells by assessing matrix-degrading enzyme
60 ments and combined therapy on bovine nucleus pulposus (NP) cells by assessing proteoglycan (PG) accum
64 extracellular matrix homeostasis of nucleus pulposus (NP) cells in their hypertonic tissue niche.
68 ls HIF-1 transcriptional activity in nucleus pulposus (NP) cells through the pyruvate kinase muscle (
78 VD consists of a central semi-liquid nucleus pulposus (NP) surrounded by a multi-layered fibrocartila
79 osus (AF), transition zone (TZ), and nucleus pulposus (NP), respond to osmotic stress with altered bi
84 , and it becomes embedded within the nucleus pulposus of the intervertebral disc (IVD) during maturat
85 r third of the annulus fibrosus, the nucleus pulposus, or both was seen in four (25%) of 16 biopsy sa
86 n unconfirmed diagnosis of herniated nucleus pulposus, outcome at 2-year follow-up was no better in p
87 d afternoon imaging results for both nucleus pulposus (R = 0.92) and annulus fibrosus (R = 0.83) regi
91 es occupied in type IX collagen from nucleus pulposus showed that usage of the short alpha1(IX) trans
92 ineered IVD composed of a gelatinous nucleus pulposus surrounded by an aligned collagenous annulus fi
93 ertebral discs, normally composed by nucleus pulposus surrounded by the annulus fibrosus, were often
95 s GlcAT-I expression in cells of the nucleus pulposus through a signaling network comprising both act
98 As in cartilage, type IX collagen of nucleus pulposus was heavily cross-linked to type II collagen an
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