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Herniation of the intervertebral disc (IVDH) is the most common cause of neurological and intervertebral disc degeneration-related diseases. Since the disc starts to degenerate before it can be observed by currently available diagnostic methods, there is an urgent need for novel diagnostic approache...
2021-11-04 | MTBLS2689 | MetaboLights
In our study, MS-based high-resolution proteomic analysis of CSF have been employed in order to gain deeper insights into changes occurring during IVDH in dogs, monitoring the pathophysiological processes at the protein and metabolite levels. The proteomics study involved canine patients classified ...
ORGANISM(S): Canis familiaris (Dog) (Canis lupus familiaris) 
2021-11-25 | PXD024921 | Pride
Intervertebral disc (IVD) herniation is a complex and multifactorial condition with challenging diagnosis and limited therapeutic options, highlighting the need for reliable biomarkers to improve clinical decision-making. The aim of this study was to identify circulating prognostic biomarkers of IVD...
ORGANISM(S): Rattus norvegicus (Rat) 
2026-02-02 | PXD071649 | Pride
We selected humann intervertebral disc samples to perform proteomics analysis. There were 1 case of grade I , 1 case of grade II, 3 cases of grade Ⅲ and 3 cases of grade Ⅳ according to Pfirrmann classfication. RNA seqencing analysis and single-cell RNA sequencing were integrated with proteomics data...
ORGANISM(S): Homo sapiens (Human) 
2023-05-10 | PXD040593 | Pride
Human intervertebral disc tissue was obtained from patients (average age 51 yrs) undergoing surgery for lumbar interbody fusion (n=3) or lumbar disc herniation (n=1). Cells were isolated by sequential pronase-collagenase digestion [3]. Cells were passaged twice in monolayer and suspended at a densit...
ORGANISM(S): Homo sapiens 
Lumbar intervertebral disc mRNA sequencing identifies the regulatory pathway in patients with disc herniation and spondylolisthesis
SM/J mice experience spontaneous age-associated intervertebral disc herniations, with molecular analyses indicating a dysregulated immune system may contribute to this disc pathology. To investigate this, we analyzed the circulating immune cells of these mice during aging, in relation to BL/6 mice, ...
ORGANISM(S): Mus musculus 
2025-04-30 | GSE252474 | GEO
Genetic background and aging-driven neuroimmune and disc changes underscore herniation susceptibility and pain-associated behaviors in SM/J mice
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