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1.
Eur Cell Mater ; 39: 227-248, 2020 06 02.
Article in English | MEDLINE | ID: mdl-32484571

ABSTRACT

Inflammation represents an important factor leading to metabolic imbalance within the intervertebral disc (IVD), conducive to degenerative changes. Therefore, a thorough knowledge of the IVD and endplate (EP) cell behaviour in such pathological environments is essential when designing regenerative therapeutic strategies. The present study aimed at assessing the molecular response of the IVD constitutive nucleus pulposus (NPCs)-, annulus fibrosus (AFCs)- and endplate (EPCs)-derived cells to interleukin (IL)-1ß treatment, through large-scale, high-throughput microarray and protein analysis, identifying the differentially expressed genes and released proteins. Overall, the inflammatory stimulus downregulated stemness genes while upregulating pro-inflammatory, pro-angiogenic and catabolic genes, including matrix metalloproteases, which were not balanced by a concomitant upregulation of their inhibitors. Upregulation of anti-inflammatory and anabolic tumour necrosis factor inducible gene 6 protein (TNFAIP6), of IL-1 receptor antagonist (IL-1Ra) (at gene and protein levels) and of trophic insulin-like growth factor 1 (IGF1) was also observed in all cell types; IGF1 particularly in AFCs. An overall inhibitory effect of tumour necrosis factor alpha (TNFα) signal was observed in all cell types; however, EPCs showed the strongest anti-inflammatory behaviour. AFCs and EPCs shared the ability to limit the activation of the signalling mediated by specific chemokines. AFCs showed a slightly senescent attitude, with a downregulation of genes related to DNA repair or pro-mitosis. Results allowed for the identification of specific molecular targets in IVD and EP cells that respond to an inflammatory environment. Such targets can be either silenced (when pathological targets) or stimulated to counteract the inflammation.


Subject(s)
Inflammation/pathology , Interleukin-1beta/pharmacology , Intervertebral Disc Degeneration/pathology , Intervertebral Disc/pathology , Motor Endplate/pathology , Cluster Analysis , Female , Gene Expression Regulation/drug effects , Humans , Inflammation/genetics , Intervertebral Disc/drug effects , Intervertebral Disc Degeneration/genetics , Male , Matrix Metalloproteinases/metabolism , Middle Aged , Motor Endplate/drug effects , Stem Cells/drug effects , Stem Cells/metabolism , Tissue Inhibitor of Metalloproteinases/metabolism
2.
Eur Cell Mater ; 39: 156-170, 2020 03 03.
Article in English | MEDLINE | ID: mdl-32125689

ABSTRACT

Degenerative processes of the intervertebral disc (IVD) and cartilaginous endplate lead to chronic spine pathologies. Several studies speculated on the intrinsic regenerative capacity of degenerated IVD related to the presence of local mesenchymal progenitors. However, a complete characterisation of the resident IVD cell populations, particularly that isolated from the endplate, is lacking. The purpose of the present study was to characterise the gene expression profiles of human nucleus pulposus (NPCs), annulus fibrosus (AFCs) and endplate (EPCs) cells, setting the basis for future studies aimed at identifying the most promising cells for regenerative purposes. Cells isolated from NP, AF and EP were analysed after in vitro expansion for their stemness ability, immunophenotype and gene profiles by large-scale microarray analysis. The three cell populations shared a similar clonogenic, adipogenic and osteogenic potential, as well as an immunophenotype with a pattern resembling that of mesenchymal stem cells. NPCs maintained the greatest chondrogenic potential and shared with EPCs the loss of proliferation capability during expansion. The largest number of selectively highly expressed stemness, chondrogenic/tissue-specific and surface genes was found in AFCs, thus representing the most promising source of tissue-specific expanded cells for the treatment of IVD degeneration.


Subject(s)
Annulus Fibrosus/pathology , Intervertebral Disc Degeneration/pathology , Intervertebral Disc Degeneration/therapy , Intervertebral Disc/pathology , Motor Endplate/pathology , Biomarkers/metabolism , Cell Proliferation , Cellular Senescence/genetics , Chondrogenesis/genetics , Clone Cells , Female , Gene Expression Regulation , Humans , Immunophenotyping , Intercellular Signaling Peptides and Proteins/metabolism , Male , Middle Aged , Nucleus Pulposus/pathology , Organ Specificity , RNA/isolation & purification , Telomere/genetics
3.
HLA ; 2018 May 17.
Article in English | MEDLINE | ID: mdl-29770606

ABSTRACT

HLA-C*02:10:03 identified in a Venezuelan patient and characterized using next generation sequencing.

4.
Mol Genet Metab ; 121(1): 28-34, 2017 05.
Article in English | MEDLINE | ID: mdl-28391974

ABSTRACT

Neutral Lipid Storage Disease with Myopathy (NLSDM) is a rare defect of triacylglycerol metabolism, characterized by the abnormal storage of neutral lipid in organelles known as lipid droplets (LDs). The main clinical features are progressive myopathy and cardiomyopathy. The onset of NLSDM is caused by autosomal recessive mutations in the PNPLA2 gene, which encodes adipose triglyceride lipase (ATGL). Despite its name, this enzyme is present in a wide variety of cell types and catalyzes the first step in triacylglycerol lipolysis and the release of fatty acids. Here, we report the derivation of NLSDM-induced pluripotent stem cells (NLSDM-iPSCs) from fibroblasts of two patients carrying different PNPLA2 mutations. The first patient was homozygous for the c.541delAC, while the second was homozygous for the c.662G>C mutation in the PNPLA2 gene. We verified that the two types of NLSDM-iPSCs possessed properties of embryonic-like stem cells and could differentiate into the three germ layers in vitro. Immunofluorescence analysis revealed that iPSCs had an abnormal accumulation of triglycerides in LDs, the hallmark of NLSDM. Furthermore, NLSDM-iPSCs were deficient in long chain fatty acid lipolysis, when subjected to a pulse chase experiment with oleic acid. Collectively, these results demonstrate that NLSDM-iPSCs are a promising in vitro model to investigate disease mechanisms and screen drug compounds for NLSDM, a rare disease with few therapeutic options.


Subject(s)
Fibroblasts/cytology , Lipase/genetics , Lipid Metabolism, Inborn Errors/pathology , Muscular Diseases/pathology , Pluripotent Stem Cells/cytology , Cell Culture Techniques , Cell Differentiation , Fibroblasts/pathology , Humans , Lipid Metabolism, Inborn Errors/genetics , Lipid Metabolism, Inborn Errors/metabolism , Lipolysis , Models, Biological , Muscular Diseases/genetics , Muscular Diseases/metabolism , Mutation , Pluripotent Stem Cells/metabolism , Pluripotent Stem Cells/pathology , Triglycerides/metabolism
5.
J Appl Genet ; 54(3): 353-9, 2013 Aug.
Article in English | MEDLINE | ID: mdl-23780398

ABSTRACT

It is estimated that 10-15 % of all clinically recognised pregnancies results in a miscarriage, most of which occur during the first trimester. Large-scale chromosomal abnormalities have been found in up to 50 % of first-trimester spontaneous abortions and, for several decades, standard cytogenetic analysis has been used for their identification. Recent studies have proven that array comparative genomic hybridisation (array-CGH) is a useful tool for the detection of genome imbalances in miscarriages, showing a higher resolution, a significantly higher detection rate and overcoming problems of culture failures, maternal contamination and poor chromosome morphology. In this study, we investigated the possibility that submicroscopic chromosomal changes, not detectable by conventional cytogenetic analysis, exist in euploid miscarriages and could be causative for the spontaneous abortion. We analysed with array-CGH technology 40 foetal tissue samples derived by first-trimester miscarriages with a normal karyotype. A whole-genome microarray with a 100-Kb resolution was used for the analysis. Forty-five copy number variants (CNVs), ranging in size between 120 Kb and 4.3 Mb, were identified in 31 samples (24 gains and 21 losses). Ten samples (10/31, 32 %) have more than one CNV. Thirty-one CNVs (68 %) were defined as common CNVs and 14 were classified as unique. Six genes and five microRNAs contained within these CNVs will be discussed. This study shows that array-CGH is useful for detecting submicroscopic CNVs and identifying candidate genes which could account for euploid miscarriages.


Subject(s)
Abortion, Spontaneous/genetics , Comparative Genomic Hybridization/methods , Chromosome Aberrations , Chromosome Banding , Chromosomes/ultrastructure , Female , Gene Dosage , Genetic Variation , Genome, Human , Humans , Karyotyping , Pregnancy , Pregnancy Trimester, First
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