Nome |
# |
Degradation of insulin-like growth factor-I receptor occurs via ubiquitin-proteasome pathway in human lung cancer cells, file dfa8b98f-0f9c-748b-e053-3a05fe0a3a96
|
359
|
Erythropoietin : recent developments in the treatment of spinal cord injury, file dfa8b98f-a8c0-748b-e053-3a05fe0a3a96
|
325
|
LAM/TSC cell migration to uterus in an experimental model of lymphangioleiomyomatosis. Regulation by anti-epidermal growth factor receptor antibody and rapamycin, file dfa8b991-20c0-748b-e053-3a05fe0a3a96
|
290
|
TSC2 epigenetic defect in primary LAM cells. Evidence of an anchorage-independent survival, file dfa8b991-1b3a-748b-e053-3a05fe0a3a96
|
276
|
Anti-EGFR antibody reduces lung nodules by inhibition of EGFR-pathway in a model of lymphangioleiomyomatosis, file dfa8b992-1e0f-748b-e053-3a05fe0a3a96
|
237
|
The methylation of the TSC2 promoter underlies the abnormal growth of TSC2 angiomyolipoma-derived smooth muscle cells, file dfa8b98f-5895-748b-e053-3a05fe0a3a96
|
233
|
Acute spinal cord injury persistently reduces R/G RNA editing of AMPA receptors, file dfa8b98f-5894-748b-e053-3a05fe0a3a96
|
232
|
Phenotype plasticity of mesenchymal stem cells from Lipostem™-derived human adipose tissue, file dfa8b993-2948-748b-e053-3a05fe0a3a96
|
224
|
Bioink Composition and Printing Parameters for 3D Modeling Neural Tissue, file dfa8b9a3-9ea3-748b-e053-3a05fe0a3a96
|
207
|
Anti-EGFR Antibody Efficiently and Specifically Inhibits Human TSC2-/- Smooth Muscle Cell Proliferation. Possible Treatment Options for TSC and LAM, file dfa8b98f-6fec-748b-e053-3a05fe0a3a96
|
196
|
Isolation and growth of smooth muscle-like cells derived from tuberous sclerosis complex-2 human renal angiomyolipoma : epidermal growth factor is the required growth factor, file dfa8b98f-1b12-748b-e053-3a05fe0a3a96
|
180
|
Exogenous adult post mortem neural precursors attenuate secondary degeneration, and promote myelin sparing and functional recovery following experimental spinal cord injury, file dfa8b992-ae19-748b-e053-3a05fe0a3a96
|
180
|
Adipose-Derived Stem Cells from Fat Tissue of Breast Cancer Microenvironment Present Altered Adipogenic Differentiation Capabilities, file dfa8b99f-e7a9-748b-e053-3a05fe0a3a96
|
169
|
Methylprednisolone neutralizes the beneficial effects of erythropoietin in experimental spinal cord injury, file dfa8b98f-1b0e-748b-e053-3a05fe0a3a96
|
155
|
Grafted Neural Precursors Integrate Into Mouse Striatum, Differentiate and Promote Recovery of Function Through Release of Erythropoietin in MPTP-Treated Mice, file dfa8b998-c7fa-748b-e053-3a05fe0a3a96
|
154
|
EPO-releasing neural precursor cells promote axonal regeneration and recovery of function in spinal cord traumatic injury, file dfa8b99a-cb1c-748b-e053-3a05fe0a3a96
|
143
|
Erythropoietin as a Neuroprotective Molecule: An Overview of Its Therapeutic Potential in Neurodegenerative Diseases, file dfa8b99f-26f6-748b-e053-3a05fe0a3a96
|
143
|
From Neuronal Differentiation of iPSCs to 3D Neuro-Organoids : Modelling and Therapy of Neurodegenerative Diseases, file dfa8b99c-d60e-748b-e053-3a05fe0a3a96
|
140
|
Survivin expression in tuberous sclerosis complex cells, file dfa8b98f-3b38-748b-e053-3a05fe0a3a96
|
139
|
Expression of surface and intracellular specific markers by human stem cells derived from Lipostem™-treated adipose tissue, file dfa8b993-082e-748b-e053-3a05fe0a3a96
|
133
|
Counteracting neuroinflammation in experimental Parkinson's disease favors recovery of function : effects of Er-NPCs administration, file dfa8b99c-83b5-748b-e053-3a05fe0a3a96
|
129
|
HuR interacts with lincBRN1a and lincBRN1b during neuronal stem cells differentiation, file dfa8b99f-491e-748b-e053-3a05fe0a3a96
|
126
|
Neuroprotection, Recovery of Function and Endogenous Neurogenesis in Traumatic Spinal Cord Injury Following Transplantation of Activated Adipose Tissue, file dfa8b99e-11c0-748b-e053-3a05fe0a3a96
|
113
|
Transcriptional role of androgen receptor in the expression of long non-coding RNA Sox2OT in neurogenesis, file dfa8b99a-ce97-748b-e053-3a05fe0a3a96
|
111
|
A specific combination of zeaxanthin, spermidine and rutin prevents apoptosis in human dermal papilla cells, file dfa8b98f-3b45-748b-e053-3a05fe0a3a96
|
103
|
Up-regulation of focal adhesion kinase in non-small cell lung cancer, file dfa8b98f-3b42-748b-e053-3a05fe0a3a96
|
76
|
A New Selective PPARγ Modulator Inhibits Triglycerides Accumulation during Murine Adipocytes’ and Human Adipose-Derived Mesenchymal Stem Cells Differentiation, file dfa8b9a2-358b-748b-e053-3a05fe0a3a96
|
70
|
Mitochondrial Metabolism as Target of the Neuroprotective Role of Erythropoietin in Parkinson’s Disease, file dfa8b9a5-6a6e-748b-e053-3a05fe0a3a96
|
59
|
Therapeutic effect of neural progenitor cells expanded in the 3D nano-engineered Nichoid substrate in a Parkinson’s disease preclinical model, file dfa8b99f-d8b7-748b-e053-3a05fe0a3a96
|
31
|
Therapeutic Effect of Neural Progenitor cells expanded in the 3D nano-engineered Nichoid substrate in a Parkinson’s disease preclinical model, file dfa8b99f-d8b8-748b-e053-3a05fe0a3a96
|
21
|
Characteristics and properties of mesenchymal stem cells derived from micro-fragmented adipose tissue, file dfa8b991-8767-748b-e053-3a05fe0a3a96
|
5
|
Neuroprotective role for Erythropoietin in Parkinson’s Disease: evidences from in vitro and in vivo models of the disease, file dfa8b9a3-1490-748b-e053-3a05fe0a3a96
|
5
|
Counteracting neuroinflammation in experimental Parkinson’s disease favors recovery of function : effects of Er-NPCs administration, file dfa8b99d-053b-748b-e053-3a05fe0a3a96
|
4
|
Expansion and characterization of human adipose derived stem cells in the 3D nano-engineered Nichoid substrate, file dfa8b99f-d8b4-748b-e053-3a05fe0a3a96
|
4
|
Role of the oncogenic lncRNA ZEB1-AS1 in sporadic ALS : at a cross-road between neurodegeneration and cancer, file dfa8b9a3-1492-748b-e053-3a05fe0a3a96
|
4
|
Counteracting neuroinflammation in experimental Parkinson’s disease favors recovery of function. Effects of Er-NPCs administration, file dfa8b9a3-551f-748b-e053-3a05fe0a3a96
|
4
|
The Role of Nutrients in the Tumor Microenvironment, file dfa8b9a3-235a-748b-e053-3a05fe0a3a96
|
3
|
Implication of the oncogenic lncRNA ZEB1-AS1 mediated pathway in sporadic ALS pathogenesis, file dfa8b99f-a958-748b-e053-3a05fe0a3a96
|
2
|
Therapeutic effect of neural progenitor cells expanded in the 3D nano-engineered Nichoid substrate in a Parkinson’s disease preclinical model, file dfa8b99f-ae30-748b-e053-3a05fe0a3a96
|
2
|
HuR’s interaction with lincBRN1a and lincBRN1b is implicated in neuronal stem cells differentiation, file dfa8b9a3-12ca-748b-e053-3a05fe0a3a96
|
2
|
The GMG-43AC drug seems to inhibit adipocytes’ differentiation, file dfa8b9a3-21af-748b-e053-3a05fe0a3a96
|
2
|
Therapeutic effect of neural progenitor cells expanded in the 3D nano-engineered Nichoid substrate in a Parkinson’s disease preclinical model, file dfa8b9a3-4d05-748b-e053-3a05fe0a3a96
|
2
|
Enhanced brain release of erythropoietin, cytokines and NO during carotid clamping, file dfa8b993-92a7-748b-e053-3a05fe0a3a96
|
1
|
A novel efficient method to isolate human adipose-derived stromal cells from periumbilical biopsies without enzymatic digestion, file dfa8b995-19f2-748b-e053-3a05fe0a3a96
|
1
|
Chromatin remodelling by rosuvastatin normalizes TSC2-/meth cell phenotype through the expression of tuberin, file dfa8b998-2a16-748b-e053-3a05fe0a3a96
|
1
|
Recovery from experimental parkinsonism by intrastriatal application of erythropoietin or EPO-releasing neural precursors, file dfa8b998-9543-748b-e053-3a05fe0a3a96
|
1
|
The ribonucleic complex HuR-MALAT1 represses CD133 expression and suppresses epithelial-mesenchymal transition in breast cancer, file dfa8b998-be73-748b-e053-3a05fe0a3a96
|
1
|
Human antigen r binding and regulation of SOX2 mRNA in human mesenchymal stem cells, file dfa8b998-c3ff-748b-e053-3a05fe0a3a96
|
1
|
AU-rich elements associated with HuR are essential for lncRNAs turnover in murine neural stem cells differentiation, file dfa8b99c-ead8-748b-e053-3a05fe0a3a96
|
1
|
AU-rich elements associated with HuR are essential for lncRNAs turnover in murine neuronal stem cells differentiation, file dfa8b99d-10cb-748b-e053-3a05fe0a3a96
|
1
|
LncRNAs involved in neuronal development seem to play a role in ALS pathology, file dfa8b99d-1822-748b-e053-3a05fe0a3a96
|
1
|
LncRNAs involved in neuronal development seem to play a role in ALS pathology, file dfa8b99d-1909-748b-e053-3a05fe0a3a96
|
1
|
LncRNAs involved in neuronal development seem to play a role in ALS pathology, file dfa8b99f-253e-748b-e053-3a05fe0a3a96
|
1
|
LncRNAs involved in neuronal development seem to play a role in ALS pathology, file dfa8b99f-a7b7-748b-e053-3a05fe0a3a96
|
1
|
HuR’s interaction with lincBRN1a and lincBRN1b is implicated in neuronal stem cells differentiation, file dfa8b99f-ba2f-748b-e053-3a05fe0a3a96
|
1
|
Neural Stem Cells transplantation in pre-clinical experimental model of Parkinson’s: counteraction of neuroinflammation and promotion of functional recovery, file dfa8b99f-ba30-748b-e053-3a05fe0a3a96
|
1
|
Global deregulation of lncRNAs involved in neuronal development could play a role in ALS, file dfa8b9a3-2b83-748b-e053-3a05fe0a3a96
|
1
|
The Bioengineered Nichoid Scaffold Stimulates Pluripotency of Neural Precursors Cells and Potentiates Their Therapeutic Efficacy In Vivo, file dfa8b9a4-bba9-748b-e053-3a05fe0a3a96
|
1
|
Anti-inflammatory action of erythropoietin releasing neural precursors transplanted in a murine model of Parkinson's Disease, file dfa8b9a9-774d-748b-e053-3a05fe0a3a96
|
1
|
Therapeutic effect of neural progenitor cells expanded in the 3D nano-engineered Nichoid substrate in a Parkinson’s disease preclinical model, file dfa8b9a9-d751-748b-e053-3a05fe0a3a96
|
1
|
HuR’s interaction with lincBRN1a and lincBRN1b is implicated in neuronal stem cells differentiation, file dfa8b9a9-d8bc-748b-e053-3a05fe0a3a96
|
1
|
Totale |
5.012 |