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Angelo L. Vescovi

Abu Dhabi University

ORCID: 0000-0002-1742-4112

Publishes on Neurogenesis and neuroplasticity mechanisms, Pluripotent Stem Cells Research, Cancer Cells and Metastasis. 368 papers and 25.3k citations.

368Publications
25.3kTotal Citations

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Top publicationsby citations

Isolation and Characterization of Tumorigenic, Stem-like Neural Precursors from Human Glioblastoma
Rossella Galli, Elena Binda, Ugo Orfanelli et al.|Cancer Research|2004
Cited by 2.6kOpen Access

Transformed stem cells have been isolated from some human cancers. We report that, unlike other brain cancers, the lethal glioblastoma multiforme contains neural precursors endowed with all of the critical features expected from neural stem cells. Similar, yet not identical, to their normal neural stem cell counterpart, these precursors emerge as unipotent (astroglial) in vivo and multipotent (neuronal-astroglial-oligodendroglial) in culture. More importantly, these cells can act as tumor-founding cells down to the clonal level and can establish tumors that closely resemble the main histologic, cytologic, and architectural features of the human disease, even when challenged through serial transplantation. Thus, cells possessing all of the characteristics expected from tumor neural stem cells seem to be involved in the growth and recurrence of adult human glioblastomas multiforme.

Turning Brain into Blood: A Hematopoietic Fate Adopted by Adult Neural Stem Cells in Vivo
Cited by 1.4k

Stem cells are found in various organs where they participate in tissue homeostasis by replacing differentiated cells lost to physiological turnover or injury. An investigation was performed to determine whether stem cells are restricted to produce specific cell types, namely, those from the tissue in which they reside. After transplantation into irradiated hosts, genetically labeled neural stem cells were found to produce a variety of blood cell types including myeloid and lymphoid cells as well as early hematopoietic cells. Thus, neural stem cells appear to have a wider differentiation potential than previously thought.