0000000000625319

AUTHOR

Cristina Colarossi

0000-0001-5395-8608

showing 4 related works from this author

Targeting Phosphatases and Kinases: How to Checkmate Cancer

2021

Metastatic disease represents the major cause of death in oncologic patients worldwide. Accumulating evidence have highlighted the relevance of a small population of cancer cells, named cancer stem cells (CSCs), in the resistance to therapies, as well as cancer recurrence and metastasis. Standard anti-cancer treatments are not always conclusively curative, posing an urgent need to discover new targets for an effective therapy. Kinases and phosphatases are implicated in many cellular processes, such as proliferation, differentiation and oncogenic transformation. These proteins are crucial regulators of intracellular signaling pathways mediating multiple cellular activities. Therefore, altera…

cancer stem cellkinaseQH301-705.5PopulationPhosphataseDiseaseReviewBiologyMetastasisphosphatasecancer stem cell kinase phosphatase phosphatase and kinase inhibitors targeted therapiesCell and Developmental BiologyCancer stem cellmedicineBiology (General)educationphosphatase and kinase inhibitorseducation.field_of_studyKinaseCancerCell Biologymedicine.diseasetargeted therapiesCancer cellCancer researchDevelopmental BiologyFrontiers in Cell and Developmental Biology
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Recapitulating thyroid cancer histotypes through engineering embryonic stem cells

2023

AbstractThyroid carcinoma (TC) is the most common malignancy of endocrine organs. The cell subpopulation in the lineage hierarchy that serves as cell of origin for the different TC histotypes is unknown. Human embryonic stem cells (hESCs) with appropriate in vitro stimulation undergo sequential differentiation into thyroid progenitor cells (TPCs-day 22), which maturate into thyrocytes (day 30). Here, we create follicular cell-derived TCs of all the different histotypes based on specific genomic alterations delivered by CRISPR-Cas9 in hESC-derived TPCs. Specifically, TPCs harboring BRAFV600E or NRASQ61R mutations generate papillary or follicular TC, respectively, whereas addition of TP53R248…

MultidisciplinaryGeneral Physics and AstronomyGeneral ChemistryGeneral Biochemistry Genetics and Molecular BiologyThyroid cancer thyroid progenitor cells genetic mutation model CD44 TIMP1 KISS1 KISS1R.
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Cancer Stem Cell Biomarkers Predictive of Radiotherapy Response in Rectal Cancer: A Systematic Review

2021

Background: Rectal cancer (RC) is one of the most commonly diagnosed and particularly challenging tumours to treat due to its location in the pelvis and close proximity to critical genitourinary organs. Radiotherapy (RT) is recognised as a key component of therapeutic strategy to treat RC, promoting the downsizing and downstaging of large RCs in neoadjuvant settings, although its therapeutic effect is limited due to radioresistance. Evidence from experimental and clinical studies indicates that the likelihood of achieving local tumour control by RT depends on the complete eradication of cancer stem cells (CSC), a minority subset of tumour cells with stemness properties. Methods: A systemati…

OncologyNeo-adjuvant radiotherapymedicine.medical_specialtyColorectal cancermedicine.medical_treatmentReviewQH426-470RadiosensitivityCancer stem cellRadioresistanceInternal medicineBiomarkers TumorGeneticsmedicineHumansGenetics (clinical)Rectal cancer (RC)biologyRectal NeoplasmsCancer stem cellsGenitourinary systembusiness.industryCD44Therapeutic effectmedicine.diseaseOrganoidsRadiation therapyTreatment OutcomeSystematic reviewIn vitro radiotherapyNeoplastic Stem Cellsbiology.proteinbusinessGenes
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Destroying the Shield of Cancer Stem Cells: Natural Compounds as Promising Players in Cancer Therapy

2022

In a scenario where eco-sustainability and a reduction in chemotherapeutic drug waste are certainly a prerogative to safeguard the biosphere, the use of natural products (NPs) represents an alternative therapeutic approach to counteract cancer diseases. The presence of a heterogeneous cancer stem cell (CSC) population within a tumor bulk is related to disease recurrence and therapy resistance. For this reason, CSC targeting presents a promising strategy for hampering cancer recurrence. Increasing evidence shows that NPs can inhibit crucial signaling pathways involved in the maintenance of CSC stemness and sensitize CSCs to standard chemotherapeutic treatments. Moreover, their limited toxici…

natural productcancer stem cellpolyphenoldrug resistanceSettore MED/50 - Scienze Tecniche Mediche ApplicateflavonoidGeneral MedicineSettore MED/46 - Scienze Tecniche Di Medicina Di Laboratorioalkaloidadjuvant treatmentsJournal of Clinical Medicine
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