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Perfil volatómico de linhas celulares do cancro da mama

Este trabalho, integrado no projeto de doutoramento da Catarina L. Silva, recentemente publicado na revista Scientific Reports, e inserido num projeto Europeu com a participação de investigadores de Portugal (coordenador principal), Alemanha e India, aprovado pelo programa New Indigo, permitiu estabelecer o perfil volátil de diferentes linhas celulares de cancro da mama, com o objetivo de identificar metabolitos voláteis produzidos por este tipo de células.

Suppression of spindly delays mitotic exit and exacerbates cell death response of cancer cells treated with low doses of paclitaxel


Patrícia M.A. Silva a,b,c Nilza Ribeiro a, Raquel T. Lima d,e,f, Claudia Andrade g Vania Diogo a, Joana Teixeira a, Claudia Florindo b,c, Álvaro Tavares b,c, M. Helena Vasconcelos d,e,h and Hassan Bousbaa a,i

Eliminação da Spindly: um gatilho para o suicídio de células cancerígenas

Um estudo liderado por investigadores da CESPU, Patrícia Silva e Hassan Bousbaa, publicado na prestigiosa revista “Cancer Letters” de 28 de maio de 2017, revela que a eliminação seletiva da Spindly, uma proteína necessária para a divisão correta das células normais, obriga as células cancerígenas tratadas por agentes quimioterápicos clássicos, a suicidar-se. Esta estratégia poderá ser um auxílio valioso aos agentes clássicos, como o paclitaxel, no combate ao cancro.

Post-graduated CBMA course: «Cancer therapy: from basic research to clinics»

Department of Biology (MICA Auditorium), University of Minho, Portugal

 

15 - 26 May, 2017

 

See more informations here: http://cbma.bio.uminho.pt/advancedcourses

Post-graduated CBMA course: «Cancer therapy: from basic research to clinics»

Department of Biology (MICA Auditorium), University of Minho, Portugal

 

15 - 26 May, 2017

 

See more informations here: http://cbma.bio.uminho.pt/advancedcourses

Identification of a potential VOC-biomarker panel in the urine of renal cell carcinoma patients

The analysis of volatile organic compounds (VOCs) in biological samples is one of the most promising approaches in metabolomics in the identification of cancer biomarkers and / or elucidation of pathophysiological pathways.

Identificação de um painel de biomarcadores voláteis na urina com potencial para a deteção de doentes com carcinoma das células renais

A análise de compostos orgânicos voláteis (VOCs) em amostras biológicas constitui uma das abordagens mais promissoras em metabolómica na identificação de biomarcadores de cancro e/ou na elucidação de vias patofisiológicas.

The histone H2A isoform Hist2h2ac is a novel regulator of proliferation and epithelial–mesenchymal transition in mammary epithelial and in breast cancer cells

Proliferation and differentiation are controlled through chromatin remodelling. Therefore, there is an enormous biological significance and clinical value in understanding how specific signalling pathways are affected by histone replacement in the nucleosome. In this work, mass spectrometry was used to screen HC11 mammary epithelial cells for changes in histone levels throughout cell differentiation. The canonical histone isoform Histone H2A type 2-C (Hist2h2ac) was found only in undifferentiated/proliferating cells.

Nova função da Histona Hist2h2ac na regulação da proliferação e migração das células do cancro da mama

Proliferation and differentiation are controlled through chromatin remodelling. Therefore, there is an enormous biological significance and clinical value in understanding how specific signalling pathways are affected by histone replacement in the nucleosome. In this work, mass spectrometry was used to screen HC11 mammary epithelial cells for changes in histone levels throughout cell differentiation. The canonical histone isoform Histone H2A type 2-C (Hist2h2ac) was found only in undifferentiated/proliferating cells.

The minimum number of neoplastic cells currently recommended to evaluate HER2 gene amplification in breast cancer is not sufficient

Recently it was published in Histopathology a work developed by the Department of Pathology of the Ipatimup Diagnostics in collaboration with Hospital Pedro Hispano and Hospital Prof. Doctor Fernando Fonseca concerning the minimum number of neoplastic cells needed to quantify robustly the amplification of the HER2 gene in breast cancer.