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Prostate cancer resistance
Aytes’s Lab

DESCRIPTION

Dr. Aytes´s laboratory aims at uncovering new mechanisms driving prostate cancer progression and therapeutic resistance. We utilize genetically-engineered mice to recapitulate the progression pathways observed in patients.

At The Aytes Lab we aim at identifying mechanisms of cancer progression and therapy resistance by developing a unique series of genetically-engineered mice (GEM) models, which are a key resource for the research lines currently undergoing in my group at IDIBELL. 

A strong research focus since the inception of my group in 2016 has been to understand how changes in the transcriptional networks of cancer cells determine the cell identity and impinge on treatment response. To this end, we initially defined the regulatory networks of metastatic and non-metastatic CRPC and identified a set of epigenetic chromatin remodelers, including Nsd2, strongly associated metastatic progression and survival. This study was the groundwork upon which we build an extensive program to identify epigenetic targets and vulnerabilities to be translated to preclinical stages. 

In parallel, our group has a strong interest in identifying resistance mechanisms to standard of care treatments in prostate cancer, mainly antiandrogens. Mutations in the Androgen Receptor (AR) are known to affect the molecular structure and are the most frequent alteration in prostate cancer. Yet, the structure-function relationship and how disease associated mutations affect the AR function in cancer is unclear. We have recently characterized some of these AR mutations and showed how they define the response to antiandrogenic treatmetns. 

At the crossroads of targeted therapies and conventional chemotherapy lies the use of PARP inhibitors. We are trying to understand the genomic determinants of response to PARP inhibition to expand the therapeutic landscape beyond DNA damage repair deficiency. This is particularly relevant for prostate cancer to expand PARP inhibitors beyond classical synthetic lethality involving HR mutant carriers.

The above-mentioned fundamental and translational research endeavors have been instrumental in consolidating the interdisciplinary Prostate Cancer research Group at IDIBELL, Hospital de Bellvitge (HUB), the Catalan Institute of Oncology (ICO) and University of Barcelona (UB). 

Group members

Alvaro Aytes

Group leaders

Group Leader

Ana Sofia Semiao Correaia de Rocha

Researchers

Research Associate

Rana El Bizri

Researchers

Postdoc

Lidia Franco Luzon

Researchers

Postdoc

Adrian Martinez Tebar

Researchers

Postdoc

Javier Sigüenza Andrade

Researchers

PhD candidate

Pilar Salamanca Jimenez

Researchers

PhD candidate

Nadia Garcia Lozano

Support staff

Research technician

Publications

Sensitivity of cervico-vaginal cytology in endometrial carcinoma: A systematic review and meta-analysis

24 de March de 2020/in Aytes's Lab/by miguel

Cancer Cytopathol. 2020 Nov;128(11):792-802. doi: 10.1002/cncy.22266. Epub 2020 Mar 23. ABSTRACT Cervico-vaginal cytology is primarily a cervical cancer screening test. The anatomical continuity of the uterine cavity with the cervix makes the Papanicolaou (Pap) test accessible to evaluate signs of disease shed from the endometrium. Our aim was to determine the sensitivity of routine Pap […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel2020-03-24 10:00:002020-03-24 10:00:00Sensitivity of cervico-vaginal cytology in endometrial carcinoma: A systematic review and meta-analysis

Defining a mutational signature for endometrial cancer screening and early detection

26 de June de 2019/in Aytes's Lab/by miguel

Cancer Epidemiol. 2019 Aug;61:129-132. doi: 10.1016/j.canep.2019.06.003. Epub 2019 Jun 22. ABSTRACT INTRODUCTION: The current availability of genomic information represents an opportunity to develop new strategies for early detection of cancer. New molecular tests for endometrial cancer may improve performance and failure rates of histological aspirate-based diagnosis, and provide promising perspectives for a potential screening scenario. […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel2019-06-26 10:00:002019-06-26 10:00:00Defining a mutational signature for endometrial cancer screening and early detection

New perspectives on screening and early detection of endometrial cancer

15 de June de 2019/in Aytes's Lab/by miguel

Int J Cancer. 2019 Dec 15;145(12):3194-3206. doi: 10.1002/ijc.32514. Epub 2019 Jun 28. ABSTRACT Due to the anatomical continuity of the uterine cavity with the cervix, genomic exploitation of material from routine Pap smears and other noninvasive sampling methods represent a unique opportunity to detect signs of disease using biological material shed from the upper genital […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel2019-06-15 10:00:002019-06-15 10:00:00New perspectives on screening and early detection of endometrial cancer

BRCA2 and Other DDR Genes in Prostate Cancer

16 de March de 2019/in Aytes's Lab/by miguel

Cancers (Basel). 2019 Mar 12;11(3):352. doi: 10.3390/cancers11030352. ABSTRACT Germline and somatic aberrations in DNA damage repair (DDR) genes are more prevalent in prostate cancer than previously recognized, with BRCA2 as the most commonly altered gene. Germline mutations in BRCA2 have been linked to poor prognosis when patients are managed under the protocols currently approved for […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel2019-03-16 10:00:002019-03-16 10:00:00BRCA2 and Other DDR Genes in Prostate Cancer

NSD2 is a conserved driver of metastatic prostate cancer progression

7 de December de 2018/in Aytes's Lab/by miguel

Nat Commun. 2018 Dec 5;9(1):5201. doi: 10.1038/s41467-018-07511-4. ABSTRACT Deciphering cell-intrinsic mechanisms of metastasis progression in vivo is essential to identify novel therapeutic approaches. Here we elucidate cell-intrinsic drivers of metastatic prostate cancer progression through analyses of genetically engineered mouse models (GEMM) and correlative studies of human prostate cancer. Expression profiling of lineage-marked cells from mouse […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel2018-12-07 11:00:002018-12-07 11:00:00NSD2 is a conserved driver of metastatic prostate cancer progression
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Research group photo. Aytes's Lab
Program Against Cancer Therapeutic Resistance

CONTACT US

Campus IDIBELL
(L’Hospitalet del Llobregat)
Hospital Duran i Reynals, Gran Via 199,
L’Hospitalet del Llobregat,
Barcelona 08908
Tel. +34 93 260 7952

Campus IGTP-IJC
(Badalona)
Campus Can Ruti – IGTP – Building Muntanya,
Rd. Can Ruti, Camí de les escoles s/n,
Badalona, Barcelona 08916
Tel. +34 93 554 3069

Campus IDIBGI
(Girona)
Parc Hospitalari Martí i Julià de Salt, Dr. Castany s/n,
Salt, Girona 17190
Tel. +34 872 987 087

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