Vignjevic, Danijela, 19..-....
Danijela Vignjevic researcher
VIAF ID: 207300495 ( Personal )
Permalink: http://viaf.org/viaf/207300495
Preferred Forms
4xx's: Alternate Name Forms (2)
Works
Title | Sources |
---|---|
Assembly, heterogeneity, and breaching of the basement membranes |
![]() |
Cancer-associated fibroblast heterogeneity in axillary lymph nodes drives metastases in breast cancer through complementary mechanisms |
![]() |
The cellular capsules technology and its applications to investigate model tumor progression and to engineer tissues in vitro |
![]() |
Concomitant Notch activation and p53 deletion trigger epithelial-to-mesenchymal transition and metastasis in mouse gut. |
![]() |
Dévelopement d'un model intestinal in vitro recapitulant le mouvement péristaltique. |
![]() |
Disséquer la cascade métastatique par des approches innovantes d'imagerie cellulaire |
![]() |
Dynamics of cancer cells in the tumor core and role of the extracellular matrix in invasion. |
![]() |
Endocytose dépendante des glycolipides et des lectines dans l'épithélium intestinal de souris. |
![]() |
Etude de la contribution des voies de signalisation dépendantes des RhoGTPases à l'invasion collective des carcinomes colorectaux |
![]() |
Failure of normal intestinal homeostasis under the influence of tumour cell-derived paracrine signals. |
![]() |
Fonctions communes et spécifiques des protéines paxilline et hic-5 dans la formation et l'activité des invadosomes. |
![]() |
GL-Lect Endocytosis in In-Vivo Model Systems |
![]() |
Hétérogenéité fibroblastique et dissémination métastatique dans les cancers du sein. |
![]() |
HNF1α inhibition triggers epithelial-mesenchymal transition in human liver cancer cell lines |
![]() |
In vitro assembly of filopodia-like bundles. |
![]() |
Inférence des interactions cellule-cellule à partir de l’analyse quantitative d'images de microscopie. |
![]() |
Involvement of type I collagen organisation and degradation in tumor progression. |
![]() |
Isotropic stress reduces cell proliferation in tumor spheroids |
![]() |
Mécanisme de formation des nanotubes (TNT) : accent sur le rôle de l'organisation de l'actine et de l'activité d'Eps8-I-BAR. |
![]() |
Mechanism of filopodia initiation by reorganization of a dendritic network |
![]() |
Microfluidic-Based Generation of 3D Collagen Spheres to Investigate Multicellular Spheroid Invasion. |
![]() |
Molecular mechanisms of integrin activation by kindlin-2 during cell adhesion. |
![]() |
An open data ecosystem for cell migration research |
![]() |
Optical control of protein activity and gene expression by photo-activation of caged-cyclofen for cancer initiation studies. |
![]() |
RALlying through cell motility and invasion |
![]() |
Le récepteur IP3R-3 contrôle la persistance migratoire des cellules dendritiques immatures et leur capacité à explorer l’environnement. |
![]() |
Régulation de l’activité des formines sur des faisceaux de filaments d’actine. |
![]() |
Reproduction in vitro d'un intestin sur puce microfluidique |
![]() |
A review of microfabrication and hydrogel engineering for micro-organs on chips |
![]() |
Rôle de la fascine dans l'invasion des cellules cancéreuses et la formation de métastases du cancer du colon = scin Role in cancer cell invasion and metastasis formation in colorectal cancer |
![]() |
Rôle de la myosine IIA dans l’immunosurveillance de l’intestin grêle par les cellules dendritiques. |
![]() |
Rôle des fibroblastes associés au cancer dans l'invasion tumorale. |
![]() |
Rôle du PTEN dans le contrôle de la migration cellulaire collective. |
![]() |
The role of active forces at cell-cell and cell-substrate interfaces in epithelial tissue organization |
![]() |
The role of carcinoma-associated fibroblasts in cancer cell invasion of the basement membrane. |
![]() ![]() |
Role of Confinement on Clathrin-mediated Endocytosis |
![]() ![]() |
The role of DNA-dependent protein kinase in tumor metastasis |
![]() |
Role of fascin in filopodial protrusion |
![]() |
Role of matrix stiffness in the resistance of squamous cell carcinoma cells to anticancer therapies. |
![]() |
The role of the Cdc42-specific guanine nucleotide exchange factor Fgd1 in tumor cell invasion. |
![]() |
Rôles de l'autophagie dans l'homéostasie des cellules souches intestinales |
![]() |
Study of an orphan congenital intestinal disease : Congenital Tufting Enteropathy : Cell and tissue anomalies characterization after loss‐of‐function of EpCAM or SPINT2. Therapeutic consequences. |
![]() |
Tensile Forces Originating from Cancer Spheroids Facilitate Tumor Invasion |
![]() |
TGFβ Controls the Apico-Basolateral Orientation of Tumor Spheres and Is Correlated With Patient Outcome in Colorectal Cancer |
![]() |