Person

Nikolche Gjorevski

This person is no longer with EPFL

Related publications (10)

Antiangiogenic immunotherapy suppresses desmoplastic and chemoresistant intestinal tumors in mice

Matthias Lütolf, Michele De Palma, Alan Nicolas Thierry Guichard, Mauro Delorenzi, Mario Leonardo Squadrito, Sina Nassiri, Nikolche Gjorevski, Simone Ragusa, Borja Prat Luri, Laureline Wetterwald

Mutations in APC promote colorectal cancer (CRC) progression through uncontrolled WNT signaling. Patients with desmoplastic CRC have a significantly worse prognosis and do not benefit from chemotherapy, but the mechanisms underlying the differential respon ...
2020

High-throughput automated organoid culture via stem-cell aggregation in microcavity arrays

Matthias Lütolf, Gerardo Turcatti, George Coukos, Krisztian Homicsko, Nathalie Brandenberg, Fabien Kuttler, Camilla Carla Alma Ceroni, Nikolche Gjorevski

Stem-cell-derived epithelial organoids are routinely used for the biological and biomedical modelling of tissues. However, the complexity, lack of standardization and quality control of stem cell culture in solid extracellular matrices hampers the routine ...
NATURE PUBLISHING GROUP2020

Homeostatic mini-intestines through scaffold-guided organoid morphogenesis

Matthias Lütolf, Nathalie Brandenberg, Yoji Tabata, Nikolche Gjorevski, Mikhail Nikolaev, Nicolas Antoine Vincent Broguiere, Olga Mitrofanova, Devanjali Dutta

Epithelial organoids, such as those derived from stem cells of the intestine, have great potential for modelling tissue and disease biology(1-4). However, the approaches that are used at present to derive these organoids in three-dimensional matrices(5,6)r ...
NATURE PUBLISHING GROUP2020

Low-Defect Thiol-Michael Addition Hydrogels as Matrigel Substitutes for Epithelial Organoid Derivation

Matthias Lütolf, Nikolche Gjorevski, Saba Rezakhani

Due to their selective crosslinking chemistry and well-defined mechano-biochemical characteristics, hydrogels crosslinked by thiol-Michael addition reactions have garnered immense interest for 3D cell culture applications. These hydrogels are typically for ...
2020

The Effect of Thiol Structure on Allyl Sulfide Photodegradable Hydrogels and their Application as a Degradable Scaffold for Organoid Passaging

Matthias Lütolf, Nikolche Gjorevski

Intestinal organoids are useful in vitro models for basic and translational studies aimed at understanding and treating disease. However, their routine culture relies on animal-derived matrices that limit translation to clinical applications. In fact, ther ...
WILEY-V C H VERLAG GMBH2020

Organoid tissue engineering

Matthias Lütolf, Nathalie Brandenberg, Yoji Tabata, Nikolche Gjorevski, Mikhail Nikolaev

The invention relates to methods for developing and maintaining organoids and the organoids produced thereby. ...
2018

Three dimensional hydrogels for culturing organoids

Matthias Lütolf, Nikolche Gjorevski

The invention provides hydrogels and methods for three-dimensional (3D) culture of adult epithelial stem cells and uses thereof. ...
2017

Drug discovery through stem cell-based organoid models

Matthias Lütolf, Adrian Ranga, Nikolche Gjorevski

The development of new drugs is currently a long and costly process in large part due to the failure of promising drug candidates identified in initial in vitro screens to perform as intended in vivo. New approaches to drug screening are being developed wh ...
Elsevier2014

Bioengineering approaches to guide stem cell-based organogenesis

Matthias Lütolf, Adrian Ranga, Nikolche Gjorevski

During organogenesis, various molecular and physical signals are orchestrated in space and time to sculpt multiple cell types into functional tissues and organs. The complex and dynamic nature of the process has hindered studies aimed at delineating morpho ...
Company of Biologists2014

Biomaterials Approaches in Stem Cell Mechanobiology

Matthias Lütolf, Nikolche Gjorevski

Multiple molecular and physical cues engage in complex interplay to afford the fine control over stem cell behavior that is required during tissue development, homeostasis, and repair. As a result of a close collaboration between biologists, engineers, and ...
Elsevier Academic Press Inc2014

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