Generally, our research group aims to study the influence of food parameters (food design, food processing, food composition) on the digestive kinetics of diverse nutrients throughout the upper gastrointestinal tract. For this, we use in vitro digestion protocols. The current method is a semi

Last updated on: 15-02-2023 - 16:08

Contact: Tara Grauwet
Organisation: Katholieke Universiteit Leuven (KUL)
Status: Published in peer reviewed journal
Ex-vivo tissue explants (precision cut tissue slices) prepared with the Krumdieck Tissue Slicer are living, three-dimensional tissue slices closely resemble the organ from which it is prepared, with all the cell types present in their original tissue-matrix configuration where physiological and

Last updated on: 31-01-2023 - 15:52

Contact: Bella Manshian
Organisation: Katholieke Universiteit Leuven (KUL)
Human Intestinal Organoids (HIOs) are in vitro 3D cell cultures arranged in a crypt-villus structure that incorporate many physiological features of the intestinal epithelium, including the presence of different cell populations (enterocytes, goblet cells, enteroendocrine and Paneth cells). HIOs can

Last updated on: 27-01-2023 - 13:29

Organisation: Katholieke Universiteit Leuven (KUL)
Status: Published in peer reviewed journal
Intestinal organoids are cultured from intestinal biopsies obtained during routine endoscopy. The stem cell containing crypts are isolated and cultured in a 3D ECM (Matrigel) in the presence of the desired growth factors. The present stem cells will expand and give rise to all epithelial cells of

Last updated on: 11-01-2023 - 16:43

Contact: Bram Verstockt
Organisation: Katholieke Universiteit Leuven (KUL)
Status: Published in peer reviewed journal
Myeloid progenitor cells derived from the bone marrow of mice are stimulated using a cytokine mixture to become myeloid derived suppressor cell (MDSC) like cells. These are co-cultured with activated CD8+ T-cells derived from a mouse spleen. The MDSC like cells will suppress the proliferation of the

Last updated on: 10-01-2023 - 16:48

Contact: Yani Berckmans
Organisation: Katholieke Universiteit Leuven (KUL), Oncology - KU Leuven
Status: History of use, Published in peer reviewed journal
This study aimed to create a versatile and reproducible in vitro model of a human motor unit with functional neuromuscular junctions (NMJs). Therefore, human induced pluripotent stem cell (hiPSC)-derived motor neurons and human primary mesoangioblast (MAB)-derived myotubes were co-cultured in

Last updated on: 09-01-2023 - 15:13

Organisation: Vlaams Instituut voor Biotechnologie (VIB), Katholieke Universiteit Leuven (KUL), Neurosciences - KU Leuven
Status: Published in peer reviewed journal
Using the ex vivo culture system, we investigated the impact of an endoscopic helium plasma jet application on mouse ISCs at the morphological, cellular and transcriptomic levels. Moreover, we explored the potential selectivity of CAP application on tumor versus normal organoids originating from the

Last updated on: 09-01-2023 - 09:42

Organisation: Université Libre de Bruxelles (ULB)
Status: Published in peer reviewed journal
The mammary-specific polyomavirus middle T antigen overexpression mouse model (MMTV-PyMT) is one of the most commonly used models in the cancer research field for multiple reasons, among which the spontaneous development of multifocal luminal tumors, the early tumoral onset, and the primary tumors'

Last updated on: 07-11-2022 - 11:47

Organisation: Oncology - KU Leuven, Katholieke Universiteit Leuven (KUL)
The protocol is aimed at developing primary human breast organoids that have a morphology similar to the one observed in the in vivo breast. This morphology encompasses a complex network organization composed of interconnected branches that terminate in TDLU-like structures. The organoids are

Last updated on: 07-11-2022 - 11:24

Organisation: Katholieke Universiteit Leuven (KUL), Oncology - KU Leuven
Status: Still in development, History of use, Published in peer reviewed journal
The tri-dimensional (3D) culture protocols allow isolation and culture of gastric epithelial antral and intestinal stem cells to efficiently generate organoids that recapitulate the mature pyloric and intestinal epithelium in vitro and foetal epithelial progenitors of these tissues growing as

Last updated on: 16-08-2022 - 10:57

Organisation: Université Libre de Bruxelles (ULB)
Status: History of use, Internally validated, Published in peer reviewed journal