Publications by authors named "Johan H van Es"

Article Synopsis
  • The mammalian pancreas has three key parts: exocrine acini and ducts, along with endocrine islets, all originating from a common progenitor during development.
  • Researchers created 18 human fetal pancreas organoid lines from samples between 8-17 weeks of gestation, with four lines showing the ability to produce all three cell types while thriving in culture for over two years.
  • Single-cell RNA sequencing revealed LGR5 cells as crucial developmental stem cells, indicating that these organoids are capable of long-term growth and can differentiate into acinar, ductal, and endocrine cells.
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Carcinogenesis results from the sequential acquisition of oncogenic mutations that convert normal cells into invasive, metastasizing cancer cells. Colorectal cancer exemplifies this process through its well-described adenoma-carcinoma sequence, modeled previously using clustered regularly interspaced short palindromic repeats (CRISPR) to induce four consecutive mutations in wild-type human gut organoids. Here, we demonstrate that long-term culture of mismatch-repair-deficient organoids allows the selection of spontaneous oncogenic mutations through the sequential withdrawal of Wnt agonists, epidermal growth factor (EGF) agonists and the bone morphogenetic protein (BMP) antagonist Noggin, while TP53 mutations were selected through the addition of Nutlin-3.

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Enteroendocrine cells (EECs) are gut epithelial cells that respond to intestinal contents by secreting hormones, including the incretins glucagon-like peptide 1 (GLP-1) and gastric inhibitory protein (GIP), which regulate multiple physiological processes. Hormone release is controlled through metabolite-sensing proteins. Low expression, interspecies differences, and the existence of multiple EEC subtypes have posed challenges to the study of these sensors.

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  • The conjunctival epithelium has two key cell types: goblet cells that produce mucus and keratinocytes that secrete water, with keratinocytes presenting mucins on their surface.
  • Research involves long-term organoid cultures of human and mouse conjunctiva, revealing essential gene expression and identification of conjunctival stem cells.
  • The study also explores viral infections (HSV1, hAdV8, SARS-CoV-2) in conjunctival cultures, demonstrating treatment options for some infections and documenting gene expression changes induced by these viruses, highlighting the potential for organoid transplantation to study conjunctival health and disease.
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Background: Bladder cancer is one of the most common cancer types worldwide. Generally, research relies on invasive sampling strategies.

Methods: Here, we generate bladder cancer organoids directly from urine (urinoids).

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Enteroendocrine cells (EECs) are hormone-producing cells residing in the epithelium of stomach, small intestine (SI), and colon. EECs regulate aspects of metabolic activity, including insulin levels, satiety, gastrointestinal secretion, and motility. The generation of different EEC lineages is not completely understood.

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  • - The study explores the use of advanced CRISPR/Cas9-based base editors for creating intricate tumor models using human organoids derived from adult stem cells (ASC), specifically focusing on liver (hepatocyte) and endometrial organoids.
  • - Results demonstrate the effectiveness of cytosine and adenine base editors in inducing specific mutations, such as CTNNB1 mutations in liver organoids and PTEN nonsense mutations in endometrial organoids, which lead to tumor development even with one mutated copy.
  • - Additionally, the researchers enhanced base editing capabilities by employing multiple Cas9 variants for targeted mutations and established a method to model colorectal cancer by editing five cancer genes simultaneously in one experiment.
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In vitro experiments have shown that GRASP65 (GORASP1) and GRASP55 (GORASP2) proteins function in stacking Golgi cisternae. However, in vivo depletion of GORASPs in metazoans has given equivocal results. We have generated a mouse lacking both GORASPs and find that Golgi cisternae remained stacked.

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High-grade serous ovarian cancer (HG-SOC)-often referred to as a "silent killer"-is the most lethal gynecological malignancy. The fallopian tube (murine oviduct) and ovarian surface epithelium (OSE) are considered the main candidate tissues of origin of this cancer. However, the relative contribution of each tissue to HG-SOC is not yet clear.

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Cycling intestinal Lgr5 stem cells are intermingled with their terminally differentiated Paneth cell daughters at crypt bottoms. Paneth cells provide multiple secreted (e.g.

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  • The study investigates the role of the deubiquitinating enzyme BAP1 as a tumor suppressor in cholangiocarcinoma by using CRISPR/Cas9 to introduce BAP1 loss-of-function in cholangiocyte organoids.
  • BAP1 regulates junctional and cytoskeletal components by influencing chromatin accessibility, leading to reduced epithelial characteristics and increased cell motility, but restoring its activity can reverse these changes.
  • The research demonstrates that BAP1 loss in organoids with common cholangiocarcinoma mutations results in malignant features, highlighting the significance of BAP1 in maintaining epithelial identity and its potential for mechanistic cancer studies.
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Previous studies have described that tumor organoids can capture the diversity of defined human carcinoma types. Here, we describe conditions for long-term culture of human mucosal organoids. Using this protocol, a panel of 31 head and neck squamous cell carcinoma (HNSCC)-derived organoid lines was established.

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Homeostatic regulation of the intestinal enteroendocrine lineage hierarchy is a poorly understood process. We resolved transcriptional changes during enteroendocrine differentiation in real time at single-cell level using a novel knockin allele of Neurog3, the master regulator gene briefly expressed at the onset of enteroendocrine specification. A bi-fluorescent reporter, Neurog3Chrono, measures time from the onset of enteroendocrine differentiation and enables precise positioning of single-cell transcriptomes along an absolute time axis.

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  • Researchers studied heart stem cells to see if they help heal heart tissue after damage.
  • They found that heart muscle cells only grow a lot when a baby is growing, and other types of heart cells help repair damage instead.
  • They didn’t find any resting stem cells or proof that other cell types can turn into heart muscle cells after an injury.
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Enteroendocrine cells (EECs) control a wide range of physiological processes linked to metabolism. We show that EEC hormones are differentially expressed between crypts (for example, Glp1) and villi (for example, secretin). As demonstrated by single-cell mRNA sequencing using murine Lgr5 cell-derived organoids, BMP4 signals alter the hormone expression profiles of individual EECs to resemble those found in the villus.

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The stem cell niche is a specialized environment that dictates stem cell function during development and homeostasis. We show that Dll1, a Notch pathway ligand, is enriched in mammary gland stem cells (MaSCs) and mediates critical interactions with stromal macrophages in the surrounding niche in mouse models. Conditional deletion of Dll1 reduced the number of MaSCs and impaired ductal morphogenesis in the mammary gland.

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The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, the molecular signature, self-renewal potential, and fate behavior of NSCs remain poorly defined. Here we propose a model in which the fate of active NSCs is coupled to the total number of neighboring NSCs in a shared niche.

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Adult neurogenesis in the murine dentate gyrus occurs in a specialized microenvironment that sustains the generation of neurons during life. To fully understand adult neurogenesis, it is essential to determine the neural stem cell (NSC) and progenitor developmental stages, their molecular determinants, and the niche cellular and molecular composition. We report on a single-cell RNA sequencing study of the hippocampal niche, performed by isolating all the non-neuronal cell populations.

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Current mouse models for colorectal cancer often differ significantly from human colon cancer, being largely restricted to the small intestine. Here, we aim to develop a colon-specific inducible mouse model that can faithfully recapitulate human colon cancer initiation and progression. Carbonic anhydrase I (Car1) is a gene expressed uniquely in colonic epithelial cells.

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Leucine-rich repeat-containing G-protein coupled receptor 5-positive (Lgr5(+)) stem cells reside at crypt bottoms of the small and large intestine. Small intestinal Paneth cells supply Wnt3, EGF, and Notch signals to neighboring Lgr5(+) stem cells. Whereas the colon lacks Paneth cells, deep crypt secretory (DCS) cells are intermingled with Lgr5(+) stem cells at crypt bottoms.

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The E3 ubiquitin ligase Mule is often overexpressed in human colorectal cancers, but its role in gut tumorigenesis is unknown. Here, we show in vivo that Mule controls murine intestinal stem and progenitor cell proliferation by modulating Wnt signaling via c-Myc. Mule also regulates protein levels of the receptor tyrosine kinase EphB3 by targeting it for proteasomal and lysosomal degradation.

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Constitutive activation of Wnt/β-catenin inhibits oligodendrocyte myelination. Tcf7l2/Tcf4, a β-catenin transcriptional partner, is required for oligodendrocyte differentiation. How Tcf7l2 modifies β-catenin signalling and controls myelination remains elusive.

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Intestinal crypts display robust regeneration upon injury. The relatively rare secretory precursors can replace lost stem cells, but it is unknown if the abundant enterocyte progenitors that express the Alkaline phosphate intestinal (Alpi) gene also have this capacity. We created an Alpi-IRES-CreERT2 (Alpi(CreER)) knockin allele for lineage tracing.

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Microvillus inclusion disease (MVID) is a rare intestinal enteropathy with an onset within a few days to months after birth, resulting in persistent watery diarrhea. Mutations in the myosin Vb gene (MYO5B) have been identified in the majority of MVID patients. However, the exact pathophysiology of MVID still remains unclear.

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