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Steenblock, C.

Publications and source records attributed to Steenblock, C..

4 recordsLinked to original sources

In vitro differentiation of mouse pluripotent stem cells into glucocorticoid-producing adrenocortical cells

Directed differentiation of pluripotent stem cells into specialized cell types represents an invaluable tool for a wide range of applications. Here, we have exploited single-cell transcriptomic data to develop a step-wise in vitro differentiation system from mouse embryonic stem cells into adrenocortical cells. We show that during development the adrenal primordium is embedded in an extracellular matrix containing tenascin and fibronectin. Culturing cells on fibronectin during differentiation increased the expression of the steroidogenic marker NR5A1. Furthermore, 3D cultures in the presence of PKA-pathway activators led to the formation of aggregates composed of different cell types expressing adrenal progenitor or steroidogenic markers, including the adrenocortical specific enzyme Cyp21a1. Importantly, in vitro differentiated cells secreted the zona Fasciculata specific corticosterone in response to cAMP activators, but not gonadal hormones, thus confirming the specificity of differentiation towards the adrenal lineage. HighlightsO_LIMouse adrenal progenitors differentiate in a tenascin/fibronectin-rich extracellular matrix C_LIO_LIStepwise differentiation of ES cells yields NR5A1+ adrenocortical cells C_LIO_LI3D aggregates produce glucocorticoids in response to cAMP signalling C_LI

developmental biology↗

SOX2+ sustentacular cells are stem cells of the postnatal adrenal medulla

Renewal of the catecholamine-secreting chromaffin cell population of the adrenal medulla is necessary for physiological homeostasis throughout life. Definitive evidence for the presence or absence of an adrenomedullary stem cell has been enigmatic. In this work, we demonstrate that a subset of sustentacular cells endowed with a support role, are in fact adrenomedullary stem cells. Through genetic tracing and comprehensive transcriptomic data of the mouse adrenal medulla, we show that cells expressing Sox2/SOX2 specialise as a unique postnatal population from embryonic Schwann Cell Precursors and are also present in the normal adult human adrenal medulla. Postnatal SOX2+ cells give rise to chromaffin cells of both the adrenaline and noradrenaline lineages in vivo and in vitro. We reveal that SOX2+ stem cells have a second, paracrine role in maintaining adrenal chromaffin cell homeostasis, where they promote proliferation through paracrine secretion of WNT6. This work identifies SOX2+ cells as a true stem cell for catecholamine-secreting chromaffin cells.

developmental biology↗

Host factor PLAC8 is required for pancreas infection by SARS-CoV-2

BackgroundAlthough COVID-19 initially caused great concern about respiratory symptoms, mounting evidence shows that also the pancreas is productively infected by SARS-CoV-2. However, the severity of pancreatic SARS-CoV-2 infection and its pathophysiology are still under debate. Here we investigated the consequences of SARS-CoV-2 pancreatic infection and the role of the host factor Placenta-associated protein (PLAC8) MethodsWe analyzed plasma levels of pancreatic enzymes and inflammatory markers in a retrospective cohort study of 120 COVID-19 patients distributed in 3 severity-stratified groups. We studied the expression of SARS-CoV-2 and PLAC8 in the pancreas of deceased COVID-19 patients as well as in non-infected donors. We performed infection experiments in PLAC8 knock-out PDAC cell lines with full SARS-CoV-2 virus. ResultsWe found that analysis of circulating pancreatic enzymes aided the stratification of patients according to COVID-19 severity and predict outcomes. Interestingly, we found an association between PLAC8 expression and SARS-CoV-2 infection in postmortem analysis of COVID-19 patients. Using full SARS-CoV-2 infectious virus inoculum from Wuhan-1 and BA.1 strains, we demonstrated that PLAC8 is necessary for productive infection of PDAC cell lines. Finally, we observed an overlap between PLAC8 and SARS-CoV-2 immunoreactivities of the pancreas of deceased patients. ConclusionOur data indicate the human pancreas as a SARS-CoV-2 target with plausible signs of injury and demonstrate that the host factor PLAC8 is required for SARS-CoV-2 pancreatic infection, thus defining new target opportunities for COVID-19-associated pancreatic pathogenesis. Plain language summaryPrevious studies have shown that the pancreas is infected by SARS-CoV-2. However, none of these studies have described measurable pancreatic damage associated to COVID-19 severity and the pathogenesis of pancreatic SARS-CoV-2 infection remains largely unknown. Novel host factors have been proposed for SARS-CoV-2 infection of mainly the airway epithelium, none of them studied in the pancreas. Our study shows clinically relevant pancreatic damage associated with SARS-CoV-2 infiltration and assesses the predictive potential of circulating pancreatic enzymes to stratify patients according to COVID-19 severity and predict clinical outcomes in a cohort of 120 patients. Our data show that host factor Placenta-associated protein 8 (PLAC8) expression is linked to SARS-CoV-2 infection in postmortem analysis of COVID-19 patients and functionally demonstrated the full requirement of PLAC8 for SARS-CoV-2 pancreatic infection and viral replication. Our data confirm the human pancreas as a SARS-CoV-2 target with signs of injury unveiling the measurement of pancreatic enzymes for prognosis value and demonstrating that host factor PLAC8 is required for SARS-CoV-2 pancreatic infection defining new stratification and target opportunities for COVID-19-associated pancreatic pathogenesis.

cell biology↗

Innovative multidimensional models in a high-throughput-format for different cell types of endocrine origin

The adrenal gland provides an important function by integrating neuronal, immune, vascular, metabolic and endocrine signals under a common organ capsule. It is the central organ of the stress response system and has been implicated in numerous stress-related disorders. While for other diseases, regeneration of healthy organ tissue has been aimed at such approaches are lacking for endocrine diseases - with the exception of type-I-diabetes. Moreover, tumor formation is very common, however, appropriate high-throughput applications reflecting the high heterogeneity and furthermore relevant 3D-structures in vitro are still widely lacking. Recently, we have initiated the development of standardized multidimensional models of a variety of endocrine cell/tissue sources in a new multiwell-format. Firstly, we confirmed common applicability for pancreatic pseudo-islets. Next, we translated applicability for spheroid establishment to adrenocortical cell lines as well as patient material to establish spheroids from malignant, but also benign adrenal tumors. We aimed furthermore at the development of bovine derived adrenal organoids and were able to establish steroidogenic active organoids containing both, cells of cortical and medullary origin. Overall, we hope to open new avenues for basic research, endocrine cancer and adrenal tissue-replacement-therapies as we demonstrate potential for innovative mechanistic insights and personalized medicine in endocrine (tumor)-biology.

cancer biology↗