1.Adult dental epithelial stem cell-derived organoids deposit hydroxylapatite biomineral.
Hyun-Yi KIM ; Victoria COOLEY ; Eun-Jung KIM ; Shujin LI ; Jong-Min LEE ; Dina SHEYFER ; Wenjun LIU ; Ophir D KLEIN ; Derk JOESTER ; Han-Sung JUNG
International Journal of Oral Science 2023;15(1):55-55
Ameloblasts are specialized cells derived from the dental epithelium that produce enamel, a hierarchically structured tissue comprised of highly elongated hydroxylapatite (OHAp) crystallites. The unique function of the epithelial cells synthesizing crystallites and assembling them in a mechanically robust structure is not fully elucidated yet, partly due to limitations with in vitro experimental models. Herein, we demonstrate the ability to generate mineralizing dental epithelial organoids (DEOs) from adult dental epithelial stem cells (aDESCs) isolated from mouse incisor tissues. DEOs expressed ameloblast markers, could be maintained for more than five months (11 passages) in vitro in media containing modulators of Wnt, Egf, Bmp, Fgf and Notch signaling pathways, and were amenable to cryostorage. When transplanted underneath murine kidney capsules, organoids produced OHAp crystallites similar in composition, size, and shape to mineralized dental tissues, including some enamel-like elongated crystals. DEOs are thus a powerful in vitro model to study mineralization process by dental epithelium, which can pave the way to understanding amelogenesis and developing regenerative therapy of enamel.
Mice
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Animals
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Durapatite/metabolism*
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Dental Enamel/metabolism*
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Ameloblasts/metabolism*
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Amelogenesis
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Stem Cells
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Organoids
2.Development of an olfactory epithelial organoid culture system based on small molecule screening.
Han WANG ; Liling DENG ; Xuanhe QIN
Chinese Journal of Biotechnology 2023;39(1):318-336
Olfactory epithelium, which detects and transmits odor signals, is critical for the function of olfactory system. Olfactory epithelium is able to recover spontaneously after injury under normal circumstances, but this ability is dampened in certain diseases or senility, which causes olfactory dysfunction. The olfactory epithelium consists of basal cells, sustentacular cells and olfactory sensory neurons. In order to develop an olfactory epithelial organoid containing multiple olfactory cell types in vitro, we used three-dimensional culture model and small molecules screening. This organoid system consists of horizontal basal-like cells, globose basal-like cells, sustentacular-like cells and olfactory sensory neurons-like cells. Through statistical analysis of clone diameter, immunofluorescence staining and qPCR detection of the expression level of related marker genes. We identified a series of growth factors and small molecule compounds that affected the proliferation, composition and gene expression of the organoids. CHIR-99021, an activator of Wnt signaling pathway, increased the colony formation and proliferation rate of olfactory epithelial organoids and the expression level of marker genes of olfactory sensory neurons-like cells. In addition, each factor in the culture system increased the proportion of c-Kit-positive globose basal-like cell colonies in organoids. Moreover, EGF and vitamin C were both beneficial to the expression of horizontal basal-like cell marker genes in organoids. The established olfactory epithelial organoid system mimicked the process of olfactory epithelial stem cells differentiating into various olfactory epithelial cell types, thus providing a research model for studying olfactory epithelial tissue regeneration, the pathological mechanism of olfactory dysfunction and drug screening for olfactory dysfunction treatment.
Humans
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Olfactory Mucosa/metabolism*
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Epithelial Cells
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Organoids/metabolism*
;
Olfaction Disorders/metabolism*
3.Pigmented Mediastinal Paraganglioma: A case report.
Seong Ho KIM ; Yoon Hee JIN ; Eun Kyung HONG ; Moon Hyang PARK
Korean Journal of Pathology 2000;34(8):597-600
Pigmented extraadrenal paraganglioma is an unusual neoplasm that has rarely been reported in the literature. Based on histochemical staining or electron microscopy, pigment has been classified as lipofuscin, neuromelanin or true melanin. We report a case of pigmented extraadrenal paraganglioma in the posterior mediastinum of a 70-year-old woman. Histologically, the tumor had a characteristic organoid architecture of "zellballen" pattern with rich delicate microvasculature. Tumor cells contained numerous coarse brown-black pigment granules. Ultrastructurally, the tumor showed abundant large electron-dense pigment granules that vary in size and shape and smaller membrane-bound neurosecretory granules. The larger granules were consistent with neuromelanin or lipofuscin. Histochemically, the pigment is most likely neuromelanin, which is a waste product of catecholamine metabolism.
Aged
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Female
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Humans
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Lipofuscin
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Mediastinum
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Melanins
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Metabolism
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Microscopy, Electron
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Microvessels
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Organoids
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Paraganglioma*
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Waste Products
4.Genome engineering of stem cell organoids for disease modeling.
Protein & Cell 2017;8(5):315-327
Precision medicine emerges as a new approach that takes into account individual variability. Successful realization of precision medicine requires disease models that are able to incorporate personalized disease information and recapitulate disease development processes at the molecular, cellular and organ levels. With recent development in stem cell field, a variety of tissue organoids can be derived from patient specific pluripotent stem cells and adult stem cells. In combination with the state-of-the-art genome editing tools, organoids can be further engineered to mimic disease-relevant genetic and epigenetic status of a patient. This has therefore enabled a rapid expansion of sophisticated in vitro disease models, offering a unique system for fundamental and biomedical research as well as the development of personalized medicine. Here we summarize some of the latest advances and future perspectives in engineering stem cell organoids for human disease modeling.
Animals
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Biomedical Research
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Gene Editing
;
methods
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Humans
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Models, Biological
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Organoids
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metabolism
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Pluripotent Stem Cells
;
metabolism
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Precision Medicine
;
methods
5.Establishment of a three-dimensional organoid culture system for mouse type 2 alveolar epithelial cells.
Juan WEI ; Chu-Fan XU ; Xiao-Yan ZHU ; Yu-Jian LIU
Acta Physiologica Sinica 2022;74(4):585-595
The purpose of this study was to establish a three-dimensional (3D) organoid culture system for type 2 alveolar epithelial (AT2) cells in mice. AT2 cells were isolated from ICR mouse lung and purified by enzymatic digestion and MicroBeads sorting. The purity of AT2 cells was determined by immunofluorescence (IF) staining using an antibody against proSPC. The AT2 differentiation was examined by IF staining with proSPC/HopX and proSPC/T1α antibodies, and proliferation of AT2 cells was assessed by EdU incorporation assays after two-dimensional (2D) culture for 8 days. In addition, AT2 cells were co-cultured with mouse lung fibroblasts (Mlg) in three-dimensional (3D) culture system. After 13 days of co-culture, the organoids were fixed in 2% paraformaldehyde for histological analysis and IF staining. The results showed that the purity of the AT2 cells was over 95%, as assessed by proSPC staining. 2D cultured AT2 cells were negative for EdU staining, which indicates that no proliferation occurs. proSPC expression was gradually disappeared, whereas T1α and HopX expression was gradually increased after 3, 5 and 8 days of culture. In 3D culture system, the alveolar organoids were formed after co-culturing AT2 cells with Mlg for 4 days. Histological analysis showed that alveolar organoids displayed a hollow morphology. proSPC was highly expressed in the peripheral cells, whereas type 1 alveolar epithelial (AT1) cells transdifferentiated from AT2 cells expressing HopX were mainly located in the interior of organoid bodies after 13 days. Some of the proSPC-positive AT2 cells located in the outer circle of alveolar organoids were stained positive for both proSPC and EdU, indicating that the AT2 cells in the alveolar organoids were proliferative. These results showed that the 3D organoid culture system of mouse AT2 cells was successfully established.
Alveolar Epithelial Cells/metabolism*
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Animals
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Cell Differentiation
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Cells, Cultured
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Epithelial Cells
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Lung
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Mice
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Mice, Inbred ICR
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Organoids
6.Recapitulating cortical development with organoid culture in vitro and modeling abnormal spindle-like (ASPM related primary) microcephaly disease.
Rui LI ; Le SUN ; Ai FANG ; Peng LI ; Qian WU ; Xiaoqun WANG
Protein & Cell 2017;8(11):823-833
The development of a cerebral organoid culture in vitro offers an opportunity to generate human brain-like organs to investigate mechanisms of human disease that are specific to the neurogenesis of radial glial (RG) and outer radial glial (oRG) cells in the ventricular zone (VZ) and subventricular zone (SVZ) of the developing neocortex. Modeling neuronal progenitors and the organization that produces mature subcortical neuron subtypes during early stages of development is essential for studying human brain developmental diseases. Several previous efforts have shown to grow neural organoid in culture dishes successfully, however we demonstrate a new paradigm that recapitulates neocortical development process with VZ, OSVZ formation and the lamination organization of cortical layer structure. In addition, using patient-specific induced pluripotent stem cells (iPSCs) with dysfunction of the Aspm gene from a primary microcephaly patient, we demonstrate neurogenesis defects result in defective neuronal activity in patient organoids, suggesting a new strategy to study human developmental diseases in central nerve system.
Action Potentials
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physiology
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Biomarkers
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metabolism
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Cell Culture Techniques
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Embryoid Bodies
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cytology
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metabolism
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Gene Expression
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Humans
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Induced Pluripotent Stem Cells
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cytology
;
metabolism
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Lateral Ventricles
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cytology
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growth & development
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metabolism
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Microcephaly
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genetics
;
metabolism
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pathology
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Models, Biological
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Mutation
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Neocortex
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cytology
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growth & development
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metabolism
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Nerve Tissue Proteins
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deficiency
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genetics
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Neurogenesis
;
genetics
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Neurons
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cytology
;
metabolism
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Organoids
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cytology
;
metabolism
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PAX6 Transcription Factor
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genetics
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metabolism
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Patch-Clamp Techniques
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SOXB1 Transcription Factors
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genetics
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metabolism
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Zonula Occludens-1 Protein
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genetics
;
metabolism
7.Recapitulation of SARS-CoV-2 infection and cholangiocyte damage with human liver ductal organoids.
Bing ZHAO ; Chao NI ; Ran GAO ; Yuyan WANG ; Li YANG ; Jinsong WEI ; Ting LV ; Jianqing LIANG ; Qisheng ZHANG ; Wei XU ; Youhua XIE ; Xiaoyue WANG ; Zhenghong YUAN ; Junbo LIANG ; Rong ZHANG ; Xinhua LIN
Protein & Cell 2020;11(10):771-775
Betacoronavirus
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isolation & purification
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pathogenicity
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Bile Acids and Salts
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metabolism
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Bile Ducts, Intrahepatic
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pathology
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virology
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Cell Culture Techniques
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Coronavirus Infections
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complications
;
pathology
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Cytokine Release Syndrome
;
etiology
;
physiopathology
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Cytopathogenic Effect, Viral
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Epithelial Cells
;
enzymology
;
pathology
;
virology
;
Humans
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Hyperbilirubinemia
;
etiology
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Liver
;
pathology
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Organoids
;
pathology
;
virology
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Pandemics
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Peptidyl-Dipeptidase A
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analysis
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Pneumonia, Viral
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complications
;
pathology
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Receptors, Virus
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analysis
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Serine Endopeptidases
;
analysis
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Viral Load