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1.
Sci Rep ; 14(1): 1069, 2024 01 11.
Article En | MEDLINE | ID: mdl-38212454

Salivary gland myoepithelial cells regulate saliva secretion and have been implicated in the histological diversity of salivary gland tumors. However, detailed functional analysis of myoepithelial cells has not been determined owing to the few of the specific marker to isolate them. We isolated myoepithelial cells from the submandibular glands of adult mice using the epithelial marker EpCAM and the cell adhesion molecule CD49f as indicators and found predominant expression of the transcription factor FoxO1 in these cells. RNA-sequence analysis revealed that the expression of cell cycle regulators was negatively regulated in FoxO1-overexpressing cells. Chromatin immunoprecipitation analysis showed that FoxO1 bound to the p21/p27 promoter DNA, indicating that FoxO1 suppresses cell proliferation through these factors. In addition, FoxO1 induced the expression of ectodysplasin A (Eda) and its receptor Eda2r, which are known to be associated with X-linked hypohidrotic ectodermal dysplasia and are involved in salivary gland development in myoepithelial cells. FoxO1 inhibitors suppressed Eda/Eda2r expression and salivary gland development in primordial organ cultures after mesenchymal removal. Although mesenchymal cells are considered a source of Eda, myoepithelial cells might be one of the resources of Eda. These results suggest that FoxO1 regulates myoepithelial cell proliferation and Eda secretion during salivary gland development in myoepithelial cells.


Salivary Gland Neoplasms , Transcription Factors , Animals , Mice , Ectodysplasins/genetics , Epithelial Cells/metabolism , Receptors, Tumor Necrosis Factor/metabolism , Salivary Gland Neoplasms/metabolism , Submandibular Gland/metabolism , Transcription Factors/metabolism , Xedar Receptor/metabolism
2.
J Oral Biosci ; 66(1): 82-89, 2024 Mar.
Article En | MEDLINE | ID: mdl-38142941

OBJECTIVES: Aging-related salivary gland changes, such as lymphocyte infiltration and acinar cell loss decrease saliva secretion, thereby affecting quality of life. The precise molecular mechanisms underlying these changes remain unclear. METHODS: We here performed single-cell RNA sequencing to clarify gene expression changes in each cell type comprising the submandibular glands (SMGs) of adult and aged mice. RESULTS: The proportion of acinar cells decreased in various epithelial clusters annotated with cell type-specific marker genes. Expression levels of the cellular senescence markers, Cdkn2a/p16 and Cdkn1a/p21, were increased in the basal and striated ducts of aged SMGs relative to their levels in those of adult SMGs. In contrast, senescence-associated secretory phenotype-related genes, except transforming growth factor-ß, exhibited little change in expression in aged SMGs relative to adult SMGs. CONCLUSIONS: Gene Ontology analysis revealed increased expression levels of genes encoding major histocompatibility complex (MHC) class I components in the ductal component cells of aged SMGs. MHC class I expression may thus be associated with salivary gland aging.


Quality of Life , Submandibular Gland , Mice , Animals , Submandibular Gland/metabolism , Salivary Glands/metabolism , Cellular Senescence , Single-Cell Analysis
3.
J Oral Biosci ; 65(1): 104-110, 2023 03.
Article En | MEDLINE | ID: mdl-36736698

OBJECTIVES: The self-regeneration of exocrine tissues, including salivary glands, is limited and their regeneration mechanism has not yet been fully elucidated. Here we identify the role of adipose-derived mesenchymal stem cells (AMSCs) in salivary gland regeneration. METHODS: AMSCs expressing mesenchymal stem cell markers were applied to a submandibular gland injury model and the mechanism of salivary gland repair and regeneration was analyzed. RESULTS: Transplanted green fluorescent protein (GFP)-labeled AMSCs grew tightly together and promoted ductal regeneration in the regenerative nodule, with slight infiltration of nonspecific immune cells. A comprehensive gene analysis through RNA-sequencing revealed increased expression of bone morphogenetic protein (BMP), transforming growth factor (TGF), and Wnt in AMSC-transplanted regenerative nodules. The factors released from AMSCs scavenge hydrogen peroxidase-induced reactive oxygen species (ROS) through Wnt promoter activity in vitro. Furthermore, AMSC-conditioned medium recovered the growth of the hydrogen peroxidase-damaged primordium of the submandibular gland culture ex vivo. CONCLUSIONS: These results suggest that AMSC-released factors scavenge ROS and maintain salivary gland repair and regeneration via paracrine effects. Thus, AMSCs could be a practical and applicable tool for use in salivary gland regeneration.


Adipose Tissue , Mesenchymal Stem Cells , Adipose Tissue/metabolism , Salivary Ducts , Reactive Oxygen Species/metabolism , Mesenchymal Stem Cells/metabolism , Submandibular Gland
5.
J Oral Biosci ; 65(1): 40-46, 2023 03.
Article En | MEDLINE | ID: mdl-36693474

OBJECTIVES: Tissue differentiation is regulated by transcription factors. This study aimed to identify candidate transcription factors that induce periodontal ligament (PDL) cell differentiation in human pluripotent stem cells (hPSCs). METHODS: Human PDL tissues were scraped from the root surfaces of extracted teeth for orthodontic treatment and cultured using the explant culture method. We used RNA-seq to generate gene expression profiles of third-passage PDL cells and compared them with those of undifferentiated human induced pluripotent stem cells (hiPSCs) and human embryonic stem cell (hESC)-derived neural crest (NC) cells (publicly available data). RESULTS: Primary cultured PDL cells exhibited a spindle-shaped fibroblast-like appearance and the gene expression of several PDL cell-specific markers. The gene expression profiles of PDL cells were relatively similar to those of hESC-derived NC cells but not those of undifferentiated hiPSCs. Thirty-seven transcription factors were identified as upregulated genes in PDL cells. Pathway analysis showed that differentially expressed genes were enriched in several functional groups and pathways, including the SMAD 2/3 nuclear pathway. CONCLUSIONS: We identified 37 upregulated transcription genes in primary cultured PDL cells compared with hESC-derived NC cells. Regulating these genes and the SMAD signaling pathway may be promising ways to induce PDL cells from hPSC-derived NC cells.


Induced Pluripotent Stem Cells , Periodontal Ligament , Humans , Periodontal Ligament/metabolism , Transcriptome , Induced Pluripotent Stem Cells/metabolism , Cell Differentiation , Transcription Factors/metabolism , Biomarkers/metabolism
6.
Nat Cell Biol ; 24(11): 1595-1605, 2022 11.
Article En | MEDLINE | ID: mdl-36253535

Salivary glands act as virus reservoirs in various infectious diseases and have been reported to be targeted by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). However, the mechanisms underlying infection and replication in salivary glands are still enigmatic due to the lack of proper in vitro models. Here, we show that human induced salivary glands (hiSGs) generated from human induced pluripotent stem cells can be infected with SARS-CoV-2. The hiSGs exhibit properties similar to those of embryonic salivary glands and are a valuable tool for the functional analysis of genes during development. Orthotopically transplanted hiSGs can be engrafted at a recipient site in mice and show a mature phenotype. In addition, we confirm SARS-CoV-2 infection and replication in hiSGs. SARS-CoV-2 derived from saliva in asymptomatic individuals may participate in the spread of the virus. hiSGs may be a promising model for investigating the role of salivary glands as a virus reservoir.


COVID-19 , Induced Pluripotent Stem Cells , Humans , Animals , Mice , SARS-CoV-2 , Organoids , Salivary Glands
7.
Lab Invest ; 102(11): 1245-1256, 2022 11.
Article En | MEDLINE | ID: mdl-35810235

Myoepithelial (ME) cells in exocrine glands exhibit both epithelial and mesenchymal features, contributing to fluid secretion through contraction. However, the regulation mechanism of behind this unique phenotype in salivary glands remains unclear. We established a flow cytometry-based purification method using cell surface molecules, epithelial cell adhesion molecule (EpCAM) and alpha 6 integrin (CD49f), to characterize ME cells. EpCAM+CD49fhigh cells showed relatively high expression of ME cell-marker genes, such as alpha-smooth muscle actin (α-SMA). For lineage tracing and strict isolation, tdTomato+EpCAM+CD49fhigh-ME cells were obtained from myosin heavy chain 11 (Myh11) -CreERT2/tdTomato mice. Transcriptome analysis revealed that expression of genes involved in the epithelial-mesenchymal transition, including Snai2, were upregulated in the ME cell-enriched subset. Snai2 suppression in stable ME cells decreased α-SMA and increased Krt14 expression, suggesting that ME cell features may be controlled by the epithelial-mesenchymal balance regulated by Snai2. In contrast, ME cells showed reduced ME properties and expressed the ductal markers Krt18/19 under sphere culture conditions. Notch signaling was activated under sphere culture conditions; excessive activation of Notch signaling accelerated Krt18/19 expression, but reduced α-SMA and Snai2 expression, suggesting that the behavior of Snai2-expressing ME cells may be controlled by Notch signaling.


Actins , Myosin Heavy Chains , Mice , Animals , Integrin alpha6/metabolism , Epithelial Cell Adhesion Molecule/metabolism , Actins/metabolism , Myosin Heavy Chains/metabolism , Epithelial Cells/metabolism , Muscle, Smooth/metabolism , Salivary Glands/metabolism , Biomarkers/metabolism
8.
Biochem Biophys Res Commun ; 586: 55-62, 2022 01 01.
Article En | MEDLINE | ID: mdl-34826701

Salivary gland hypofunction due to radiation therapy for head and neck cancer or Sjögren syndrome may cause various oral diseases, which can lead to a decline in the quality of life. Cell therapy using salivary gland stem cells is a promising method for restoring hypofunction. Herein, we show that salivary gland-like cells can be induced from epithelial tissues that were transdifferentiated from mouse embryonic fibroblasts (MEFs). We introduced four genes, Dnp63a, Tfap2a, Grhl2, and Myc (PTMG) that are known to transdifferentiate fibroblasts into oral mucosa-like epithelium in vivo into MEFs. MEFs overexpressing these genes showed epithelial cell characteristics, such as cobblestone appearance and E-cadherin positivity, and formed oral epithelial-like tissue under air-liquid interface culture conditions. The epithelial sheet detached from the culture dish was infected with adenoviruses encoding Sox9 and Foxc1, which we previously identified as essential factors to induce salivary gland formation. The cells detached from the cell sheet formed spheres 10 days after infection and showed a branching morphology. The spheres expressed genes encoding basal/myoepithelial markers, cytokeratin 5, cytokeratin 14, acinar cell marker, aquaporin 5, and the myoepithelial marker α-smooth muscle actin. The dissociated cells of these primary spheres had the ability to form secondary spheres. Taken together, our results provide a new strategy for cell therapy of salivary glands and hold implications in treating patients with dry mouth.


Acinar Cells/metabolism , Fibroblasts/metabolism , Forkhead Transcription Factors/genetics , SOX9 Transcription Factor/genetics , Salivary Glands/metabolism , Spheroids, Cellular/metabolism , Acinar Cells/cytology , Adenoviridae/genetics , Adenoviridae/metabolism , Animals , Aquaporin 5/genetics , Aquaporin 5/metabolism , Biomarkers/metabolism , Cadherins/genetics , Cadherins/metabolism , Cell Transdifferentiation/genetics , Cell- and Tissue-Based Therapy/methods , Embryo, Mammalian , Fibroblasts/cytology , Forkhead Transcription Factors/metabolism , Gene Expression , Genetic Vectors/chemistry , Genetic Vectors/metabolism , Keratin-14/genetics , Keratin-14/metabolism , Keratin-5/genetics , Keratin-5/metabolism , Mice , Proto-Oncogene Proteins c-myc/genetics , Proto-Oncogene Proteins c-myc/metabolism , SOX9 Transcription Factor/metabolism , Salivary Glands/cytology , Spheroids, Cellular/cytology , Trans-Activators/genetics , Trans-Activators/metabolism , Transcription Factor AP-2/genetics , Transcription Factor AP-2/metabolism , Transcription Factors/genetics , Transcription Factors/metabolism
9.
Sci Rep ; 11(1): 15437, 2021 07 29.
Article En | MEDLINE | ID: mdl-34326453

The serotonin 5-HT2A receptor (5-HT2AR) has been receiving increasing attention because its genetic variants have been associated with a variety of neurological diseases. To elucidate the pathogenesis of the neurological diseases associated with 5-HT2AR gene (HTR2A) variants, we have previously established a protocol to induce HTR2A-expressing neurons from human-induced pluripotent stem cells (hiPSCs). Here, we investigated the maturation stages and electrophysiological properties of HTR2A-positive neurons induced from hiPSCs and constructed an HTR2A promoter-specific reporter lentivirus to label the neurons. We found that neuronal maturity increased over time and that HTR2A expression was induced at the late stage of neuronal maturation. Furthermore, we demonstrated successful labelling of the HTR2A-positive neurons, which had fluorescence and generated repetitive action potentials in response to depolarizing currents and an inward current during the application of TCB-2, a selective agonist of 5-HT2ARs, respectively. These results indicated that our in vitro model mimicked the in vivo dynamics of 5-HT2AR. Therefore, in vitro monitoring of the function of HTR2A-positive neurons induced from hiPSCs could help elucidate the pathophysiological mechanisms of neurological diseases associated with genetic variations of the HTR2A gene.


Induced Pluripotent Stem Cells/cytology , Neurogenesis/genetics , Neurons/cytology , Neurons/metabolism , Receptor, Serotonin, 5-HT2A/metabolism , Signal Transduction/genetics , Action Potentials/genetics , Adult , Blood Donors , Cells, Cultured , Healthy Volunteers , Humans , Patch-Clamp Techniques/methods , Promoter Regions, Genetic , Receptor, Serotonin, 5-HT2A/genetics , Transfection
10.
J Oral Biosci ; 63(1): 8-13, 2021 03.
Article En | MEDLINE | ID: mdl-33497841

BACKGROUND: Organogenesis is regulated by morphogen signaling and transcription networks. These networks differ between organs, and identifying the organ-specific network is important to clarify the molecular mechanisms of development and regeneration of organs. Several studies have been conducted to identify salivary gland-specific networks using a mouse submandibular gland model. The submandibular glands (SMGs) of mice manifest as a thickening of the oral epithelium at embryonic day 11.5 and invaginate into the underlying mesenchyme. The network between Fgf10 and Sox9 is involved in SMG development in mice. HIGHLIGHT: Sox9, a member of the Sox family, is expressed in the SMG in mice from the embryonic stage to the adult stage, although the distribution changes during development. A null mutation of mouse Sox9 is lethal during the neonatal period due to respiratory failure, whereas deletion of Sox9 in the oral epithelium using the Cre/lox P system, can lead to smaller initial buds of SMGs in conditional knockout (cKO) mice than in normal mice. In addition, we showed that adenoviral transduction of Sox9 and Foxc1 genes into mouse embryonic stem cell-derived oral ectoderm could induce salivary gland rudiment in an organoid culture system. ChIP-sequencing revealed that Sox9 possibly regulates several tube- and branching-formation-related genes. CONCLUSION: Sox9 may serve as an essential transcription factor for salivary gland development. The Sox9-mediated pathway can be a promising candidate for regenerating damaged salivary glands.


Salivary Glands , Submandibular Gland , Animals , Ectoderm , Mice , Organogenesis/genetics , Signal Transduction
11.
Heliyon ; 6(3): e03409, 2020 Mar.
Article En | MEDLINE | ID: mdl-32154403

Advances in prenatal molecular testing have made it possible to diagnose most genetic disorders early in gestation. In utero mesenchymal stem cell (MSC) therapy can be a powerful tool to cure the incurable. With this in mind, this method could ameliorate potential physical and functional damage. However, the presence of maternal T cells trafficking in the fetus during pregnancy is thought to be the major barrier to achieving the engraftment into the fetus. We investigated the possibility of using maternal adipose-derived stem cells (ADSCs) for in utero transplantation to improve engraftment, thus lowering the risk of graft rejection. Herein, fetal brain engraftment using congenic and maternal ADSC grafts was examined via in utero stem cell transplantation in a mouse model. ADSCs were purified using the mesenchymal stem cell markers, PDGFRα, and Sca-1 via fluorescence-activated cell sorting. The PDGFRα+Sca-1+ ADSCs were transplanted into the fetal intracerebroventricular (ICV) at E14.5. The transplanted grafts grew for at least 28 days after in utero transplantation with PDGFRα+Sca-1+ ADSC, and mature neuronal markers were also detected in the grafts. Furthermore, using the maternal sorted ADSCs suppressed the innate immune response, preventing the infiltration of CD8 T cells into the graft. Thus, in utero transplantation into the fetal ICV with the maternal PDGFRα+Sca-1+ ADSCs may be beneficial for the treatment of congenital neurological diseases because of the ability to reduce the responses after in utero stem cell transplantation and differentiate into neuronal lineages.

12.
Prenat Diagn ; 40(6): 728-737, 2020 05.
Article En | MEDLINE | ID: mdl-32149412

OBJECTIVE: We examined whether maternal serum cytokine profiles of mothers with early-onset fetal growth restriction (FGR) were associated with delivery within 2 weeks after sampling during the third trimester. STUDY DESIGN: This exploratory prospective cross-sectional study included a total of 20 singleton fetuses with early-onset FGR and 31 healthy controls. Maternal serum samples during the early third trimester were analyzed for 23 cytokines. RESULTS: Of 20 fetuses with early-onset FGR, 14 had delivery within 2 weeks after sampling. Multivariate analysis revealed that maternal serum concentrations of soluble vascular endothelial growth factor receptor-1 (sVEGFR-1) and soluble CD40 ligand (sCD40L) were independently associated with delivery within 2 weeks in early-onset FGR. Among cases of early-onset FGR, concentrations of almost all maternal serum cytokines were similar. Maternal serum sVEGFR-1 concentrations were high when delivery occurred within 2 weeks. Maternal serum sCD40L concentrations were elicited only in cases in which delivery within 2 weeks occurred due to fetal deterioration. CONCLUSION: We identified two biomarkers, one specific for FGR and the other dependent on severity, that were significant components of angiogenic activities and inflammation factors. Imbalances in serum protein expression may have a substantial effect on the pathogenesis of FGR.


CD40 Ligand/blood , Cesarean Section , Cytokines/blood , Fetal Growth Retardation/blood , Labor, Induced , Pre-Eclampsia/blood , Vascular Endothelial Growth Factor Receptor-1/blood , Adult , Biomarkers/blood , Birth Weight , Case-Control Studies , Cross-Sectional Studies , Elective Surgical Procedures , Endoglin/blood , Female , Heparin-binding EGF-like Growth Factor/blood , Humans , Infant, Newborn , Infant, Small for Gestational Age , Leptin/blood , Male , Multivariate Analysis , Placenta Growth Factor/blood , Pregnancy , Pregnancy Trimester, Third , Premature Birth , Time Factors , Vascular Endothelial Growth Factor A/blood
13.
J Oral Biosci ; 62(1): 99-106, 2020 03.
Article En | MEDLINE | ID: mdl-32007659

OBJECTIVES: Details of the histogenesis of salivary gland tumors are largely unknown. The oncogenic role of PLAG1 in the salivary gland has been demonstrated in vivo. Herein, we demonstrate PLAG1 roles in the acinar and ductal cells of normal human salivary glands to clarify the early events that occur during the histogenesis of salivary gland tumors. METHODS: Normal salivary gland cells with acinar and ductal phenotypes were transfected with PLAG1 plasmid DNA. Subsequently, PLAG1 overexpressed and mock cells were examined by cell proliferation, transwell migration, and salisphere formation assays. Differentiation and salivary and pluripotent stem cell marker expression levels were evaluated by quantitative reverse transcription-polymerase chain reaction and immunofluorescence. Alterations in transcriptional expressions were investigated via cap analysis of gene expression with gene-enrichment and functional annotation analysis. RESULTS: PLAG1 promoted cell proliferation and transwell migration in the acinar and ductal cells, and markedly enhanced the stemness profiles and luminal cell-like profiles in acinar cells; the stemness profiles were partially increased in the ductal cells. CONCLUSION: PLAG1 enhanced the stemness profiles in the acinar cells of normal human salivary glands in a cell type-specific manner. Thus, it may be involved in salivary gland tumorigenesis by increasing the stemness character of the normal salivary gland cells.


Adenoma, Pleomorphic , Salivary Gland Neoplasms , Acinar Cells , DNA-Binding Proteins , Humans , Salivary Glands
14.
Exp Cell Res ; 382(1): 111449, 2019 09 01.
Article En | MEDLINE | ID: mdl-31153924

Exocrine glands share a common morphology consisting of ductal, acinar, and basal/myoepithelial cells, but their functions and mechanisms of homeostasis differ among tissues. Salivary glands are an example of exocrine glands, and they have been reported to contain multipotent stem cells that differentiate into other tissues. In this study, we purified the salivary gland stem/progenitor cells of adult mouse salivary glands using the cell surface marker CD133 by flow cytometry. CD133+ cells possessed stem cell capacity, and the transplantation of CD133+ cells into the submandibular gland reconstituted gland structures, including functional acinar. CD133+ cells were sparsely distributed in the intercalated and exocrine ducts and expressed Sox9 at higher levels than CD133- cells. Moreover, we demonstrated that Sox9 was required for the stem cell properties CD133+ cells, including colony and sphere formation. Thus, the Sox9-related signaling may control the regeneration salivary glands.


SOX9 Transcription Factor/physiology , Stem Cells/cytology , Submandibular Gland/cytology , AC133 Antigen/analysis , Adult , Aged , Animals , Cell Self Renewal , Colony-Forming Units Assay , Female , Genes, Reporter , Humans , Male , Mice , Mice, Inbred C57BL , Mice, Transgenic , Middle Aged , Salivary Ducts/cytology , Salivary Ducts/metabolism , Stem Cell Transplantation , Stem Cells/metabolism , Submandibular Gland/metabolism
15.
Nat Commun ; 9(1): 4216, 2018 10 11.
Article En | MEDLINE | ID: mdl-30310071

Organoids generated from pluripotent stem cells are used in the development of organ replacement regenerative therapy by recapitulating the process of organogenesis. These processes are strictly regulated by morphogen signalling and transcriptional networks. However, the precise transcription factors involved in the organogenesis of exocrine glands, including salivary glands, remain unknown. Here, we identify a specific combination of two transcription factors (Sox9 and Foxc1) responsible for the differentiation of mouse embryonic stem cell-derived oral ectoderm into the salivary gland rudiment in an organoid culture system. Following orthotopic transplantation into mice whose salivary glands had been removed, the induced salivary gland rudiment not only showed a similar morphology and gene expression profile to those of the embryonic salivary gland rudiment of normal mice but also exhibited characteristics of mature salivary glands, including saliva secretion. This study suggests that exocrine glands can be induced from pluripotent stem cells for organ replacement regenerative therapy.


Mouse Embryonic Stem Cells/cytology , Salivary Glands/growth & development , Animals , Cells, Cultured , Ectoderm/metabolism , Female , Gene Expression Profiling , HEK293 Cells , Humans , Mice , Mice, Inbred C57BL , Mouse Embryonic Stem Cells/metabolism , Mouth Mucosa/embryology , Mouth Mucosa/metabolism , Salivary Glands/cytology , Salivary Glands/transplantation , Salivary Glands/ultrastructure , Transcription Factors/metabolism
16.
Sci Rep ; 8(1): 15883, 2018 Oct 23.
Article En | MEDLINE | ID: mdl-30353139

A correction to this article has been published and is linked from the HTML and PDF versions of this paper. The error has been fixed in the paper.

17.
Sci Rep ; 8(1): 11205, 2018 07 25.
Article En | MEDLINE | ID: mdl-30046040

The discovery of circulating tumour DNA molecules created a paradigm shift in tumour biomarkers as predictors of recurrence. Non-invasive prenatal testing (NIPT) to detect circulating cell-free foetal DNA in maternal plasma is increasingly recognised as a valuable substitute to perceive foetal copy number variation (CNV). This study aimed to determine whether the copy number detection in plasma samples using NIPT platform could be used as a prognostic biomarker in patients with gynaecological cancer. We conducted a prospective study using samples containing preoperative plasma from 100 women with gynaecological cancers. Samples were randomly rearranged and blindly sequenced using a low-coverage whole-genome sequencing plasma DNA, NIPT platform. The NIPT pipeline identified copy number alterations (CNAs) were counted in plasma as a gain or loss if they exceeded 10 Mb from the expected diploid coverage. Progression-free survival (PFS) and overall survival (OS) were analysed according to the presence of CNA in plasma using Kaplan-Meier analyses. The NIPT pipeline detected 19/100 cases of all gynaecological cancers, including 6/36 ovarian cancers, 3/11 cervical cancers, and 10/53 endometrial cancers. Patients with CNA in plasma had a significantly poorer prognosis in all stages concerning PFS and OS. Therefore, low-coverage sequencing NIPT platform could serve as a predictive marker of patient outcome.


Cell-Free Nucleic Acids/blood , DNA Copy Number Variations/genetics , Genital Neoplasms, Female/blood , High-Throughput Nucleotide Sequencing , Adult , Aged , Aged, 80 and over , Cell-Free Nucleic Acids/genetics , Circulating Tumor DNA/blood , Circulating Tumor DNA/genetics , Female , Genetic Testing , Genital Neoplasms, Female/classification , Genital Neoplasms, Female/genetics , Genital Neoplasms, Female/pathology , Humans , Middle Aged , Progression-Free Survival , Sequence Analysis, DNA , Whole Genome Sequencing
18.
Tissue Eng Part C Methods ; 23(5): 251-261, 2017 05.
Article En | MEDLINE | ID: mdl-28314378

Dental pulp stem cells (DPSCs) are an attractive cell source for use in cell-based therapy, regenerative medicine, and tissue engineering because DPSCs have a high cell proliferation ability and multidifferentiation capacity. However, several problems are associated with the collection and preservation of DPSCs for use in future cell-based therapy. In particular, the isolation of DPSCs for cryopreservation is time consuming and expensive. In this study, we developed a novel cryopreservation method (NCM) for dental pulp tissues to isolate suitable DPSCs after thawing cryopreserved tissue. Using the NCM, dental pulp tissues were cultured on adhesion culture dishes for 5 days and then cryopreserved. After thawing, the cryopreserved dental pulp tissue fragments exhibited cell migration. We evaluated each property of DPSCs isolated using the NCM (DPSCs-NCM) and the explant method alone without cryopreservation (DPSCs-C). DPSCs-NCM had the same proliferation capacity as DPSCs-C. Flow cytometry (FACS) analysis indicated that both DPSCs-NCM and DPSCs-C were positive for mesenchymal stem cell markers at the same level but negative for hematopoietic cell markers. Moreover, both DPSCs-NCM and DPSCs-C could differentiate into osteogenic, chondrogenic, and adipogenic cells during culture in each induction medium. These results suggest that DPSCs-NCM may be mesenchymal stem cells. Therefore, our novel method might facilitate the less expensive cryopreservation of DPSCs, thereby providing suitable DPSCs for use in patients in future cell-based therapies.


Cell Differentiation , Cell Separation/methods , Cryopreservation/methods , Dental Pulp/cytology , Stem Cells/cytology , Adipogenesis/physiology , Adolescent , Adult , Cell Culture Techniques , Cell Proliferation , Cells, Cultured , Chondrogenesis/physiology , Humans , Osteogenesis/physiology , Tissue Engineering , Young Adult
19.
Cell Tissue Res ; 368(1): 135-144, 2017 04.
Article En | MEDLINE | ID: mdl-28070636

Osteoarthritis is a degenerative joint disease caused by excessive death of chondrocytes and loss of the extracellular matrix (ECM) in articular cartilage. We previously reported that reactive oxygen species (ROS) generated by the NADPH oxidase (NOX) isoform NOX-2 are involved in chondrocyte death induced by interleukin-1ß (IL-1ß). In this study, we investigate the role of NOX-2 in the production and degradation of ECM by chondrocytes. Although IL-1ß lowered the mRNA expression of type II collagen (Col2a1) and aggrecan (Acan) in mouse chondrocyte-like ATDC5 cells, RNA silencing of Nox2 did not change the mRNA expression of these major components of the ECM of cartilage. Hence, NOX-2 is not involved in the IL-1ß-induced suppression of ECM production. On the other hand, the NOX inhibitor 4-(2-aminoethyl)benzenesulfonyl fluoride (AEBSF), the ROS scavenger N-acetylcysteine and an antisense oligodeoxynucleotide for Nox2 prevented the loss of proteoglycan induced by IL-1ß in highly differentiated ATDC5 cells. Furthermore, AEBSF did not affect the expression of hyaluronidase-1 and -2, whereas it suppressed hyaluronidase activity in culture medium. IL-1ß-induced intra- and extracellular acidification was also suppressed by AEBSF, as was the antisense oligodeoxynucleotide for Nox2. Since hyaluronidase activity is known to be higher under acidic conditions, NOX-2 probably contributes to ECM loss by the activation of hyaluronidase through acidification.


Chondrocytes/metabolism , Extracellular Matrix/metabolism , Interleukin-1beta/pharmacology , NADPH Oxidases/metabolism , Acetylcysteine/pharmacology , Acids/metabolism , Aggrecans/genetics , Aggrecans/metabolism , Cells, Cultured , Chondrocytes/drug effects , Collagen Type II/genetics , Collagen Type II/metabolism , Culture Media/pharmacology , Enzyme Inhibitors/pharmacology , Extracellular Matrix/drug effects , Gene Expression Regulation/drug effects , Humans , Hyaluronic Acid/metabolism , Hyaluronoglucosaminidase/metabolism , Hydrogen-Ion Concentration , Proteoglycans/metabolism , RNA, Messenger/genetics , RNA, Messenger/metabolism , Sulfones/pharmacology
20.
PLoS One ; 11(6): e0156783, 2016.
Article En | MEDLINE | ID: mdl-27280771

Osteoarthritis (OA) is one of most common skeletal disorders and can affect synovial joints such as knee and ankle joints. α5 integrin, a major fibronectin receptor, is expressed in articular cartilage and has been demonstrated to play roles in synovial joint development and in the regulation of chondrocyte survival and matrix degradation in articular cartilage. We hypothesized that α5 integrin signaling is involved in pathogenesis of OA. To test this, we generated compound mice that conditionally ablate α5 integrin in the synovial joints using the Gdf5Cre system. The compound mice were born normally and had an overall appearance similar to the control mice. However, when the mutant mice received the OA surgery, they showed stronger resistance to osteoarthritic changes than the control. Specifically the mutant knee joints presented lower levels of cartilage matrix and structure loss and synovial changes and showed stronger biomechanical properties than the control knee joints. These findings indicate that α5 integrin may not be essential for synovial joint development but play a causative role in induction of osteoarthritic changes.


Cartilage, Articular/pathology , Integrin alpha5/physiology , Knee Joint/physiopathology , Osteoarthritis, Knee/physiopathology , Synovial Fluid/metabolism , Animals , Cartilage, Articular/metabolism , Female , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Signal Transduction
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