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1.
Cells ; 12(4)2023 02 08.
Article in English | MEDLINE | ID: mdl-36831216

ABSTRACT

A kidney organoid is a three-dimensional (3D) cellular aggregate grown from stem cells in vitro that undergoes self-organization, recapitulating aspects of normal renal development to produce nephron structures that resemble the native kidney organ. These miniature kidney-like structures can also be derived from primary patient cells and thus provide simplified context to observe how mutations in kidney-disease-associated genes affect organogenesis and physiological function. In the past several years, advances in kidney organoid technologies have achieved the formation of renal organoids with enhanced numbers of specialized cell types, less heterogeneity, and more architectural complexity. Microfluidic bioreactor culture devices, single-cell transcriptomics, and bioinformatic analyses have accelerated the development of more sophisticated renal organoids and tailored them to become increasingly amenable to high-throughput experimentation. However, many significant challenges remain in realizing the use of kidney organoids for renal replacement therapies. This review presents an overview of the renal organoid field and selected highlights of recent cutting-edge kidney organoid research with a focus on embryonic development, modeling renal disease, and personalized drug screening.


Subject(s)
Kidney , Nephrons , Humans , Drug Evaluation, Preclinical , Kidney/metabolism , Nephrons/metabolism , Organoids/metabolism , Organogenesis
2.
Psicol. ciênc. prof ; 43: e244244, 2023.
Article in Portuguese | LILACS, Index Psychology - journals | ID: biblio-1448957

ABSTRACT

Com os avanços tecnológicos e o aprimoramento da prática médica via ultrassonografia, já é possível detectar possíveis problemas no feto desde a gestação. O objetivo deste estudo foi analisar a prática do psicólogo no contexto de gestações que envolvem riscos fetais. Trata-se de um estudo qualitativo sob formato de relato de experiência como psicólogo residente no Serviço de Medicina Fetal da Maternidade Escola da Universidade Federal do Rio de Janeiro (UFRJ). Os registros, feitos por observação participante e diário de campo, foram analisados em dois eixos temáticos: 1) intervenções psicológicas no trabalho em equipe em consulta de pré-natal, exame de ultrassonografia e procedimento de amniocentese; e 2) intervenções psicológicas em casos de bebês incompatíveis com a vida. Os resultados indicaram que o psicólogo nesse serviço é essencial para atuar de forma multiprofissional na assistência pré-natal para gravidezes de alto risco fetal. Ademais, a preceptoria do residente é relevante para sua formação e treinamento para atuação profissional no campo da psicologia perinatal.(AU)


Face to the technological advances and the improvement of medical practice via ultrasound, it is already possible to detect possible problems in the fetus since pregnancy. The objective of this study was to analyze the psychologist's practice in the context of pregnancies which involve fetal risks. It is a qualitative study based on an experience report as a psychologist trainee at the Fetal Medicine Service of the Maternity School of UFRJ. The records, based on the participant observation and field diary, were analyzed in two thematic axes: 1) psychological interventions in the teamwork in the prenatal attendance, ultrasound examination and amniocentesis procedure; and 2) psychological interventions in cases of babies incompatible to the life. The results indicated that the psychologist in this service is essential to work in a multidisciplinary way at the prenatal care for high fetal risk pregnancies. Furthermore, the resident's preceptorship is relevant to their education and training for professional performance in the field of Perinatal Psychology.(AU)


Con los avances tecnológicos y la mejora de la práctica médica a través de la ecografía, ya se puede detectar posibles problemas en el feto desde el embarazo. El objetivo de este estudio fue analizar la práctica del psicólogo en el contexto de embarazos de riesgos fetal. Es un estudio cualitativo basado en un relato de experiencia como residente de psicología en el Servicio de Medicina Fetal de la Escuela de Maternidad de la Universidade Federal do Rio de Janeiro (UFRJ). Los registros, realizados en la observación participante y el diario de campo, se analizaron en dos ejes temáticos: 1) intervenciones psicológicas en el trabajo en equipo, en la consulta prenatal, ecografía y los procedimientos de amniocentesis; y 2) intervenciones psicológicas en casos de bebés incompatibles con la vida. Los resultados señalaron como fundamental la presencia del psicólogo en este servicio trabajando de forma multidisciplinar en la atención prenatal en el contexto de embarazos de alto riesgo fetal. Además, la tutela del residente es relevante para su educación y formación para el desempeño profesional en el campo de la Psicología Perinatal.(AU)


Subject(s)
Humans , Female , Pregnancy , Prenatal Care , Pregnancy, High-Risk , Psychosocial Intervention , Heart Defects, Congenital , Anxiety , Orientation , Pain , Parent-Child Relations , Parents , Paternity , Patient Care Team , Patients , Pediatrics , Placenta , Placentation , Pregnancy Complications , Pregnancy Maintenance , Prognosis , Psychoanalytic Theory , Psychology , Puerperal Disorders , Quality of Life , Radiation , Religion , Reproduction , Reproductive and Urinary Physiological Phenomena , General Surgery , Syndrome , Congenital Abnormalities , Temperance , Therapeutics , Urogenital System , Bioethics , Physicians' Offices , Infant, Premature , Labor, Obstetric , Pregnancy , Pregnancy, Animal , Pregnancy Outcome , Adaptation, Psychological , Pharmaceutical Preparations , Echocardiography , Magnetic Resonance Spectroscopy , Family , Abortion, Spontaneous , Child Rearing , Child Welfare , Mental Health , Family Health , Survival Rate , Life Expectancy , Cause of Death , Ultrasonography, Prenatal , Chromosome Mapping , Parental Leave , Mental Competency , Polycystic Kidney, Autosomal Recessive , Down Syndrome , Perinatal Care , Comprehensive Health Care , Chemical Compounds , Depression, Postpartum , Neurobehavioral Manifestations , Disabled Children , Diagnostic Techniques and Procedures , Gravidity , Crisis Intervention , Affect , Cytogenetic Analysis , Spirituality , Complicity , Value of Life , Humanizing Delivery , Death , Decision Making , Defense Mechanisms , Abortion, Threatened , Delivery of Health Care , Dementia , Uncertainty , Organogenesis , Qualitative Research , Pregnant Women , Early Diagnosis , Premature Birth , Nuchal Translucency Measurement , Child Mortality , Depression , Depressive Disorder , Postpartum Period , Diagnosis , Diagnostic Techniques, Obstetrical and Gynecological , Ethanol , Ego , Emotions , Empathy , Environment , Humanization of Assistance , User Embracement , Ethics, Professional , Cell Nucleus Shape , Prenatal Nutrition , Cervical Length Measurement , Family Conflict , Family Therapy , Resilience, Psychological , Reproductive Physiological Phenomena , Female Urogenital Diseases and Pregnancy Complications , Gestational Sac , Brief, Resolved, Unexplained Event , Fetal Death , Embryonic and Fetal Development , Multimodal Imaging , Mortality, Premature , Clinical Decision-Making , Pediatric Emergency Medicine , Child, Foster , Freedom , Burnout, Psychological , Birth Setting , Frustration , Sadness , Respect , Psychological Distress , Genetics , Psychological Well-Being , Obstetricians , Guilt , Happiness , Health Occupations , Hospitalization , Hospitals, Maternity , Hospitals, University , Human Development , Human Rights , Imagination , Infections , Infertility , Anencephaly , Jurisprudence , Obstetric Labor Complications , Licensure , Life Change Events , Life Support Care , Loneliness , Love , Medical Staff, Hospital , Intellectual Disability , Morals , Mothers , Narcissism , Congenital, Hereditary, and Neonatal Diseases and Abnormalities , Neonatology , Nervous System Malformations , Object Attachment
3.
Sci Rep ; 12(1): 8507, 2022 05 20.
Article in English | MEDLINE | ID: mdl-35596065

ABSTRACT

Sansevieria trifasciata is used as an indoor plant, in traditional medicine and as a fiber source. Here we characterized fibers of two of varieties of S. trifasciata, Lorentii and Hahnii, and report a protocol for their propagation based on indirect shoot organogenesis. Structural and ribbon fibers were scattered within leaf parenchyma when viewed with confocal laser scanning microscopy. Chemical analysis of the fibers by mass spectrometry and high-performance chromatography revealed higher contents of cellulose and xylose in Lorentii than in Hahnii and significant differences for total lignin between both. A protocol for de novo shoot production was then developed using leaf explants. Time-course histological analyses showed that the first events of transdifferentiation were triggered preferentially in cells surrounding fibers and vascular bundles. Callogenesis and shoot performances were quantified for both varieties, and 2,4-D at 2 and 3 mg·L-1 yielded the best results for primary calli induction and fresh calli mass. The length, number, and mass of shoots produced did not differ significantly between the two cultivars. The fast morphogenic response of S. trifasciata to in vitro culture may be useful for mass propagation or other biotechnological purposes such as metabolite production.


Subject(s)
Sansevieria , Gas Chromatography-Mass Spectrometry , Organogenesis , Plant Leaves , Plant Shoots/physiology , Regeneration
4.
Nature ; 598(7881): 483-488, 2021 10.
Article in English | MEDLINE | ID: mdl-34599305

ABSTRACT

The prefrontal cortex (PFC) and its connections with the mediodorsal thalamus are crucial for cognitive flexibility and working memory1 and are thought to be altered in disorders such as autism2,3 and schizophrenia4,5. Although developmental mechanisms that govern the regional patterning of the cerebral cortex have been characterized in rodents6-9, the mechanisms that underlie the development of PFC-mediodorsal thalamus connectivity and the lateral expansion of the PFC with a distinct granular layer 4 in primates10,11 remain unknown. Here we report an anterior (frontal) to posterior (temporal), PFC-enriched gradient of retinoic acid, a signalling molecule that regulates neural development and function12-15, and we identify genes that are regulated by retinoic acid in the neocortex of humans and macaques at the early and middle stages of fetal development. We observed several potential sources of retinoic acid, including the expression and cortical expansion of retinoic-acid-synthesizing enzymes specifically in primates as compared to mice. Furthermore, retinoic acid signalling is largely confined to the prospective PFC by CYP26B1, a retinoic-acid-catabolizing enzyme, which is upregulated in the prospective motor cortex. Genetic deletions in mice revealed that retinoic acid signalling through the retinoic acid receptors RXRG and RARB, as well as CYP26B1-dependent catabolism, are involved in proper molecular patterning of prefrontal and motor areas, development of PFC-mediodorsal thalamus connectivity, intra-PFC dendritic spinogenesis and expression of the layer 4 marker RORB. Together, these findings show that retinoic acid signalling has a critical role in the development of the PFC and, potentially, in its evolutionary expansion.


Subject(s)
Organogenesis , Prefrontal Cortex/embryology , Prefrontal Cortex/metabolism , Tretinoin/metabolism , Animals , Axons/metabolism , Cerebral Cortex , Down-Regulation , Female , Humans , Macaca mulatta , Male , Mice , Pan troglodytes , Prefrontal Cortex/anatomy & histology , Prefrontal Cortex/cytology , Receptors, Retinoic Acid/deficiency , Retinoid X Receptor gamma/deficiency , Signal Transduction , Synapses/metabolism , Thalamus/anatomy & histology , Thalamus/cytology , Thalamus/metabolism
5.
Biomolecules ; 11(7)2021 06 30.
Article in English | MEDLINE | ID: mdl-34208902

ABSTRACT

The vasculature of stem-cell-derived liver organoids can be engineered using methods that recapitulate embryonic liver development. Hepatic organoids with a vascular network offer great application prospects for drug screening, disease modeling, and therapeutics. However, the application of stem cell-derived organoids is hindered by insufficient vascularization and maturation. Here, we review different theories about the origin of hepatic cells and the morphogenesis of hepatic vessels to provide potential approaches for organoid generation. We also review the main protocols for generating vascularized liver organoids from stem cells and consider their potential and limitations in the generation of vascularized liver organoids.


Subject(s)
Liver/pathology , Organoids/blood supply , Cell Culture Techniques/methods , Cell Differentiation , Drug Evaluation, Preclinical/methods , Genetic Engineering/methods , Hepatocytes/pathology , Humans , Liver/growth & development , Organogenesis/physiology , Organoids/growth & development , Organoids/metabolism , Stem Cells/metabolism
6.
Cell Rep ; 35(3): 109016, 2021 04 20.
Article in English | MEDLINE | ID: mdl-33882317

ABSTRACT

The mammalian cochlea cannot regenerate functional hair cells (HCs) spontaneously. Atoh1 overexpression as well as other strategies are unable to generate functional HCs. Here, we simultaneously upregulated the expression of Gfi1, Pou4f3, and Atoh1 in postnatal cochlear supporting cells (SCs) in vivo, which efficiently converted SCs into HCs. The newly regenerated HCs expressed HC markers Myo7a, Calbindin, Parvalbumin, and Ctbp2 and were innervated by neurites. Importantly, many new HCs expressed the mature and terminal marker Prestin or vesicular glutamate transporter 3 (vGlut3), depending on the subtypes of the source SCs. Finally, our patch-clamp analysis showed that the new HCs in the medial region acquired a large K+ current, fired spikes transiently, and exhibited signature refinement of ribbon synapse functions, in close resemblance to native wild-type inner HCs. We demonstrated that co-upregulating Gfi1, Pou4f3, and Atoh1 enhances the efficiency of HC generation and promotes the functional maturation of new HCs.


Subject(s)
Basic Helix-Loop-Helix Transcription Factors/genetics , DNA-Binding Proteins/genetics , Hair Cells, Auditory/metabolism , Homeodomain Proteins/genetics , Labyrinth Supporting Cells/metabolism , Organogenesis/genetics , Transcription Factor Brn-3C/genetics , Transcription Factors/genetics , Action Potentials/physiology , Alcohol Oxidoreductases/genetics , Alcohol Oxidoreductases/metabolism , Amino Acid Transport Systems, Acidic/genetics , Amino Acid Transport Systems, Acidic/metabolism , Animals , Animals, Newborn , Basic Helix-Loop-Helix Transcription Factors/metabolism , Calbindins/genetics , Calbindins/metabolism , Co-Repressor Proteins/genetics , Co-Repressor Proteins/metabolism , DNA-Binding Proteins/metabolism , Gene Expression Regulation, Developmental , Hair Cells, Auditory/cytology , Homeodomain Proteins/metabolism , Ion Transport , Labyrinth Supporting Cells/cytology , Mice , Mice, Inbred C57BL , Mice, Transgenic , Molecular Motor Proteins/genetics , Molecular Motor Proteins/metabolism , Myosin VIIa/genetics , Myosin VIIa/metabolism , Neurites/metabolism , Neurites/ultrastructure , Parvalbumins/genetics , Parvalbumins/metabolism , Patch-Clamp Techniques , Potassium/metabolism , Signal Transduction , Transcription Factor Brn-3C/metabolism , Transcription Factors/metabolism
7.
PLoS Genet ; 17(3): e1009458, 2021 03.
Article in English | MEDLINE | ID: mdl-33755662

ABSTRACT

Precise regulation of ocular size is a critical determinant of normal visual acuity. Although it is generally accepted that ocular growth relies on a cascade of signaling events transmitted from the retina to the sclera, the factors and mechanism(s) involved are poorly understood. Recent studies have highlighted the importance of the retinal secreted serine protease PRSS56 and transmembrane glycoprotein MFRP, a factor predominantly expressed in the retinal pigment epithelium (RPE), in ocular size determination. Mutations in PRSS56 and MFRP constitute a major cause of nanophthalmos, a condition characterized by severe reduction in ocular axial length/extreme hyperopia. Interestingly, common variants of these genes have been implicated in myopia, a condition associated with ocular elongation. Consistent with these findings, mice with loss of function mutation in PRSS56 or MFRP exhibit a reduction in ocular axial length. However, the molecular network and cellular processes involved in PRSS56- and MFRP-mediated ocular axial growth remain elusive. Here, we show that Adamts19 expression is significantly upregulated in the retina of mice lacking either Prss56 or Mfrp. Importantly, using genetic mouse models, we demonstrate that while ADAMTS19 is not required for ocular growth during normal development, its inactivation exacerbates ocular axial length reduction in Prss56 and Mfrp mutant mice. These results suggest that the upregulation of retinal Adamts19 is part of an adaptive molecular response to counteract impaired ocular growth. Using a complementary genetic approach, we show that loss of PRSS56 or MFRP function prevents excessive ocular axial growth in a mouse model of early-onset myopia caused by a null mutation in Irbp, thus, demonstrating that PRSS56 and MFRP are also required for pathological ocular elongation. Collectively, our findings provide new insights into the molecular network involved in ocular axial growth and support a role for molecular crosstalk between the retina and RPE involved in refractive development.


Subject(s)
ADAMTS Proteins/genetics , Eye Proteins/genetics , Eye/metabolism , Gene Expression Regulation, Developmental , Gene Regulatory Networks , Membrane Proteins/genetics , Organogenesis/genetics , Serine Proteases/genetics , ADAMTS Proteins/metabolism , Animals , Biomarkers , Eye/embryology , Eye/growth & development , Eye Proteins/metabolism , Immunohistochemistry , Membrane Proteins/metabolism , Mice , Mice, Knockout , Mice, Transgenic , Mutation , Retinol-Binding Proteins/genetics , Serine Proteases/metabolism , Signal Transduction
8.
Reprod Toxicol ; 101: 81-92, 2021 04.
Article in English | MEDLINE | ID: mdl-33713778

ABSTRACT

Redox regulation during metazoan development ensures that coordinated metabolic reprogramming and developmental signaling are orchestrated with high fidelity in the hypoxic embryonic environment. Valproic acid (VPA), an anti-seizure medication, is known to increase markers of oxidation and also increase the risk of neural tube defects (NTDs) when taken during pregnancy. It is unknown, however, whether oxidation plays a direct role in failed neural tube closure (NTC). Spatial and temporal fluctuations in total glutathione (GSH) and total cysteine (Cys) redox steady states were seen during a 24 h period of CD-1 mouse organogenesis in untreated conceptuses and following exposure to VPA and the Nrf2 antioxidant pathway inducer, 1,2-dithiole-3-thione (D3T). Glutathione, glutathione disulfide (GSSG), and Cys, cystine (CySS) concentrations, measured in conceptal tissues (embryo/visceral yolk sac) and fluids (yolk sac fluid/amniotic fluid) showed that VPA did not cause extensive and prolonged oxidation during the period of NTC, but instead produced transient periods of oxidation, as assessed by GSH:GSSG redox potentials, which revealed oxidation in all four conceptal compartments at 4, 10, and 14 h, corresponding to the period of heartbeat activation and NTC. Other changes were tissue and time specific. VPA treatment also reduced total FITC-Ab clearance from the medium over 3 h, indicating potential disruption of nutritive amino acid supply. Overall, these results indicated that VPA's ability to affect cellular redox status may be limited to tissue-specific windows of sensitivity during the period of NTC. The safety evaluation of drugs used during pregnancy should consider time and tissue specific redox factors.


Subject(s)
Anticonvulsants/toxicity , Antineoplastic Agents/toxicity , Embryo, Mammalian/drug effects , Thiones/toxicity , Thiophenes/toxicity , Valproic Acid/toxicity , Amino Acids/metabolism , Animals , Cysteine/metabolism , Embryo, Mammalian/metabolism , Female , Glutamate-Cysteine Ligase/genetics , Glutamate-Cysteine Ligase/metabolism , Glutathione/metabolism , Heme Oxygenase-1/genetics , Heme Oxygenase-1/metabolism , Maternal-Fetal Exchange , Membrane Proteins/genetics , Membrane Proteins/metabolism , Mice , NAD(P)H Dehydrogenase (Quinone)/genetics , NAD(P)H Dehydrogenase (Quinone)/metabolism , NF-E2-Related Factor 2/metabolism , Organogenesis/drug effects , Oxidation-Reduction , Pregnancy
9.
Dev Growth Differ ; 63(2): 154-165, 2021 Feb.
Article in English | MEDLINE | ID: mdl-33662152

ABSTRACT

This paper overviews the development and differentiation of the hypothalamus and pituitary gland from embryonic stem (ES) and induced pluripotent stem (iPS) cells. It is important to replicate the developmental process in vivo to create specific cells/organoids from ES/iPS cells. We also introduce the latest findings and discuss future issues for clinical application. Neuroectodermal progenitors are induced from pluripotent stem cells by strictly removing exogenous patterning factors during the early differentiation period. The induced progenitors differentiate into rostral hypothalamic neurons, in particular magnocellular vasopressin+  neurons. In three-dimensional cultures, ES/iPS cells differentiate into hypothalamic neuroectoderm and nonneural head ectoderm adjacently. Rathke's pouch-like structures self-organize at the interface between the two layers and generate various endocrine cells, including corticotrophs and somatotrophs. Our next objective is to sophisticate our stepwise methodology to establish a novel transplantation treatment for hypopituitarism and apply it to developmental disease models.


Subject(s)
Hypothalamus/cytology , Organoids/cytology , Pituitary Gland/cytology , Animals , Cell Culture Techniques , Cell Differentiation , Humans , Organogenesis
10.
Reproduction ; 161(4): 365-373, 2021 04.
Article in English | MEDLINE | ID: mdl-33528379

ABSTRACT

Mechanistic target of rapamycin (MTOR) is essential for embryo development by acting as a nutrient sensor to regulate cell growth, proliferation and metabolism. Folate is required for normal embryonic development and it was recently reported that MTOR functions as a folate sensor. In this work, we tested the hypothesis that MTOR functions as a folate sensor in the embryo and its inhibition result in embryonic developmental delay affecting neural tube closure and that these effects can be rescued by folate supplementation. Administration of rapamycin (0.5 mg/kg) to rats during early organogenesis inhibited embryonic ribosomal protein S6, a downstream target of MTOR Complex1, markedly reduced embryonic folate incorporation (-84%, P < 0.01) and induced embryo developmental impairments, as shown by an increased resorption rate, reduced embryo somite number and delayed neural tube closure. These alterations were prevented by folic acid administered to the dams. Differently, although an increased rate of embryonic rotation defects was observed in the rapamycin-treated dams, this alteration was not prevented by maternal folic acid supplementation. In conclusion, MTOR inhibition during organogenesis in the rat resulted in decreased folate levels in the embryo, increased embryo resorption rate and impaired embryo development. These data suggest that MTOR signaling influences embryo folate availability, possibly by regulating the transfer of folate across the maternal-embryonic interface.


Subject(s)
Embryo, Mammalian/pathology , Embryonic Development , Folic Acid Deficiency/physiopathology , Folic Acid/metabolism , Organogenesis , TOR Serine-Threonine Kinases/antagonists & inhibitors , Animals , Embryo, Mammalian/metabolism , Female , Folic Acid Deficiency/metabolism , Male , Pregnancy , Rats , Rats, Wistar , TOR Serine-Threonine Kinases/genetics , TOR Serine-Threonine Kinases/metabolism
11.
J Biochem Mol Toxicol ; 35(1): e22613, 2021 Jan.
Article in English | MEDLINE | ID: mdl-33016600

ABSTRACT

This experiment was performed to evaluate the possible embryotoxic and teratogenic effects of doxycycline during rat development. Twenty-one female rats were used and distributed into three groups equally (seven animals/group). The low dose group received doxycycline at a dose of 5 mg/kg bw/day orally from the 6th to 14th day of gestation. The high dose group received 10 mg/kg bw/day orally for the same period, the Control group received 1 mL distilled water orally for the same period. The dams were dissected on the 20th day of gestation and their fetuses were subjected to morphological, skeletal, and histological examination. Moreover, DNA damage analysis of liver cells of pregnant rats and their fetuses or fetal skull was assessed by Comet assay. The obtained results showed a significant decrease in fetal body weight, several morphological anomalies, and severe lack of ossification on the skull bones, phalanges, and sternum bone as well as shortness in the ulna and radius bones. Histological studies of pregnant rats revealed congestion and dilatation of the central vein of the liver lobules and fatty degeneration of the hepatocytes. In addition, 20 day-fetuses showed a marked increase of necrotic hepatocytes associated with an increased average of megakaryocytes and periportal leukocytic infiltration. Moreover, doxycycline induced a significant increase in the percentage of DNA damage and tail length of examined samples. Conclusively, doxycycline caused certain fetal abnormalities, so it is advisable to avoid using this drug during pregnancy.


Subject(s)
Doxycycline/adverse effects , Doxycycline/pharmacology , Embryo, Mammalian/embryology , Embryonic Development/drug effects , Fetus/embryology , Organogenesis/drug effects , Animals , Female , Fetus/pathology , Pregnancy , Rats , Rats, Wistar
12.
Nat Commun ; 11(1): 5772, 2020 11 13.
Article in English | MEDLINE | ID: mdl-33188191

ABSTRACT

Hypothalamic neurons including proopiomelanocortin (POMC)-producing neurons regulate body weights. The non-motile primary cilium is a critical sensory organelle on the cell surface. An association between ciliary defects and obesity has been suggested, but the underlying mechanisms are not fully understood. Here we show that inhibition of ciliogenesis in POMC-expressing developing hypothalamic neurons, by depleting ciliogenic genes IFT88 and KIF3A, leads to adulthood obesity in mice. In contrast, adult-onset ciliary dysgenesis in POMC neurons causes no significant change in adiposity. In developing POMC neurons, abnormal cilia formation disrupts axonal projections through impaired lysosomal protein degradation. Notably, maternal nutrition and postnatal leptin surge have a profound impact on ciliogenesis in the hypothalamus of neonatal mice; through these effects they critically modulate the organization of hypothalamic feeding circuits. Our findings reveal a mechanism of early life programming of adult adiposity, which is mediated by primary cilia in developing hypothalamic neurons.


Subject(s)
Adiposity , Cilia/metabolism , Hypothalamus/embryology , Hypothalamus/metabolism , Lysosomes/metabolism , Animals , Animals, Newborn , Arcuate Nucleus of Hypothalamus/metabolism , Axons/metabolism , Energy Metabolism , Female , Glucose/metabolism , Leptin/metabolism , Malnutrition/pathology , Mice, Inbred C57BL , Microtubule-Associated Proteins/metabolism , Neurogenesis , Obesity/metabolism , Obesity/pathology , Organogenesis , Pro-Opiomelanocortin/metabolism , Proteolysis
13.
Int J Mol Sci ; 21(16)2020 Aug 13.
Article in English | MEDLINE | ID: mdl-32823732

ABSTRACT

Lamprocapnos spectabilis (L.) Fukuhara is a perennial plant species valued in the horticultural, cosmetic, and pharmaceutical markets. To date, however, there were no studies on tissue culture systems in this species when adjusted from non-meristematic explants. The aim of this study is to induce callogenesis, organogenesis, and somatic embryogenesis in non-meristematic explants of Lamprocapnos spectabilis 'Alba' cultured in various media and to analyze the chemical diversity of the produced callus. Leaf, petiole, and internode explants were cultured on the modified Murashige and Skoog (MS) medium fortified with various combinations and concentrations of 6-benzyladenine (BA), indole-3-acetic acid (IAA), 1-naphthaleneacetic acid (NAA), 2,4-dichlorphenoxyacetic acid (2,4-D), and picloram (PIC). After 10 weeks of culturing, the morphogenetic response of explants was evaluated and the concentration of chlorophylls, carotenoids, anthocyanins, and polyphenols in callus was analyzed. There was no influence of explant type on the callogenesis efficiency (62.1-65.3%). The highest fresh weight of callus was produced on leaf explants in the presence of 2,4-D or PIC. In contrast, the highest share of dry weight was found in internode-derived calli and cultured on IAA-supplemented medium (up to 30.8%). Only 2.5% of all explants regenerated adventitious shoots, while rhizogenesis was reported in 4.5% of explants. Somatic embryos were produced indirectly by 0% to 100% of explants, depending on the culture medium and explant type. The highest mean number of embryos (11.4 per explant) was found on petioles cultured in the MS medium with 0.5 mg·L-1 BA and 1.0 mg·L-1 PIC. Calli cultured in media with NAA usually contained a higher content of primary and secondary metabolites. There was also a significant impact of explant type on the content of anthocyanins, polyphenols, and carotenoids in callus. Further studies should focus on the elicitation of metabolites production in callus culture systems of the bleeding heart.


Subject(s)
Fumariaceae/embryology , Fumariaceae/metabolism , Meristem/metabolism , Metabolome , Organogenesis , Plant Somatic Embryogenesis Techniques , Culture Media , Cytokinins/metabolism , Indoleacetic Acids/metabolism
14.
Article in English | MEDLINE | ID: mdl-32777466

ABSTRACT

The failure of the swim bladder to inflate during fish development is a common and sensitive response to exposure to petrochemicals. Here, we review potential mechanisms by which petrochemicals or their toxic components (polycyclic aromatic hydrocarbons; PAHs) may affect swim bladder inflation, particularly during early life stages. Surface films formed by oil can cause a physical barrier to primary inflation by air gulping, and are likely important during oil spills. The act of swimming to the surface for primary inflation can be arduous for some species, and may prevent inflation if this behavior is limited by toxic effects on vision or musculature. Some studies have noted altered gene expression in the swim bladder in response to PAHs, and Cytochrome P450 1A (CYP1A) can be induced in swim bladder or rete mirabile tissue, suggesting that PAHs can have direct effects on swim bladder development. Swim bladder inflation failure can also occur secondarily to the failure of other systems; cardiovascular impairment is the best elucidated of these mechanisms, but other mechanisms might include non-inflation as a sequela of disruption to thyroid signaling or cholesterol metabolism. Failed swim bladder inflation has the potential to lead to chronic sublethal effects that are as yet unstudied.


Subject(s)
Air Sacs/drug effects , Fishes/growth & development , Petroleum/toxicity , Polycyclic Aromatic Hydrocarbons/toxicity , Air Sacs/growth & development , Air Sacs/pathology , Animals , Embryo, Nonmammalian , Fishes/embryology , Fishes/physiology , Organogenesis , Petroleum/poisoning , Polycyclic Aromatic Hydrocarbons/poisoning , Swimming , Water Pollutants, Chemical/toxicity
15.
Development ; 147(15)2020 08 07.
Article in English | MEDLINE | ID: mdl-32665247

ABSTRACT

Retinoic acid (RA), a vitamin A (retinol) derivative, has pleiotropic functions during embryonic development. The synthesis of RA requires two enzymatic reactions: oxidation of retinol into retinaldehyde by alcohol dehydrogenases (ADHs) or retinol dehydrogenases (RDHs); and oxidation of retinaldehyde into RA by aldehyde dehydrogenases family 1, subfamily A (ALDH1as), such as ALDH1a1, ALDH1a2 and ALDH1a3. Levels of RA in tissues are regulated by spatiotemporal expression patterns of genes encoding RA-synthesizing and -degrading enzymes, such as cytochrome P450 26 (Cyp26 genes). Here, we show that RDH10 is important for both sensory and non-sensory formation of the vestibule of the inner ear. Mice deficient in Rdh10 exhibit failure of utricle-saccule separation, otoconial formation and zonal patterning of vestibular sensory organs. These phenotypes are similar to those of Aldh1a3 knockouts, and the sensory phenotype is complementary to that of Cyp26b1 knockouts. Together, these results demonstrate that RDH10 and ALDH1a3 are the key RA-synthesis enzymes involved in vestibular development. Furthermore, we discovered that RA induces Cyp26b1 expression in the developing vestibular sensory organs, which generates the differential RA signaling required for zonal patterning.


Subject(s)
Homeostasis , Organogenesis , Tretinoin/metabolism , Vestibule, Labyrinth/embryology , Alcohol Oxidoreductases/genetics , Alcohol Oxidoreductases/metabolism , Animals , Mice , Mice, Knockout , Retinal Dehydrogenase/genetics , Retinal Dehydrogenase/metabolism , Retinoic Acid 4-Hydroxylase/genetics , Retinoic Acid 4-Hydroxylase/metabolism , Vestibule, Labyrinth/cytology
16.
Nat Biomed Eng ; 4(9): 863-874, 2020 09.
Article in English | MEDLINE | ID: mdl-32514094

ABSTRACT

Stem-cell-derived epithelial organoids are routinely used for the biological and biomedical modelling of tissues. However, the complexity, lack of standardization and quality control of stem cell culture in solid extracellular matrices hampers the routine use of the organoids at the industrial scale. Here, we report the fabrication of microengineered cell culture devices and scalable and automated methods for suspension culture and real-time analysis of thousands of individual gastrointestinal organoids trapped in microcavity arrays within a polymer-hydrogel substrate. The absence of a solid matrix substantially reduces organoid heterogeneity, which we show for mouse and human gastrointestinal organoids. We use the devices to screen for anticancer drug candidates with patient-derived colorectal cancer organoids, and apply high-content image-based phenotypic analyses to reveal insights into mechanisms of drug action. The scalable organoid-culture technology should facilitate the use of organoids in drug development and diagnostics.


Subject(s)
Cell Culture Techniques/methods , Organoids/cytology , Stem Cells/cytology , Animals , Cell Aggregation , Cells, Cultured , Dimethylpolysiloxanes/chemistry , Drug Evaluation, Preclinical , High-Throughput Screening Assays , Humans , Hydrogels/chemistry , Intestines/cytology , Mice , Organogenesis , Organoids/drug effects , Organoids/growth & development
17.
J Cell Physiol ; 235(12): 9524-9537, 2020 12.
Article in English | MEDLINE | ID: mdl-32495363

ABSTRACT

FoxA2 is an essential transcription factor for liver organogenesis and homeostasis. Although reduced expression of FoxA2 has been associated with chronic liver diseases, hepatic progenitor cells (HPCs) that are activated in these circumstances express FoxA2. However, the functional effects and underlying mechanism of FoxA2 in HPCs are still unknown. As revealed by immunostaining, HPCs expressed FoxA2 in human cirrhotic livers and in the livers of choline-deficient diet supplemented with ethionine (CDE) rats. Knocking down FoxA2 in HPCs isolated from CDE rats significantly increased cell proliferation and aerobic glycolysis. Moreover, gene transcription, protein expression, and the enzyme activities of hexokinase 2 (HK2) were upregulated, and blocking HK2 activities via 2-deoxyglucose markedly reduced cell proliferation and aerobic glycolysis. Kyoto Encyclopedia of Genes and Genomes analysis revealed that FoxA2 knockdown enhanced the transcription of genes involved in the phosphatidylinositol 3-kinase (PI3K)/protein kinase B (Akt) pathway and triggered downstream Akt phosphorylation. Blocking the PI3K/Akt pathway by Ly294002 inhibited HK2 activities, aerobic glycolysis, and cell proliferation in FoxA2-knockdown cells. Therefore, FoxA2 plays an important role in the proliferation and inhibition of HPCs by suppressing PI3K/Akt/HK2-regulated aerobic glycolysis.


Subject(s)
Glycolysis/genetics , Hepatocyte Nuclear Factor 3-beta/genetics , Hexokinase/genetics , Liver/metabolism , Organogenesis/genetics , Animals , Apoptosis/genetics , Cell Line, Tumor , Cell Proliferation/genetics , Choline/pharmacology , Choline Deficiency/genetics , Choline Deficiency/metabolism , Hepatocytes/metabolism , Humans , Liver/growth & development , Phosphatidylinositol 3-Kinase/genetics , Phosphorylation/genetics , Proto-Oncogene Proteins c-akt/genetics , Rats , Stem Cells/metabolism
18.
Biomolecules ; 10(5)2020 05 11.
Article in English | MEDLINE | ID: mdl-32403395

ABSTRACT

Organogenesis constitutes the biological feature driving plant in vitro regeneration, in which the role of plant hormones is crucial. The use of machine learning (ML) technology stands out as a novel approach to characterize the combined role of two phytohormones, the auxin indoleacetic acid (IAA) and the cytokinin 6-benzylaminopurine (BAP), on the in vitro organogenesis of unexploited medicinal plants from the Bryophyllum subgenus. The predictive model generated by neurofuzzy logic, a combination of artificial neural networks (ANNs) and fuzzy logic algorithms, was able to reveal the critical factors affecting such multifactorial process over the experimental dataset collected. The rules obtained along with the model allowed to decipher that BAP had a pleiotropic effect on the Bryophyllum spp., as it caused different organogenetic responses depending on its concentration and the genotype, including direct and indirect shoot organogenesis and callus formation. On the contrary, IAA showed an inhibiting role, restricted to indirect shoot regeneration. In this work, neurofuzzy logic emerged as a cutting-edge method to characterize the mechanism of action of two phytohormones, leading to the optimization of plant tissue culture protocols with high large-scale biotechnological applicability.


Subject(s)
Machine Learning , Organogenesis , Plant Growth Regulators/pharmacology , Plants, Medicinal/growth & development , Benzyl Compounds/pharmacology , Indoleacetic Acids/pharmacology , Kalanchoe/drug effects , Kalanchoe/growth & development , Organogenesis/drug effects , Plants, Medicinal/drug effects , Purines/pharmacology
19.
PLoS One ; 15(4): e0230289, 2020.
Article in English | MEDLINE | ID: mdl-32251454

ABSTRACT

We previously reported that maternal nutrient restriction (NR) inhibited ureteric branching, metanephric growth, and nephrogenesis in the rat. Here we examined whether folic acid, a methyl-group donor, rescues the inhibition of kidney development induced by NR and whether DNA methylation is involved in it. The offspring of dams given food ad libitum (CON) and those subjected to 50% food restriction (NR) were examined. NR significantly reduced ureteric tip number at embryonic day 14, which was attenuated by folic acid supplementation to nutrient restricted dams. At embryonic day 18, glomerular number, kidney weight, and global DNA methylation were reduced by NR, and maternal folic acid supplementation again alleviated them. Among DNA methyltransferases (DNMTs), DNMT1 was strongly expressed at embryonic day 15 in CON but was reduced in NR. In organ culture, an inhibitor of DNA methylation 5-aza-2 '-deoxycytidine as well as medium lacking methyl donors folic acid, choline, and methionine, significantly decreased ureteric tip number and kidney size mimicking the effect of NR. In conclusion, global DNA methylation is necessary for normal kidney development. Folic acid supplementation to nutrient restricted dams alleviated the impaired kidney development and DNA methylation in the offspring.


Subject(s)
DNA Methylation/drug effects , Embryo, Mammalian , Folic Acid/pharmacology , Food Deprivation , Kidney , Organogenesis/drug effects , Ureter , Animals , Embryo, Mammalian/embryology , Embryo, Mammalian/pathology , Kidney/embryology , Kidney/pathology , Rats , Rats, Sprague-Dawley , Ureter/embryology , Ureter/pathology
20.
Stem Cell Rev Rep ; 15(6): 774-784, 2019 12.
Article in English | MEDLINE | ID: mdl-31863336

ABSTRACT

The current understanding and effective treatment of liver disease is far from satisfactory. Liver organoids and liver buds (LBs) transforming cell culture from two dimensions(2D) to three dimensions(3D) has provided infinite possibilities for stem cells to use in clinic. Recent technological advances in the 3D culture have shown the potentiality of liver organoids and LBs as the promising tool to model in vitro liver diseases. The induced LBs and liver organoids provide a platform for cell-based therapy, liver disease models, liver organogenesis and drugs screening. And its genetic heterogeneity supplies a way for the realization of precision medicine.


Subject(s)
Drug Evaluation, Preclinical , Liver Diseases/pathology , Liver/cytology , Models, Biological , Organogenesis , Organoids/cytology , Animals , Humans , Liver/drug effects , Liver/physiology , Liver Diseases/drug therapy , Organoids/drug effects , Organoids/physiology , Precision Medicine
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