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1.
Adv Biosyst ; 4(9): e2000004, 2020 09.
Artigo em Inglês | MEDLINE | ID: mdl-32734694

RESUMO

Age-related human trabecular meshwork (HTM) cell loss is suggested to affect its ability to regulate aqueous humor outflow in the eye. In addition, disease-related HTM cell loss is suggested to lead to elevated intraocular pressure in glaucoma. Induced pluripotent stem cell (iPSC)-derived trabecular meshwork (TM) cells are promising autologous cell sources that can be used to restore the declining TM cell population and function. Previously, an in vitro HTM model is bioengineered for understanding HTM cell biology and screening of pharmacological or biological agents that affect trabecular outflow facility. In this study, it is demonstrated that human iPSC-derived TM cells cultured on SU-8 scaffolds exhibit HTM-like cell morphology, extracellular matrix deposition, and drug responsiveness to dexamethasone treatment. These findings suggest that iPSC-derived TM cells behave like primary HTM cells and can thus serve as reproducible and scalable cell sources when using this in vitro system for glaucoma drug screening and further understanding of outflow pathway physiology, leading to personalized medicine.


Assuntos
Células-Tronco Pluripotentes Induzidas , Modelos Biológicos , Malha Trabecular , Biomimética , Técnicas de Cultura de Células/métodos , Glaucoma/metabolismo , Humanos , Células-Tronco Pluripotentes Induzidas/citologia , Células-Tronco Pluripotentes Induzidas/metabolismo , Malha Trabecular/citologia , Malha Trabecular/metabolismo
2.
Acta Biomater ; 105: 203-213, 2020 03 15.
Artigo em Inglês | MEDLINE | ID: mdl-31982588

RESUMO

Human Schlemm's canal (HSC) cells are critical for understanding outflow physiology and glaucoma etiology. However, primary donor cells frequently used in research are difficult to isolate. HSC cells exhibit both vascular and lymphatic markers. Human adipose-derived stem cells (ADSCs) represent a potential source of HSC due to their capacity to differentiate into both vascular and lymphatic endothelial cells, via VEGF-A and VEGF-C. Shear stress plays a critical role in maintaining HSC integrity, function, and PROX1 expression. Additionally, the human trabecular meshwork (HTM) microenvironment could provide cues for HSC-like differentiation. We hypothesize that subjecting ADSCs to VEGF-A or VEGF-C, shear stress, and co-culture with HTM cells could provide biological, mechanical, and cellular cues necessary for HSC-like differentiation. To test this hypothesis, effects of VEGF-A, VEGF-C, and shear stress on ADSC differentiation were examined and compared to primary HSC cells in terms of cell morphology, and HSC marker expression using qPCR, immunoblotting, and immunocytochemistry analysis. Furthermore, the effect of co-culture with HTM cells on porous scaffolds on ADSC differentiation was studied. Treatment with VEGF-C under shear stress is effective in differentiating ADSCs into PROX1-expressing HSC-like cells. Co-culture with HTM cells on porous scaffolds leads to HTM/ADSC-derived HSC-like constructs that regulate through-flow and respond as expected to dexamethasone. STATEMENT OF SIGNIFICANCE: We successfully generated human Schlemm's canal (HSC) like cells from adipocyte-derived stem cells induced by biochemical and biomechanical cues as well as bioengineered human trabecular meshwork (HTM) on micropatterned, porous SU8 scaffolds. These stem cell-derived HSC-like cells co-cultured with HTM cells on SU8 scaffolds can regulate through-flow, and in particular, are responsive to steroid treatment as expected. These findings show that ADSC-derived HSC-like cells have the potential to recreate the ocular outflow pathway for in vitro glaucoma drug screening. To the best of our knowledge, it is the very first time to demonstrate derivation of Schlemm's canal-like cells from stem cells. It provides an important alternative source to primary Schlemm's canal cells that are very difficult to be isolated and cultured from human donors.


Assuntos
Bioengenharia , Diferenciação Celular , Avaliação Pré-Clínica de Medicamentos , Glaucoma/tratamento farmacológico , Células-Tronco/citologia , Tecido Adiposo/citologia , Biomarcadores/metabolismo , Diferenciação Celular/efeitos dos fármacos , Técnicas de Cocultura , Dexametasona/farmacologia , Células Endoteliais/citologia , Células Endoteliais/efeitos dos fármacos , Glaucoma/patologia , Humanos , Imagem Óptica , Perfusão , Células-Tronco/efeitos dos fármacos , Malha Trabecular/citologia
3.
ACS Biomater Sci Eng ; 3(8): 1769-1779, 2017 Aug 14.
Artigo em Inglês | MEDLINE | ID: mdl-33429657

RESUMO

Current treatments focused on eradicating metastatic tumors have proven unsuccessful due to cancer's ability to quickly undergo epithelial-to-mesenchymal transition (EMT) and metastasize to secondary sites. Using human triple negative breast cancer cells (BCCs) as a model system, this work establishes a platform for the study of aggressive cancer phenotypes by demonstrating the inhibition of human metastatic cancer cells with 3D cultured embryonic stem cells (ESCs) encapsulated in alginate microstrands (ESC-microstrands), which mimic the embryonic microenvironment and recapitulate pluripotent signaling. Coculture with ESC-microstrands significantly decreases triple negative BCC proliferation and survival and reverses abnormal cancer metabolism. In particular, coculture with ESC-microstrands markedly restricts the metastatic potential of highly aggressive cancer cells, demonstrated as decreased migration and invasion, and reversed EMT marker expression. This indicates that pluripotent signaling from 3D ESC-microstrands could restrict cancer metastasis through restriction and reversion of EMT. Furthermore, two soluble factors associated with dysregulated oncogenic signaling were identified which display altered relative mRNA expression following coculture with ESC-microstrands. Future application of this model to mechanistic studies will enable a better understanding of cancer metastasis and the discovery of therapeutic targets for metastatic diseases.

4.
Mol Cancer Res ; 13(4): 636-50, 2015 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-25652587

RESUMO

UNLABELLED: Jumonji domain-containing protein 3 (JMJD3/KDM6B) demethylates lysine 27 on histone H3 (H3K27me3), a repressive epigenetic mark controlling chromatin organization and cellular senescence. To better understand the functional consequences of JMJD3 its expression was investigated in brain tumor cells. Querying patient expression profile databases confirmed JMJD3 overexpression in high-grade glioma. Immunochemical staining of two glioma cell lines, U251 and U87, indicated intrinsic differences in JMJD3 expression levels that were reflected in changes in cell phenotype and variations associated with cellular senescence, including senescence-associated ß-galactosidase (SA-ß-gal) activity and the senescence-associated secretory phenotype (SASP). Overexpressing wild-type JMJD3 (JMJD3wt) activated SASP-associated genes, enhanced SA-ß-gal activity, and induced nuclear blebbing. Conversely, overexpression of a catalytically inactive dominant negative mutant JMJD3 (JMJD3mut) increased proliferation. In addition, a large number of transcripts were identified by RNA-seq as altered in JMJD3 overexpressing cells, including cancer- and inflammation-related transcripts as defined by Ingenuity Pathway Analysis. These results suggest that expression of the SASP in the context of cancer undermines normal tissue homeostasis and contributes to tumorigenesis and tumor progression. These studies are therapeutically relevant because inflammatory cytokines have been linked to homing of neural stem cells and other stem cells to tumor loci. IMPLICATIONS: This glioma study brings together actions of a normal epigenetic mechanism (JMJD3 activity) with dysfunctional activation of senescence-related processes, including secretion of SASP proinflammatory cytokines and stem cell tropism toward tumors.


Assuntos
Neoplasias Encefálicas/patologia , Senescência Celular , Glioma/metabolismo , Histona Desmetilases com o Domínio Jumonji/metabolismo , Neoplasias Encefálicas/metabolismo , Linhagem Celular Tumoral , Citocinas/genética , Citocinas/metabolismo , Epigênese Genética , Glioma/patologia , Humanos , Histona Desmetilases com o Domínio Jumonji/genética , Gradação de Tumores , Células-Tronco Neurais/imunologia , Tropismo
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