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1.
Cell Metab ; 2024 Jun 28.
Artículo en Inglés | MEDLINE | ID: mdl-38959897

RESUMEN

A mechanistic connection between aging and development is largely unexplored. Through profiling age-related chromatin and transcriptional changes across 22 murine cell types, analyzed alongside previous mouse and human organismal maturation datasets, we uncovered a transcription factor binding site (TFBS) signature common to both processes. Early-life candidate cis-regulatory elements (cCREs), progressively losing accessibility during maturation and aging, are enriched for cell-type identity TFBSs. Conversely, cCREs gaining accessibility throughout life have a lower abundance of cell identity TFBSs but elevated activator protein 1 (AP-1) levels. We implicate TF redistribution toward these AP-1 TFBS-rich cCREs, in synergy with mild downregulation of cell identity TFs, as driving early-life cCRE accessibility loss and altering developmental and metabolic gene expression. Such remodeling can be triggered by elevating AP-1 or depleting repressive H3K27me3. We propose that AP-1-linked chromatin opening drives organismal maturation by disrupting cell identity TFBS-rich cCREs, thereby reprogramming transcriptome and cell function, a mechanism hijacked in aging through ongoing chromatin opening.

2.
Clin Transl Immunology ; 13(5): e1507, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38707997

RESUMEN

Objectives: Autologous chimeric antigen receptor (CAR) T-cell therapy of B-cell malignancies achieves long-term disease remission in a high fraction of patients and has triggered intense research into translating this successful approach into additional cancer types. However, the complex logistics involved in autologous CAR-T manufacturing, the compromised fitness of patient-derived T cells, the high rates of serious toxicities and the overall cost involved with product manufacturing and hospitalisation have driven innovation to overcome such hurdles. One alternative approach is the use of allogeneic natural killer (NK) cells as a source for CAR-NK cell therapy. However, this source has traditionally faced numerous manufacturing challenges. Methods: To address this, we have developed an optimised expansion and transduction protocol for primary human NK cells primed for manufacturing scaling and clinical evaluation. We have performed an in-depth comparison of primary human NK cell sources as a starting material by characterising their phenotype, functionality, expansion potential and transduction efficiency at crucial timepoints of our CAR-NK manufacturing pipeline. Results: We identified adult peripheral blood-derived NK cells to be the superior source for generating a CAR-NK cell product because of a higher maximum yield of CAR-expressing NK cells combined with potent natural, as well as CAR-mediated anti-tumor effector functions. Conclusions: Our optimised manufacturing pipeline dramatically improves lentiviral transduction efficiency of primary human NK cells. We conclude that the exponential expansion pre- and post-transduction and high on-target cytotoxicity make peripheral blood-derived NK cells a feasible and attractive CAR-NK cell product for clinical utility.

3.
Front Immunol ; 11: 302, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-32194555

RESUMEN

One of the main consequences of thymus aging is the decrease in naïve T cell output. This condition accelerates at the onset of puberty, and presents as a major clinical complication for cancer patients who require cytoablative therapy. Specifically, the extensive use of chemotherapeutics, such as cyclophosphamide, in such treatments damage thymic structure and eliminate the existing naïve T cell repertoire. The resulting immunodeficiency can lead to increased incidence of opportunistic infections, tumor growth relapse and/or autoimmune diseases, particularly in older patients. Thus, strategies aimed at rejuvenating the aged thymus following chemotherapeutic damage are required. Previous studies have revealed that sex hormone deprivation in male mice is capable of regenerating the thymic microenvironment following chemotherapy treatment, however, further investigation is crucial to identify gender-based differences, and the molecular mechanisms involved during thymus regeneration. Through phenotypic analyzes, we identified gender-specific alterations in thymocytes and thymic epithelial cell (TEC) subsets from the onset of puberty. By middle-age, females presented with a higher number of thymocytes in comparison to males, yet a decrease in their Aire+ medullary TEC/thymocyte ratio was observed. This reduction could be associated with an increased risk of autoimmune disease in middle-aged women. Given the concurrent increase in female Aire+ cTEC/thymocyte ratio, we proposed that there may be an impediment in Aire+ mTEChi differentiation, and Aire+ cTEChi as its upstream precursor. The regenerative effects of LHRH receptor antagonist, degarelix, on TEC subsets was also less pronounced in middle-aged females compared to males, possibly due to slower progression of thymic involution in the former, which presented with greater TEChi proportions. Furthermore, following cyclophosphamide treatment, degarelix enhanced thymocyte and mature TEC subset recovery, with faster recovery kinetics observed in females. These events were found to involve both reactivation and proliferation of thymic epithelial progenitor cells. Taken together, the findings from this study portray a relationship between gender disparity and thymus aging, and highlight the potential benefits of LHRH receptor antagonist treatment for thymic regeneration. Further research is required, however, to determine how gender may impact on the mechanisms underpinning these events.


Asunto(s)
Envejecimiento/inmunología , Antineoplásicos Alquilantes/toxicidad , Ciclofosfamida/toxicidad , Células Epiteliales/efectos de los fármacos , Oligopéptidos/uso terapéutico , Receptores LHRH/antagonistas & inhibidores , Caracteres Sexuales , Timocitos/efectos de los fármacos , Timo/efectos de los fármacos , Animales , Atrofia , Recuento de Células , Células Cultivadas , Femenino , Hormona Folículo Estimulante/sangre , Hormonas Esteroides Gonadales/fisiología , Hormona Luteinizante/sangre , Masculino , Ratones , Ratones Endogámicos C57BL , Oligopéptidos/farmacología , Autotolerancia , Maduración Sexual , Células del Estroma , Timo/crecimiento & desarrollo , Timo/patología , Factores de Transcripción/biosíntesis , Factores de Transcripción/genética , Proteína AIRE
4.
Nat Commun ; 10(1): 3031, 2019 07 10.
Artículo en Inglés | MEDLINE | ID: mdl-31292453

RESUMEN

Maternal immune dysregulation seems to affect fetal or postnatal immune development. Preeclampsia is a pregnancy-associated disorder with an immune basis and is linked to atopic disorders in offspring. Here we show reduction of fetal thymic size, altered thymic architecture and reduced fetal thymic regulatory T (Treg) cell output in preeclamptic pregnancies, which persists up to 4 years of age in human offspring. In germ-free mice, fetal thymic CD4+ T cell and Treg cell development are compromised, but rescued by maternal supplementation with the intestinal bacterial metabolite short chain fatty acid (SCFA) acetate, which induces upregulation of the autoimmune regulator (AIRE), known to contribute to Treg cell generation. In our human cohorts, low maternal serum acetate is associated with subsequent preeclampsia, and correlates with serum acetate in the fetus. These findings suggest a potential role of acetate in the pathogenesis of preeclampsia and immune development in offspring.


Asunto(s)
Acetatos/sangre , Feto/inmunología , Preeclampsia/inmunología , Efectos Tardíos de la Exposición Prenatal/inmunología , Linfocitos T Reguladores/inmunología , Acetatos/administración & dosificación , Acetatos/inmunología , Acetatos/metabolismo , Adulto , Animales , Animales Recién Nacidos , Estudios de Casos y Controles , Desarrollo Infantil , Preescolar , Suplementos Dietéticos , Femenino , Feto/citología , Feto/diagnóstico por imagen , Microbioma Gastrointestinal/inmunología , Vida Libre de Gérmenes/inmunología , Humanos , Tolerancia Inmunológica/inmunología , Lactante , Recién Nacido , Estudios Longitudinales , Intercambio Materno-Fetal/inmunología , Ratones , Tamaño de los Órganos/inmunología , Preeclampsia/sangre , Preeclampsia/diagnóstico , Embarazo , Efectos Tardíos de la Exposición Prenatal/patología , Efectos Tardíos de la Exposición Prenatal/prevención & control , Estudios Prospectivos , Timo/citología , Timo/diagnóstico por imagen , Timo/crecimiento & desarrollo , Timo/inmunología , Factores de Transcripción/inmunología , Factores de Transcripción/metabolismo , Ultrasonografía Prenatal , Adulto Joven , Proteína AIRE
5.
Cell Rep ; 27(13): 3887-3901.e4, 2019 06 25.
Artículo en Inglés | MEDLINE | ID: mdl-31242421

RESUMEN

A key feature of immune functional impairment with age is the progressive involution of thymic tissue responsible for naive T cell production. In this study, we identify two major phases of thymic epithelial cell (TEC) loss during aging: a block in mature TEC differentiation from the pool of immature precursors, occurring at the onset of puberty, followed by impaired bipotent TEC progenitor differentiation and depletion of Sca-1lo cTEC and mTEC lineage-specific precursors. We reveal that an increase in follistatin production by aging TECs contributes to their own demise. TEC loss occurs primarily through the antagonism of activin A signaling, which we show is required for TEC maturation and acts in dissonance to BMP4, which promotes the maintenance of TEC progenitors. These results support a model in which an imbalance of activin A and BMP4 signaling underpins the degeneration of postnatal TEC maintenance during aging, and its reversal enables the transient replenishment of mature TECs.


Asunto(s)
Activinas/metabolismo , Envejecimiento/metabolismo , Proteína Morfogenética Ósea 4/metabolismo , Diferenciación Celular , Células Epiteliales/metabolismo , Folistatina/metabolismo , Transducción de Señal , Células Madre/metabolismo , Timo/metabolismo , Animales , Células Epiteliales/citología , Femenino , Ratones , Ratones Endogámicos BALB C , Células Madre/citología , Timo/citología
6.
Eur J Immunol ; 47(2): 291-304, 2017 02.
Artículo en Inglés | MEDLINE | ID: mdl-27861793

RESUMEN

Although forkhead-box n1 (Foxn1) is a critical thymic epithelial cell regulator in thymus organogenesis, its association with epithelial differentiation and homeostasis in the postnatal and aged thymic microenvironment remains conflicting. Consequently, we have generated a Foxn1eGFP/+ knock-in mouse model that allows for refined investigation of the aging thymic epithelium. This reporter line differs from those previously published in that concomitant expression of enhanced green fluorescent protein enables live cell sorting of Foxn1+ cell populations. Our heterozygotes did not exhibit haploinsufficiency, with Foxn1 expression resembling that of wild-type mice. Comparative analysis between Foxn1 and enhanced green fluorescent protein at both the transcriptional and translational levels revealed co-localization, with progressive down-regulation observed predominantly in the aging cortical epithelium. Supplementation with bone morphogenetic protein (Bmp)-4 enhanced Foxn1 expression and colony forming efficiency in both embryonic and adult progenitor 3D cultures. Strikingly, selective maintenance of immature cortical and medullary epithelial cells was observed which is consistent with the higher Bmp receptor 2 expression levels seen in these progenitor populations. This study demonstrates the significance of our mouse model in unraveling the role of this master regulator in thymus development, homeostasis and aging, providing a faithful reporter system for phenotypic and functional investigations.


Asunto(s)
Envejecimiento/fisiología , Células Epiteliales/fisiología , Factores de Transcripción Forkhead/metabolismo , Células Madre/fisiología , Timo/fisiología , Animales , Proteína Morfogenética Ósea 4/metabolismo , Receptores de Proteínas Morfogenéticas Óseas de Tipo II/genética , Receptores de Proteínas Morfogenéticas Óseas de Tipo II/metabolismo , Células Cultivadas , Factores de Transcripción Forkhead/genética , Regulación de la Expresión Génica , Proteínas Fluorescentes Verdes/genética , Homeostasis , Ratones , Ratones Endogámicos BALB C , Ratones Endogámicos C57BL , Ratones Transgénicos , Modelos Animales , Timo/citología
7.
Biomaterials ; 118: 1-15, 2017 02.
Artículo en Inglés | MEDLINE | ID: mdl-27940379

RESUMEN

Although the thymus is a primary lymphoid organ, its function is compromised by an age-induced loss of resident epithelial cells, which results in reduced naïve T cell output. This has important implications for immune recovery in aged and elderly patients following damage from cytoablative therapies. As thymic architecture plays a crucial role in naïve T cell development, a tissue specific scaffold that provides essential supporting matrix may assist in stem cell-based thymus regeneration to recreate complex organoids. Here we investigate thymus decellularization approaches that preserve major extracellular matrix components and support thymic epithelial cells for the generation of a functional thymic microenvironment with improved T cell output. We also established an in vitro, serum-free culture system that both maintains a progenitor thymic epithelial cell pool and drives their differentiation in the presence of decellularized thymic matrix. This approach enables further dissection of key cellular and niche components involved in thymic epithelial stem cell maintenance and T cell production.


Asunto(s)
Células Epiteliales/fisiología , Matriz Extracelular/química , Organoides/crecimiento & desarrollo , Linfocitos T/citología , Timo/citología , Timo/crecimiento & desarrollo , Animales , Órganos Bioartificiales , Diferenciación Celular/fisiología , Proliferación Celular/fisiología , Sistema Libre de Células , Células Cultivadas , Células Epiteliales/citología , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Ratones Desnudos , Técnicas de Cultivo de Órganos , Organogénesis/fisiología , Organoides/citología , Linfocitos T/fisiología , Ingeniería de Tejidos , Andamios del Tejido
8.
Cell Rep ; 8(4): 1198-209, 2014 Aug 21.
Artículo en Inglés | MEDLINE | ID: mdl-25131206

RESUMEN

Thymic epithelial cells (TECs) are critical for T cell development and self-tolerance but are gradually lost with age. The existence of thymic epithelial progenitors (TEPCs) in the postnatal thymus has been inferred, but their identity has remained enigmatic. Here, we assessed the entire adult TEC compartment in order to reveal progenitor capacity is retained exclusively within a subset of immature thymic epithelium displaying several hallmark features of stem/progenitor function. These adult TEPCs generate mature cortical and medullary lineages in a stepwise fashion, including Aire+ TEC, within fetal thymus reaggregate grafts. Although relatively quiescent in vivo, adult TEPCs demonstrate significant in vitro colony formation and self-renewal. Importantly, 3D-cultured TEPCs retain their capacity to differentiate into cortical and medullary TEC lineages when returned to an in vivo thymic microenvironment. No other postnatal TEC subset exhibits this combination of properties. The characterization of adult TEPC will enable progress in understanding TEC biology in aging and regeneration.


Asunto(s)
Células Madre Adultas/fisiología , Timo/citología , Animales , Linaje de la Célula , Proliferación Celular , Células Cultivadas , Células Epiteliales/fisiología , Masculino , Ratones Endogámicos C57BL , Ratones Transgénicos
9.
J Immunol Methods ; 385(1-2): 23-34, 2012 Nov 30.
Artículo en Inglés | MEDLINE | ID: mdl-22910002

RESUMEN

The reproducible isolation and accurate characterization of thymic epithelial cell (TEC) subsets is of critical importance to the ongoing study of thymopoiesis and its functional decline with age. The study of adult TEC, however, is significantly hampered due to the severely low stromal to hematopoietic cell ratio. Non-biased digestion and enrichment protocols are thus essential to ensure optimal cell yield and accurate representation of stromal subsets, as close as possible to their in vivo representation. Current digestion protocols predominantly involve diverse, relatively impure enzymatic variants of crude collagenase and collagenase/dispase (col/disp) preparations, which have variable efficacy and are often suboptimal in their ability to mediate complete digestion of thymus tissue. To address these issues we compared traditional col/disp preparations with the latest panel of Liberase products that contain a blend of highly purified collagenase and neutral protease enzymes. Liberase enzymes revealed a more rapid, complete dissociation of thymus tissue; minimizing loss of viability and increasing recovery of thymic stromal cell (TSC) elements. In particular, the recovery and viability of TEC, notably the rare cortical subsets, were significantly enhanced with Liberase products containing medium to high levels of thermolysin. The improved stromal dissociation led to numerically increased TEC yield and total TEC RNA isolated from pooled digests of adult thymus. Furthermore, the increased recovery of TEC enhanced resolution and quantification of TEC subsets in both adult and aged mice, facilitating flow cytometric analysis on a per thymus basis. We further refined the adult TEC phenotype by correlating surface expression of known TEC markers, with expression of intracellular epithelial lineage markers, Keratin 5 and Keratin 8. The data reveal more extensive expression of K8 than previously recognized and indicates considerable heterogeneity still exists within currently defined adult TEC subsets.


Asunto(s)
Separación Celular/métodos , Enzimas/metabolismo , Células Epiteliales/citología , Timo/citología , Animales , Antígenos CD/inmunología , Antígenos CD/metabolismo , Supervivencia Celular/inmunología , Colagenasas/metabolismo , Endopeptidasas/metabolismo , Células Epiteliales/inmunología , Células Epiteliales/metabolismo , Citometría de Flujo , Técnica del Anticuerpo Fluorescente , Inmunofenotipificación , Queratina-5/metabolismo , Queratina-8/metabolismo , Masculino , Ratones , Ratones Endogámicos C57BL , Reproducibilidad de los Resultados , Células del Estroma/citología , Células del Estroma/inmunología , Células del Estroma/metabolismo , Termolisina/metabolismo , Timo/inmunología , Timo/metabolismo , Factores de Tiempo
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