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1.
Transfusion ; 63(4): 826-838, 2023 04.
Artículo en Inglés | MEDLINE | ID: mdl-36907655

RESUMEN

BACKGROUND: Studies of human patients have shown that most anti-RBC alloantibodies are IgG1 or IgG3 subclasses, although it is unclear why transfused RBCs preferentially drive these subclasses over others. Though mouse models allow for the mechanistic exploration of class-switching, previous studies of RBC alloimmunization in mice have focused more on the total IgG response than the relative distribution, abundance, or mechanism of IgG subclass generation. Given this major gap, we compared the IgG subclass distribution generated in response to transfused RBCs relative to protein in alum vaccination, and determined the role of STAT6 in their generation. STUDY DESIGN AND METHODS: WT mice were either immunized with Alum/HEL-OVA or transfused with HOD RBCs and levels of anti-HEL IgG subtypes were measured using end-point dilution ELISAs. To study the role of STAT6 in IgG class-switching, we first generated and validated novel STAT6 KO mice using CRISPR/cas9 gene editing. STAT6 KO mice were then transfused with HOD RBCs or immunized with Alum/HEL-OVA, and IgG subclasses were quantified by ELISA. RESULTS: When compared with antibody responses to Alum/HEL-OVA, transfusion of HOD RBCs induced lower levels of IgG1, IgG2b, and IgG2c but similar levels of IgG3. Class switching to most IgG subtypes remained largely unaffected in STAT6 deficient mice in response to HOD RBC transfusion, with the one exception being IgG2b. In contrast, STAT6 deficient mice showed altered levels of all IgG subtypes following Alum vaccination. DISCUSSION: Our results show that anti-RBC class-switching occurs via alternate mechanisms when compared with the well-studied immunogen alum vaccination.


Asunto(s)
Eritrocitos , Cambio de Clase de Inmunoglobulina , Ratones , Humanos , Animales , Eritrocitos/metabolismo , Isoanticuerpos , Inmunoglobulina G/metabolismo , Vacunación
2.
bioRxiv ; 2023 Jan 12.
Artículo en Inglés | MEDLINE | ID: mdl-36712006

RESUMEN

Background: Studies of human patients have shown that most anti-RBC alloantibodies are IgG1 or IgG3 subclasses, though it is unclear why transfused RBCs preferentially drive these subclasses over others. Though mouse models allow for the mechanistic exploration of class-switching, previous studies of RBC alloimmunization in mice have focused more on the total IgG response than the relative distribution, abundance, or mechanism of IgG subclass generation. Given this major gap, we compared the IgG subclass distribution generated in response to transfused RBCs relative to protein in alum vaccination, and determined the role of STAT6 in their generation. Study Design and Methods: WT mice were either immunized with Alum/HEL-OVA or transfused with HOD RBCs and levels of anti-HEL IgG subtypes were measured using end-point dilution ELISAs. To study the role of STAT6 in IgG class-switching, we first generated and validated novel STAT6 KO mice using CRISPR/cas9 gene editing. STAT6 KO mice were then transfused with HOD RBCs or immunized with Alum/HEL-OVA, and IgG subclasses were quantified by ELISA. Results: When compared to antibody responses to Alum/HEL-OVA, transfusion of HOD RBCs induced lower levels of IgG1, IgG2b and IgG2c but similar levels of IgG3. Class switching to most IgG subtypes remained largely unaffected in STAT6 deficient mice in response to HOD RBC transfusion, with the one exception being IgG2b. In contrast, STAT6 deficient mice showed altered levels of all IgG subtypes following Alum vaccination. Discussion: Our results show that anti-RBC class-switching occurs via alternate mechanisms when compared to the well-studied immunogen alum vaccination.

3.
Transfusion ; 61(7): 2169-2178, 2021 07.
Artículo en Inglés | MEDLINE | ID: mdl-34181769

RESUMEN

BACKGROUND: Despite the significant adverse clinical consequences of RBC alloimmunization, our understanding of the signals that induce immune responses to transfused RBCs remains incomplete. Though RBC storage has been shown to enhance alloimmunization in the hen egg lysozyme, ovalbumin, and human Duffy (HOD) RBC alloantigen mouse model, the molecular signals leading to immune activation in this system remain unclear. Given that the nonclassical major histocompatibility complex (MHC) Class I molecule CD1D can bind to multiple different lysophospholipids and direct immune activation, we hypothesized that storage of RBCs increases lysophospholipids known to bind CD1D, and further that recipient CD1D recognition of these altered lipids mediates storage-induced alloimmunization responses. STUDY DESIGN AND METHODS: We used a mass spectrometry-based approach to analyze the changes in lysophospholipids that are induced during storage of mouse RBCs. CD1D knockout (CD1D-KO) and wild-type (WT) control mice were transfused with stored HOD RBCs to measure the impact of CD1D deficiency on RBC alloimmunization. RESULTS: RBC storage results in alterations in multiple lysophospholipid species known to bind to CD1D and activate the immune system. Prior to transfusion, CD1D-deficient mice had lower baseline levels of polyclonal immunoglobulin (IgG) relative to WT mice. In response to stored RBC transfusion, CD1D-deficient mice generated similar levels of anti-HOD IgM and anti-HOD IgG. CONCLUSION: Although storage of RBCs leads to alteration of several lysophospholipids known to be capable of binding CD1D, storage-induced RBC alloimmunization responses are not impacted by recipient CD1D deficiency.


Asunto(s)
Antígenos CD1d/inmunología , Conservación de la Sangre , Transfusión Sanguínea , Eritrocitos/inmunología , Isoanticuerpos/biosíntesis , Isoantígenos/inmunología , Lisofosfolípidos/sangre , Reacción a la Transfusión/inmunología , Alarminas/sangre , Alarminas/inmunología , Animales , Especificidad de Anticuerpos , Antígenos CD1d/genética , Antígenos CD1d/metabolismo , Sistema del Grupo Sanguíneo Duffy/genética , Sistema del Grupo Sanguíneo Duffy/inmunología , Femenino , Inmunización , Inmunoglobulina G/biosíntesis , Inmunoglobulina G/inmunología , Inmunoglobulina M/biosíntesis , Inmunoglobulina M/inmunología , Isoanticuerpos/inmunología , Lisofosfolípidos/metabolismo , Masculino , Espectrometría de Masas , Ratones , Ratones Endogámicos , Ratones Noqueados , Ratones Transgénicos , Muramidasa/inmunología , Ovalbúmina/inmunología , Receptores de Superficie Celular/genética , Receptores de Superficie Celular/inmunología
4.
Glia ; 69(3): 792-811, 2021 03.
Artículo en Inglés | MEDLINE | ID: mdl-33098183

RESUMEN

Oligodendrocyte precursor cells (OPCs), also known as NG2 cells or polydendrocytes, are distributed widely throughout the developing and mature central nervous system. They remain proliferative throughout life and are an important source of myelinating cells in normal and demyelinating brain as well as a source of glioma, the most common type of primary brain tumor with a poor prognosis. OPC proliferation is dependent on signaling mediated by platelet-derived growth factor (PDGF) AA binding to its alpha receptor (PDGFRα). Here, we describe a group of structurally related compounds characterized by the presence of a basic guanidine group appended to an aromatic core that is effective in specifically repressing the transcription of Pdgfra but not the related beta receptor (Pdgfrb) in OPCs. These compounds specifically and dramatically reduced proliferation of OPCs but not that of astrocytes and did not affect signal transduction by PDGFRα. These findings suggest that the compounds could be further developed for potential use in combinatorial treatment strategies for neoplasms with dysregulated PDGFRα function.


Asunto(s)
Células Precursoras de Oligodendrocitos , Proliferación Celular , Guanidina , Oligodendroglía , Receptor alfa de Factor de Crecimiento Derivado de Plaquetas/genética
5.
J Vis Exp ; (90): e51835, 2014 Aug 25.
Artículo en Inglés | MEDLINE | ID: mdl-25177825

RESUMEN

NG2 expressing cells (polydendrocytes, oligodendrocyte precursor cells) are the fourth major glial cell population in the central nervous system. During embryonic and postnatal development they actively proliferate and generate myelinating oligodendrocytes. These cells have commonly been studied in primary dissociated cultures, neuron cocultures, and in fixed tissue. Using newly available transgenic mouse lines slice culture systems can be used to investigate proliferation and differentiation of oligodendrocyte lineage cells in both gray and white matter regions of the forebrain and cerebellum. Slice cultures are prepared from early postnatal mice and are kept in culture for up to 1 month. These slices can be imaged multiple times over the culture period to investigate cellular behavior and interactions. This method allows visualization of NG2 cell division and the steps leading to oligodendrocyte differentiation while enabling detailed analysis of region-dependent NG2 cell and oligodendrocyte functional heterogeneity. This is a powerful technique that can be used to investigate the intrinsic and extrinsic signals influencing these cells over time in a cellular environment that closely resembles that found in vivo.


Asunto(s)
Cerebelo/citología , Cerebelo/metabolismo , Vaina de Mielina/metabolismo , Oligodendroglía/citología , Oligodendroglía/metabolismo , Técnicas de Cultivo de Órganos/métodos , Prosencéfalo/citología , Prosencéfalo/metabolismo , Animales , Diferenciación Celular/fisiología , Procesos de Crecimiento Celular/fisiología , Ratones
6.
J Neurosci ; 33(36): 14558-66, 2013 Sep 04.
Artículo en Inglés | MEDLINE | ID: mdl-24005306

RESUMEN

Glial cells that express the NG2 proteoglycan and the α receptor for PDGF (NG2 cells, polydendrocytes) make up the fifth major cell population that serves as oligodendrocyte progenitor cells in the postnatal CNS. Although recent studies have suggested differences in their proliferation and oligodendrocyte differentiation in gray and white matter, the mechanism underlying the observed differences has been unclear. Using organotypic slice cultures from the forebrain and cerebellum of early postnatal NG2creBAC:ZEG mice, we have compared basal and growth factor-induced proliferation of NG2 cells in gray and white matter. NG2 cells in white matter exhibited greater proliferative response to PDGF AA than those in gray matter. Heterotopic slice transplant and explant cultures suggested intrinsic mechanisms for the differential proliferative response of gray and white matter cells. Additionally, younger white matter NG2 cells showed a more robust proliferative response to PDGF. Basal and PDGF-induced proliferation of gray and white matter NG2 cells was largely dependent on Wnt/ß-catenin and phosphatidylinositol 3-kinase acting through the mammalian target of rapamycin pathway and not through ERK. These data uncover a previously unrecognized divergence between gray and white matter NG2 cells in the developing brain in their proliferative response to PDGF.


Asunto(s)
Antígenos/metabolismo , Proliferación Celular/efectos de los fármacos , Neuronas/metabolismo , Oligodendroglía/metabolismo , Factor de Crecimiento Derivado de Plaquetas/farmacología , Proteoglicanos/metabolismo , Animales , Antígenos/genética , Cerebelo/citología , Cerebelo/metabolismo , Quinasas MAP Reguladas por Señal Extracelular/metabolismo , Ratones , Ratones Transgénicos , Neuronas/efectos de los fármacos , Neuronas/fisiología , Oligodendroglía/efectos de los fármacos , Oligodendroglía/fisiología , Fosfatidilinositol 3-Quinasas/metabolismo , Prosencéfalo/citología , Prosencéfalo/metabolismo , Proteoglicanos/genética , Vía de Señalización Wnt
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