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1.
Immunity ; 49(2): 326-341.e7, 2018 08 21.
Artículo en Inglés | MEDLINE | ID: mdl-30054204

RESUMEN

The maintenance of appropriate arterial tone is critically important for normal physiological arterial function. However, the cellular and molecular mechanisms remain poorly defined. Here, we have shown that in the mouse aorta, resident macrophages prevented arterial stiffness and collagen deposition in the steady state. Using phenotyping, transcriptional profiling, and targeted deletion of Csf1r, we have demonstrated that these macrophages-which are a feature of blood vessels invested with smooth muscle cells (SMCs) in both mouse and human tissues-expressed the hyaluronan (HA) receptor LYVE-l. Furthermore, we have shown they possessed the unique ability to modulate collagen expression in SMCs by matrix metalloproteinase MMP-9-dependent proteolysis through engagement of LYVE-1 with the HA pericellular matrix of SMCs. Our study has unveiled a hitherto unknown homeostatic contribution of arterial LYVE-1+ macrophages through the control of collagen production by SMCs and has identified a function of LYVE-1 in leukocytes.


Asunto(s)
Colágeno/metabolismo , Glicoproteínas/metabolismo , Receptores de Hialuranos/metabolismo , Macrófagos/metabolismo , Músculo Liso Vascular/citología , Miocitos del Músculo Liso/metabolismo , Rigidez Vascular/fisiología , Animales , Aorta/fisiología , Femenino , Glicoproteínas/genética , Humanos , Ácido Hialurónico/metabolismo , Masculino , Metaloproteinasa 9 de la Matriz/metabolismo , Proteínas de Transporte de Membrana , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Receptores de Factor Estimulante de Colonias de Granulocitos y Macrófagos/genética
2.
Immunity ; 38(5): 970-83, 2013 May 23.
Artículo en Inglés | MEDLINE | ID: mdl-23706669

RESUMEN

Mouse and human dendritic cells (DCs) are composed of functionally specialized subsets, but precise interspecies correlation is currently incomplete. Here, we showed that murine lung and gut lamina propria CD11b+ DC populations were comprised of two subsets: FLT3- and IRF4-dependent CD24(+)CD64(-) DCs and contaminating CSF-1R-dependent CD24(-)CD64(+) macrophages. Functionally, loss of CD24(+)CD11b(+) DCs abrogated CD4+ T cell-mediated interleukin-17 (IL-17) production in steady state and after Aspergillus fumigatus challenge. Human CD1c+ DCs, the equivalent of murine CD24(+)CD11b(+) DCs, also expressed IRF4, secreted IL-23, and promoted T helper 17 cell responses. Our data revealed heterogeneity in the mouse CD11b+ DC compartment and identifed mucosal tissues IRF4-expressing DCs specialized in instructing IL-17 responses in both mouse and human. The demonstration of mouse and human DC subsets specialized in driving IL-17 responses highlights the conservation of key immune functions across species and will facilitate the translation of mouse in vivo findings to advance DC-based clinical therapies.


Asunto(s)
Aspergillus fumigatus/inmunología , Células Dendríticas/metabolismo , Factores Reguladores del Interferón/metabolismo , Interleucina-17/metabolismo , Células Th17/metabolismo , Animales , Antígeno CD11b/metabolismo , Antígeno CD24/metabolismo , Diferenciación Celular/inmunología , Células Dendríticas/inmunología , Humanos , Interleucina-17/biosíntesis , Interleucina-23/metabolismo , Mucosa Intestinal/citología , Mucosa Intestinal/inmunología , Macrófagos/metabolismo , Ratones , Receptores de IgG/metabolismo , Mucosa Respiratoria/citología , Mucosa Respiratoria/inmunología , Tirosina Quinasa 3 Similar a fms/metabolismo
4.
Eur J Immunol ; 44(6): 1823-34, 2014 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-24610714

RESUMEN

Basophils, a rare leukocyte population in peripheral circulation, are conventionally identified as CD45(int) CD49b(+) FcεRI(+) cells. Here, we show that basophils from blood and several organs of naïve wild-type mice express CD41, the α subunit of α(IIb)ß3 integrin. CD41 expression on basophils is upregulated after in vivo IL-3 treatment and during infection with Nippostrongylus brasiliensis (Nb). Moreover, CD41 can be used as a reliable marker for basophils, circumventing technical difficulties associated with FcεRI for basophil identification in a Nb infection model. In vitro anti-IgE cross-linking and IL-3 basophil stimulation showed that CD41 upregulation positively correlates with augmented surface expression of CD200R and increased production of IL-4/IL-13, indicating that CD41 is a basophil activation marker. Furthermore, we found that infection with Plasmodium yoelii 17X (Py17x) induced a profound basophilia and using Mcpt8(DTR) reporter mice as a basophil-specific depletion model, we verified that CD41 can be used as a marker to track basophils in the steady state and during infection. During malarial infection, CD41 expression on basophils is negatively regulated by IFN-γ and positively correlates with increased basophil IL-4 production. In conclusion, we provide evidence that CD41 can be used as both an identification and activation marker for basophils during homeostasis and immune challenge.


Asunto(s)
Basófilos/inmunología , Malaria/inmunología , Nippostrongylus/inmunología , Plasmodium yoelii/inmunología , Glicoproteína IIb de Membrana Plaquetaria/inmunología , Infecciones por Strongylida/inmunología , Animales , Anticuerpos Antihelmínticos/inmunología , Basófilos/patología , Femenino , Inmunoglobulina E/inmunología , Interleucina-3/inmunología , Interleucina-4/inmunología , Malaria/patología , Glicoproteínas de Membrana/inmunología , Ratones , Ratones Endogámicos BALB C , Ratones Noqueados , Infecciones por Strongylida/patología
5.
J Exp Med ; 210(11): 2321-36, 2013 Oct 21.
Artículo en Inglés | MEDLINE | ID: mdl-24081949

RESUMEN

Blood neutrophil homeostasis is essential for successful host defense against invading pathogens. Circulating neutrophil counts are positively regulated by CXCR2 signaling and negatively regulated by the CXCR4-CXCL12 axis. In particular, G-CSF, a known CXCR2 signaler, and plerixafor, a CXCR4 antagonist, have both been shown to correct neutropenia in human patients. G-CSF directly induces neutrophil mobilization from the bone marrow (BM) into the blood, but the mechanisms underlying plerixafor-induced neutrophilia remain poorly defined. Using a combination of intravital multiphoton microscopy, genetically modified mice and novel in vivo homing assays, we demonstrate that G-CSF and plerixafor work through distinct mechanisms. In contrast to G-CSF, CXCR4 inhibition via plerixafor does not result in neutrophil mobilization from the BM. Instead, plerixafor augments the frequency of circulating neutrophils through their release from the marginated pool present in the lung, while simultaneously preventing neutrophil return to the BM. Our study demonstrates for the first time that drastic changes in blood neutrophils can originate from alternative reservoirs other than the BM, while implicating a role for CXCR4-CXCL12 interactions in regulating lung neutrophil margination. Collectively, our data provides valuable insights into the fundamental regulation of neutrophil homeostasis, which may lead to the development of improved treatment regimens for neutropenic patients.


Asunto(s)
Médula Ósea/metabolismo , Movimiento Celular/efectos de los fármacos , Compuestos Heterocíclicos/farmacología , Pulmón/citología , Neutrófilos/citología , Receptores CXCR4/antagonistas & inhibidores , Animales , Bencilaminas , Médula Ósea/efectos de los fármacos , Ciclamas , Factor Estimulante de Colonias de Granulocitos/farmacología , Proteínas Fluorescentes Verdes/metabolismo , Humanos , Recuento de Leucocitos , Macaca fascicularis , Ratones , Microscopía de Fluorescencia por Excitación Multifotónica , Muramidasa/metabolismo , Músculo Esquelético/citología , Mutación/genética , Circulación Pulmonar , Receptores CXCR4/genética , Receptores CXCR4/metabolismo , Receptores de Interleucina-8B/metabolismo
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