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1.
Nature ; 622(7982): 383-392, 2023 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-37731001

RESUMO

CD8+ T cells are essential components of the immune response against viral infections and tumours, and are capable of eliminating infected and cancerous cells. However, when the antigen cannot be cleared, T cells enter a state known as exhaustion1. Although it is clear that chronic antigen contributes to CD8+ T cell exhaustion, less is known about how stress responses in tissues regulate T cell function. Here we show a new link between the stress-associated catecholamines and the progression of T cell exhaustion through the ß1-adrenergic receptor ADRB1. We identify that exhausted CD8+ T cells increase ADRB1 expression and that exposure of ADRB1+ T cells to catecholamines suppresses their cytokine production and proliferation. Exhausted CD8+ T cells cluster around sympathetic nerves in an ADRB1-dependent manner. Ablation of ß1-adrenergic signalling limits the progression of T cells towards the exhausted state in chronic infection and improves effector functions when combined with immune checkpoint blockade (ICB) in melanoma. In a pancreatic cancer model resistant to ICB, ß-blockers and ICB synergize to boost CD8+ T cell responses and induce the development of tissue-resident memory-like T cells. Malignant disease is associated with increased catecholamine levels in patients2,3, and our results establish a connection between the sympathetic stress response, tissue innervation and T cell exhaustion. Here, we uncover a new mechanism by which blocking ß-adrenergic signalling in CD8+ T cells rejuvenates anti-tumour functions.


Assuntos
Linfócitos T CD8-Positivos , Catecolaminas , Receptores Adrenérgicos beta 1 , Sistema Nervoso Simpático , Exaustão das Células T , Humanos , Antígenos/imunologia , Antígenos/metabolismo , Catecolaminas/metabolismo , Linfócitos T CD8-Positivos/citologia , Linfócitos T CD8-Positivos/imunologia , Linfócitos T CD8-Positivos/metabolismo , Proliferação de Células , Inibidores de Checkpoint Imunológico/uso terapêutico , Melanoma/imunologia , Melanoma/metabolismo , Melanoma/terapia , Células T de Memória/citologia , Células T de Memória/imunologia , Neoplasias Pancreáticas/imunologia , Neoplasias Pancreáticas/metabolismo , Neoplasias Pancreáticas/terapia , Receptores Adrenérgicos beta 1/metabolismo , Sistema Nervoso Simpático/imunologia , Sistema Nervoso Simpático/fisiologia , Estresse Fisiológico
2.
Science ; 378(6619): 485, 2022 11 04.
Artigo em Inglês | MEDLINE | ID: mdl-36378990
3.
J Exp Med ; 219(3)2022 03 07.
Artigo em Inglês | MEDLINE | ID: mdl-35195682

RESUMO

Leukocyte trafficking between blood and tissues is an essential function of the immune system that facilitates humoral and cellular immune responses. Within tissues, leukocytes perform surveillance and effector functions via cell motility and migration toward sites of tissue damage, infection, or inflammation. Neurotransmitters that are produced by the nervous system influence leukocyte trafficking around the body and the interstitial migration of immune cells in tissues. Neural regulation of leukocyte dynamics is influenced by circadian rhythms and altered by stress and disease. This review examines current knowledge of neuro-immune interactions that regulate leukocyte migration and consequences for protective immunity against infections and cancer.


Assuntos
Leucócitos/imunologia , Neuroimunomodulação/imunologia , Movimento Celular/imunologia , Quimiotaxia de Leucócito/imunologia , Ritmo Circadiano/imunologia , Humanos , Modelos Imunológicos , Modelos Neurológicos , Vias Neurais/imunologia , Sistema Nervoso Simpático/imunologia , Microambiente Tumoral/imunologia
4.
Nat Commun ; 12(1): 5725, 2021 09 30.
Artigo em Inglês | MEDLINE | ID: mdl-34593796

RESUMO

Although psycho-social stress is a well-known factor that contributes to the development of cancer, it remains largely unclear whether and how environmental eustress influences malignant diseases and regulates cancer-related therapeutic responses. Using an established eustress model, we demonstrate that mice living in an enriched environment (EE) are protected from carcinogen-induced liver neoplasia and transplantable syngeneic liver tumors, owning to a CD8+ T cell-dependent tumor control. We identify a peripheral Neuro-Endocrine-Immune pathway in eustress, including Sympathetic nervous system (SNS)/ß-adrenergic receptors (ß-ARs)/CCL2 that relieves tumor immunosuppression and overcomes PD-L1 resistance to immunotherapy. Notably, EE activates peripheral SNS and ß-ARs signaling in tumor cells and tumor infiltrated myeloid cells, leading to suppression of CCL2 expression and activation of anti-tumor immunity. Either blockade of CCL2/CCR2 or ß-AR signaling in EE mice lose the tumor protection capability. Our study reveales that environmental eustress via EE stimulates anti-tumor immunity, resulting in more efficient tumor control and a better outcome of immunotherapy.


Assuntos
Resistencia a Medicamentos Antineoplásicos/imunologia , Inibidores de Checkpoint Imunológico/farmacologia , Neoplasias Hepáticas Experimentais/tratamento farmacológico , Neuroimunomodulação , Estresse Psicológico/imunologia , Animais , Antígeno B7-H1/antagonistas & inibidores , Tetracloreto de Carbono/administração & dosagem , Tetracloreto de Carbono/toxicidade , Quimiocina CCL2/antagonistas & inibidores , Quimiocina CCL2/metabolismo , Dietilnitrosamina/administração & dosagem , Dietilnitrosamina/toxicidade , Células Estreladas do Fígado , Hepatócitos , Humanos , Inibidores de Checkpoint Imunológico/uso terapêutico , Fígado/efeitos dos fármacos , Fígado/imunologia , Fígado/patologia , Neoplasias Hepáticas Experimentais/induzido quimicamente , Neoplasias Hepáticas Experimentais/imunologia , Neoplasias Hepáticas Experimentais/patologia , Masculino , Camundongos , Organoides , Receptores Adrenérgicos beta/metabolismo , Receptores CCR2/antagonistas & inibidores , Receptores CCR2/metabolismo , Transdução de Sinais/efeitos dos fármacos , Transdução de Sinais/imunologia , Sistema Nervoso Simpático/imunologia , Evasão Tumoral , Microambiente Tumoral/efeitos dos fármacos , Microambiente Tumoral/imunologia
5.
Front Immunol ; 12: 695859, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-34394087

RESUMO

The environment of an organism can convey a powerful influence over its biology. Environmental enrichment (EE), as a eustress model, has been used extensively in neuroscience to study neurogenesis and brain plasticity. EE has also been used as an intervention for the treatment and prevention of neurological and psychiatric disorders with limited clinical application. By contrast, the effects of EE on the immune system are relatively less investigated. Recently, accumulating evidence has demonstrated that EE can robustly impact immune function. In this review, we summarize the major components of EE, the impact of EE on natural killer (NK) cells, EE's immunoprotective roles in cancer, and the underlying mechanisms of EE-induced NK cell regulation. Moreover, we discuss opportunities for translational application based on insights from animal research of EE-induced NK cell regulation.


Assuntos
Comportamento Animal , Meio Ambiente , Abrigo para Animais , Células Matadoras Naturais/imunologia , Adipocinas/metabolismo , Animais , Cognição , Citocinas/metabolismo , Sistema Hipotálamo-Hipofisário/imunologia , Sistema Hipotálamo-Hipofisário/metabolismo , Células Matadoras Naturais/metabolismo , Linfócitos do Interstício Tumoral/imunologia , Linfócitos do Interstício Tumoral/metabolismo , Camundongos , Neoplasias/imunologia , Neoplasias/metabolismo , Fenótipo , Esforço Físico , Sensação , Comportamento Social , Sistema Nervoso Simpático/imunologia , Sistema Nervoso Simpático/metabolismo
6.
Cell ; 184(11): 2797-2801, 2021 05 27.
Artigo em Inglês | MEDLINE | ID: mdl-34048701

RESUMO

The COVID-19 pandemic has highlighted structural inequalities and racism promoting health disparities among communities of color. Taking cardiovascular disease as an example, we provide a framework for multidisciplinary efforts leveraging translational and epidemiologic approaches to decode the biological impacts of inequalities and racism and develop targeted interventions that promote health equity.


Assuntos
COVID-19/epidemiologia , Equidade em Saúde , Promoção da Saúde/métodos , Racismo , Estresse Fisiológico/imunologia , COVID-19/imunologia , COVID-19/metabolismo , COVID-19/psicologia , Doenças Cardiovasculares/epidemiologia , Doenças Cardiovasculares/imunologia , Doenças Cardiovasculares/metabolismo , Doenças Cardiovasculares/psicologia , Regulação da Expressão Gênica/genética , Regulação da Expressão Gênica/imunologia , Regulação da Expressão Gênica/fisiologia , Humanos , Sistema Hipotálamo-Hipofisário/imunologia , Sistema Hipotálamo-Hipofisário/fisiologia , Racismo/psicologia , Fatores de Risco , Sistema Nervoso Simpático/imunologia , Sistema Nervoso Simpático/fisiologia
7.
Proc Natl Acad Sci U S A ; 118(20)2021 05 18.
Artigo em Inglês | MEDLINE | ID: mdl-33972441

RESUMO

Neuromodulation of immune function by stimulating the autonomic connections to the spleen has been demonstrated in rodent models. Consequently, neuroimmune modulation has been proposed as a new therapeutic strategy for the treatment of inflammatory conditions. However, demonstration of the translation of these immunomodulatory mechanisms in anatomically and physiologically relevant models is still lacking. Additionally, translational models are required to identify stimulation parameters that can be transferred to clinical applications of bioelectronic medicines. Here, we performed neuroanatomical and functional comparison of the mouse, rat, pig, and human splenic nerve using in vivo and ex vivo preparations. The pig was identified as a more suitable model of the human splenic innervation. Using functional electrophysiology, we developed a clinically relevant marker of splenic nerve engagement through stimulation-dependent reversible reduction in local blood flow. Translation of immunomodulatory mechanisms were then assessed using pig splenocytes and two models of acute inflammation in anesthetized pigs. The pig splenic nerve was shown to locally release noradrenaline upon stimulation, which was able to modulate cytokine production by pig splenocytes. Splenic nerve stimulation was found to promote cardiovascular protection as well as cytokine modulation in a high- and a low-dose lipopolysaccharide model, respectively. Importantly, splenic nerve-induced cytokine modulation was reproduced by stimulating the efferent trunk of the cervical vagus nerve. This work demonstrates that immune responses can be modulated by stimulation of spleen-targeted autonomic nerves in translational species and identifies splenic nerve stimulation parameters and biomarkers that are directly applicable to humans due to anatomical and electrophysiological similarities.


Assuntos
Sistema Imunitário/inervação , Imunomodulação/efeitos dos fármacos , Baço/imunologia , Sistema Nervoso Simpático/imunologia , Nervo Vago/imunologia , Animais , Feminino , Expressão Gênica , Humanos , Sistema Imunitário/efeitos dos fármacos , Inflamação , Interleucina-6/genética , Interleucina-6/imunologia , Lipopolissacarídeos/farmacologia , Camundongos , Microcirculação/efeitos dos fármacos , Microcirculação/genética , Microcirculação/imunologia , Norepinefrina/farmacologia , Ratos , Especificidade da Espécie , Baço/efeitos dos fármacos , Baço/inervação , Baço/patologia , Suínos , Sistema Nervoso Simpático/efeitos dos fármacos , Fator de Necrose Tumoral alfa/genética , Fator de Necrose Tumoral alfa/imunologia , Nervo Vago/efeitos dos fármacos , Estimulação do Nervo Vago/métodos
8.
Immunity ; 54(5): 1022-1036.e8, 2021 05 11.
Artigo em Inglês | MEDLINE | ID: mdl-33932356

RESUMO

The sympathetic nervous system is composed of an endocrine arm, regulating blood adrenaline and noradrenaline, and a local arm, a network of fibers innervating immune organs. Here, we investigated the impact of the local arm of the SNS in an inflammatory response in the colon. Intra-rectal insertion of an optogenetic probe in mice engineered to express channelrhodopsin-2 in tyrosine hydroxylase cells activated colonic sympathetic fibers. In contrast to systemic application of noradrenaline, local activation of sympathetic fibers attenuated experimental colitis and reduced immune cell abundance. Gene expression profiling showed decreased endothelial expression of the adhesion molecule MAdCAM-1 upon optogenetic stimulation; this decrease was sensitive to adrenergic blockers and 6-hydroxydopamine. Antibody blockade of MAdCAM-1 abrogated the optogenetic effect on immune cell extravasation into the colon and the pathology. Thus, sympathetic fibers control colonic inflammation by regulating immune cell extravasation from circulation, a mechanism likely relevant in multiple organs.


Assuntos
Colite/imunologia , Colo/imunologia , Colo/inervação , Organogênese/imunologia , Sistema Nervoso Simpático/imunologia , Animais , Molécula 1 de Adesão Intercelular/imunologia , Camundongos , Camundongos Endogâmicos C57BL , Optogenética/métodos
9.
Nutrients ; 13(4)2021 Apr 10.
Artigo em Inglês | MEDLINE | ID: mdl-33920202

RESUMO

Consumption of indigestible dietary fiber increases immunoglobulin A (IgA) levels in saliva. The purpose of this study is to clarify the synergistic effect of the intake of a high amount of fats and indigestible dietary fiber on IgA levels in saliva and submandibular glands (SMG). Seven-week-old Wistar rats were fed a low-fat (60 g/kg) fiberless diet, low-fat fructo-oligosaccharide (FOS, 30 g/kg) diet, high-fat (220 g/kg) fiberless diet, or high-fat FOS diet for 70 days. The IgA flow rate of saliva (IgA FR-saliva) was higher in the low-fat FOS group than in the other groups (p < 0.05). Furthermore, the concentration of tyrosine hydroxylase (a marker of sympathetic nerve activation) in the SMG was higher in the low-fat FOS group (p < 0.05) and positively correlated with the IgA FR-saliva (rs = 0.68. p < 0.0001. n = 32) in comparison to that in the other groups. These findings suggest that during low-fat FOS intake, salivary IgA levels may increase through sympathetic nerve activation.


Assuntos
Dieta Hiperlipídica/efeitos adversos , Fibras na Dieta/administração & dosagem , Imunoglobulina A Secretora/análise , Oligossacarídeos/administração & dosagem , Infecções Respiratórias/prevenção & controle , Ração Animal , Animais , Humanos , Imunoglobulina A Secretora/imunologia , Masculino , Modelos Animais , Ratos , Ratos Wistar , Infecções Respiratórias/imunologia , Saliva/química , Saliva/imunologia , Glândula Submandibular/química , Glândula Submandibular/imunologia , Glândula Submandibular/inervação , Glândula Submandibular/metabolismo , Sistema Nervoso Simpático/imunologia , Tirosina 3-Mono-Oxigenase/análise , Tirosina 3-Mono-Oxigenase/metabolismo
10.
Immunity ; 54(6): 1219-1230.e7, 2021 06 08.
Artigo em Inglês | MEDLINE | ID: mdl-33915109

RESUMO

The sympathetic nervous system (SNS) controls various physiological functions via the neurotransmitter noradrenaline. Activation of the SNS in response to psychological or physical stress is frequently associated with weakened immunity. Here, we investigated how adrenoceptor signaling influences leukocyte behavior. Intravital two-photon imaging after injection of noradrenaline revealed transient inhibition of CD8+ and CD4+ T cell locomotion in tissues. Expression of ß-adrenergic receptor in hematopoietic cells was not required for NA-mediated inhibition of motility. Rather, chemogenetic activation of the SNS or treatment with adrenergic receptor agonists induced vasoconstriction and decreased local blood flow, resulting in abrupt hypoxia that triggered rapid calcium signaling in leukocytes and halted cell motility. Oxygen supplementation reversed these effects. Treatment with adrenergic receptor agonists impaired T cell responses induced in response to viral and parasitic infections, as well as anti-tumor responses. Thus, stimulation of the SNS impairs leukocyte mobility, providing a mechanistic understanding of the link between adrenergic receptors and compromised immunity.


Assuntos
Adrenérgicos/imunologia , Movimento Celular/imunologia , Imunidade/imunologia , Leucócitos/imunologia , Sistema Nervoso Simpático/imunologia , Animais , Sinalização do Cálcio/imunologia , Linhagem Celular Tumoral , Camundongos , Camundongos Endogâmicos BALB C , Camundongos Endogâmicos C57BL , Receptores Adrenérgicos/imunologia , Transdução de Sinais/imunologia , Linfócitos T/imunologia
11.
Sci Immunol ; 5(51)2020 09 11.
Artigo em Inglês | MEDLINE | ID: mdl-32917793

RESUMO

Sympathetic nerves that innervate lymphoid organs regulate immune development and function by releasing norepinephrine that is sensed by immune cells via their expression of adrenergic receptors. Here, we demonstrate that ablation of sympathetic nervous system (SNS) signaling suppresses tumor immunity, and we dissect the mechanism of such immune suppression. We report that disruption of the SNS in mice removes a critical α-adrenergic signal required for maturation of myeloid cells in normal and tumor-bearing mice. In tumor-bearing mice, disruption of the α-adrenergic signal leads to the accumulation of immature myeloid-derived suppressor cells (MDSCs) that suppress tumor immunity and promote tumor growth. Furthermore, we show that these SNS-responsive MDSCs drive expansion of regulatory T cells via secretion of the alarmin heterodimer S100A8/A9, thereby compounding their immunosuppressive activity. Our results describe a regulatory framework in which sympathetic tone controls the development of innate and adaptive immune cells and influences their activity in health and disease.


Assuntos
Células Supressoras Mieloides/imunologia , Sistema Nervoso Simpático/imunologia , Antagonistas Adrenérgicos/uso terapêutico , Animais , Calgranulina A/sangue , Calgranulina B/sangue , Linhagem Celular Tumoral , Feminino , Linfócitos do Interstício Tumoral/imunologia , Camundongos Endogâmicos BALB C , Neoplasias/sangue , Neoplasias/tratamento farmacológico , Neoplasias/imunologia , Neoplasias/patologia , Receptores Adrenérgicos/imunologia , Linfócitos T Reguladores/imunologia
12.
Am J Hypertens ; 33(10): 890-901, 2020 10 21.
Artigo em Inglês | MEDLINE | ID: mdl-32614942

RESUMO

There are numerous studies indicating a direct association between hypertension and gut microbiota in both animal models and humans. In this review, we focused on the imbalance in the gut microbiota composition relative to healthy state or homeostasis, termed dysbiosis, associated with hypertension and discuss the current knowledge regarding how microbiota regulates blood pressure (BP), involving the sympathetic nervous system and the immune system. The profile of ecological parameters and bacterial genera composition of gut dysbiosis in hypertension varies according to the experimental model of hypertension. Recent evidence supports that gut microbiota can protect or promote the development of hypertension by interacting with gut secondary lymph organs and altering T helper 17/regulatory T cells polarization, with subsequent changes in T cells infiltration in vascular tissues. Here, we also describe the bidirectional communication between the microbiome and the host via the sympathetic nervous system and its role in BP regulation. Dysbiosis in hypertension is mainly associated with reduced proportions of short-chain fatty acid-producing bacteria, mainly acetate- and butyrate-producing bacteria, and an increased enrichment of the genes for lipopolysaccharide biosynthesis and export, lending to moderate endotoxemia. The role of these metabolic and structural products in both immune and sympathetic system regulation and vascular inflammation was also analyzed. Overall, gut microbiota is now recognized as a well-established target to dietary interventions with prebiotics or probiotics to reduce BP.


Assuntos
Disbiose/imunologia , Microbioma Gastrointestinal/imunologia , Hipertensão/imunologia , Inflamação/imunologia , Sistema Nervoso Simpático/fisiopatologia , Animais , Disbiose/fisiopatologia , Endotoxemia/imunologia , Endotoxemia/microbiologia , Endotoxemia/fisiopatologia , Regulação da Expressão Gênica/imunologia , Humanos , Hipertensão/microbiologia , Hipertensão/fisiopatologia , Inflamação/microbiologia , Inflamação/fisiopatologia , Lipopolissacarídeos/biossíntese , Lipopolissacarídeos/metabolismo , Sistema Nervoso Simpático/imunologia , Linfócitos T Reguladores/imunologia , Células Th17/imunologia
13.
Am J Pathol ; 190(6): 1298-1308, 2020 06.
Artigo em Inglês | MEDLINE | ID: mdl-32194050

RESUMO

Eosinophils are a major cause of tissue injury in allergic conjunctivitis. The biological nature of eosinophils in the conjunctiva and the mechanisms that control eosinophils' responses in allergic conjunctivitis are currently not completely understood. This study reports that conjunctival eosinophils comprise two populations-Siglec-Fint and Siglec-Fhi-in different life stages. Siglec-Fint eosinophils partly expressed CD34 and were in the immature (or steady) state. Siglec-Fhi eosinophils did not express CD34, sharply increased in number after short ragweed (SRW) pollen challenge, and were in the mature (or activated) state. Moreover, chemical sympathectomy by 6-hydroxydopamine reduced the recruitment and activation of eosinophils, whereas the activation of the sympathetic nerve system (SNS) with restraint stress accelerated the recruitment and activation of eosinophils in SRW-induced conjunctivitis. It was also found that two eosinophil populations expressed alpha-1a-adrenergic receptors (α1a-ARs); in SRW-induced conjunctivitis, treatment with an α1a-AR antagonist decreased eosinophil responses, whereas treatment with an α1a-AR agonist aggravated eosinophil responses. Thus, eosinophil responses in conjunctivitis are regulated by the SNS via α1a-AR signaling. SNS inputs or α1a-AR function may be potential targets for the treatment of allergic conjunctivitis.


Assuntos
Conjuntivite Alérgica/metabolismo , Eosinófilos/metabolismo , Receptores Adrenérgicos alfa 1/metabolismo , Sistema Nervoso Simpático/metabolismo , Animais , Túnica Conjuntiva/imunologia , Túnica Conjuntiva/metabolismo , Conjuntivite Alérgica/imunologia , Modelos Animais de Doenças , Eosinófilos/imunologia , Camundongos , Transdução de Sinais/fisiologia , Sistema Nervoso Simpático/imunologia
14.
Pharmacol Res ; 153: 104677, 2020 03.
Artigo em Inglês | MEDLINE | ID: mdl-32023431

RESUMO

Inflammation and gut dysbiosis are hallmarks of hypertension (HTN). Hydrogen sulfide (H2S) is an important freely diffusing molecule that modulates the function of neural, cardiovascular and immune systems, and circulating levels of H2S are reduced in animals and humans with HTN. While most research to date has focused on H2S produced endogenously by the host, H2S is also produced by the gut bacteria and may affect the host homeostasis. Here, we review an association between neuroinflammation and gut dysbiosis in HTN, with special emphasis on a potential role of H2S in this interplay.


Assuntos
Encéfalo/imunologia , Microbioma Gastrointestinal/imunologia , Sulfeto de Hidrogênio/metabolismo , Hipertensão/metabolismo , Animais , Encéfalo/metabolismo , Disbiose/imunologia , Disbiose/metabolismo , Humanos , Hipertensão/imunologia , Hipertensão/fisiopatologia , Inflamação , Sistema Nervoso Parassimpático/imunologia , Sistema Nervoso Parassimpático/metabolismo , Sistema Renina-Angiotensina/imunologia , Sistema Nervoso Simpático/imunologia , Sistema Nervoso Simpático/metabolismo
15.
Cell Rep ; 28(12): 3120-3130.e5, 2019 Sep 17.
Artigo em Inglês | MEDLINE | ID: mdl-31533035

RESUMO

Noradrenaline (NE), the main neurotransmitter released by sympathetic nerve terminals, is known to modulate the immune response. However, the role of the sympathetic nervous system (SNS) on the development of autoimmune diseases is still unclear. Here, we report that the SNS limits the generation of pathogenic T cells and disease development in the experimental autoimmune encephalomyelitis (EAE) model of multiple sclerosis (MS). ß2-Adrenergic receptor (Adrb2) signaling limits T cell autoimmunity in EAE through a mechanism mediated by the suppression of IL-2, IFN-γ, and GM-CSF production via inducible cAMP early repressor (ICER). Accordingly, the lack of Adrb2 signaling in immune cells is sufficient to abrogate the suppressive effects of SNS activity, resulting in increased pathogenic T cell responses and EAE development. Collectively, these results uncover a suppressive role for the SNS in CNS autoimmunity while they identify potential targets for therapeutic intervention.


Assuntos
Encefalomielite Autoimune Experimental/imunologia , Imunidade Celular , Esclerose Múltipla/imunologia , Receptores Adrenérgicos beta 2/imunologia , Transdução de Sinais/imunologia , Sistema Nervoso Simpático/imunologia , Linfócitos T/imunologia , Animais , Citocinas/genética , Citocinas/imunologia , Encefalomielite Autoimune Experimental/patologia , Camundongos , Camundongos Knockout , Esclerose Múltipla/genética , Esclerose Múltipla/patologia , Receptores Adrenérgicos beta 2/genética , Transdução de Sinais/genética , Sistema Nervoso Simpático/patologia , Linfócitos T/patologia
16.
Mol Cancer ; 18(1): 132, 2019 09 02.
Artigo em Inglês | MEDLINE | ID: mdl-31477121

RESUMO

Surgical resection is an important avenue for cancer treatment, which, in most cases, can effectively alleviate the patient symptoms. However, accumulating evidence has documented that surgical resection potentially enhances metastatic seeding of tumor cells. In this review, we revisit the literature on surgical stress, and outline the mechanisms by which surgical stress, including ischemia/reperfusion injury, activation of sympathetic nervous system, inflammation, systemically hypercoagulable state, immune suppression and effects of anesthetic agents, promotes tumor metastasis. We also propose preventive strategies or resolution of tumor metastasis caused by surgical stress.


Assuntos
Neoplasias/patologia , Neoplasias/cirurgia , Estresse Fisiológico , Procedimentos Cirúrgicos Operatórios/efeitos adversos , Animais , Biomarcadores , Terapia Combinada , Progressão da Doença , Humanos , Imunomodulação , Neoplasias/etiologia , Neoplasias/metabolismo , Células Neoplásicas Circulantes/patologia , Traumatismo por Reperfusão/etiologia , Traumatismo por Reperfusão/patologia , Procedimentos Cirúrgicos Operatórios/métodos , Sistema Nervoso Simpático/imunologia , Sistema Nervoso Simpático/metabolismo , Microambiente Tumoral
17.
Clin Exp Immunol ; 197(3): 319-328, 2019 09.
Artigo em Inglês | MEDLINE | ID: mdl-31319436

RESUMO

Increased peripheral levels of cytokines and central microglial activation have been reported in patients with psychiatric disorders. The degree of both innate and adaptive immune activation is also associated with worse clinical outcomes and poor treatment response in these patients. Understanding the possible causes and mechanisms leading to this immune activation is therefore an important and necessary step for the development of novel and more effective treatment strategies for these patients. In this work, we review the evidence of literature pointing to childhood trauma as one of the main causes behind the increased immune activation in patients with psychiatric disorders. We then discuss the potential mechanisms linking the experience of early life adversity (ELA) to innate immune activation. Specifically, we focus on the innervation of the bone marrow from sympathetic nervous system (SNS) as a new and emerging mechanism that has the potential to bridge the observed increases in both central and peripheral inflammatory markers in patients exposed to ELA. Experimental studies in laboratory rodents suggest that SNS activation following early life stress exposure causes a shift in the profile of innate immune cells, with an increase in proinflammatory monocytes. In turn, these cells traffic to the brain and influence neural circuitry, which manifests as increased anxiety and other relevant behavioural phenotypes. To date, however, very few studies have been conducted to explore this candidate mechanism in humans. Future research is also needed to clarify whether these pathways could be partially reversible to improve prevention and treatment strategies in the future.


Assuntos
Imunidade Inata , Transtornos Mentais , Estresse Psicológico , Sistema Nervoso Simpático , Humanos , Transtornos Mentais/etiologia , Transtornos Mentais/imunologia , Transtornos Mentais/patologia , Estresse Psicológico/complicações , Estresse Psicológico/imunologia , Estresse Psicológico/patologia , Sistema Nervoso Simpático/imunologia , Sistema Nervoso Simpático/patologia
18.
Am J Physiol Heart Circ Physiol ; 317(2): H279-H289, 2019 08 01.
Artigo em Inglês | MEDLINE | ID: mdl-31150271

RESUMO

Increased sympathetic nervous system activity is a hallmark of hypertension (HTN), and it is implicated in altered immune system responses in its pathophysiology. However, the precise mechanisms of neural-immune interaction in HTN remain elusive. We have previously shown an association between elevated sympathetic drive to the bone marrow (BM) and activated BM immune cells in rodent models of HTN. Moreover, microglial-dependent neuroinflammation is also seen in rodent models of HTN. However, the cause-effect relationship between central and systemic inflammatory responses and the sympathetic drive remains unknown. These observations led us to hypothesize that increase in the femoral BM sympathetic nerve activity (fSNA) initiates a cascade of events leading to increase in blood pressure (BP). Here, we investigated the temporal relationship between the BM sympathetic drive, activation of the central and peripheral immune system, and increase in BP in the events leading to established HTN. The present study demonstrates that central infusion of angiotensin II (ANG II) induces early microglial activation in the paraventricular nucleus of hypothalamus, which preceded increase in the fSNA. In turn, activation of fSNA correlated with the timing of increased production and release of CD4+.IL17+ T cells and other proinflammatory cells into circulation and elevation in BP, whereas infiltration of CD4+ cells to the paraventricular nucleus marked establishment of ANG II HTN. This study identifies cellular and molecular mechanisms involved in neural-immune interactions in early and established stages of rodent ANG II HTN. NEW & NOTEWORTHY Early microglia activation in paraventricular nucleus precedes sympathetic activation of the bone marrow. This leads to increased bone marrow immune cells and their release into circulation and an increase in blood pressure. Infiltration of CD4+ T cells into paraventricular nucleus paraventricular nucleus marks late hypertension.


Assuntos
Pressão Sanguínea , Medula Óssea/inervação , Hipertensão/fisiopatologia , Inflamação/fisiopatologia , Neuroimunomodulação , Núcleo Hipotalâmico Paraventricular/fisiopatologia , Sistema Nervoso Simpático/fisiopatologia , Angiotensina II , Animais , Linfócitos T CD4-Positivos/imunologia , Linfócitos T CD4-Positivos/metabolismo , Modelos Animais de Doenças , Fêmur , Hipertensão/induzido quimicamente , Hipertensão/imunologia , Hipertensão/metabolismo , Inflamação/induzido quimicamente , Inflamação/imunologia , Inflamação/metabolismo , Masculino , Microglia/imunologia , Microglia/metabolismo , Núcleo Hipotalâmico Paraventricular/imunologia , Núcleo Hipotalâmico Paraventricular/metabolismo , Ratos Sprague-Dawley , Sistema Nervoso Simpático/imunologia , Sistema Nervoso Simpático/metabolismo , Fatores de Tempo
19.
Clin Auton Res ; 29(4): 457-467, 2019 08.
Artigo em Inglês | MEDLINE | ID: mdl-31104164

RESUMO

PURPOSE: Although autonomic features are part of the diagnostic criteria for complex regional pain syndrome (CRPS), the role of the autonomic nervous system in CRPS pathophysiology has been downplayed in recent years. The purpose of this review is to redress this imbalance. METHODS: We focus in this review on the contribution of the autonomic nervous system to CRPS pathophysiology. In particular, we discuss regional sympathetic and systemic autonomic disturbances in CRPS and the mechanisms which may underlie them, and consider links between these mechanisms, immune disturbances and pain. RESULTS: The focused literature research revealed that immune reactions, alterations in receptor populations (e.g., upregulation of adrenoceptors and reduced cutaneous nerve fiber density) and central changes in autonomic drive seem to contribute to regional and systemic disturbances in sympathetic activity and to sympathetically maintained pain in CRPS. CONCLUSIONS: We conclude that alterations in the sympathetic nervous system contribute to CRPS pathology. Understanding these alterations may be an important step towards providing appropriate treatments for CRPS.


Assuntos
Sistema Nervoso Autônomo/imunologia , Sistema Nervoso Autônomo/fisiopatologia , Síndromes da Dor Regional Complexa/imunologia , Síndromes da Dor Regional Complexa/fisiopatologia , Animais , Síndromes da Dor Regional Complexa/diagnóstico , Humanos , Pele/imunologia , Pele/inervação , Sistema Nervoso Simpático/imunologia , Sistema Nervoso Simpático/fisiopatologia
20.
Nat Commun ; 10(1): 633, 2019 02 07.
Artigo em Inglês | MEDLINE | ID: mdl-30733433

RESUMO

The bidirectional communication between the immune and nervous system is important in regulating immune responses. Here we show that the adrenergic nerves of sympathetic nervous system orchestrate inflammation resolution and regenerative programs by modulating repulsive guidance molecule A (RGM-A). In murine peritonitis, adrenergic nerves and RGM-A show bidirectional activation by stimulating the mutual expression and exhibit a higher potency for the cessation of neutrophil infiltration; this reduction is accompanied by increased pro-resolving monocyte or macrophage recruitment, polymorphonucleocyte clearance and specialized pro-resolving lipid mediators production at sites of injury. Chemical sympathectomy results in hyperinflammation and ineffective resolution in mice, while RGM-A treatments reverse these phenotypes. Signalling network analyses imply that RGM-A and ß2AR agonist regulate monocyte activation by suppressing NF-κB activity but activating RICTOR and PI3K/AKT signalling. Our results thus illustrate the function of sympathetic nervous system and RGM-A in regulating resolution and tissue repair in a murine acute peritonitis model.


Assuntos
Inflamação/imunologia , Inflamação/metabolismo , Proteínas do Tecido Nervoso/metabolismo , Sistema Nervoso Simpático/imunologia , Sistema Nervoso Simpático/metabolismo , Animais , Feminino , Proteínas Ligadas por GPI/genética , Proteínas Ligadas por GPI/metabolismo , Humanos , Macrófagos/imunologia , Macrófagos/metabolismo , Masculino , Camundongos , NF-kappa B/metabolismo , Proteínas do Tecido Nervoso/genética , Neutrófilos/imunologia , Neutrófilos/metabolismo , Peritonite/imunologia , Peritonite/metabolismo , Fosfatidilinositol 3-Quinases/metabolismo , Proteínas Proto-Oncogênicas c-akt/metabolismo
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