Group II innate lymphoid cells and microvascular dysfunction from pulmonary titanium dioxide nanoparticle exposure

journal article published in 2018

Group II innate lymphoid cells and microvascular dysfunction from pulmonary titanium dioxide nanoparticle exposure is …
instance of (P31):
scholarly articleQ13442814

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P6179Dimensions Publication ID1109798825
P356DOI10.1186/S12989-018-0280-2
P2888exact matchhttps://scigraph.springernature.com/pub.10.1186/s12989-018-0280-2
P2880NIOSHTIC-2 ID20053798
P932PMC publication ID6230229
P698PubMed publication ID30413212

P50authorW. Travis GoldsmithQ81798231
Sherri A. FriendQ106263443
P2093author name stringAlaeddin Bashir Abukabda
Carroll Rolland McBride
Elizabeth Compton Bowdridge
Krista Lee Garner
Thomas Paul Batchelor
Timothy Robert Nurkiewicz
P2860cites workNanoparticle inhalation impairs endothelium-dependent vasodilation in subepicardial arteriolesQ23909457
Impairment of coronary arteriolar endothelium-dependent dilation after multi-walled carbon nanotube inhalation: a time-course studyQ23919580
Pulmonary nanoparticle exposure disrupts systemic microvascular nitric oxide signalingQ23922830
Nanoparticle inhalation augments particle-dependent systemic microvascular dysfunctionQ23922832
IL-33, an interleukin-1-like cytokine that signals via the IL-1 receptor-related protein ST2 and induces T helper type 2-associated cytokinesQ24294720
Lymphoid tissue inducer-like cells are an innate source of IL-17 and IL-22Q24648620
The origin and role of innate lymphoid cells in the lungQ26740079
Inflammasome, IL-1 and inflammation in ozone-induced lung injuryQ26750611
Group 2 innate lymphoid cells in the lungQ27021302
Group 2 innate lymphoid cells and asthmaQ28080605
Endogenous IL-33 is highly expressed in mouse epithelial barrier tissues, lymphoid organs, brain, embryos, and inflamed tissues: in situ analysis using a novel Il-33-LacZ gene trap reporter strainQ28260796
Maternal engineered nanomaterial exposure and fetal microvascular function: does the Barker hypothesis apply?Q28387965
A carbon nanotube toxicity paradigm driven by mast cells and the IL-₃₃/ST₂ axisQ28388782
Multi-walled carbon nanotube instillation impairs pulmonary function in C57BL/6 miceQ28391783
Uterine microvascular sensitivity to nanomaterial inhalation: An in vivo assessmentQ28392163
Atomic layer deposition coating of carbon nanotubes with aluminum oxide alters pro-fibrogenic cytokine expression by human mononuclear phagocytes in vitro and reduces lung fibrosis in mice in vivoQ28394247
Innate Immune Responses to Nanoparticle Exposure in the LungQ28394494
Equivalent titanium dioxide nanoparticle deposition by intratracheal instillation and whole body inhalation: the effect of dose rate on acute respiratory tract inflammationQ28395053
Impacts of prenatal nanomaterial exposure on male adult Sprague-Dawley rat behavior and cognitionQ28396408
Intravenously delivered graphene nanosheets and multiwalled carbon nanotubes induce site-specific Th2 inflammatory responses via the IL-33/ST2 axisQ28397819
Innate lymphoid cells--a proposal for uniform nomenclatureQ29617431
Heterogeneous Vascular Bed Responses to Pulmonary Titanium Dioxide Nanoparticle Exposure.Q33720365
IL-33-responsive innate lymphoid cells are an important source of IL-13 in chronic rhinosinusitis with nasal polypsQ33738493
Airway exposure to multi-walled carbon nanotubes disrupts the female reproductive cycle without affecting pregnancy outcomes in mice.Q33742492
IL-33 mediates multi-walled carbon nanotube (MWCNT)-induced airway hyper-reactivity via the mobilization of innate helper cells in the lung.Q33841609
Innate signals compensate for the absence of PKC-{theta} during in vivo CD8(+) T cell effector and memory responsesQ34063599
The expanding family of innate lymphoid cells: regulators and effectors of immunity and tissue remodeling.Q34152180
The nanomaterial-dependent modulation of dendritic cells and its potential influence on therapeutic immunosuppression in lupusQ34180779
Induction of an inflammatory loop by interleukin-1β and tumor necrosis factor-α involves NF-kB and STAT-1 in differentiated human neuroprogenitor cellsQ34903095
Contribution of IL-33-activated type II innate lymphoid cells to pulmonary eosinophilia in intestinal nematode-infected miceQ35807590
Innate lymphoid cells promote lung-tissue homeostasis after infection with influenza virusQ35872309
Group 2 innate lymphoid cells mediate ozone-induced airway inflammation and hyperresponsiveness in miceQ36563818
IL-9-mediated survival of type 2 innate lymphoid cells promotes damage control in helminth-induced lung inflammationQ37397810
IL-25 and type 2 innate lymphoid cells induce pulmonary fibrosis.Q37474764
Negative regulation of NF-κB p65 activity by serine 536 phosphorylationQ37668699
Innate type 2 cells and asthmaQ38022971
Innate immune cells in asthmaQ38137544
New kids on the block: group 2 innate lymphoid cells and type 2 inflammation in the lungQ38159924
Innate lymphoid cells in asthma: when innate immunity comes in a Th2 flavorQ38169043
Isolation and characterization of mouse innate lymphoid cells.Q38235846
Type-2 innate lymphoid cells in asthma and allergyQ38294532
The biology of innate lymphoid cellsQ38319907
Innate lymphoid cells: the role in respiratory infections and lung tissue damageQ38622555
IL-33 Receptor (ST2) Signalling is Important for Regulation of Th2-Mediated Airway Inflammation in a Murine Model of Acute Respiratory Syncytial Virus InfectionQ38905619
The second touch hypothesis: T cell activation, homing and polarizationQ40055228
Isolation of Group 2 Innate Lymphoid Cells from Mouse LungsQ40082836
IL33-mediated ILC2 activation and neutrophil IL5 production in the lung response after severe trauma: A reverse translation study from a human cohort to a mouse trauma model.Q40120480
Alpha-macroglobulin secreted by alveolar macrophages serves as a binding protein for a macrophage-derived homologue of platelet-derived growth factor.Q41258565
SnapShot: innate lymphoid cellsQ44846377
Reactive oxygen species damage drives cardiac and mitochondrial dysfunction following acute nano-titanium dioxide inhalation exposureQ46240480
IL-33 promotes the egress of group 2 innate lymphoid cells from the bone marrow.Q47340483
Nanoparticle effect on neutrophil produced myeloperoxidase.Q49330389
Maternal engineered nanomaterial inhalation during gestation alters the fetal transcriptome.Q49421963
Distribution of lung cell numbers and volumes between alveolar and nonalveolar tissue.Q50791172
Prenatal exposure to carbon black (printex 90): effects on sexual development and neurofunction.Q51446734
Estrous cycle-dependent modulation of in vivo microvascular dysfunction after nanomaterial inhalation.Q55436946
Anti-IL-33 antibody treatment inhibits airway inflammation in a murine model of allergic asthmaQ84030123
Human IL-25- and IL-33-responsive type 2 innate lymphoid cells are defined by expression of CRTH2 and CD161Q84933191
The interleukin-33 receptor ST2 is important for the development of peripheral airway hyperresponsiveness and inflammation in a house dust mite mouse model of asthmaQ86813000
P6195funding schemeextramural researchQ124503498
P433issue1
P407language of work or nameEnglishQ1860
P921main subjecttitaniumQ716
lungQ7886
nanotechnologyQ11468
nanoparticleQ61231
toxinQ184651
titanium dioxideQ193521
toxicityQ274160
cardiovascular diseaseQ389735
reproductive healthQ1981388
health effectQ2574087
respiratory diseaseQ3286546
lung diseaseQ3392853
phlebotomyQ3595842
P5008on focus list of Wikimedia projectWikimedia–NIOSH collaborationQ104416361
P304page(s)43
P577publication date2018-11-09
P1433published inParticle and Fibre ToxicologyQ15724404
P859sponsorNIOSH Health Effects Laboratory DivisionQ123344455
P1476titleGroup II innate lymphoid cells and microvascular dysfunction from pulmonary titanium dioxide nanoparticle exposure
Group II innate lymphoid cells and microvascular dysfunction from pulmonary titanium dioxide nanoparticle exposure.
P478volume15

Reverse relations

cites work (P2860)
Q77792113Maternal engineered nanomaterial inhalation during gestation disrupts vascular kisspeptin reactivity
Q64097954Particle toxicology and health - where are we?
Q64882984ROS promote epigenetic remodeling and cardiac dysfunction in offspring following maternal engineered nanomaterial (ENM) exposure.
Q97546356Recent insights on indirect mechanisms in developmental toxicity of nanomaterials

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