Slit3 secreted from M2-like macrophages increases sympathetic activity and thermogenesis in adipose tissue
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Q. Tang | S. Qian | Hong Ma | Yan Tang | Yang Liu | Yi-Na Wang | Dongning Pan | Cuiqing Zhu | Linyuan Wang | Zhihui He | Qiqi Yang | Qi-qi Yang
[1] T. Tsou,et al. Phthalate exposure causes browning-like effects on adipocytes in vitro and in vivo. , 2020, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[2] S. B. Peres,et al. Resistance exercise training induces subcutaneous and visceral adipose tissue browning in Swiss mice. , 2020, Journal of applied physiology.
[3] K. Moore,et al. Leukocyte Heterogeneity in Adipose Tissue, Including in Obesity. , 2020, Circulation research.
[4] S. Woods,et al. The scaffold protein p62 regulates adaptive thermogenesis through ATF2 nuclear target activation , 2020, Nature Communications.
[5] A. Chawla,et al. BCL6 regulates brown adipocyte dormancy to maintain thermogenic reserve and fitness , 2019, Proceedings of the National Academy of Sciences.
[6] P. Dickson,et al. Tyrosine hydroxylase phosphorylation in vivo , 2019, Journal of neurochemistry.
[7] B. Xue,et al. Sympathetic nerve innervation is required for beigeing in white fat , 2019, Physiological reports.
[8] A. Lloyd,et al. Macrophage-Derived Slit3 Controls Cell Migration and Axon Pathfinding in the Peripheral Nerve Bridge , 2019, Cell reports.
[9] B. Spiegelman,et al. New Advances in Adaptive Thermogenesis: UCP1 and Beyond. , 2019, Cell metabolism.
[10] S. Ryu,et al. Osteoclast-secreted SLIT3 coordinates bone resorption and formation , 2018, The Journal of clinical investigation.
[11] Marc Tessier-Lavigne,et al. Three-Dimensional Adipose Tissue Imaging Reveals Regional Variation in Beige Fat Biogenesis and PRDM16-Dependent Sympathetic Neurite Density. , 2018, Cell metabolism.
[12] M. Jeschke,et al. Taming the Flames: Targeting White Adipose Tissue Browning in Hypermetabolic Conditions , 2017, Endocrine reviews.
[13] W. Zeng,et al. Dense Intra-adipose Sympathetic Arborizations Are Essential for Cold-Induced Beiging of Mouse White Adipose Tissue. , 2017, Cell metabolism.
[14] A. Xu,et al. The FGF21-CCL11 Axis Mediates Beiging of White Adipose Tissues by Coupling Sympathetic Nervous System to Type 2 Immunity. , 2017, Cell metabolism.
[15] K. Schramm,et al. Alternatively activated macrophages do not synthesize catecholamines or contribute to adipose tissue adaptive thermogenesis , 2017, Nature Medicine.
[16] Xian Wang,et al. Adrenomedullin 2 Enhances Beiging in White Adipose Tissue Directly in an Adipocyte-autonomous Manner and Indirectly through Activation of M2 Macrophages* , 2016, The Journal of Biological Chemistry.
[17] P. Seale,et al. Control of brown and beige fat development , 2016, Nature Reviews Molecular Cell Biology.
[18] Junyan Hu,et al. Temperature induced modulation of lipid oxidation and lipid accumulation in palmitate-mediated 3T3-L1 adipocytes and 3T3-L1 adipocytes. , 2016, Journal of thermal biology.
[19] T. Kawada,et al. Macrophage infiltration into obese adipose tissues suppresses the induction of UCP1 level in mice. , 2016, American journal of physiology. Endocrinology and metabolism.
[20] Andrew J. Young,et al. Human physiological responses to cold exposure: Acute responses and acclimatization to prolonged exposure , 2016, Autonomic Neuroscience.
[21] B. Spiegelman,et al. A Secreted Slit2 Fragment Regulates Adipose Tissue Thermogenesis and Metabolic Function. , 2016, Cell metabolism.
[22] Ana I. Domingos,et al. Sympathetic Neuro-adipose Connections Mediate Leptin-Driven Lipolysis , 2015, Cell.
[23] A. Xu,et al. Adiponectin Enhances Cold-Induced Browning of Subcutaneous Adipose Tissue via Promoting M2 Macrophage Proliferation. , 2015, Cell metabolism.
[24] R. Locksley,et al. Activated Type 2 Innate Lymphoid Cells Regulate Beige Fat Biogenesis , 2015, Cell.
[25] Jonathan R. Brestoff,et al. Group 2 innate lymphoid cells promote beiging of white adipose tissue and limit obesity , 2014, Nature.
[26] D. Gozal,et al. Metabolic dysfunction drives a mechanistically distinct proinflammatory phenotype in adipose tissue macrophages. , 2014, Cell metabolism.
[27] B. Spiegelman,et al. Meteorin-like Is a Hormone that Regulates Immune-Adipose Interactions to Increase Beige Fat Thermogenesis , 2014, Cell.
[28] Antonio Vidal-Puig,et al. The different shades of fat , 2014, Nature.
[29] L. Partridge,et al. Interleukin-6 signaling promotes alternative macrophage activation to limit obesity-associated insulin resistance and endotoxemia , 2016 .
[30] M. E. Ràfols,et al. Adipose tissue: cell heterogeneity and functional diversity. , 2014, Endocrinologia y nutricion : organo de la Sociedad Espanola de Endocrinologia y Nutricion.
[31] B. Spiegelman,et al. Fat cells directly sense temperature to activate thermogenesis , 2013, Proceedings of the National Academy of Sciences.
[32] S. Safe,et al. Investigation of macrophage polarization using bone marrow derived macrophages. , 2013, Journal of visualized experiments : JoVE.
[33] R. Yu,et al. Inflammation induced by RAW macrophages suppresses UCP1 mRNA induction via ERK activation in 10T1/2 adipocytes. , 2013, American journal of physiology. Cell physiology.
[34] R. Locksley,et al. Innate lymphoid type 2 cells sustain visceral adipose tissue eosinophils and alternatively activated macrophages , 2013, The Journal of experimental medicine.
[35] Wei Jia,et al. BMP4-mediated brown fat-like changes in white adipose tissue alter glucose and energy homeostasis , 2013, Proceedings of the National Academy of Sciences.
[36] B. Spiegelman,et al. Beige Adipocytes Are a Distinct Type of Thermogenic Fat Cell in Mouse and Human , 2012, Cell.
[37] R. Locksley,et al. Alternatively activated macrophages produce catecholamines to sustain adaptive thermogenesis , 2011, Nature.
[38] S. Enerbäck. Human brown adipose tissue. , 2010, Cell metabolism.
[39] Jan Nedergaard,et al. Chronic Peroxisome Proliferator-activated Receptor γ (PPARγ) Activation of Epididymally Derived White Adipocyte Cultures Reveals a Population of Thermogenically Competent, UCP1-containing Adipocytes Molecularly Distinct from Classic Brown Adipocytes* , 2009, The Journal of Biological Chemistry.
[40] W. D. van Marken Lichtenbelt,et al. Cold-activated brown adipose tissue in healthy men. , 2009, The New England journal of medicine.
[41] Mark D. Robinson,et al. edgeR: a Bioconductor package for differential expression analysis of digital gene expression data , 2009, Bioinform..
[42] Chih-Hao Lee,et al. Adipocyte-derived Th2 cytokines and myeloid PPARdelta regulate macrophage polarization and insulin sensitivity. , 2008, Cell metabolism.
[43] Vidya Subramanian,et al. Alternative M2 activation of Kupffer cells by PPARdelta ameliorates obesity-induced insulin resistance. , 2008, Cell metabolism.
[44] T. Bengtsson,et al. Unexpected evidence for active brown adipose tissue in adult humans. , 2007, American journal of physiology. Endocrinology and metabolism.
[45] B. Xue,et al. Genetic variability affects the development of brown adipocytes in white fat but not in interscapular brown fats⃞ Published, JLR Papers in Press, October 14, 2006. , 2007, Journal of Lipid Research.
[46] J. Boulant. Neuronal basis of Hammel's model for set-point thermoregulation. , 2006, Journal of applied physiology.
[47] R. R. Bowers,et al. Sympathetic denervation does not prevent a reduction in fat pad size of rats or mice treated with peripherally administered leptin. , 2005, American journal of physiology. Regulatory, integrative and comparative physiology.
[48] R. Bergman,et al. Burst-like control of lipolysis by the sympathetic nervous system in vivo. , 2003, The Journal of clinical investigation.
[49] D. Sretavan,et al. GAP-43 mediates retinal axon interaction with lateral diencephalon cells during optic tract formation. , 2000, Development.
[50] M. Pittenger,et al. Multilineage potential of adult human mesenchymal stem cells. , 1999, Science.
[51] Y. Rao,et al. Vertebrate Slit, a Secreted Ligand for the Transmembrane Protein Roundabout, Is a Repellent for Olfactory Bulb Axons , 1999, Cell.
[52] C. Goodman,et al. Slit Proteins Bind Robo Receptors and Have an Evolutionarily Conserved Role in Repulsive Axon Guidance , 1999, Cell.
[53] T. Bartness,et al. Central nervous system origins of the sympathetic nervous system outflow to white adipose tissue. , 1998, American journal of physiology. Regulatory, integrative and comparative physiology.
[54] M. Fishman,et al. Neuronal pathfinding is abnormal in mice lacking the neuronal growth cone protein GAP-43 , 1995, Cell.
[55] J. Himms-Hagen,et al. Control of norepinephrine turnover in brown adipose tissue of Syrian hamsters. , 1988, The American journal of physiology.
[56] T. A. Link,et al. The uncoupling protein from brown fat mitochondria is related to the mitochondrial ADP/ATP carrier. Analysis of sequence homologies and of folding of the protein in the membrane. , 1985, The EMBO journal.
[57] P. Cohen,et al. Phosphorylation of tyrosine hydroxylase by calmodulin-dependent multiprotein kinase. , 1984, The Journal of biological chemistry.
[58] J. Himms-Hagen,et al. Cold-stimulated sympathetic activity in brown adipose tissue of obese (ob/ob) mice. , 1983, The American journal of physiology.
[59] Q. Tang,et al. BMP4 facilitates beige fat biogenesis via regulating adipose tissue macrophages , 2019, Journal of molecular cell biology.
[60] Jerrold M. Olefsky,et al. Regulation of metabolism by the innate immune system , 2016, Nature Reviews Endocrinology.
[61] S. Seno,et al. Proinflammatory cytokine interleukin-1β suppresses cold-induced thermogenesis in adipocytes. , 2016, Cytokine.
[62] Jan Nedergaard,et al. Brown adipose tissue: function and physiological significance. , 2004, Physiological reviews.