Vagal sensory neuron-derived FGF3 controls insulin secretion

被引:0
|
作者
Tahiri, Azeddine [1 ]
Youssef, Ayman [2 ]
Inoue, Ryota [3 ]
Moon, Sohyun [4 ]
Alsarkhi, Lamyaa [1 ]
Berroug, Laila [1 ]
Nguyen, Xuan Thi Anh [5 ]
Wang, Le [5 ]
Kwon, Hyokjoon [5 ]
Pang, Zhiping P. [5 ]
Zhao, Jerry Yingtao [4 ]
Shirakawa, Jun [3 ]
Ulloa, Luis [2 ]
El Ouaamari, Abdelfattah [1 ,6 ]
机构
[1] New York Med Coll, Dept Cell Biol & Anat, Valhalla, NY 01595 USA
[2] Duke Univ, Ctr Perioperat Organ Protect, Dept Anesthesiol, Durham, NC 27710 USA
[3] Gunma Univ, Inst Mol & Cellular Regulat IMCR, Lab Diabet & Metab Disorders, Maebashi, Japan
[4] New York Inst Technol, Coll Osteopath Med, Dept Biomed Sci, Old Westbury, NY 11568 USA
[5] Rutgers State Univ, Child Hlth Inst New Jersey, Robert Wood Johnson Med Sch, New Brunswick, NJ 08901 USA
[6] New York Med Coll, Dept Pharmacol, Valhalla, NY 10595 USA
关键词
VAGUS NERVE; AFFERENT NEURONS; RAT; INFLAMMATION; EXPRESSION; IDENTIFICATION; INNERVATION; RECEPTORS; NUCLEUS; TYPE-1;
D O I
10.1016/j.devcel.2024.09.016
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Vagal nerve stimulation has emerged as a promising modality for treating a wide range of chronic conditions, including metabolic disorders. However, the cellular and molecular pathways driving these clinical benefits remain largely obscure. Here, we demonstrate that fibroblast growth factor 3 (Fgf3) mRNA is upregulated in the mouse vagal ganglia under acute metabolic stress. Systemic and vagal sensory overexpression of Fgf3 enhanced glucose-stimulated insulin secretion (GSIS), improved glucose excursion, and increased energy expenditure and physical activity. Fgf3-elicited insulinotropic and glucose-lowering responses were recapitulated when overexpression of Fgf3 was restricted to the pancreas-projecting vagal sensory neurons. Genetic ablation of Fgf3 in pancreatic vagal afferents exacerbated high-fat diet-induced glucose intolerance and blunted GSIS. Finally, electrostimulation of the vagal afferents enhanced GSIS and glucose clearance independently of efferent outputs. Collectively, we demonstrate a direct role for the vagal afferent signaling in GSIS and identify Fgf3 as a vagal sensory-derived metabolic factor that controls pancreatic b-cell activity.
引用
收藏
页数:16
相关论文
共 50 条
  • [41] Neuron-derived exosomes-transmitted miR-124-3p protect traumatically injured spinal cord by suppressing the activation of neurotoxic microglia and astrocytes
    Dongdong Jiang
    Fangyi Gong
    Xuhui Ge
    Chengtang Lv
    Chenyu Huang
    Shuang Feng
    Zheng Zhou
    Yuluo Rong
    Jiaxing Wang
    Chengyue Ji
    Jian Chen
    Wene Zhao
    Jin Fan
    Wei Liu
    Weihua Cai
    Journal of Nanobiotechnology, 18
  • [42] Glycerol-3-phosphate phosphatase operates a glycerol shunt in pancreatic β-cells that controls insulin secretion and metabolic stress
    Al-Mass, Anfal
    Pourshari, Pegah
    Peyot, Marie-Line
    Lussier, Roxane
    Levens, Emily J.
    Guida, Julian
    Mugabo, Yves
    Possik, Elite
    Ahmad, Rasheed
    Al-Mulla, Fahd
    Sladek, Robert
    Madiraju, S. R. Murthy
    Prentki, Marc
    MOLECULAR METABOLISM, 2022, 60
  • [43] 3D bioprinted human iPSC-derived somatosensory constructs with functional and highly purified sensory neuron networks
    Hirano, Minoru
    Huang, Yike
    Vela Jarquin, Daniel
    De la Garza Hernandez, Rosakaren Ludivina
    Jodat, Yasamin A.
    Luna Ceron, Eder
    Garcia-Rivera, Luis Enrique
    Shin, Su Ryon
    BIOFABRICATION, 2021, 13 (03)
  • [44] Vagal neuron expression of the microbiota-derived metabolite receptor, free fatty acid receptor (FFAR3), is necessary for normal feeding behavior
    Cook, Tyler M.
    Gavini, Chaitanya K.
    Jesse, Jason
    Aubert, Gregory
    Gornick, Emily
    Bonomo, Raiza
    Gautron, Laurent
    Layden, Brian T.
    Mansuy-Aubert, Virginie
    MOLECULAR METABOLISM, 2021, 54
  • [45] Severe peripheral sensory neuron loss and modest motor neuron reduction in mice with combined deficiency of brain-derived neurotrophic factor, neurotrophin 3 and neurotrophin 4/5
    Liu, X
    Jaenisch, R
    DEVELOPMENTAL DYNAMICS, 2000, 218 (01) : 94 - 101
  • [46] RETRACTED: Cortical Neuron-Derived Exosomal MicroRNA-181c-3p Inhibits Neuroinflammation by Downregulating CXCL1 in Astrocytes of a Rat Model with Ischemic Brain Injury (Retracted Article)
    Song, He
    Zhang, Xiangjian
    Chen, Rong
    Miao, Jiangyong
    Wang, Lina
    Cui, Lili
    Ji, Hui
    Liu, Ying
    NEUROIMMUNOMODULATION, 2019, 26 (05) : 217 - 233
  • [47] Comparison of insulin secretion by transduced adipose-derived and endometrial-derived stem cells in 2D and 3D cultures on fibrin scaffold
    Karimi, Roya
    Barabadi, Zahra
    Larijani, Bagher
    Tavoosidana, Gholamreza
    Lotfibakhshaiesh, Nasrin
    Absalan, Moloud
    Jabbarpour, Zahra
    Ostad, Seyed Naser
    Ai, Jafar
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2021, 109 (06) : 1036 - 1044
  • [48] Foxa2 (HNF3β) controls multiple genes implicated in metabolism-secretion coupling of glucose-induced insulin release
    Wang, HY
    Gauthier, BR
    Hagenfeldt-Johansson, KA
    Iezzi, M
    Wollheim, CB
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (20) : 17564 - 17570
  • [49] Targeted Disruption of Pancreatic Derived Factor (PANDER, FAM3B) Impairs Glucose Tolerance, Insulin Secretion, and Heptaic Glucose Production
    Burkhardt, Brant R.
    Carnegie, Jason R.
    Cooperman, Claudia E.
    Young, Robert A.
    Wu, Jianmei
    Wolf, Bryan A.
    DIABETES, 2009, 58 : A41 - A41
  • [50] RETRACTION: Cortical Neuron-Derived Exosomal MicroRNA-181c-3p Inhibits Neuroinflammation by Downregulating CXCL1 in Astrocytes of a Rat Model with Ischemic Brain Injury (Retraction of Vol 26, Pg 217, 2019)
    Song, He
    Zhang, Xiangjian
    Chen, Rong
    Miao, Jiangyong
    Wang, Lina
    Cui, Lili
    Ji, Hui
    Liu, Ying
    NEUROIMMUNOMODULATION, 2023, 30 (01) : 184 - 184