Sonic Hedgehog acts as a macrophage chemoattractant during regeneration of the gastric epithelium

被引:12
|
作者
Chakrabarti, Jayati [1 ]
Dua-Awereh, Martha [2 ]
Schumacher, Michael [3 ]
Engevik, Amy [4 ]
Hawkins, Jennifer [5 ]
Helmrath, Michael A. [5 ]
Zavros, Yana [1 ]
机构
[1] Univ Arizona, Coll Med, Dept Cellular & Mol Med, Tucson, AZ 85721 USA
[2] Univ Cincinnati, Dept Pharmacol & Syst Physiol, Cincinnati, OH USA
[3] Childrens Hosp Los Angeles, Div Gastroenterol, Los Angeles, CA 90027 USA
[4] Med Univ South Carolina, Dept Regenerat Med & Cell Biol, Charleston, SC 29425 USA
[5] Cincinnati Childrens Hosp Med Ctr, Dept Pediat Surg, Cincinnati, OH 45229 USA
基金
美国国家卫生研究院;
关键词
GENE-EXPRESSION; PARIETAL-CELLS; ACTIVATION; METAPLASIA; STOMACH; INJURY; ATPASE; REPAIR;
D O I
10.1038/s41536-021-00196-2
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Sonic Hedgehog (Shh), secreted from gastric parietal cells, contributes to the regeneration of the epithelium. The recruitment of macrophages plays a central role in the regenerative process. The mechanism that regulates macrophage recruitment in response to gastric injury is largely unknown. Here we tested the hypothesis that Shh stimulates macrophage chemotaxis to the injured epithelium and contributes to gastric regeneration. A mouse model expressing a myeloid cell-specific deletion of Smoothened (LysMcre/+;Smof/f) was generated using transgenic mice bearing loxP sites flanking the Smo gene (Smo loxP) and mice expressing a Cre recombinase transgene from the Lysozyme M locus (LysMCre). Acetic add injury was induced in the stomachs of both control and LysMcre/+;Smof/f (SmoKO) mice and gastric epithelial regeneration and macrophage recruitment analyzed over a period of 7 days post-injury. Bone marrow-derived macrophages (BM-Mm) were collected from control and SmoKO mice. Human-derived gastric organoid/macrophage co-cultures were established, and macrophage chemotaxis measured. Compared to control mice, SmoKO animals exhibited inhibition of ulcer repair and normal epithelial regeneration, which correlated with decreased macrophage infiltration at the site of injury. Bone marrow chimera experiments using SmoKO donor cells showed that control chimera mice transplanted with SmoKO bone marrow donor cells exhibited a loss of ulcer repair, and transplantation of control bone marrow donor cells to SmoKO mice rescued epithelial cell regeneration. Histamine-stimulated Shh secretion in human organoid/macrophage co-cultures resulted in macrophage migration toward the gastric epithelium, a response that was blocked with Smo inhibitor Vismodegib. Shh-induced macrophage migration was mediated by AKT signaling. In conclusion, Shh signaling acts as a macrophage chemoattractant via a Smo-dependent mechanism during gastric epithelial regeneration in response to injury.
引用
收藏
页数:16
相关论文
共 50 条
  • [41] Sonic Hedgehog Signaling Pathway Supports Cancer Cell Growth during Cancer Radiotherapy
    Ma, Jingjing
    Tian, Ling
    Cheng, Jin
    Chen, Zhiwei
    Xu, Bing
    Wang, Liwei
    Li, Chuanyuan
    Huang, Qian
    PLOS ONE, 2013, 8 (06):
  • [42] Interaction between hedgehog signalling and PAX6 dosage mediates maintenance and regeneration of the corneal epithelium
    Kucerova, Romana
    Dora, Natalie
    Mort, Richard L.
    Wallace, Karen
    Leiper, Lucy J.
    Lowes, Christina
    Neves, Carlos
    Walczysko, Petr
    Bruce, Freyja
    Fowler, Paul A.
    Rajnicek, Ann M.
    McCaig, Colin D.
    Zhao, Min
    West, John D.
    Collinson, J. Martin
    MOLECULAR VISION, 2012, 18 (15-18): : 139 - 150
  • [43] BMP signaling and cellular dynamics during regeneration of airway epithelium from basal progenitors
    Tadokoro, Tomomi
    Gao, Xia
    Hong, Charles C.
    Hotten, Danielle
    Hogan, Brigid L. M.
    DEVELOPMENT, 2016, 143 (05): : 764 - 773
  • [44] Rebamipide-Promoted Restoration of Gastric Mucosal Sonic Hedgehog Expression after Early Helicobacter Pylori Eradication
    Nishizawa, Toshihiro
    Suzuki, Hidekazu
    Nakagawa, Izumi
    Minegishi, Yuriko
    Masaoka, Tatsuhiro
    Iwasaki, Eisuke
    Hibi, Toshifumi
    DIGESTION, 2009, 79 (04) : 259 - 262
  • [45] Immunohistochemical Characterization of Sonic Hedgehog and its Downstream Signaling Molecules During Human Penile Development
    Shehata, Bahig M.
    Elmore, James M.
    Bootwala, Yasmin
    Steelman, Charlotte K.
    Bare, Jessica B.
    Shoffeitt, Carla J.
    Wang, Ruoxiang
    Zhau, Haiyen E.
    He, Dalin
    Zhu, Guodong
    Chung, Leland W.
    FETAL AND PEDIATRIC PATHOLOGY, 2011, 30 (04) : 244 - 251
  • [46] Peptide amphiphile nanofiber hydrogel delivery of sonic hedgehog protein to the cavernous nerve to promote regeneration and prevent erectile dysfunction
    Choe, Shawn
    Bond, Christopher W.
    Harrington, Daniel A.
    Stupp, Samuel I.
    McVary, Kevin T.
    Podlasek, Carol A.
    NANOMEDICINE-NANOTECHNOLOGY BIOLOGY AND MEDICINE, 2017, 13 (01) : 95 - 101
  • [47] Platelet-derived growth factor-A and sonic hedgehog signaling direct lung fibroblast precursors during alveolar septal formation
    McGowan, Stephen E.
    McCoy, Diann M.
    AMERICAN JOURNAL OF PHYSIOLOGY-LUNG CELLULAR AND MOLECULAR PHYSIOLOGY, 2013, 305 (03) : 1229 - 1239
  • [48] CDX1/2 and KLF5 Expression and Epigenetic Modulation of Sonic Hedgehog Signaling in Gastric Adenocarcinoma
    Samadani, Ali Akbar
    Nikbakhsh, Novin
    Taheri, Hassan
    Shafaee, Shahriyar
    Fattahi, Sadegh
    Langroudi, Maryam Pilehchian
    Hajian, Karimollah
    Akhavan-Niaki, Haleh
    PATHOLOGY & ONCOLOGY RESEARCH, 2019, 25 (03) : 1215 - 1222
  • [49] Apaf1 apoptotic function critically limits Sonic hedgehog signaling during craniofacial development
    Long, A. B.
    Kaiser, W. J.
    Mocarski, E. S.
    Caspary, T.
    CELL DEATH AND DIFFERENTIATION, 2013, 20 (11) : 1510 - 1520
  • [50] AMPKα1 Regulates Macrophage Skewing at the Time of Resolution of Inflammation during Skeletal Muscle Regeneration
    Mounier, Remi
    Theret, Marine
    Arnold, Ludovic
    Cuvellier, Sylvain
    Bultot, Laurent
    Goeransson, Olga
    Sanz, Nieves
    Ferry, Arnaud
    Sakamoto, Kei
    Foretz, Marc
    Viollet, Benoit
    Chazaud, Benedicte
    CELL METABOLISM, 2013, 18 (02) : 251 - 264