Patient-derived small intestinal myofibroblasts direct perfused, physiologically responsive capillary development in a microfluidic Gut-on-a-Chip Model

被引:0
|
作者
Kristen M. Seiler
Adam Bajinting
David M. Alvarado
Mahama A. Traore
Michael M. Binkley
William H. Goo
Wyatt E. Lanik
Jocelyn Ou
Usama Ismail
Micah Iticovici
Cristi R. King
Kelli L. VanDussen
Elzbieta A. Swietlicki
Vered Gazit
Jun Guo
Cliff J. Luke
Thaddeus Stappenbeck
Matthew A. Ciorba
Steven C. George
J. Mark Meacham
Deborah C. Rubin
Misty Good
Brad W. Warner
机构
[1] Division of Pediatric Surgery,
[2] Department of Surgery,undefined
[3] Washington University School of Medicine,undefined
[4] Saint Louis University School of Medicine,undefined
[5] Division of Gastroenterology and the Inflammatory Bowel Diseases Center,undefined
[6] Department of Internal Medicine,undefined
[7] Washington University School of Medicine,undefined
[8] Department of Biomedical Engineering,undefined
[9] Washington University,undefined
[10] Department of Mechanical Engineering & Materials Science,undefined
[11] Washington University McKelvey School of Engineering,undefined
[12] Washington University,undefined
[13] Division of Newborn Medicine,undefined
[14] Department of Pediatrics,undefined
[15] Washington University School of Medicine,undefined
[16] Division of Pediatric Gastroenterology,undefined
[17] Hepatology,undefined
[18] and Nutrition,undefined
[19] Department of Pediatrics,undefined
[20] Cincinnati Children’s Hospital Medical Center and the University of Cincinnati College of Medicine,undefined
[21] Department of Pathology & Immunology,undefined
[22] Washington University School of Medicine,undefined
[23] Department of Biomedical Engineering,undefined
[24] University of California,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The development and physiologic role of small intestine (SI) vasculature is poorly studied. This is partly due to a lack of targetable, organ-specific markers for in vivo studies of two critical tissue components: endothelium and stroma. This challenge is exacerbated by limitations of traditional cell culture techniques, which fail to recapitulate mechanobiologic stimuli known to affect vessel development. Here, we construct and characterize a 3D in vitro microfluidic model that supports the growth of patient-derived intestinal subepithelial myofibroblasts (ISEMFs) and endothelial cells (ECs) into perfused capillary networks. We report how ISEMF and EC-derived vasculature responds to physiologic parameters such as oxygen tension, cell density, growth factors, and pharmacotherapy with an antineoplastic agent (Erlotinib). Finally, we demonstrate effects of ISEMF and EC co-culture on patient-derived human intestinal epithelial cells (HIECs), and incorporate perfused vasculature into a gut-on-a-chip (GOC) model that includes HIECs. Overall, we demonstrate that ISEMFs possess angiogenic properties as evidenced by their ability to reliably, reproducibly, and quantifiably facilitate development of perfused vasculature in a microfluidic system. We furthermore demonstrate the feasibility of including perfused vasculature, including ISEMFs, as critical components of a novel, patient-derived, GOC system with translational relevance as a platform for precision and personalized medicine research.
引用
收藏
相关论文
共 5 条
  • [1] Patient-derived small intestinal myofibroblasts direct perfused, physiologically responsive capillary development in a microfluidic Gut-on-a-Chip Model
    Seiler, Kristen M.
    Bajinting, Adam
    Alvarado, David M.
    Traore, Mahama A.
    Binkley, Michael M.
    Goo, William H.
    Lanik, Wyatt E.
    Ou, Jocelyn
    Ismail, Usama
    Iticovici, Micah
    King, Cristi R.
    VanDussen, Kelli L.
    Swietlicki, Elzbieta A.
    Gazit, Vered
    Guo, Jun
    Luke, Cliff J.
    Stappenbeck, Thaddeus
    Ciorba, Matthew A.
    George, Steven C.
    Meacham, J. Mark
    Rubin, Deborah C.
    Good, Misty
    Warner, Brad W.
    SCIENTIFIC REPORTS, 2020, 10 (01)
  • [2] DEVELOPMENT OF PATIENT-DERIVED "SMALL INTESTINE-ON-A-CHIP" MICROFLUIDIC DEVICES
    Seiler, Kristen
    Binkley, Michael
    Alvarado, David M.
    Iticovici, Micah
    Goo, William
    VanDussen, Kelli L.
    Stappenbeck, Thaddeus
    Rubin, Deborah C.
    George, Steven
    Ciorba, Matthew A.
    Meacham, Mark
    Warner, Brad W.
    GASTROENTEROLOGY, 2018, 154 (06) : S917 - S917
  • [3] Microfluidic chip for drug response studies in non-small cell lung carcinoma patient-derived organoids
    Luan, Qiyue
    Pulido, Ines
    Isagirre, Angelique
    Zhou, Jian
    Shimamura, Takeshi
    Papautsky, Ian
    CANCER RESEARCH, 2024, 84 (06)
  • [4] Activity of gemcitabine in direct patient-derived xenografts and clinical outcome: Validation of an in vivo model for drug development
    Hidalgo, M.
    Garrido-Laguna, I.
    Uson, M.
    De Oliveira, E.
    Schulick, R.
    Hruban, R. H.
    Maitra, A.
    Jimeno, A.
    Rubio-Viqueira, B.
    Rajeshkumar, N. V.
    JOURNAL OF CLINICAL ONCOLOGY, 2009, 27 (15)
  • [5] Direct Implantation of Patient Brain Tumor Cells into Matching Locations in Mouse Brains for Patient-Derived Orthotopic Xenograft Model Development
    Qi, Lin
    Baxter, Patricia
    Kogiso, Mari
    Zhang, Huiyuan
    Braun, Frank K.
    Lindsay, Holly
    Zhao, Sibo
    Xiao, Sophie
    Abdallah, Aalaa Sanad
    Suarez, Milagros
    Huang, Zilu
    Teo, Wan Yee
    Yu, Litian
    Zhao, Xiumei
    Liu, Zhigang
    Huang, Yulun
    Su, Jack M.
    Man, Tsz-Kwong
    Lau, Ching C.
    Perlaky, Laszlo
    Du, Yuchen
    Li, Xiao-Nan
    CANCERS, 2024, 16 (09)