Melt-electrowriting of 3D anatomically relevant scaffolds to recreate a pancreatic acinar unit in vitro

被引:2
|
作者
Sgarminato, Viola [1 ,2 ,3 ]
Licciardello, Michela [1 ,2 ,3 ]
Ciardelli, Gianluca [1 ,2 ,3 ,4 ]
Tonda-Turo, Chiara [1 ,2 ,3 ]
机构
[1] Politecn Torino, Dept Mech & Aerosp Engn, Turin, Italy
[2] Politecn Torino, POLITO BIOMedLAB, Turin, Italy
[3] Interuniv Ctr Promot 3Rs Principles Teaching & Res, Pisa, Italy
[4] CNR, Inst Chem & Phys Proc, CNR, IPCF, Pisa, Italy
关键词
Melt-electrowriting; Exocrine pancreas; In vitro models; 3D scaffolds; Pancreatic ductal adenocarcinoma; TUMOR MICROENVIRONMENT; INTERLEUKIN-6; IL-6; CANCER; FIBROBLASTS; SECRETION; CYTOKINES; RECEPTOR; STROMA; CELLS;
D O I
10.36922/ijb.1975
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Melt-electrowriting (MEW) belongs to the group of advanced additive manufacturing techniques and consists of computer -aided design (CAD) -assisted polymer extrusion combined with a high -voltage supply to achieve deposition of polymeric fibers with diameters in the micrometric range (1 to 20 mu m) similar to the size of natural extracellular matrix fibers. In this work, we exploit MEW to design and fabricate a three-dimensional (3D) model that resembles the morphology of the exocrine pancreatic functional unit without the need of supports, mandrels, or sacrificial materials. Optimized process parameters resulted in a MEW scaffold having regular fibers (19 +/- 5 mu m size) and an acinar cavity showing high shape fidelity. Then, human foreskin fibroblasts (HFF1) and human pancreatic ductal epithelial cells (HPDE), wildtype HPDE, and HPDE overexpressing KRAS oncogene were allowed to colonize the entire 3D structure and the acinar cavity. Thus, a physiologically relevant 3D model was created in vitro after 24 days using a co -culture protocol (14 days of HFF1 alone plus 10 days of HPDE and HFF1 co -culture). The effect of cell crosstalk within the MEW scaffolds was also assessed by monitoring HFF1 secretion of interleukin (IL) -6, a pro -inflammatory cytokine responsible for the inflammatory cascade occurring in pancreatic cancer. High levels of IL -6 were detected only when fibroblasts were cocultured with the HPDE overexpressing KRAS . These findings confirmed that the MEW 3D in vitro model is able to recreate the characteristic hallmark of the pathological condition where cancer oncogenes mediate fibroblast activities.
引用
收藏
页码:413 / 430
页数:18
相关论文
共 50 条
  • [31] Evaluating the Impact of Physiologically Relevant Oxygen Tensions on Drug Metabolism in 3D Hepatocyte Cultures in Paper Scaffolds
    Sitte, Zachary R.
    DiProspero, Thomas J.
    Lockett, Matthew R.
    CURRENT PROTOCOLS, 2023, 3 (02):
  • [32] Osteosarcoma tumor microenvironment: the key for the successful development of biologically relevant 3D in vitro models
    Rodrigues, Joao
    Sarmento, Bruno
    Pereira, Catarina Leite
    IN VITRO MODELS, 2022, 1 (01): : 5 - 27
  • [33] In vitro evaluation of 3D bioprinted tri-polymer network scaffolds for bone tissue regeneration
    Bendtsen, Stephanie T.
    Wei, Mei
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2017, 105 (12) : 3262 - 3272
  • [34] In vitro cultivation of biopsy derived primary hepatocytes leads to a more metabolic genotype in perfused 3D scaffolds than static 3D cell culture
    Fernekorn, Uta
    Hampl, Joerg
    Augspurger, Caroline
    Hildmann, Christian
    Weise, Frank
    Klett, Maren
    Laeffert, Annette
    Gebinoga, Michael
    Williamson, Adam
    Schober, Andreas
    RSC ADVANCES, 2013, 3 (37): : 16558 - 16568
  • [35] Re-cellularised human pancreas 3D scaffolds as a novel disease model of pancreatic neuroendocrine tumors (pNETs)
    Ney, A.
    Sedlak, E.
    Garcia-Sampedro, A.
    Hall, A.
    Bhamra, A.
    Surinova, S.
    Acedo, P.
    Luong, T.
    Fusai, G.
    Rombouts, K.
    Hsuan, J. J.
    Pereira, S. P.
    JOURNAL OF NEUROENDOCRINOLOGY, 2022, 34 : 46 - 46
  • [36] Electrospun Fiber-Based Tubular Structures as 3D Scaffolds to Generate In Vitro Models for Small Intestine
    Zavagna, Lorenzo
    Canelli, Eligio F.
    Azimi, Bahareh
    Troisi, Fabiola
    Scarpelli, Lorenzo
    Macchi, Teresa
    Gallone, Giuseppe
    Labardi, Massimiliano
    Giovannoni, Roberto
    Milazzo, Mario
    Danti, Serena
    MACROMOLECULAR MATERIALS AND ENGINEERING, 2024, 309 (10)
  • [37] The Revolutionary Roads to Study Cell-Cell Interactions in 3D In Vitro Pancreatic Cancer Models
    Delle Cave, Donatella
    Rizzo, Riccardo
    Sainz, Bruno, Jr.
    Gigli, Giuseppe
    del Mercato, Loretta L.
    Lonardo, Enza
    CANCERS, 2021, 13 (04) : 1 - 19
  • [38] Design and manufacturing of 3D high-precision micro-fibrous poly (L-lactic acid) scaffold using melt electrowriting technique for bone tissue engineering
    Meng, Jie
    Boschetto, Francesco
    Yagi, Shinichi
    Marin, Elia
    Adachi, Tetsuya
    Chen, Xuefei
    Pezzotti, Giuseppe
    Sakurai, Shinichi
    Yamane, Hideki
    Xu, Huaizhong
    MATERIALS & DESIGN, 2021, 210
  • [39] Molecular characterization of hematopoietic stem cells after in vitro amplification on biomimetic 3D PDMS cell culture scaffolds
    Marx-Bluemel, Lisa
    Marx, Christian
    Sonnemann, Jurgen
    Weise, Frank
    Hampl, Jorg
    Frey, Jessica
    Rothenburger, Linda
    Cirri, Emilio
    Rahnis, Norman
    Koch, Philipp
    Groth, Marco
    Schober, Andreas
    Wang, Zhao-Qi
    Beck, James F.
    SCIENTIFIC REPORTS, 2021, 11 (01)
  • [40] Porcine hepatocytes culture on biofunctionalized 3D inverted colloidal crystal scaffolds as an in vitro model for predicting drug hepatotoxicity
    Wu, Lingyan
    Ferracci, Gaia
    Wang, Yan
    Fan, Teng Fei
    Cho, Nam-Joon
    Chow, Pierce K. H.
    RSC ADVANCES, 2019, 9 (31): : 17995 - 18007