Literature DB >> 33916870

Bioprinting and Differentiation of Adipose-Derived Stromal Cell Spheroids for a 3D Breast Cancer-Adipose Tissue Model.

Hannes Horder1, Mar Guaza Lasheras1, Nadine Grummel2, Ali Nadernezhad3, Johannes Herbig3, Süleyman Ergün4, Jörg Teßmar3, Jürgen Groll3, Ben Fabry2, Petra Bauer-Kreisel1, Torsten Blunk1.   

Abstract

Biofabrication, including printing technologies, has emerged as a powerful approach to the design of disease models, such as in cancer research. In breast cancer, adipose tissue has been acknowledged as an important part of the tumor microenvironment favoring tumor progression. Therefore, in this study, a 3D-printed breast cancer model for facilitating investigations into cancer cell-adipocyte interaction was developed. First, we focused on the printability of human adipose-derived stromal cell (ASC) spheroids in an extrusion-based bioprinting setup and the adipogenic differentiation within printed spheroids into adipose microtissues. The printing process was optimized in terms of spheroid viability and homogeneous spheroid distribution in a hyaluronic acid-based bioink. Adipogenic differentiation after printing was demonstrated by lipid accumulation, expression of adipogenic marker genes, and an adipogenic ECM profile. Subsequently, a breast cancer cell (MDA-MB-231) compartment was printed onto the adipose tissue constructs. After nine days of co-culture, we observed a cancer cell-induced reduction of the lipid content and a remodeling of the ECM within the adipose tissues, with increased fibronectin, collagen I and collagen VI expression. Together, our data demonstrate that 3D-printed breast cancer-adipose tissue models can recapitulate important aspects of the complex cell-cell and cell-matrix interplay within the tumor-stroma microenvironment.

Entities:  

Keywords:  adipose tissue; adipose-derived stromal cells; bioprinting; breast cancer model; extracellular matrix; hyaluronic acid; spheroids

Year:  2021        PMID: 33916870     DOI: 10.3390/cells10040803

Source DB:  PubMed          Journal:  Cells        ISSN: 2073-4409            Impact factor:   6.600


  11 in total

Review 1.  Perspectives for 3D-Bioprinting in Modeling of Tumor Immune Evasion.

Authors:  Rafał Staros; Agata Michalak; Kinga Rusinek; Krzysztof Mucha; Zygmunt Pojda; Radosław Zagożdżon
Journal:  Cancers (Basel)       Date:  2022-06-26       Impact factor: 6.575

Review 2.  HYDRHA: Hydrogels of hyaluronic acid. New biomedical approaches in cancer, neurodegenerative diseases, and tissue engineering.

Authors:  Maddalena Grieco; Ornella Ursini; Ilaria Elena Palamà; Giuseppe Gigli; Lorenzo Moroni; Barbara Cortese
Journal:  Mater Today Bio       Date:  2022-10-08

3.  Bioprinted Cancer Model of Neuroblastoma in a Renal Microenvironment as an Efficiently Applicable Drug Testing Platform.

Authors:  Dongwei Wu; Johanna Berg; Birte Arlt; Viola Röhrs; Munir A Al-Zeer; Hedwig E Deubzer; Jens Kurreck
Journal:  Int J Mol Sci       Date:  2021-12-23       Impact factor: 5.923

Review 4.  Using Spheroids as Building Blocks Towards 3D Bioprinting of Tumor Microenvironment.

Authors:  Pei Zhuang; Yi-Hua Chiang; Maria Serafim Fernanda; Mei He
Journal:  Int J Bioprint       Date:  2021-10-21

5.  Additive Manufacturing of Caffeic Acid-Inspired Mineral Trioxide Aggregate/Poly-ε-Caprolactone Scaffold for Regulating Vascular Induction and Osteogenic Regeneration of Dental Pulp Stem Cells.

Authors:  Ni Tien; Jian-Jr Lee; Alvin Kai-Xing Lee; Yen-Hong Lin; Jian-Xun Chen; Ting-You Kuo; Ming-You Shie
Journal:  Cells       Date:  2021-10-27       Impact factor: 6.600

Review 6.  Current Advances in 3D Bioprinting for Cancer Modeling and Personalized Medicine.

Authors:  Nicolas Germain; Melanie Dhayer; Salim Dekiouk; Philippe Marchetti
Journal:  Int J Mol Sci       Date:  2022-03-22       Impact factor: 5.923

Review 7.  A Role for Adipocytes and Adipose Stem Cells in the Breast Tumor Microenvironment and Regenerative Medicine.

Authors:  Courtney K Brock; Katherine L Hebert; Maria Artiles; Maryl K Wright; Thomas Cheng; Gabrielle O Windsor; Khoa Nguyen; Madlin S Alzoubi; Bridgette M Collins-Burow; Elizabeth C Martin; Frank H Lau; Bruce A Bunnell; Matthew E Burow
Journal:  Front Physiol       Date:  2021-11-29       Impact factor: 4.566

8.  Characterisation of 3D Bioprinted Human Breast Cancer Model for In Vitro Drug and Metabolic Targeting.

Authors:  Titanilla Dankó; Gábor Petővári; Regina Raffay; Dániel Sztankovics; Dorottya Moldvai; Enikő Vetlényi; Ildikó Krencz; András Rókusz; Krisztina Sipos; Tamás Visnovitz; Judit Pápay; Anna Sebestyén
Journal:  Int J Mol Sci       Date:  2022-07-04       Impact factor: 6.208

9.  Gellan Gum Is a Suitable Biomaterial for Manual and Bioprinted Setup of Long-Term Stable, Functional 3D-Adipose Tissue Models.

Authors:  Franziska B Albrecht; Vera Dolderer; Svenja Nellinger; Freia F Schmidt; Petra J Kluger
Journal:  Gels       Date:  2022-07-05

10.  Bone tissue engineering supported by bioprinted cell constructs with endothelial cell spheroids.

Authors:  WonJin Kim; Chul Ho Jang; GeunHyung Kim
Journal:  Theranostics       Date:  2022-07-11       Impact factor: 11.600

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