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Biomaterial-Assisted 3D In Vitro Tumor Models: Biomaterial-Assisted 3D In Vitro Tumor Models

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biomaterials; tissue engineering; 3D cell culture; cancer cells; bioprinting; breast cancer; metastasis; bone; 3D modeling; tumor microenvironment; extracellular matrix; 3D printing; 3D bioprinting; bone cancer; calcium phosphates; bone model; orthopedics; EGFR; trafficking; degradation; self-assembling peptides; 3D culture; pancreatic ductal adenocarcinoma; PDAC; drug resistance; 3D tumor model; 3D microfiber; amoeboid cell migration; brain cancer; PTEN; RHO; ROCK; durotaxis; topotaxis; pancreatic cancer; tumour microenvironment (TME); treatment resistance; radiotherapy; radiation; radioprotection; hypoxia; polyurethane scaffolds; extracellular matrix (ECM); HIF-1a; PANC-1; organoids; tumour heterogeneity; colorectal neoplasms; clonal evolution; longitudinal imaging; neoplasm recurrence; cell lineage; self-renewal; cell culture techniques; 3D cancer models; immunotherapies; tumor escape mechanisms; epithelial ovarian cancer; 3D in vitro model; chemotherapy; Cisplatin; spheroids; hydrogels; polymeric scaffolds; A2780; SK-OV-3; fused deposition modeling; cancer tissue engineering; in vitro model; mechanical properties; mesenchymal stromal cell; bone matrix; personalized therapy; scaffold; primary cancer cells; experimental models; screening; 3Rs; tumour modelling; polyhydroxyalkanoates (PHAs); colon cancer; epithelial-mesenchymal transition (EMT); scaffolds; 3D; three-dimensional; model; ovarian; cancer; patient-derived; personalised; n/a

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