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Full-Text Articles in Medicine and Health Sciences
Leveraging Advancements In Tissue Engineering For Bioprinting Dental Tissues, Devin Grace Morrison, Ryan E. Tomlinson
Leveraging Advancements In Tissue Engineering For Bioprinting Dental Tissues, Devin Grace Morrison, Ryan E. Tomlinson
Department of Orthopaedic Surgery Faculty Papers
3D bioprinting allows biocompatible materials and cells to be deposited in precise locations in three-dimensional space, enabling researchers to surpass the limitations of traditional 2D cell culture and to create innovative therapies. 3D bioprinting is one of the newest tools developed in the field of tissue engineering, which has traditionally utilized a paradigm revolving around scaffolds, cells, and signals. In this review, we discuss how new developments in each of these three research areas relates to bioprinting dental tissues – specifically teeth, periodontal ligament, and alveolar bone. Important considerations include how scaffold materials and geometry affect regeneration of dental tissues, …
Printing The Pathway Forward In Bone Metastatic Cancer Research: Applications Of 3d Engineered Models And Bioprinted Scaffolds To Recapitulate The Bone-Tumor Niche., Anne M. Hughes, Alexus D. Kolb, Alison B. Shupp, Kristy M. Shine, Karen M. Bussard
Printing The Pathway Forward In Bone Metastatic Cancer Research: Applications Of 3d Engineered Models And Bioprinted Scaffolds To Recapitulate The Bone-Tumor Niche., Anne M. Hughes, Alexus D. Kolb, Alison B. Shupp, Kristy M. Shine, Karen M. Bussard
Department of Cancer Biology Faculty Papers
Breast cancer commonly metastasizes to bone, resulting in osteolytic lesions and poor patient quality of life. The bone extracellular matrix (ECM) plays a critical role in cancer cell metastasis by means of the physical and biochemical cues it provides to support cellular crosstalk. Current two-dimensional in-vitro models lack the spatial and biochemical complexities of the native ECM and do not fully recapitulate crosstalk that occurs between the tumor and endogenous stromal cells. Engineered models such as bone-on-a-chip, extramedullary bone, and bioreactors are presently used to model cellular crosstalk and bone-tumor cell interactions, but fall short of providing a bone-biomimetic microenvironment. …
'Educated' Osteoblasts Reduce Osteoclastogenesis In A Bone-Tumor Mimetic Microenvironment., Alexus D. Kolb, Jinlu Dai, Evan T. Keller, Karen M. Bussard
'Educated' Osteoblasts Reduce Osteoclastogenesis In A Bone-Tumor Mimetic Microenvironment., Alexus D. Kolb, Jinlu Dai, Evan T. Keller, Karen M. Bussard
Department of Cancer Biology Faculty Papers
Breast cancer (BC) metastases to bone disrupt the balance between osteoblasts and osteoclasts, leading to excessive bone resorption. We identified a novel subpopulation of osteoblasts with tumor-inhibitory properties, called educated osteoblasts (EOs). Here we sought to examine the effect of EOs on osteoclastogenesis during tumor progression. We hypothesized that EOs affect osteoclast development in the bone-tumor niche, leading to suppressed pre-osteoclast fusion and bone resorption. Conditioned media (CM) was analyzed for protein expression of osteoclast factors receptor activator of nuclear factor kappa-β ligand (RANKL), osteoprotegerin (OPG), and tumor necrosis factor alpha (TNFα) via ELISA. EOs were co-cultured with pre-osteoclasts on …