Bioengineering the Bone Marrow Vascular Niche.

作者: Tomer Itkin , Thomas Bessy , Diana Passaro

DOI: 10.3389/FCELL.2021.645496

关键词:

摘要: The bone marrow (BM) tissue is the main physiological site for adult hematopoiesis. In recent years, cellular and matrix components composing BM have been defined with unprecedent resolution, both at molecular structural levels. With expansion of this knowledge, possibility reproducing a BM-like structure, to ectopically support study hematopoiesis, becomes reality. A number experimental systems implemented displayed feasibility bioengineering tissues, supported by cells mesenchymal origin. Despite being known as an abundant component BM, vasculature has largely disregarded its role in regulating formation, organization determination. Recent reports highlighted crucial vascular endothelial shaping development supporting steady state, emergency malignant pre- postnatally. Herein, we review field BM-tissue particular focus on system implementation integration, starting from describing variety applicable vitro models, ending up vivo preclinical models. Additionally, highlight challenges discuss clinical perspectives terms adoptive transfer vascularized BM-niche grafts patients recovering

参考文章(151)
Silvia Scaglione, Rodolfo Quarto, Clinical Applications of Bone Tissue Engineering Springer, New York, NY. pp. 1- 18 ,(2009) , 10.1007/978-0-387-74660-9_15
Bhushan P. Mahadik, Sara Pedron Haba, Luke J. Skertich, Brendan A.C. Harley, The use of covalently immobilized stem cell factor to selectively affect hematopoietic stem cell activity within a gelatin hydrogel Biomaterials. ,vol. 67, pp. 297- 307 ,(2015) , 10.1016/J.BIOMATERIALS.2015.07.042
Qingqiang Yao, Bo Wei, Nancy Liu, Chenshuang Li, Yang Guo, Arya Nick Shamie, James Chen, Cheng Tang, Chengzhe Jin, Yan Xu, Xiuwu Bian, Xinli Zhang, Liming Wang, Chondrogenic Regeneration Using Bone Marrow Clots and a Porous Polycaprolactone-Hydroxyapatite Scaffold by Three-Dimensional Printing Tissue Engineering Part A. ,vol. 21, pp. 1388- 1397 ,(2015) , 10.1089/TEN.TEA.2014.0280
Lauren A. Pitt, Anastasia N. Tikhonova, Hai Hu, Thomas Trimarchi, Bryan King, Yixiao Gong, Marta Sanchez-Martin, Aris Tsirigos, Dan R. Littman, Adolfo A. Ferrando, Sean J. Morrison, David R. Fooksman, Iannis Aifantis, Susan R. Schwab, CXCL12-Producing Vascular Endothelial Niches Control Acute T Cell Leukemia Maintenance Cancer Cell. ,vol. 27, pp. 755- 768 ,(2015) , 10.1016/J.CCELL.2015.05.002
MA Moore, AS Asch, S Rafii, F Shapiro, J Rimarachin, RL Nachman, B Ferris, B Weksler, Isolation and characterization of human bone marrow microvascular endothelial cells: hematopoietic progenitor cell adhesion Blood. ,vol. 84, pp. 10- 19 ,(1994) , 10.1182/BLOOD.V84.1.10.10
Pilar de la Puente, Barbara Muz, Rebecca C. Gilson, Feda Azab, Micah Luderer, Justin King, Samuel Achilefu, Ravi Vij, Abdel Kareem Azab, 3D tissue-engineered bone marrow as a novel model to study pathophysiology and drug resistance in multiple myeloma. Biomaterials. ,vol. 73, pp. 70- 84 ,(2015) , 10.1016/J.BIOMATERIALS.2015.09.017
Norhana Jusoh, Soojung Oh, Sudong Kim, Jangho Kim, Noo Li Jeon, Microfluidic vascularized bone tissue model with hydroxyapatite-incorporated extracellular matrix Lab on a Chip. ,vol. 15, pp. 3984- 3988 ,(2015) , 10.1039/C5LC00698H
Diana Passaro, Marta Irigoyen, Claire Catherinet, Stéphanie Gachet, Cindy Da Costa De Jesus, Charlène Lasgi, Christine Tran Quang, Jacques Ghysdael, CXCR4 Is Required for Leukemia-Initiating Cell Activity in T Cell Acute Lymphoblastic Leukemia. Cancer Cell. ,vol. 27, pp. 769- 779 ,(2015) , 10.1016/J.CCELL.2015.05.003
Michael Ginsberg, Daylon James, Bi-Sen Ding, Daniel Nolan, Fuqiang Geng, Jason M. Butler, William Schachterle, Venkat R. Pulijaal, Susan Mathew, Stephen T. Chasen, Jenny Xiang, Zev Rosenwaks, Koji Shido, Olivier Elemento, Sina Y. Rabbany, Shahin Rafii, Efficient Direct Reprogramming of Mature Amniotic Cells into Endothelial Cells by ETS Factors and TGFβ Suppression Cell. ,vol. 151, pp. 559- 575 ,(2012) , 10.1016/J.CELL.2012.09.032