Bioprinting Methods for Fabricating In Vitro Tubular Blood Vessel Models
- PMID: 37533545
- PMCID: PMC10393580
- DOI: 10.34133/cbsystems.0043
Bioprinting Methods for Fabricating In Vitro Tubular Blood Vessel Models
Abstract
Dysfunctional blood vessels are implicated in various diseases, including cardiovascular diseases, neurodegenerative diseases, and cancer. Several studies have attempted to prevent and treat vascular diseases and understand interactions between these diseases and blood vessels across different organs and tissues. Initial studies were conducted using 2-dimensional (2D) in vitro and animal models. However, these models have difficulties in mimicking the 3D microenvironment in human, simulating kinetics related to cell activities, and replicating human pathophysiology; in addition, 3D models involve remarkably high costs. Thus, in vitro bioengineered models (BMs) have recently gained attention. BMs created through biofabrication based on tissue engineering and regenerative medicine are breakthrough models that can overcome limitations of 2D and animal models. They can also simulate the natural microenvironment in a patient- and target-specific manner. In this review, we will introduce 3D bioprinting methods for fabricating bioengineered blood vessel models, which can serve as the basis for treating and preventing various vascular diseases. Additionally, we will describe possible advancements from tubular to vascular models. Last, we will discuss specific applications, limitations, and future perspectives of fabricated BMs.
Copyright © 2023 Seon-Jin Kim et al.
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References
-
- Naito H, Iba T, Takakura N. Mechanisms of new blood-vessel formation and proliferative heterogeneity of endothelial cells. Int Immunol. 2020;32(5):295–305. - PubMed
-
- Pugsley MK, Tabrizchi R. The vascular system: An overview of structure and function. J Pharmacol Toxicol Methods. 2000;44(2):333–340. - PubMed
-
- Ryu H, Oh S, Lee HJ, Lee JY, Lee HK, Jeon NL. Engineering a blood vessel network module for body-on-a-chip applications. J Lab Autom. 2015;20(3):296–301. - PubMed
-
- Şahin B, İlgün G. Risk factors of deaths related to cardiovascular diseases in World Health Organization (WHO) member countries. Health Soc Care Community. 2022;30(1):73–80. - PubMed
-
- Quyyumi AA. Endothelial function in health and disease: New insights into the genesis of cardiovascular disease. Am J Med. 1998;105(1A):32S–39S. - PubMed
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