Bo Xu
Beihang University
5 Papers
Bo Xu is an academic researcher from Beihang University. The author has contributed to research in topics: Medicine & Internal medicine. The author has an hindex of 1, co-authored 3 publications.
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Papers
Applications of decellularized materials in tissue engineering: advantages, drawbacks and current improvements, and future perspectives
TL;DR: This systematic review aimed to not only provide a quick access for understanding DMs, but also bring new ideas to utilize them more appropriately in tissue engineering.
85
Current Status and Future Directions of Bacteria-Based Immunotherapy
TL;DR: This review will cover the inherent advantages of unedited bacteria, highlight how bacteria can be engineered to provide greater tumor-targeting properties, enhanced immune-modulation effect, and improved safety, and highlight the future directions and potential opportunities of this emerging field.
Artificial Intelligence in Cardiovascular Medicine: Current Insights and Future Prospects
TL;DR: Improved diagnostic and prognostic capabilities using ML algorithms are enhancing clinical care of patients with valvular heart disease and coronary artery disease, and the need for greater external validation through multicenter, prospective clinical trials is needed.
13
Overview of Decellularized Materials for Tissue Repair and Organ Replacement
Jie Liao,Qi Guo,Bo Xu,Xiaoming Li +3 more
- 01 Jan 2021
TL;DR: In this paper, the degradation of DMs and their mechanisms of promoting tissue regeneration/organ replacement were discussed in detail through two aspects including: (1) initiating relatively low host tissue response to provide appropriate regeneration microenvironment; (2) containing bioactive factors to recruit endogenous stems/progenitor cells and promote matrix production and angiogenesis.
3
The Challenges and Development Directions of Decellularized Materials
Jie Liao,Lincui Da,Bo Xu,Huiqi Xie,Xiaoming Li +4 more
- 01 Jan 2021
TL;DR: In this paper, some challenges and perspectives of decellularized materials were proposed in detail including optimizing the preparation methods of DMs, furthering researching the composition of DM, improving the mechanical properties of DM and controlling the degradation rate of DM.