Institution
Chinese PLA General Hospital
Healthcare•Beijing, China•
About: Chinese PLA General Hospital is a healthcare organization based out in Beijing, China. It is known for research contribution in the topics: Medicine & Population. The organization has 18037 authors who have published 12349 publications receiving 184803 citations. The organization is also known as: 301 Military Hospital.
Topics: Medicine, Population, Cancer, Transplantation, Apoptosis
Papers published on a yearly basis
Papers
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TL;DR: The regulation of immune cells by mesenchymal stem cells (MSCs) in the local tissue microenvironment and the tissue damage repair mechanisms are revealed and MSC combined with 3D scaffolds to promote MSC immunoregulation to repair damaged tissues are explored.
Abstract: The inflammatory response to chronic injury affects tissue regeneration and has become an important factor influencing the prognosis of patients. In previous stem cell treatments, it was revealed that stem cells not only have the ability for direct differentiation or regeneration in chronic tissue damage but also have a regulatory effect on the immune microenvironment. Stem cells can regulate the immune microenvironment during tissue repair and provide a good "soil" for tissue regeneration. In the current study, the regulation of immune cells by mesenchymal stem cells (MSCs) in the local tissue microenvironment and the tissue damage repair mechanisms are revealed. The application of the concepts of "seed" and "soil" has opened up new research avenues for regenerative medicine. Tissue engineering (TE) technology has been used in multiple tissues and organs using its biomimetic and cellular cell abilities, and scaffolds are now seen as an important part of building seed cell microenvironments. The effect of tissue engineering techniques on stem cell immune regulation is related to the shape and structure of the scaffold, the preinflammatory microenvironment constructed by the implanted scaffold, and the material selection of the scaffold. In the application of scaffold, stem cell technology has important applications in cartilage, bone, heart, and liver and other research fields. In this review, we separately explore the mechanism of MSCs in different tissue and organs through immunoregulation for tissue regeneration and MSC combined with 3D scaffolds to promote MSC immunoregulation to repair damaged tissues.
92 citations
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TL;DR: Collective in vivo data show that controlled release of FGF2 to the wounds by the coacervate significantly accelerates the wound healing by promoting cell proliferation, stimulating the secretion of vascular endothelial growth factor for re-epithelization, collagen deposition, and granulation tissue formation, and enhancing the expression of platelet endothelial cell adhesion molecule.
92 citations
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TL;DR: An evidence-based guideline for vancomycin TDM is developed, which provides recommendations for clinicians and pharmacists to conduct vancomedine TDM in China, and uses the GRADE Grid method to formulate the recommendations.
Abstract: Background Guideline development should be based on the quality of evidence, balance of benefits and harms, economic evaluation and patients' views and preferences. Therefore, these factors were considered in the development of a new guideline for therapeutic drug monitoring (TDM) of vancomycin. Objectives To develop an evidence-based guideline for vancomycin TDM and to promote standardized vancomycin TDM in clinical practice in China. Methods We referred to the WHO Handbook for Guideline Development and used the Grading of Recommendations Assessment, Development and Evaluation (GRADE) system to rate the quality of evidence and grade the strength of recommendations, according to economic evaluation and patients' views and preferences. We used the GRADE Grid method to formulate the recommendations. Results The guideline presents recommendations about who should receive vancomycin TDM, how to monitor vancomycin efficacy and renal safety, therapeutic trough concentrations, time to start initial vancomycin TDM, loading dose and how to administer and adjust the vancomycin dose. Conclusions We developed an evidence-based guideline for vancomycin TDM, which provides recommendations for clinicians and pharmacists to conduct vancomycin TDM in China.
92 citations
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01 Sep 2019TL;DR: A comprehensive review of the latest progress concerning smart wearable sensors is presented with a focus on bio-multifunctional (biocompatible, biodegradable, and self-healing) device designs as mentioned in this paper.
Abstract: Advances in digital health care have driven innovations in high‐performance wearable and smart sensors. One requirement in this field is establishing healthy, secure, and reliable medical devices for precisely monitoring vital signs of the human body or the surrounding environment through flexible sensors with not only high‐sensing performance but also excellent biofunctionality. Smart wearable sensors with excellent biofunctionality furnish medical devices with various smart functions such as biocompatibility, biodegradability, and self‐healing, which have attracted widespread interest from device engineers and materials scientists. Herein, a comprehensive review of the latest progress concerning these smart wearable sensors is presented with a focus on bio‐multifunctional (biocompatible, biodegradable, and self‐healing) device designs. The medical applications of bio‐multifunctional smart wearable sensors are also briefly covered, and to conclude, a discussion of the challenges, opportunities, and future perspectives is provided.
92 citations
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TL;DR: It was shown that neurotoxicity was positively correlated with the activity of Gamma-secretase, which suggested inhibition of gamma- secretase is a rational pharmacological target for Alzheimer's disease treatment.
92 citations
Authors
Showing all 18235 results
Name | H-index | Papers | Citations |
---|---|---|---|
Jie Zhang | 178 | 4857 | 221720 |
Gregory Y.H. Lip | 169 | 3159 | 171742 |
Chao Zhang | 127 | 3119 | 84711 |
Hong Wang | 110 | 1633 | 51811 |
Shuji Ogino | 106 | 549 | 43073 |
Li Chen | 105 | 1732 | 55996 |
Jing Wang | 97 | 1123 | 53714 |
Wei Wang | 95 | 3544 | 59660 |
Zhiguo Yuan | 93 | 633 | 28645 |
Tai Hing Lam | 93 | 1168 | 51646 |
Christopher P. Crum | 87 | 412 | 32399 |
Guozhen Shen | 84 | 422 | 23992 |
Jing-Feng Li | 81 | 507 | 23434 |
Zongjin Li | 80 | 630 | 22103 |
Wan Yee Lau | 76 | 463 | 21257 |