Lijie Grace Zhang
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Explore the profile of Lijie Grace Zhang including associated specialties, affiliations and a list of published articles.
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88
Citations
2534
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Recent Articles
11.
Agarwal T, Fortunato G, Hann S, Ayan B, Vajanthri K, Presutti D, et al.
Mater Sci Eng C Mater Biol Appl
. 2021 May;
124:112057.
PMID: 33947551
Annually increasing incidence of cardiac-related disorders and cardiac tissue's minimal regenerative capacity have motivated the researchers to explore effective therapeutic strategies. In the recent years, bioprinting technologies have witnessed a...
12.
Agarwal T, Banerjee D, Konwarh R, Esworthy T, Kumari J, Onesto V, et al.
Mater Sci Eng C Mater Biol Appl
. 2021 Apr;
123:112013.
PMID: 33812632
In the sphere of liver tissue engineering (LTE), 3D bioprinting has emerged as an effective technology to mimic the complex in vivo hepatic microenvironment, enabling the development of functional 3D...
13.
Herreros-Pomares A, Zhou X, Calabuig-Farinas S, Lee S, Torres S, Esworthy T, et al.
Mater Sci Eng C Mater Biol Appl
. 2021 Mar;
122:111914.
PMID: 33641907
Two-dimensional (2D) in vitro cell cultures and laboratory animals have been used traditionally as the gold-standard preclinical cancer model systems. However, for cancer stem cell (CSC) studies, they exhibit notable...
14.
Hann S, Cui H, Esworthy T, Zhou X, Lee S, Plesniak M, et al.
Acta Biomater
. 2021 Jan;
123:263-274.
PMID: 33454383
The development of sufficient vascular networks is crucial for the successful fabrication of tissue constructs for regenerative medicine, as vascularization is essential to perform the metabolic functions of tissues, such...
15.
Wang Y, Cui H, Wang Y, Xu C, Esworthy T, Hann S, et al.
ACS Appl Mater Interfaces
. 2021 Jan;
13(11):12746-12758.
PMID: 33405502
As an innovative additive manufacturing process, 4D printing can be utilized to generate predesigned, self-assembly structures which can actuate time-dependent, and dynamic shape-changes. Compared to other manufacturing techniques used for...
16.
Cui H, Miao S, Esworthy T, Lee S, Zhou X, Hann S, et al.
Nano Res
. 2020 Dec;
12:1381-1388.
PMID: 33312444
Four-dimensional (4D) printing is an emerging and highly innovative additive manufacturing process by which to fabricate pre-designed, self-assembly structures with the ability to transform over time. However, one of the...
17.
Zhou X, Nowicki M, Sun H, Hann S, Cui H, Esworthy T, et al.
ACS Appl Mater Interfaces
. 2020 Oct;
12(41):45904-45915.
PMID: 33006880
Blood vessel damage resulting from trauma or diseases presents a serious risk of morbidity and mortality. Although synthetic vascular grafts have been successfully commercialized for clinical use, they are currently...
18.
Esworthy T, Miao S, Lee S, Zhou X, Cui H, Zuo Y, et al.
Int J Smart Nano Mater
. 2020 Sep;
10(3):177-204.
PMID: 32864037
Although the process by which the cortical tissues of the brain fold has been the subject of considerable study and debate over the past few decades, a single mechanistic description...
19.
Cui H, Liu C, Esworthy T, Huang Y, Yu Z, Zhou X, et al.
Sci Adv
. 2020 Jul;
6(26):eabb5067.
PMID: 32637623
There has been considerable progress in engineering cardiac scaffolds for the treatment of myocardial infarction (MI). However, it is still challenging to replicate the structural specificity and variability of cardiac...
20.
Osborn J, Aliabouzar M, Zhou X, Rao R, Zhang L, Sarkar K
Adv Biosyst
. 2020 Jul;
3(2):e1800257.
PMID: 32627376
Lipid-coated microbubbles, clinically approved as contrast enhancing agents for ultrasound imaging, are investigated for the first time for their possible applications in bone tissue engineering. Effects of microbubbles (average diameter...