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Items: 1 to 20 of 22

1.

A facile approach for engineering tissue constructs with vessel-like channels by cell-laden hydrogel fibers.

Zhong M, Liu X, Wei D, Sun J, Guo L, Zhu H, Wan Y, Fan H.

Mater Sci Eng C Mater Biol Appl. 2019 Aug;101:370-379. doi: 10.1016/j.msec.2019.03.094. Epub 2019 Mar 27.

PMID:
31029330
2.

Response surface statistical optimization of bacterial nanocellulose fermentation in static culture using a low-cost medium.

Rodrigues AC, Fontão AI, Coelho A, Leal M, Soares da Silva FAG, Wan Y, Dourado F, Gama M.

N Biotechnol. 2019 Mar 25;49:19-27. doi: 10.1016/j.nbt.2018.12.002. Epub 2018 Dec 6.

PMID:
30529474
3.

Correction to: Self assembly and controlled drug release of a nano-laminated graphite carbon nitride/methotrexate complex.

Liu S, Guo Z, Zeng X, Meng X, Sun H, Wan Y, Zuo G.

J Mater Sci Mater Med. 2018 Dec 4;29(12):184. doi: 10.1007/s10856-018-6196-4.

PMID:
30515626
4.

Layer-by-Layer Assembled Bacterial Cellulose/Graphene Oxide Hydrogels with Extremely Enhanced Mechanical Properties.

Luo H, Dong J, Yao F, Yang Z, Li W, Wang J, Xu X, Hu J, Wan Y.

Nanomicro Lett. 2018;10(3):42. doi: 10.1007/s40820-018-0195-3. Epub 2018 Mar 27.

5.

Application of Polyaniline for Li-Ion Batteries, Lithium-Sulfur Batteries, and Supercapacitors.

Luo Y, Guo R, Li T, Li F, Liu Z, Zheng M, Wang B, Yang Z, Luo H, Wan Y.

ChemSusChem. 2019 Apr 23;12(8):1591-1611. doi: 10.1002/cssc.201802186. Epub 2019 Mar 18. Review.

PMID:
30376216
6.

Self assembly and controlled drug release of a nano-laminated graphite carbon nitride/methotrexate complex.

Liu S, Guo Z, Zeng X, Meng X, Sun H, Wan Y, Zuo G.

J Mater Sci Mater Med. 2018 Jul 19;29(8):116. doi: 10.1007/s10856-018-6128-3. Erratum in: J Mater Sci Mater Med. 2018 Dec 4;29(12):184.

PMID:
30027359
7.

An in vivo study on the effect of coating stability on osteointegration performance of collagen/hyaluronic acid multilayer modified titanium implants.

Ao H, Zong J, Nie Y, Wan Y, Zheng X.

Bioact Mater. 2017 Jul 27;3(1):97-101. doi: 10.1016/j.bioactmat.2017.07.004. eCollection 2018 Mar.

8.

Magnetic Lamellar Nano-Hydroxyapatite as a Vector for Gene Transfection in Three-Dimensional Cell Culture.

Luo H, Dong J, Yang Z, Zuo G, Li W, Tu J, Wan Y.

J Nanosci Nanotechnol. 2018 Aug 1;18(8):5314-5319. doi: 10.1166/jnn.2018.15365.

PMID:
29458582
9.

Equilibrium Melting Temperature of Polymorphic Poly(l-lactide) and Its Supercooling Dependence on Growth Kinetics.

Zhang RC, Sun D, Lu A, Zhong M, Xiong G, Wan Y.

Polymers (Basel). 2017 Nov 16;9(11). pii: E625. doi: 10.3390/polym9110625.

10.

Morphology effect of nano-hydroxyapatite as a drug carrier of methotrexate.

Sun H, Liu S, Zeng X, Meng X, Zhao L, Wan Y, Zuo G.

J Mater Sci Mater Med. 2017 Sep 13;28(10):158. doi: 10.1007/s10856-017-5978-4.

PMID:
28905291
11.

Sacrificial template method for the synthesis of three-dimensional nanofibrous 58S bioglass scaffold and its in vitro bioactivity and cell responses.

Luo H, Zhang Y, Li G, Tu J, Yang Z, Xiong G, Wang Z, Huang Y, Wan Y.

J Biomater Appl. 2017 Aug;32(2):265-275. doi: 10.1177/0885328217715784. Epub 2017 Jun 15.

PMID:
28618977
12.

Preparation, structural characterization, and in vitro cell studies of three-dimensional SiO2-CaO binary glass scaffolds built ofultra-small nanofibers.

Luo H, Li W, Ao H, Li G, Tu J, Xiong G, Zhu Y, Wan Y.

Mater Sci Eng C Mater Biol Appl. 2017 Jul 1;76:94-101. doi: 10.1016/j.msec.2017.02.134. Epub 2017 Feb 28.

PMID:
28482610
13.

Vascularization in Engineered Tissue Construct by Assembly of Cellular Patterned Micromodules and Degradable Microspheres.

Zhong M, Wei D, Yang Y, Sun J, Chen X, Guo L, Wei Q, Wan Y, Fan H, Zhang X.

ACS Appl Mater Interfaces. 2017 Feb 1;9(4):3524-3534. doi: 10.1021/acsami.6b15697. Epub 2017 Jan 20.

PMID:
28075550
14.

Layered nanohydroxyapatite as a novel nanocarrier for controlled delivery of 5-fluorouracil.

Luo H, Ji D, Li C, Zhu Y, Xiong G, Wan Y.

Int J Pharm. 2016 Nov 20;513(1-2):17-25. doi: 10.1016/j.ijpharm.2016.09.004. Epub 2016 Sep 3.

PMID:
27596116
15.

Mechanical properties and cytotoxicity of nanoplate-like hydroxyapatite/polylactide nanocomposites prepared by intercalation technique.

Wan Y, Wu C, Xiong G, Zuo G, Jin J, Ren K, Zhu Y, Wang Z, Luo H.

J Mech Behav Biomed Mater. 2015 Jul;47:29-37. doi: 10.1016/j.jmbbm.2015.03.009. Epub 2015 Mar 19.

PMID:
25837342
16.

Surface controlled calcium phosphate formation on three-dimensional bacterial cellulose-based nanofibers.

Luo H, Xiong G, Zhang C, Li D, Zhu Y, Guo R, Wan Y.

Mater Sci Eng C Mater Biol Appl. 2015 Apr;49:526-533. doi: 10.1016/j.msec.2015.01.053. Epub 2015 Jan 15.

PMID:
25686980
17.

Creation of macropores in three-dimensional bacterial cellulose scaffold for potential cancer cell culture.

Xiong G, Luo H, Zhu Y, Raman S, Wan Y.

Carbohydr Polym. 2014 Dec 19;114:553-7. doi: 10.1016/j.carbpol.2014.08.073. Epub 2014 Sep 2.

PMID:
25263926
18.

One-step in situ biosynthesis of graphene oxide-bacterial cellulose nanocomposite hydrogels.

Si H, Luo H, Xiong G, Yang Z, Raman SR, Guo R, Wan Y.

Macromol Rapid Commun. 2014 Oct;35(19):1706-11. doi: 10.1002/marc.201400239. Epub 2014 Sep 2.

PMID:
25180660
19.

Evolution of morphology of bacterial cellulose scaffolds during early culture.

Luo H, Zhang J, Xiong G, Wan Y.

Carbohydr Polym. 2014 Oct 13;111:722-8. doi: 10.1016/j.carbpol.2014.04.097. Epub 2014 May 6.

PMID:
25037408
20.

Flexible and monolithic zinc oxide bionanocomposite foams by a bacterial cellulose mediated approach for antibacterial applications.

Wang P, Zhao J, Xuan R, Wang Y, Zou C, Zhang Z, Wan Y, Xu Y.

Dalton Trans. 2014 May 14;43(18):6762-8. doi: 10.1039/c3dt52858h.

PMID:
24647467

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