DNA hydrogels for bone regeneration

被引:18
|
作者
Athanasiadou, Dimitra [1 ]
Meshry, Nadeen [1 ]
Monteiro, Naara G. [2 ]
Ervolino-Silva, Ana C. [2 ]
Chan, Ryan Lee [3 ]
McCulloch, Christopher A. [1 ]
Okamoto, Roberta [2 ]
Carneiro, Karina M. M. [1 ,3 ]
机构
[1] Univ Toronto, Fac Dent, Toronto, ON M5G 1G6, Canada
[2] Univ Estadual Paulista, Sch Dent Aracatuba, Dept Basic Sci, BR-16018805 Aracatuba, SP, Brazil
[3] Univ Toronto, Inst Biomed Engn, Toronto, ON M5S 3E2, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
DNA nanotechnology; DNA hydrogels; biomineralization; bone regeneration; MESENCHYMAL STEM-CELLS; OSTEOGENIC DIFFERENTIATION; PHOSPHATE; NANOSTRUCTURES; ACTIVATION; ADENOSINE; NUCLEASES; SCAFFOLDS;
D O I
10.1073/pnas.2220565120
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
DNA-based biomaterials have been proposed for tissue engineering approaches due to their predictable assembly into complex morphologies and ease of functionalization. For bone tissue regeneration, the ability to bind Ca2+ and promote hydroxyapatite (HAP) growth along the DNA backbone combined with their degradation and release of extra cellular phosphate, a known promoter of osteogenic differentiation, make DNA-based biomaterials unlike other currently used materials. However, their use as biodegradable scaffolds for bone repair remains scarce. Here, we describe the design and synthesis of DNA hydrogels, gels composed of DNA that swell in water, their interactions in vitro with the osteogenic cell lines MC3T3-E1 and mouse calvarial osteoblast, and their promotion of new bone formation in rat calvarial wounds. We found that DNA hydrogels can be readily synthesized at room temperature, and they promote HAP growth in vitro, as characterized by Fourier transform infrared spectroscopy, X-ray diffraction, scanning electron microscopy, atomic force microscopy, and transmission electron microscopy. Osteogenic cells remain viable when seeded on DNA hydrogels in vitro, as characterized by fluorescence microscopy. In vivo, DNA hydrogels promote the formation of new bone in rat calvarial critical size defects, as characterized by micro-computed tomography and histology. This study uses DNA hydrogels as a potential therapeutic biomaterial for regenerating lost bone.
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页数:11
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