THESIS
2021
1 online resource (xvi, 134 pages) : illustrations (chiefly color)
Abstract
Graphene is an emerging two-dimensional carbon material, and its applications in
biomedical fields such as biosensing, tumor diagnosis, drugs and gene carriers, antibacterial
and tissue engineering, etc. have attracted more attentions. In this thesis, we combine 3D
graphene with functional hydrogel and other biomolecules for epidermal strain sensor,
peripheral nerve regeneration and tumor therapy. We utilize the good conductivity and layer by
layer structure of graphene foam for resistance type strain sensor. The double network hydrogel
as substrate provides good protection of GF structure and large elongation for wide sensing
range. Besides, modified chitosan adhesives onto hydrogel achieve conformal adhesion of
sensor. The good combination is also applied as nerve regeneration conduit...[
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Graphene is an emerging two-dimensional carbon material, and its applications in
biomedical fields such as biosensing, tumor diagnosis, drugs and gene carriers, antibacterial
and tissue engineering, etc. have attracted more attentions. In this thesis, we combine 3D
graphene with functional hydrogel and other biomolecules for epidermal strain sensor,
peripheral nerve regeneration and tumor therapy. We utilize the good conductivity and layer by
layer structure of graphene foam for resistance type strain sensor. The double network hydrogel
as substrate provides good protection of GF structure and large elongation for wide sensing
range. Besides, modified chitosan adhesives onto hydrogel achieve conformal adhesion of
sensor. The good combination is also applied as nerve regeneration conduit that the good
conductivity of graphene promote adhesion, proliferation and differentiation of Schwann cell
and keep on electrical conduction between damaged nerve ends as bridge. Meanwhile,
hydrogels mimic characteristics of native extracellular matrix (ECM) benefit the cellular growth and tissue formation. GelMA hydrogels with matrix metalloproteinase and arginine-glycine-aspartic acid peptide motifs promote proliferation of cells. Later, the nerve growth
factor (Netrin-1) with gradient concentration in conduit is introduced as biological cue to guide
the cells and promote the regeneration. And double sided adhesive tape based on natural
silk/Ca
2+ are fabricated to replace commercial tissue glue (Octyl Cyanoacrylate) for non-suture
surgery. In the end, graphene nanospheres with MnO
2 and Fe
3O
4 nanodots contained fatty acid,
DOX (drug) and TPP (photosensitizer) are designed for all in one tumor therapy
(photothermal/photodynamic/chemo therapy). Fe
3O
4 nanodots help nanospheres to gather
around tumor area. Under the NIR irradiation, the temperature increases to kill tumor cells and
melt fatty acid to release DOX and TPP. MnO
2 can decompose H
2O
2 to H
2O and generate O
2
in tumor cell which further become singlet oxygen when react with TPP and cause apoptosis of
cell.
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