3D printable, injectable amyloid-based composite hydrogel of bovine serum albumin and aloe vera for rapid diabetic wound healing

被引:14
|
作者
Naik, Kaustubh [1 ]
Singh, Priyanka [2 ]
Yadav, Monika [2 ]
Srivastava, Saurabh Kr [1 ]
Tripathi, Shikha [1 ]
Ranjan, Rahul [3 ]
Dhar, Prodyut [3 ]
Verma, Anita Kamra [2 ]
Chaudhary, Shilpi [4 ]
Parmar, Avanish Singh [1 ,5 ]
机构
[1] Indian Inst Technol BHU, Dept Phys, Biophys & Nanotechnol Lab, Varanasi 221005, Uttar Pradesh, India
[2] Univ Delhi, Kirorimal Coll, Nanobiotech Lab, Delhi 110007, India
[3] Indian Inst Technol BHU, Sch Biochem Engn, Varanasi 221005, Uttar Pradesh, India
[4] Punjab Engn Coll, Dept Appl Sci, Chandigarh 160012, India
[5] Indian Inst Technol BHU, Ctr Biomat & Tissue Engn, Varanasi, India
关键词
SCAFFOLD; RELEASE; STRESS; BSA;
D O I
10.1039/d3tb01151h
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
0805 ; 080501 ; 080502 ;
摘要
Protein-based biomaterials, particularly amyloids, have sparked considerable scientific interest in recent years due to their exceptional mechanical strength, excellent biocompatibility and bioactivity. In this work, we have synthesized a novel amyloid-based composite hydrogel consisting of bovine serum albumin (BSA) and aloe vera (AV) gel to utilize the medicinal properties of the AV gel and circumvent its mechanical frangibility. The synthesized composite hydrogel demonstrated an excellent porous structure, self-fluorescence, non-toxicity, and controlled rheological properties. Moreover, this hydrogel possesses inherent antioxidant and antibacterial properties, which accelerate the rapid healing of wounds. The in vitro wound healing capabilities of the synthesized composite hydrogel were evaluated using 3T3 fibroblast cells. Moreover, the efficacy of the hydrogel in accelerating chronic wound healing via collagen crosslinking was investigated through in vivo experiments using a diabetic mouse skin model. The findings indicate that the composite hydrogel, when applied, promotes wound healing by inducing collagen deposition and upregulating the expression of vascular endothelial growth factor (VEGF) and its receptors. We also demonstrate the feasibility of the 3D printing of the BSA-AV hydrogel, which can be tailored to treat various types of wound. The 3D printed hydrogel exhibits excellent shape fidelity and mechanical properties that can be utilized for personalized treatment and rapid chronic wound healing. Taken together, the BSA-AV hydrogel has great potential as a bio-ink in tissue engineering as a dermal substitute for customizable skin regeneration.
引用
收藏
页码:8142 / 8158
页数:18
相关论文
共 41 条
  • [21] Bioactive Wound Healing 3D Structure Based on Chitosan Hydrogel Loaded with Naringin/Cyclodextrin Inclusion Nanocomplex
    Bian, Donghui
    Pilehvar, Younes
    Kousha, Sanaz
    Bi, Jianhai
    ACS OMEGA, 2024, 9 (09): : 10566 - 10576
  • [22] Cellulose nanofibril/polylysine-based 3D composite antibacterial scaffold for wound healing applications
    Biranje, Santosh Shivaji
    Shi, Yifei
    Sun, Jianzhong
    Cheng, Lu
    Jiao, Haixin
    Lu, Xuechu
    Sethupathy, Sivasamy
    Wang, Qianqian
    Adivarekar, Ravindra V.
    Liu, Jun
    CELLULOSE, 2023, 30 (08) : 5289 - 5306
  • [23] Cellulose nanofibril/polylysine-based 3D composite antibacterial scaffold for wound healing applications
    Santosh Shivaji Biranje
    Yifei Shi
    Jianzhong Sun
    Lu Cheng
    Haixin Jiao
    Xuechu Lu
    Sivasamy Sethupathy
    Qianqian Wang
    Ravindra V. Adivarekar
    Jun Liu
    Cellulose, 2023, 30 : 5289 - 5306
  • [24] 3D printing MOF nanozyme hydrogel with dual enzymatic activities and visualized glucose monitoring for diabetic wound healing2
    Chen, Ziyan
    Song, Shen
    Zeng, Huajing
    Ge, Zhenlin
    Liu, Bin
    Fan, Zengjie
    CHEMICAL ENGINEERING JOURNAL, 2023, 471
  • [25] Green preparation of anti-inflammation an injectable 3D porous hydrogel for speeding up deep second-degree scald wound healing
    Xu, Xiao
    Che, Lin
    Xu, Lin
    Huang, Doudou
    Wu, Jiashen
    Du, Zebang
    Lin, Yuchun
    Hu, Xiaoqian
    Zhao, Qingliang
    Lin, Zhongning
    Xu, Ling
    RSC ADVANCES, 2020, 10 (59) : 36101 - 36110
  • [26] A 3D-printed grid-like hyaluronic acid based hydrogel loaded with deferoxamine as wound dressing promotes diabetic wound healing
    Yang, Hu
    Wang, Yong
    Li, Run
    Shen, Yi-Fan
    Zhou, Fei-Fei
    Tan, Wei-Qiang
    Wang, Yue
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2025, 303
  • [27] Self-Powered Integrated Tactile Sensing System Based on Ultrastretchable, Self-Healing and 3D Printable Ionic Conductive Hydrogel
    Mogli, Giorgio
    Reina, Marco
    Chiappone, Annalisa
    Lamberti, Andrea
    Pirri, Candido Fabrizio
    Roppolo, Ignazio
    Stassi, Stefano
    ADVANCED FUNCTIONAL MATERIALS, 2024, 34 (07)
  • [28] 3D direct writing egg white hydrogel promotes diabetic chronic wound healing via self-relied bioactive property
    Guo, Lingling
    Niu, Xingtang
    Chen, Xihang
    Lu, Feng
    Gao, Jianhua
    Chang, Qiang
    BIOMATERIALS, 2022, 282
  • [29] High Self-Supporting Chitosan-Based Hydrogel Ink for In Situ 3D Printed Diabetic Wound Dressing
    Li, Shanshan
    Xu, Yidi
    Zheng, Lu
    Fan, Chaoran
    Luo, Fangji
    Zou, Yuqing
    Li, Xiaoyun
    Zha, Zhen-Gang
    Zhang, Huan-Tian
    Wang, Xiaoying
    ADVANCED FUNCTIONAL MATERIALS, 2025, 35 (05)
  • [30] An Injectable Integration of Autologous Bioactive Concentrated Growth Factor and Gelatin Methacrylate Hydrogel with Efficient Growth Factor Release and 3D Spatial Structure for Accelerated Wound Healing
    Zhang, Lixiang
    Yuan, Zhengchao
    Shafiq, Muhammad
    Cai, Youjun
    Wang, Zewen
    Nie, Piming
    Mo, Xiumei
    Xu, Yuan
    MACROMOLECULAR BIOSCIENCE, 2023, 23 (04)