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Graphene and its hybrid nanocomposite: A Metamorphoses elevation in the field of tissue engineering.
Singh, Rajesh; Rawat, Hemant; Kumar, Ashwani; Gandhi, Yashika; Kumar, Vijay; Mishra, Sujeet K; Narasimhaji, Ch Venkata.
Affiliation
  • Singh R; Department of Chemistry, Central Ayurveda Research Institute Jhansi, U.P, 284003, India.
  • Rawat H; Department of Chemistry, Central Ayurveda Research Institute Jhansi, U.P, 284003, India.
  • Kumar A; Department of Heterogeneous Catalysis, Max-Planck-Institut für Kohlenforschung, Kaiser-Wilhelm-Platz 1, 45470, Mülheim an der Ruhr, Germany.
  • Gandhi Y; Department of Chemistry, Central Ayurveda Research Institute Jhansi, U.P, 284003, India.
  • Kumar V; Department of Chemistry, Central Ayurveda Research Institute Jhansi, U.P, 284003, India.
  • Mishra SK; Department of Chemistry, Central Ayurveda Research Institute Jhansi, U.P, 284003, India.
  • Narasimhaji CV; Department of Chemistry, Central Ayurveda Research Institute Jhansi, U.P, 284003, India.
Heliyon ; 10(13): e33542, 2024 Jul 15.
Article in En | MEDLINE | ID: mdl-39040352
ABSTRACT
In this discourse, we delve into the manifold applications of graphene-based nanomaterials (GBNs) in the realm of biomedicine. Graphene, characterized by its two-dimensional planar structure, superconductivity, mechanical robustness, chemical inertness, extensive surface area, and propitious biocompatibility, stands as an exemplary candidate for diverse biomedical utility. Graphene include various distinctive characteristics of its two-dimensional planar structure, enormous surface area, mechanical and chemical stability, high conductivity, and exceptional biocompatibility. We investigate graphene and its diverse derivatives, which include reduced graphene oxides (rGOs), graphene oxides (GOs), and graphene composites, with a focus on elucidating the unique attributes relevant to their biomedical utility. In this review article it highlighted the unique properties of graphene, synthesis methods of graphene and functionalization methods of graphene. In the quest for novel materials to advance regenerative medicine, researchers have increasingly turned their attention to graphene-based materials, which have emerged as a prominent innovation in recent years. Notably, it highlights their applications in the regeneration of various tissues, including nerves, skeletal muscle, bones, skin, cardiac tissue, cartilage, and adipose tissue, as well as their influence on induced pluripotent stem cells, marking significant breakthroughs in the field of regenerative medicine. Additionally, this review article explores future prospects in this evolving area of study.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Heliyon Year: 2024 Document type: Article Affiliation country: India

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Heliyon Year: 2024 Document type: Article Affiliation country: India