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  • Clay nanoparticles for regenerative medicine and biomaterial . . .
    In this review, we will introduce key aspects of clay chemistry with a specific focus on biomaterial design for regenerative medicine We highlight recent advances in the development of clay-based biomaterials and discuss the evidence for the biocompatibility of clays
  • Amyloid Fibril and Clay Nanosheet Dual-Nanoengineered DNA . . .
    Herein, we report a dual nanoengineered DNA dynamic hydrogel developed through the supramolecular coassembly of amyloid fibrils and clay nanosheets with DNA strands The nanoengineered ECM-like fibrillar hydrogel network is facilely formed without a complicated and tedious molecular synthesis
  • Clay-Based Nanocomposite Hydrogels for Biomedical . . .
    Due to their biocompatibility, ability to encapsulate and deliver drugs, and capacity to mimic the extracellular matrix (ECM), typical hydrogels have been extensively investigated in the biomedical and biotechnological fields
  • Clay Nanosheet‐Based Nanocomposite Supramolecular Hydrogel . . .
    To construct its 3D crosslinked network, we used a design strategy analogous to that employed for our highly water-rich yet mechanically robust nanocomposite supramolecular hydrogel ("aqua material")
  • Clay Based Biopolymer Nanocomposites and Their Applications . . .
    In this chapter, we discuss in detail the most significant findings of recent literature describing a cluster of studies on clay in combination with polymeric matrixes and their fascinating applications on bone tissue regeneration, drug delivery, regenerative medicine, biosensors etc
  • Clay-based nanocomposite hydrogel with attractive mechanical . . .
    Although clay-based nanocomposite hydrogels have been widely explored, their instability in hot water and saline solution inhibits their applications in biomedical engineering, and the exploration of clay-based nanocomposite hydrogels in bone defect repair is even less
  • Current synthesis and characterization techniques for clay . . .
    These advanced physico-mechanical and chemical characterization techniques would be effective in understanding the most appropriate application of clay polymer nanocomposites In addition, the application of clay polymer nanocomposites in biomedical sector is also discussed in brief





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