Biomaterials and Bionanotechnology

Biomaterials and Bionanotechnology

Tekade, Rakesh Kumar

Elsevier Science Publishing Co Inc

05/2019

724

Dura

Inglês

9780128144275

15 a 20 dias

1590

Descrição não disponível.
1. Design of materials and product specifications 2. Biomaterials in Pharmaceutical Product Development: An emphasis on Synthesis and characterization 3. Surface modification of Biomaterials towards effective Pharmaceutical Product Development 4. Biomaterials for sustained and controlled delivery of small drug molecule 5. Biotechnology based pharmaceutical products 6. Approaches to development of Implantable therapeutic systems 7. Nanotechnology in Tissue Engineering 8. Bionanomaterials in the treatment of leishmeniasis 9. Recent updates on Nanomedicine based drug delivery approaches in dentistry 10. Current research perspectives of Orthopaedic implant materials 11. Biomaterials and nanoparticles for hyperthermia therapy 12. Hyaluronic acid as an Emerging technology platform for siRNA delivery 13. Thiolated-chitosan: a novel mucoadhesive polymer for improved drug delivery 14. Recent Advances and Challenges in Microneedle Mediated Transdermal Protein and Peptide Drug Delivery 15. Synthesis and Applications of Metal Nanoparticles 16. Functionalized carbon nanotubes (CNTs) for protein, peptides and gene delivery biomaterials 17. Surface modifications of biomaterials and their implication on biocompatibility
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Approaches for surface modification; Bimetallic NPs; Bioactivity; Biocompatibility; Biocompatibility of polymers; Biological surfaces; Biomaterials; Biomolecules pharmacokinetics; Biotechnology products; Bone tissue engineering; CD44 targeting; Cancer; Cancer targeting; Carbon nanotubes; Chitosan; Clinical trials; Complications associated with implants; Controlled drug release; Copper NPs; Cutaneous; Dendrimers; Dentistry; Drug delivery; Drug design; Drug product; Drug quality; Drug release; Drug resistance; Drug substances; EPF effect; Functionalized CNTs; Gene delivery; Gene silencing; Generations implant materials; Gold NPs; Guideline; Hepatic tissue engineering; Hyaluronic acid; Hyaluronic acid nanoplatforms; Hyaluronic nanoparticles; Hydrogel; Hyperthermia; Hyperthermia-based cancer therapy; Immobilization of biomolecule; Implant manufacturing; Implantable devices; Implantable systems; Iron NPs; Leishmaniasis; Liposomes; Macrophage; Metal nanoparticles; Microneedles; Minimally invasive; Modeling; Modeling fracture processes in orthopedic implants; Modulus of elasticity; Mucoadhesion; Mucoadhesive polymer; Mucocutaneous; Nanoengineered mesenchymal stem cells; Nanomaterials; Nanomedicine; Nanoparticles; Nanoparticles applications; Nanoparticles characterization; Nanotechnology; Osseo-integration; Patents; Peptide; Peptide delivery; Pharmaceutical biotechnology; Plasma polymerization; Platinum NPs; Polymer; Protein; Recombinant DNA technology; Regulatory approvals of implant materials; Scaffolds; Selection of implant materials; Selenium NPs; SiRNA; Silver NPs; Skin tissue engineering; SolaEUR"gel; Specifications; Stability of biomaterials; Stem cells tissue engineering; Stimuli-responsive; Sulfur NPs; Surface modification of biomaterials; Sustained release; Synthesis approaches; Targeted delivery; Techniques of hyperthermia; Thiolated chitosan; Thiolation; Tissue engineering; Tissue-implant responses; Titanium