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Biocell Technology azd2858
Azd2858, supplied by Biocell Technology, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/azd2858/product/Biocell Technology
Average 90 stars, based on 1 article reviews
azd2858 - by Bioz Stars, 2026-02
90/100 stars

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Image Search Results


Loading the SF/MSN nanocomposite coating onto the surface of drug-loaded TNTs, which continuously release AZD2858 for more than 1 week around the implant to promote osseointegration.

Journal: ACS Applied Materials & Interfaces

Article Title: TiO 2 Nanotube Implants Modified with Silk Fibroin and Mesoporous Silica Nanocomposite Coatings Enable Efficient Drug Release to Promote Osteogenesis

doi: 10.1021/acsami.5c03599

Figure Lengend Snippet: Loading the SF/MSN nanocomposite coating onto the surface of drug-loaded TNTs, which continuously release AZD2858 for more than 1 week around the implant to promote osseointegration.

Article Snippet: This was followed by the addition of 20 μL of 2.5 μM AZD2858 solution (CAS No.: 486424-20-8, MedChemExpress, USA) on the TNTs and drying under negative pressure to obtain AZD2858-loaded TNTs (TNTs@AZD: TA).

Techniques:

Characterization of different specimens. (a) Loading the SF/MSN nanocomposite coating on the surface of AZD2858-loaded TNTs. (b) FE-SEM and TEM images of surface and cross-sectional morphologies of different specimens. (c) The pore size distribution analysis of MSN. (d) The particle size distribution analysis of MSN. (e) The nitrogen adsorption–desorption isotherm of MSN. (f) Nanoscratch results for TAMA. (g) Water contact angle of different specimens.

Journal: ACS Applied Materials & Interfaces

Article Title: TiO 2 Nanotube Implants Modified with Silk Fibroin and Mesoporous Silica Nanocomposite Coatings Enable Efficient Drug Release to Promote Osteogenesis

doi: 10.1021/acsami.5c03599

Figure Lengend Snippet: Characterization of different specimens. (a) Loading the SF/MSN nanocomposite coating on the surface of AZD2858-loaded TNTs. (b) FE-SEM and TEM images of surface and cross-sectional morphologies of different specimens. (c) The pore size distribution analysis of MSN. (d) The particle size distribution analysis of MSN. (e) The nitrogen adsorption–desorption isotherm of MSN. (f) Nanoscratch results for TAMA. (g) Water contact angle of different specimens.

Article Snippet: This was followed by the addition of 20 μL of 2.5 μM AZD2858 solution (CAS No.: 486424-20-8, MedChemExpress, USA) on the TNTs and drying under negative pressure to obtain AZD2858-loaded TNTs (TNTs@AZD: TA).

Techniques: Pore Size, Adsorption

Drug release and degradation behavior of the coatings. (a,b) Coatings secondary structure analysis by FTIR spectroscopy. (c,d) The drug release of AZD2858 from different specimens. (e,f) The degradation behavior of the coating of TAMA. </xref> a: Created in BioRender. Mu, Y. (2025) https://BioRender.com/opi22ox .

Journal: ACS Applied Materials & Interfaces

Article Title: TiO 2 Nanotube Implants Modified with Silk Fibroin and Mesoporous Silica Nanocomposite Coatings Enable Efficient Drug Release to Promote Osteogenesis

doi: 10.1021/acsami.5c03599

Figure Lengend Snippet: Drug release and degradation behavior of the coatings. (a,b) Coatings secondary structure analysis by FTIR spectroscopy. (c,d) The drug release of AZD2858 from different specimens. (e,f) The degradation behavior of the coating of TAMA. a: Created in BioRender. Mu, Y. (2025) https://BioRender.com/opi22ox .

Article Snippet: This was followed by the addition of 20 μL of 2.5 μM AZD2858 solution (CAS No.: 486424-20-8, MedChemExpress, USA) on the TNTs and drying under negative pressure to obtain AZD2858-loaded TNTs (TNTs@AZD: TA).

Techniques: Spectroscopy

Loading the SF/MSN nanocomposite coating onto the surface of drug-loaded TNTs, which continuously release AZD2858 for more than 1 week around the implant to promote osseointegration.

Journal: ACS Applied Materials & Interfaces

Article Title: TiO 2 Nanotube Implants Modified with Silk Fibroin and Mesoporous Silica Nanocomposite Coatings Enable Efficient Drug Release to Promote Osteogenesis

doi: 10.1021/acsami.5c03599

Figure Lengend Snippet: Loading the SF/MSN nanocomposite coating onto the surface of drug-loaded TNTs, which continuously release AZD2858 for more than 1 week around the implant to promote osseointegration.

Article Snippet: This was followed by the addition of 20 μL of 2.5 μM AZD2858 solution (CAS No.: 486424-20-8, MedChemExpress, USA) on the TNTs and drying under negative pressure to obtain AZD2858-loaded TNTs (TNTs@AZD: TA).

Techniques:

Characterization of different specimens. (a) Loading the SF/MSN nanocomposite coating on the surface of AZD2858-loaded TNTs. (b) FE-SEM and TEM images of surface and cross-sectional morphologies of different specimens. (c) The pore size distribution analysis of MSN. (d) The particle size distribution analysis of MSN. (e) The nitrogen adsorption–desorption isotherm of MSN. (f) Nanoscratch results for TAMA. (g) Water contact angle of different specimens.

Journal: ACS Applied Materials & Interfaces

Article Title: TiO 2 Nanotube Implants Modified with Silk Fibroin and Mesoporous Silica Nanocomposite Coatings Enable Efficient Drug Release to Promote Osteogenesis

doi: 10.1021/acsami.5c03599

Figure Lengend Snippet: Characterization of different specimens. (a) Loading the SF/MSN nanocomposite coating on the surface of AZD2858-loaded TNTs. (b) FE-SEM and TEM images of surface and cross-sectional morphologies of different specimens. (c) The pore size distribution analysis of MSN. (d) The particle size distribution analysis of MSN. (e) The nitrogen adsorption–desorption isotherm of MSN. (f) Nanoscratch results for TAMA. (g) Water contact angle of different specimens.

Article Snippet: This was followed by the addition of 20 μL of 2.5 μM AZD2858 solution (CAS No.: 486424-20-8, MedChemExpress, USA) on the TNTs and drying under negative pressure to obtain AZD2858-loaded TNTs (TNTs@AZD: TA).

Techniques: Pore Size, Adsorption

Drug release and degradation behavior of the coatings. (a,b) Coatings secondary structure analysis by FTIR spectroscopy. (c,d) The drug release of AZD2858 from different specimens. (e,f) The degradation behavior of the coating of TAMA. </xref> a: Created in BioRender. Mu, Y. (2025) https://BioRender.com/opi22ox .

Journal: ACS Applied Materials & Interfaces

Article Title: TiO 2 Nanotube Implants Modified with Silk Fibroin and Mesoporous Silica Nanocomposite Coatings Enable Efficient Drug Release to Promote Osteogenesis

doi: 10.1021/acsami.5c03599

Figure Lengend Snippet: Drug release and degradation behavior of the coatings. (a,b) Coatings secondary structure analysis by FTIR spectroscopy. (c,d) The drug release of AZD2858 from different specimens. (e,f) The degradation behavior of the coating of TAMA. a: Created in BioRender. Mu, Y. (2025) https://BioRender.com/opi22ox .

Article Snippet: This was followed by the addition of 20 μL of 2.5 μM AZD2858 solution (CAS No.: 486424-20-8, MedChemExpress, USA) on the TNTs and drying under negative pressure to obtain AZD2858-loaded TNTs (TNTs@AZD: TA).

Techniques: Spectroscopy