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cqd functionalized  (BOC Sciences)


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    Structured Review

    BOC Sciences cqd functionalized
    Overall representation for the preparation <t>of</t> <t>5-ALA-CQD-Glu-β-CD</t> nanocarrier.
    Cqd Functionalized, supplied by BOC Sciences, 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/cqd functionalized/product/BOC Sciences
    Average 90 stars, based on 1 article reviews
    cqd functionalized - by Bioz Stars, 2026-05
    90/100 stars

    Images

    1) Product Images from "Combined photodynamic-chemotherapy investigation of cancer cells using carbon quantum dot-based drug carrier system"

    Article Title: Combined photodynamic-chemotherapy investigation of cancer cells using carbon quantum dot-based drug carrier system

    Journal: Drug Delivery

    doi: 10.1080/10717544.2020.1765431

    Overall representation for the preparation of 5-ALA-CQD-Glu-β-CD nanocarrier.
    Figure Legend Snippet: Overall representation for the preparation of 5-ALA-CQD-Glu-β-CD nanocarrier.

    Techniques Used:

    FTIR spectra of (a) Ts-β-CD, (b) BOC-Glu, (c) Ts-β-CD- g -BOC-Glu, (d) CQD, (e) CQD-Glu-β-CD, (f) 5-ALA-CQD-Glu-β-CD, and (g) DOX/5-ALA-CQD-Glu-β-CD nanocarrier.
    Figure Legend Snippet: FTIR spectra of (a) Ts-β-CD, (b) BOC-Glu, (c) Ts-β-CD- g -BOC-Glu, (d) CQD, (e) CQD-Glu-β-CD, (f) 5-ALA-CQD-Glu-β-CD, and (g) DOX/5-ALA-CQD-Glu-β-CD nanocarrier.

    Techniques Used:

    XRD pattern of (a) Ts-β-CD, (b) BOC-Glu, (c) Ts-β-CD- g -BOC-Glu, (d) CQD (e) CQD-Glu-β-CD, (f) 5-ALA-CQD-Glu-β-CD, and (f) DOX/5-ALA-CQD-Glu-β-CD nanocarrier.
    Figure Legend Snippet: XRD pattern of (a) Ts-β-CD, (b) BOC-Glu, (c) Ts-β-CD- g -BOC-Glu, (d) CQD (e) CQD-Glu-β-CD, (f) 5-ALA-CQD-Glu-β-CD, and (f) DOX/5-ALA-CQD-Glu-β-CD nanocarrier.

    Techniques Used:

    TEM images with SEAD spectrum of (a) CQD, (b) 5-ALA-CQD-BOC-Glu-β-CD, and (c) DOX/5-ALA-CQD-BOC-Glu-β-CD nanocarrier.
    Figure Legend Snippet: TEM images with SEAD spectrum of (a) CQD, (b) 5-ALA-CQD-BOC-Glu-β-CD, and (c) DOX/5-ALA-CQD-BOC-Glu-β-CD nanocarrier.

    Techniques Used:

    The AFM images of 2D, 3D, and topographical images of (a–c) CQD, (d–f) 5-ALA-CQD-BOC-Glu-β-CD, and (g–i) DOX/5-ALA-CQD-BOC-Glu-β-CD nanocarrier.
    Figure Legend Snippet: The AFM images of 2D, 3D, and topographical images of (a–c) CQD, (d–f) 5-ALA-CQD-BOC-Glu-β-CD, and (g–i) DOX/5-ALA-CQD-BOC-Glu-β-CD nanocarrier.

    Techniques Used:

    UV–vis spectrum (a) encapsulation efficiency and (b) loading capacity of DOX/5-ALA-CQD-BOC-Glu-β-CD nanocarrier.
    Figure Legend Snippet: UV–vis spectrum (a) encapsulation efficiency and (b) loading capacity of DOX/5-ALA-CQD-BOC-Glu-β-CD nanocarrier.

    Techniques Used:

    In vitro drug release behavior of 5-ALA and DOX drug from DOX/5-ALA-CQD-BOC-Glu-β-CD under three different physiological pHs (A) 2.8, (B) 5.5, (C) 6.8 at 27 °C for 24 h (A–C). Cumulative drug release (%) behavior (D–F).
    Figure Legend Snippet: In vitro drug release behavior of 5-ALA and DOX drug from DOX/5-ALA-CQD-BOC-Glu-β-CD under three different physiological pHs (A) 2.8, (B) 5.5, (C) 6.8 at 27 °C for 24 h (A–C). Cumulative drug release (%) behavior (D–F).

    Techniques Used: In Vitro

    In vitro morphological changes of fibroblast (WS-1) cell line treated with 5-ALA CQD-Glu-β-CD and DOX/5-ALA-CQD-Glu-β-CD nanocarrier in a various time-dependent manner such as 6 h, 12 h, 18 h, and 24 h and IC 50 concentration of 60 μg/mL at scale bar: ∼50 μm.
    Figure Legend Snippet: In vitro morphological changes of fibroblast (WS-1) cell line treated with 5-ALA CQD-Glu-β-CD and DOX/5-ALA-CQD-Glu-β-CD nanocarrier in a various time-dependent manner such as 6 h, 12 h, 18 h, and 24 h and IC 50 concentration of 60 μg/mL at scale bar: ∼50 μm.

    Techniques Used: In Vitro, Concentration Assay

    In vitro morphological changes by the chemo-photodynamic effect of breast cancer (MCF-7) cell treated with DOX/CQD-Glu-β-CD, 5-ALA-CQD-Glu-β-CD, and DOX/5-ALA-CQD-Glu-β-CD nanocarrier with and without irradiation in various time-dependent manners such as 6 h, 12 h, 18 h, and 24 h and IC 50 concentration of 60 μg/mL at scale bar: ∼100 μm.
    Figure Legend Snippet: In vitro morphological changes by the chemo-photodynamic effect of breast cancer (MCF-7) cell treated with DOX/CQD-Glu-β-CD, 5-ALA-CQD-Glu-β-CD, and DOX/5-ALA-CQD-Glu-β-CD nanocarrier with and without irradiation in various time-dependent manners such as 6 h, 12 h, 18 h, and 24 h and IC 50 concentration of 60 μg/mL at scale bar: ∼100 μm.

    Techniques Used: In Vitro, Irradiation, Concentration Assay

    Fluorescent microscopic images of breast cancer (MCF-7) cell line incubated with DOX-loaded CQD-Glu-β-CD, and DOX-loaded 5-ALA-CQD-Glu-β-CD nanocarrier without and with laser irradiation in a various time-dependent manner such as 6 h, 12 h, 18 h, and 24 h and IC 50 concentration of 60 μg/mL respectively at scale bar: ∼30 μm.
    Figure Legend Snippet: Fluorescent microscopic images of breast cancer (MCF-7) cell line incubated with DOX-loaded CQD-Glu-β-CD, and DOX-loaded 5-ALA-CQD-Glu-β-CD nanocarrier without and with laser irradiation in a various time-dependent manner such as 6 h, 12 h, 18 h, and 24 h and IC 50 concentration of 60 μg/mL respectively at scale bar: ∼30 μm.

    Techniques Used: Incubation, Irradiation, Concentration Assay

    ROS level evaluation under irradiation in 6 h incubation with DOX/5-ALA-CQD-Glu-β-CD nanocarrier in breast cancer (MCF-7) cell line without (a–c) and with radiation (d–f) scale bar: ∼10 μm.
    Figure Legend Snippet: ROS level evaluation under irradiation in 6 h incubation with DOX/5-ALA-CQD-Glu-β-CD nanocarrier in breast cancer (MCF-7) cell line without (a–c) and with radiation (d–f) scale bar: ∼10 μm.

    Techniques Used: Irradiation, Incubation

    Qualitative assessment of fluorescence intensity associated with MCF-7 cells by the incubation of coumarin-6 loaded CQD-Glu-β-CD nanocarrier for 1 (a), 3 (b), 6 (c), and 12 h using blue filter (excitation wavelength 460–490 nm, emission 470 nm) in inverted fluorescence microscopy.
    Figure Legend Snippet: Qualitative assessment of fluorescence intensity associated with MCF-7 cells by the incubation of coumarin-6 loaded CQD-Glu-β-CD nanocarrier for 1 (a), 3 (b), 6 (c), and 12 h using blue filter (excitation wavelength 460–490 nm, emission 470 nm) in inverted fluorescence microscopy.

    Techniques Used: Fluorescence, Incubation, Microscopy



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    Image Search Results


    Overall representation for the preparation of 5-ALA-CQD-Glu-β-CD nanocarrier.

    Journal: Drug Delivery

    Article Title: Combined photodynamic-chemotherapy investigation of cancer cells using carbon quantum dot-based drug carrier system

    doi: 10.1080/10717544.2020.1765431

    Figure Lengend Snippet: Overall representation for the preparation of 5-ALA-CQD-Glu-β-CD nanocarrier.

    Article Snippet: 5-ALA was tagged with CQD functionalized mono-(5-BOC-protected-glutamine-6-deoxy) β-cyclodextrin via EDC/NHS chemistry.

    Techniques:

    FTIR spectra of (a) Ts-β-CD, (b) BOC-Glu, (c) Ts-β-CD- g -BOC-Glu, (d) CQD, (e) CQD-Glu-β-CD, (f) 5-ALA-CQD-Glu-β-CD, and (g) DOX/5-ALA-CQD-Glu-β-CD nanocarrier.

    Journal: Drug Delivery

    Article Title: Combined photodynamic-chemotherapy investigation of cancer cells using carbon quantum dot-based drug carrier system

    doi: 10.1080/10717544.2020.1765431

    Figure Lengend Snippet: FTIR spectra of (a) Ts-β-CD, (b) BOC-Glu, (c) Ts-β-CD- g -BOC-Glu, (d) CQD, (e) CQD-Glu-β-CD, (f) 5-ALA-CQD-Glu-β-CD, and (g) DOX/5-ALA-CQD-Glu-β-CD nanocarrier.

    Article Snippet: 5-ALA was tagged with CQD functionalized mono-(5-BOC-protected-glutamine-6-deoxy) β-cyclodextrin via EDC/NHS chemistry.

    Techniques:

    XRD pattern of (a) Ts-β-CD, (b) BOC-Glu, (c) Ts-β-CD- g -BOC-Glu, (d) CQD (e) CQD-Glu-β-CD, (f) 5-ALA-CQD-Glu-β-CD, and (f) DOX/5-ALA-CQD-Glu-β-CD nanocarrier.

    Journal: Drug Delivery

    Article Title: Combined photodynamic-chemotherapy investigation of cancer cells using carbon quantum dot-based drug carrier system

    doi: 10.1080/10717544.2020.1765431

    Figure Lengend Snippet: XRD pattern of (a) Ts-β-CD, (b) BOC-Glu, (c) Ts-β-CD- g -BOC-Glu, (d) CQD (e) CQD-Glu-β-CD, (f) 5-ALA-CQD-Glu-β-CD, and (f) DOX/5-ALA-CQD-Glu-β-CD nanocarrier.

    Article Snippet: 5-ALA was tagged with CQD functionalized mono-(5-BOC-protected-glutamine-6-deoxy) β-cyclodextrin via EDC/NHS chemistry.

    Techniques:

    TEM images with SEAD spectrum of (a) CQD, (b) 5-ALA-CQD-BOC-Glu-β-CD, and (c) DOX/5-ALA-CQD-BOC-Glu-β-CD nanocarrier.

    Journal: Drug Delivery

    Article Title: Combined photodynamic-chemotherapy investigation of cancer cells using carbon quantum dot-based drug carrier system

    doi: 10.1080/10717544.2020.1765431

    Figure Lengend Snippet: TEM images with SEAD spectrum of (a) CQD, (b) 5-ALA-CQD-BOC-Glu-β-CD, and (c) DOX/5-ALA-CQD-BOC-Glu-β-CD nanocarrier.

    Article Snippet: 5-ALA was tagged with CQD functionalized mono-(5-BOC-protected-glutamine-6-deoxy) β-cyclodextrin via EDC/NHS chemistry.

    Techniques:

    The AFM images of 2D, 3D, and topographical images of (a–c) CQD, (d–f) 5-ALA-CQD-BOC-Glu-β-CD, and (g–i) DOX/5-ALA-CQD-BOC-Glu-β-CD nanocarrier.

    Journal: Drug Delivery

    Article Title: Combined photodynamic-chemotherapy investigation of cancer cells using carbon quantum dot-based drug carrier system

    doi: 10.1080/10717544.2020.1765431

    Figure Lengend Snippet: The AFM images of 2D, 3D, and topographical images of (a–c) CQD, (d–f) 5-ALA-CQD-BOC-Glu-β-CD, and (g–i) DOX/5-ALA-CQD-BOC-Glu-β-CD nanocarrier.

    Article Snippet: 5-ALA was tagged with CQD functionalized mono-(5-BOC-protected-glutamine-6-deoxy) β-cyclodextrin via EDC/NHS chemistry.

    Techniques:

    UV–vis spectrum (a) encapsulation efficiency and (b) loading capacity of DOX/5-ALA-CQD-BOC-Glu-β-CD nanocarrier.

    Journal: Drug Delivery

    Article Title: Combined photodynamic-chemotherapy investigation of cancer cells using carbon quantum dot-based drug carrier system

    doi: 10.1080/10717544.2020.1765431

    Figure Lengend Snippet: UV–vis spectrum (a) encapsulation efficiency and (b) loading capacity of DOX/5-ALA-CQD-BOC-Glu-β-CD nanocarrier.

    Article Snippet: 5-ALA was tagged with CQD functionalized mono-(5-BOC-protected-glutamine-6-deoxy) β-cyclodextrin via EDC/NHS chemistry.

    Techniques:

    In vitro drug release behavior of 5-ALA and DOX drug from DOX/5-ALA-CQD-BOC-Glu-β-CD under three different physiological pHs (A) 2.8, (B) 5.5, (C) 6.8 at 27 °C for 24 h (A–C). Cumulative drug release (%) behavior (D–F).

    Journal: Drug Delivery

    Article Title: Combined photodynamic-chemotherapy investigation of cancer cells using carbon quantum dot-based drug carrier system

    doi: 10.1080/10717544.2020.1765431

    Figure Lengend Snippet: In vitro drug release behavior of 5-ALA and DOX drug from DOX/5-ALA-CQD-BOC-Glu-β-CD under three different physiological pHs (A) 2.8, (B) 5.5, (C) 6.8 at 27 °C for 24 h (A–C). Cumulative drug release (%) behavior (D–F).

    Article Snippet: 5-ALA was tagged with CQD functionalized mono-(5-BOC-protected-glutamine-6-deoxy) β-cyclodextrin via EDC/NHS chemistry.

    Techniques: In Vitro

    In vitro morphological changes of fibroblast (WS-1) cell line treated with 5-ALA CQD-Glu-β-CD and DOX/5-ALA-CQD-Glu-β-CD nanocarrier in a various time-dependent manner such as 6 h, 12 h, 18 h, and 24 h and IC 50 concentration of 60 μg/mL at scale bar: ∼50 μm.

    Journal: Drug Delivery

    Article Title: Combined photodynamic-chemotherapy investigation of cancer cells using carbon quantum dot-based drug carrier system

    doi: 10.1080/10717544.2020.1765431

    Figure Lengend Snippet: In vitro morphological changes of fibroblast (WS-1) cell line treated with 5-ALA CQD-Glu-β-CD and DOX/5-ALA-CQD-Glu-β-CD nanocarrier in a various time-dependent manner such as 6 h, 12 h, 18 h, and 24 h and IC 50 concentration of 60 μg/mL at scale bar: ∼50 μm.

    Article Snippet: 5-ALA was tagged with CQD functionalized mono-(5-BOC-protected-glutamine-6-deoxy) β-cyclodextrin via EDC/NHS chemistry.

    Techniques: In Vitro, Concentration Assay

    In vitro morphological changes by the chemo-photodynamic effect of breast cancer (MCF-7) cell treated with DOX/CQD-Glu-β-CD, 5-ALA-CQD-Glu-β-CD, and DOX/5-ALA-CQD-Glu-β-CD nanocarrier with and without irradiation in various time-dependent manners such as 6 h, 12 h, 18 h, and 24 h and IC 50 concentration of 60 μg/mL at scale bar: ∼100 μm.

    Journal: Drug Delivery

    Article Title: Combined photodynamic-chemotherapy investigation of cancer cells using carbon quantum dot-based drug carrier system

    doi: 10.1080/10717544.2020.1765431

    Figure Lengend Snippet: In vitro morphological changes by the chemo-photodynamic effect of breast cancer (MCF-7) cell treated with DOX/CQD-Glu-β-CD, 5-ALA-CQD-Glu-β-CD, and DOX/5-ALA-CQD-Glu-β-CD nanocarrier with and without irradiation in various time-dependent manners such as 6 h, 12 h, 18 h, and 24 h and IC 50 concentration of 60 μg/mL at scale bar: ∼100 μm.

    Article Snippet: 5-ALA was tagged with CQD functionalized mono-(5-BOC-protected-glutamine-6-deoxy) β-cyclodextrin via EDC/NHS chemistry.

    Techniques: In Vitro, Irradiation, Concentration Assay

    Fluorescent microscopic images of breast cancer (MCF-7) cell line incubated with DOX-loaded CQD-Glu-β-CD, and DOX-loaded 5-ALA-CQD-Glu-β-CD nanocarrier without and with laser irradiation in a various time-dependent manner such as 6 h, 12 h, 18 h, and 24 h and IC 50 concentration of 60 μg/mL respectively at scale bar: ∼30 μm.

    Journal: Drug Delivery

    Article Title: Combined photodynamic-chemotherapy investigation of cancer cells using carbon quantum dot-based drug carrier system

    doi: 10.1080/10717544.2020.1765431

    Figure Lengend Snippet: Fluorescent microscopic images of breast cancer (MCF-7) cell line incubated with DOX-loaded CQD-Glu-β-CD, and DOX-loaded 5-ALA-CQD-Glu-β-CD nanocarrier without and with laser irradiation in a various time-dependent manner such as 6 h, 12 h, 18 h, and 24 h and IC 50 concentration of 60 μg/mL respectively at scale bar: ∼30 μm.

    Article Snippet: 5-ALA was tagged with CQD functionalized mono-(5-BOC-protected-glutamine-6-deoxy) β-cyclodextrin via EDC/NHS chemistry.

    Techniques: Incubation, Irradiation, Concentration Assay

    ROS level evaluation under irradiation in 6 h incubation with DOX/5-ALA-CQD-Glu-β-CD nanocarrier in breast cancer (MCF-7) cell line without (a–c) and with radiation (d–f) scale bar: ∼10 μm.

    Journal: Drug Delivery

    Article Title: Combined photodynamic-chemotherapy investigation of cancer cells using carbon quantum dot-based drug carrier system

    doi: 10.1080/10717544.2020.1765431

    Figure Lengend Snippet: ROS level evaluation under irradiation in 6 h incubation with DOX/5-ALA-CQD-Glu-β-CD nanocarrier in breast cancer (MCF-7) cell line without (a–c) and with radiation (d–f) scale bar: ∼10 μm.

    Article Snippet: 5-ALA was tagged with CQD functionalized mono-(5-BOC-protected-glutamine-6-deoxy) β-cyclodextrin via EDC/NHS chemistry.

    Techniques: Irradiation, Incubation

    Qualitative assessment of fluorescence intensity associated with MCF-7 cells by the incubation of coumarin-6 loaded CQD-Glu-β-CD nanocarrier for 1 (a), 3 (b), 6 (c), and 12 h using blue filter (excitation wavelength 460–490 nm, emission 470 nm) in inverted fluorescence microscopy.

    Journal: Drug Delivery

    Article Title: Combined photodynamic-chemotherapy investigation of cancer cells using carbon quantum dot-based drug carrier system

    doi: 10.1080/10717544.2020.1765431

    Figure Lengend Snippet: Qualitative assessment of fluorescence intensity associated with MCF-7 cells by the incubation of coumarin-6 loaded CQD-Glu-β-CD nanocarrier for 1 (a), 3 (b), 6 (c), and 12 h using blue filter (excitation wavelength 460–490 nm, emission 470 nm) in inverted fluorescence microscopy.

    Article Snippet: 5-ALA was tagged with CQD functionalized mono-(5-BOC-protected-glutamine-6-deoxy) β-cyclodextrin via EDC/NHS chemistry.

    Techniques: Fluorescence, Incubation, Microscopy