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1 3 diphenylisobenzofuran dpbf  (MedChemExpress)


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    Structured Review

    MedChemExpress 1 3 diphenylisobenzofuran dpbf
    Synthesis and characterization of UCNP@RB-dFer and PTP-UCNP@RB-dFer. Hydrodynamic diameter (A) (n = 3) and zeta potential (B) (n = 3) of NH 2 -UCNP, UCNP@RB, UCNP@RB-dFer and PTP-UCNP@RB-dFer; (C) Fluorescence spectroscopy of UCNP@RB and UCNP@RB-dFer (dFer was labeled with FITC for the synthesis of UCNP@RB-dFer); TEM images and DLS measurements of UCNP@RB-dFer (D) and PTP-UCNP@RB-dFer (E) ; (F) The hydrodynamic diameter and zeta potential stability of PTP-UCNP@RB-dFer within 7 days (n = 3); (G – K) ROS generation in different solution using <t>DPBF</t> as the probe; (L) The release profile of dFer from PTP-UCNP@RB-dFer with different power of NIR or without NIR (n = 3). Error bars represent the mean ± SD.
    1 3 Diphenylisobenzofuran Dpbf, supplied by MedChemExpress, used in various techniques. Bioz Stars score: 95/100, based on 32 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    1 3 diphenylisobenzofuran dpbf - by Bioz Stars, 2026-02
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    Images

    1) Product Images from "Spatiotemporally controlled ferritin-targeting PROTAC nanoplatform for visualized manipulation of endogenous “Iron pool” in pancreatic cancer therapy"

    Article Title: Spatiotemporally controlled ferritin-targeting PROTAC nanoplatform for visualized manipulation of endogenous “Iron pool” in pancreatic cancer therapy

    Journal: Materials Today Bio

    doi: 10.1016/j.mtbio.2025.102661

    Synthesis and characterization of UCNP@RB-dFer and PTP-UCNP@RB-dFer. Hydrodynamic diameter (A) (n = 3) and zeta potential (B) (n = 3) of NH 2 -UCNP, UCNP@RB, UCNP@RB-dFer and PTP-UCNP@RB-dFer; (C) Fluorescence spectroscopy of UCNP@RB and UCNP@RB-dFer (dFer was labeled with FITC for the synthesis of UCNP@RB-dFer); TEM images and DLS measurements of UCNP@RB-dFer (D) and PTP-UCNP@RB-dFer (E) ; (F) The hydrodynamic diameter and zeta potential stability of PTP-UCNP@RB-dFer within 7 days (n = 3); (G – K) ROS generation in different solution using DPBF as the probe; (L) The release profile of dFer from PTP-UCNP@RB-dFer with different power of NIR or without NIR (n = 3). Error bars represent the mean ± SD.
    Figure Legend Snippet: Synthesis and characterization of UCNP@RB-dFer and PTP-UCNP@RB-dFer. Hydrodynamic diameter (A) (n = 3) and zeta potential (B) (n = 3) of NH 2 -UCNP, UCNP@RB, UCNP@RB-dFer and PTP-UCNP@RB-dFer; (C) Fluorescence spectroscopy of UCNP@RB and UCNP@RB-dFer (dFer was labeled with FITC for the synthesis of UCNP@RB-dFer); TEM images and DLS measurements of UCNP@RB-dFer (D) and PTP-UCNP@RB-dFer (E) ; (F) The hydrodynamic diameter and zeta potential stability of PTP-UCNP@RB-dFer within 7 days (n = 3); (G – K) ROS generation in different solution using DPBF as the probe; (L) The release profile of dFer from PTP-UCNP@RB-dFer with different power of NIR or without NIR (n = 3). Error bars represent the mean ± SD.

    Techniques Used: Zeta Potential Analyzer, Fluorescence, Spectroscopy, Labeling



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    MedChemExpress 1 3 diphenylisobenzofuran dpbf
    Synthesis and characterization of UCNP@RB-dFer and PTP-UCNP@RB-dFer. Hydrodynamic diameter (A) (n = 3) and zeta potential (B) (n = 3) of NH 2 -UCNP, UCNP@RB, UCNP@RB-dFer and PTP-UCNP@RB-dFer; (C) Fluorescence spectroscopy of UCNP@RB and UCNP@RB-dFer (dFer was labeled with FITC for the synthesis of UCNP@RB-dFer); TEM images and DLS measurements of UCNP@RB-dFer (D) and PTP-UCNP@RB-dFer (E) ; (F) The hydrodynamic diameter and zeta potential stability of PTP-UCNP@RB-dFer within 7 days (n = 3); (G – K) ROS generation in different solution using <t>DPBF</t> as the probe; (L) The release profile of dFer from PTP-UCNP@RB-dFer with different power of NIR or without NIR (n = 3). Error bars represent the mean ± SD.
    1 3 Diphenylisobenzofuran Dpbf, supplied by MedChemExpress, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Synthesis and characterization of UCNP@RB-dFer and PTP-UCNP@RB-dFer. Hydrodynamic diameter (A) (n = 3) and zeta potential (B) (n = 3) of NH 2 -UCNP, UCNP@RB, UCNP@RB-dFer and PTP-UCNP@RB-dFer; (C) Fluorescence spectroscopy of UCNP@RB and UCNP@RB-dFer (dFer was labeled with FITC for the synthesis of UCNP@RB-dFer); TEM images and DLS measurements of UCNP@RB-dFer (D) and PTP-UCNP@RB-dFer (E) ; (F) The hydrodynamic diameter and zeta potential stability of PTP-UCNP@RB-dFer within 7 days (n = 3); (G – K) ROS generation in different solution using <t>DPBF</t> as the probe; (L) The release profile of dFer from PTP-UCNP@RB-dFer with different power of NIR or without NIR (n = 3). Error bars represent the mean ± SD.
    1 3 Diphenylisobenzofuran, supplied by MedChemExpress, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    MedChemExpress diphenylisobenzofuran
    Synthesis and characterization of UCNP@RB-dFer and PTP-UCNP@RB-dFer. Hydrodynamic diameter (A) (n = 3) and zeta potential (B) (n = 3) of NH 2 -UCNP, UCNP@RB, UCNP@RB-dFer and PTP-UCNP@RB-dFer; (C) Fluorescence spectroscopy of UCNP@RB and UCNP@RB-dFer (dFer was labeled with FITC for the synthesis of UCNP@RB-dFer); TEM images and DLS measurements of UCNP@RB-dFer (D) and PTP-UCNP@RB-dFer (E) ; (F) The hydrodynamic diameter and zeta potential stability of PTP-UCNP@RB-dFer within 7 days (n = 3); (G – K) ROS generation in different solution using <t>DPBF</t> as the probe; (L) The release profile of dFer from PTP-UCNP@RB-dFer with different power of NIR or without NIR (n = 3). Error bars represent the mean ± SD.
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    Synthesis and characterization of UCNP@RB-dFer and PTP-UCNP@RB-dFer. Hydrodynamic diameter (A) (n = 3) and zeta potential (B) (n = 3) of NH 2 -UCNP, UCNP@RB, UCNP@RB-dFer and PTP-UCNP@RB-dFer; (C) Fluorescence spectroscopy of UCNP@RB and UCNP@RB-dFer (dFer was labeled with FITC for the synthesis of UCNP@RB-dFer); TEM images and DLS measurements of UCNP@RB-dFer (D) and PTP-UCNP@RB-dFer (E) ; (F) The hydrodynamic diameter and zeta potential stability of PTP-UCNP@RB-dFer within 7 days (n = 3); (G – K) ROS generation in different solution using <t>DPBF</t> as the probe; (L) The release profile of dFer from PTP-UCNP@RB-dFer with different power of NIR or without NIR (n = 3). Error bars represent the mean ± SD.
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    MedChemExpress 1,3-diphenylisobenzofuran
    Synthesis and characterization of UCNP@RB-dFer and PTP-UCNP@RB-dFer. Hydrodynamic diameter (A) (n = 3) and zeta potential (B) (n = 3) of NH 2 -UCNP, UCNP@RB, UCNP@RB-dFer and PTP-UCNP@RB-dFer; (C) Fluorescence spectroscopy of UCNP@RB and UCNP@RB-dFer (dFer was labeled with FITC for the synthesis of UCNP@RB-dFer); TEM images and DLS measurements of UCNP@RB-dFer (D) and PTP-UCNP@RB-dFer (E) ; (F) The hydrodynamic diameter and zeta potential stability of PTP-UCNP@RB-dFer within 7 days (n = 3); (G – K) ROS generation in different solution using <t>DPBF</t> as the probe; (L) The release profile of dFer from PTP-UCNP@RB-dFer with different power of NIR or without NIR (n = 3). Error bars represent the mean ± SD.
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    MedChemExpress diphenylisobenzofuran dpbf medchemexpress
    Synthesis and characterization of UCNP@RB-dFer and PTP-UCNP@RB-dFer. Hydrodynamic diameter (A) (n = 3) and zeta potential (B) (n = 3) of NH 2 -UCNP, UCNP@RB, UCNP@RB-dFer and PTP-UCNP@RB-dFer; (C) Fluorescence spectroscopy of UCNP@RB and UCNP@RB-dFer (dFer was labeled with FITC for the synthesis of UCNP@RB-dFer); TEM images and DLS measurements of UCNP@RB-dFer (D) and PTP-UCNP@RB-dFer (E) ; (F) The hydrodynamic diameter and zeta potential stability of PTP-UCNP@RB-dFer within 7 days (n = 3); (G – K) ROS generation in different solution using <t>DPBF</t> as the probe; (L) The release profile of dFer from PTP-UCNP@RB-dFer with different power of NIR or without NIR (n = 3). Error bars represent the mean ± SD.
    Diphenylisobenzofuran Dpbf Medchemexpress, supplied by MedChemExpress, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Image Search Results


    Synthesis and characterization of UCNP@RB-dFer and PTP-UCNP@RB-dFer. Hydrodynamic diameter (A) (n = 3) and zeta potential (B) (n = 3) of NH 2 -UCNP, UCNP@RB, UCNP@RB-dFer and PTP-UCNP@RB-dFer; (C) Fluorescence spectroscopy of UCNP@RB and UCNP@RB-dFer (dFer was labeled with FITC for the synthesis of UCNP@RB-dFer); TEM images and DLS measurements of UCNP@RB-dFer (D) and PTP-UCNP@RB-dFer (E) ; (F) The hydrodynamic diameter and zeta potential stability of PTP-UCNP@RB-dFer within 7 days (n = 3); (G – K) ROS generation in different solution using DPBF as the probe; (L) The release profile of dFer from PTP-UCNP@RB-dFer with different power of NIR or without NIR (n = 3). Error bars represent the mean ± SD.

    Journal: Materials Today Bio

    Article Title: Spatiotemporally controlled ferritin-targeting PROTAC nanoplatform for visualized manipulation of endogenous “Iron pool” in pancreatic cancer therapy

    doi: 10.1016/j.mtbio.2025.102661

    Figure Lengend Snippet: Synthesis and characterization of UCNP@RB-dFer and PTP-UCNP@RB-dFer. Hydrodynamic diameter (A) (n = 3) and zeta potential (B) (n = 3) of NH 2 -UCNP, UCNP@RB, UCNP@RB-dFer and PTP-UCNP@RB-dFer; (C) Fluorescence spectroscopy of UCNP@RB and UCNP@RB-dFer (dFer was labeled with FITC for the synthesis of UCNP@RB-dFer); TEM images and DLS measurements of UCNP@RB-dFer (D) and PTP-UCNP@RB-dFer (E) ; (F) The hydrodynamic diameter and zeta potential stability of PTP-UCNP@RB-dFer within 7 days (n = 3); (G – K) ROS generation in different solution using DPBF as the probe; (L) The release profile of dFer from PTP-UCNP@RB-dFer with different power of NIR or without NIR (n = 3). Error bars represent the mean ± SD.

    Article Snippet: Fluorescamine, H 2 N-PEG 2 -CH 2 COOH, (S,R,S)-AHPC-Me hydrochloride (VHL ligand), fluorescein isothiocyanate (FITC), 1,3-diphenylisobenzofuran (DPBF), BODIPY581/591-C11, FerroOrange, MG132 and Protein A/G IP Magnetic Beads were purchased from MedChemExpress LLC (Shanghai, China).

    Techniques: Zeta Potential Analyzer, Fluorescence, Spectroscopy, Labeling