Synthesis of the glycodendrimer macromolecule based on porphyrin as a targeted drug delivery system

被引:0
作者
Shojaei, Rezvan [1 ]
Mighani, Hossein [1 ]
Yeganeh-Salman, Elham [2 ]
Taheri, Pouya [2 ]
Ghorbanian, Moein [2 ]
Aghdami, Raha Mokhtari [1 ]
机构
[1] Golestan Univ, Fac Sci, Dept Chem, Gorgan, Iran
[2] Univ Mazandaran, Fac Chem, Babolsar 4741613534, Iran
关键词
Drug delivery system; glycodendrimer; macromolecule; porphyrin; DENDRIMERS; NANOPARTICLES; CARRIERS;
D O I
10.1080/00914037.2023.2289518
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
0805 ; 080501 ; 080502 ;
摘要
The present study synthesized a novel dendrimer with specific functional groups and use them as pharmaceutical carriers at the nanoscale. First, a glycodendrimer was synthesized and a porphyrin substance was selected as its core. Afterward, this substance was subsequently reacted with gallic acid and bromo valerate step-by-step and it was conjugated with acrylonitrile functionalized with Tris (hydroxymethyl) aminomethane. Eventually, the composition was reacted with Tris [alpha-D Manos (pyrazolyl oxy) methyl] methylamine and glycodendrimer (TTP-Tr-GD) was prepared via a divergent approach to develop drug delivery system. The nanocarrier was characterized using several techniques, such as scanning electron microscopy (FE-SEM), thermal analysis (TGA), NMR, Fourier transform infrared (FT-IR), differential laser scanning (DLS), elemental mapping (EDS), and Zeta potential. Effective factors on the release of the drug delivery, including the best time to absorb, sample pH, and reaction temperature were optimized. The statistically optimized sorption efficiency (98.11%) was attained at pH = 5.5, and a contact time of 15 min. As a result of the functional groups on the surface of the TTP-Tr-GD are appropriate for simultaneous determination and high throughput analysis of drug delivery system.
引用
收藏
页码:1337 / 1352
页数:16
相关论文
共 71 条
  • [1] Carrier in carrier: Catanionic vesicles based on amphiphilic cyclodextrins complexed with DNA as nanocarriers of doxorubicin
    Alarcon, Liliana P.
    Andrada, Heber E.
    Olivera, Maria E.
    Silva, O. Fernando
    Falcone, R. Dario
    [J]. JOURNAL OF MOLECULAR LIQUIDS, 2022, 360
  • [2] Magnetic solid-phase extraction of non-steroidal anti-inflammatory drugs from environmental water samples using polyamidoamine dendrimer functionalized with magnetite nanoparticles as a sorbent
    Alinezha, Heshmatollah
    Amiri, Amirhassan
    Tarahomi, Mehrasa
    Maleki, Behrooz
    [J]. TALANTA, 2018, 183 : 149 - 157
  • [3] [Anonymous], DENDRIMERS 4 METAL C
  • [4] [Anonymous], 2023, POLYMERIC NANOSYSTEM, DOI [https://doi.org/10.1016/B978-0-323-85656-0.00012-7, DOI 10.1016/B978-0-323-85656-0.00012-7]
  • [5] Polymerization and Dyeing Properties of Gallic Acid on Silk Fabric Catalyzed by Horseradish Peroxidase
    Baek, Na-won
    Fan, Xue-rong
    Yuan, Jiu-gang
    Xu, Jin
    Wang, Qiang
    [J]. FIBERS AND POLYMERS, 2021, 22 (08) : 2145 - 2155
  • [6] Dendrimers as potential drug carriers; encapsulation of acidic hydrophobes within water soluble PAMAM derivatives
    Beezer, AE
    King, ASH
    Martin, IK
    Mitchell, JC
    Twyman, LJ
    Wain, CF
    [J]. TETRAHEDRON, 2003, 59 (22) : 3873 - 3880
  • [7] Benita S., 2005, Micro-encapsulation: Methods and Industrial Applications, Second Edition, 2nd Edition, V2nd
  • [8] Properties and Bioapplications of Amphiphilic Janus Dendrimers: A Review
    Cata, Adina
    Ienascu, Ioana Maria Carmen
    Stefanut, Mariana Nela
    Rosu, Dan
    Pop, Oana-Raluca
    [J]. PHARMACEUTICS, 2023, 15 (02)
  • [9] Synthesis and Nuclear Magnetic Resonance Structural Evaluation of Oxime-Linked Oligosialic Acid-Based Glycodendrimers
    Cerney, James P.
    Raskovalov, Aleksey
    Nasseri, Monica
    Silva, Madeline D.
    McReynolds, Katherine D.
    [J]. BIOMACROMOLECULES, 2023, 24 (04) : 1901 - 1911
  • [10] Dendrimers in vaccine delivery: Recent progress and advances
    Chowdhury, Silvia
    Toth, Istvan
    Stephenson, Rachel J.
    [J]. BIOMATERIALS, 2022, 280