Solid Lipid Nanoparticles Based on Monosubstituted Pillar[5]arenes: Chemoselective Synthesis of Macrocycles and Their Supramolecular Self-Assembly

被引:3
|
作者
Filimonova, Darya [1 ]
Nazarova, Anastasia [1 ]
Yakimova, Luidmila [1 ]
Stoikov, Ivan [1 ,2 ]
机构
[1] Kazan Fed Univ, AM Butlerov Chem Inst, 18 Kremlyovskaya Str, Kazan 420008, Russia
[2] Federal Ctr Toxicol Radiat & Biol Safety, Fed State Budgetary Sci Inst, Nauchny Gorodok 2, Kazan 420075, Russia
关键词
macrocycles; pillar[5]arene; self-assembly; solid lipid nanoparticles; DRUG-DELIVERY; BUILDING-BLOCKS; CARRIERS; FORMULATION; SURFACTANT; POLYMERS; RELEASE; SLN;
D O I
10.3390/nano12234266
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Novel monosubstituted pillar[5]arenes with one or two terminal carboxyl groups were synthesized by the reaction of succinic anhydride with pillar[5]arene derivative containing a diethylenetriamine function. The ability for non-covalent self-assembly in chloroform, dimethyl sulfoxide, as well as in tetrahydrofuran-water system was studied. The ability of the synthesized macrocycles to form different types of associates depending on the substituent nature was established. The formation of stable particles with average diameter of 192 nm in chloroform and of 439 nm in DMSO was shown for pillar[5]arene containing two carboxyl fragments. Solid lipid nanoparticles (SLN) based on monosubstituted pillar[5]arenes were synthesized by nanoprecipitation in THF-water system. Minor changes in the structure of the macrocycle substituent can dramatically influence the stability and shape of SLN (spherical and rod-like structures) accordingly to DLS and TEM. The presence of two carboxyl groups in the macrocycle substituent leads to the formation of stable spherical SLN with an average hydrodynamic diameter of 364-454 nm. Rod-like structures are formed by pillar[5]arene containing one carboxyl fragment, which diameter is about of 50-80 nm and length of 700-1000 nm. The synthesized stable SLN open up great prospects for their use as drug storage systems.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Amphiphilic pillar[5]arenes: influence of chemical structure on self-assembly morphology and application in gas response and λ-DNA condensation
    Yao, Yong
    Wei, Peifa
    Yue, Shiyu
    Li, Jinying
    Xue, Min
    RSC ADVANCES, 2014, 4 (12) : 6042 - 6047
  • [32] Solvent-induced supramolecular self-assembly in a solid-state A1/A2-difunctionlized pillar[5]arene host
    Vinodh, Mickey
    Al-Azemi, Talal F.
    CRYSTENGCOMM, 2024, 26 (37) : 5138 - 5143
  • [33] Ionic self-assembly of pillar[5]arenes: proton-conductive liquid crystals and aqueous nanoobjects with encapsulation properties
    Marin, Ivan
    Merino, Rosa I.
    Barbera, Joaquin
    Concellon, Alberto
    Serrano, Jose L.
    MATERIALS ADVANCES, 2023, 4 (22): : 5564 - 5572
  • [34] Synthesis of supramolecular solid polymer electrolytes via self-assembly of diborylated ionic liquid
    Matsumi, Noriyoshi
    Kagata, Akihito
    Aoi, Keigo
    JOURNAL OF POWER SOURCES, 2010, 195 (18) : 6182 - 6186
  • [35] Aerosol-Based Self-Assembly of Nanoparticles into Solid or Hollow Mesospheres
    Wu, Chunwei
    Lee, Donggeun
    Zachariah, Michael R.
    LANGMUIR, 2010, 26 (06) : 4327 - 4330
  • [36] Fluorescein-Loaded Solid Lipid Nanoparticles Based on Monoamine Pillar[5]arene: Synthesis and Interaction with DNA
    Yakimova, L. S.
    Shurpik, D. N.
    Guralnik, E. G.
    Evtugyn, V. G.
    Osin, Y. N.
    Stoikov, I. I.
    CHEMNANOMAT, 2018, 4 (09): : 919 - 923
  • [37] Self-assembly of [2]pseudorotaxanes based on pillar[5]arene and bis(imidazolium) cations
    Li, Chunju
    Zhao, Liu
    Li, Jian
    Ding, Xia
    Chen, Songhui
    Zhang, Qiaolin
    Yu, Yihua
    Jia, Xueshun
    CHEMICAL COMMUNICATIONS, 2010, 46 (47) : 9016 - 9018
  • [38] A Ternary Supramolecular Self-Assembly Model Based on Cyclopentano Cucurbit[5]uril
    C. Wang
    S. Y. Cheng
    W. W. Zhao
    X. N. Yang
    K. Z. Zhou
    J. J. Tian
    D. F. Jiang
    P. H. Ma
    Crystallography Reports, 2020, 65 : 1156 - 1160
  • [39] A Ternary Supramolecular Self-Assembly Model Based on Cyclopentano Cucurbit[5]uril
    Wang, C.
    Cheng, S. Y.
    Zhao, W. W.
    Yang, X. N.
    Zhou, K. Z.
    Tian, J. J.
    Jiang, D. F.
    Ma, P. H.
    CRYSTALLOGRAPHY REPORTS, 2020, 65 (07) : 1156 - 1160
  • [40] Supramolecular self-assembly of water-soluble nanoparticles based on amphiphilic p-tert-butylthiacalix[4]arenes with silver nitrate and fluorescein
    Andreyko, Elena A.
    Padnya, Pavel L.
    Stoikov, Ivan I.
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2014, 454 : 74 - 83