One-Pot Synthesis of Amino Acid-Based Polyelectrolytes and Nanoparticle Synthesis

被引:9
|
作者
Mommer, Stefan
Keul, Helmut [1 ]
Moeller, Martin [1 ]
机构
[1] Rhein Westfal TH Aachen, Inst Tech & Macromol Chem, Forckenbeckstr 50, D-52056 Aachen, Germany
关键词
POLYAMPHOLYTE NANOPARTICLES; MULTICOMPONENT REACTIONS; COMPLEX NANOPARTICLES; POLY(AMINO ACID)S; MOLECULAR-WEIGHT; THIOLACTONE; POLYMERS; PEGYLATION; CARNOSINE; BLOCK;
D O I
10.1021/acs.biomac.6b01420
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In this manuscript, a biscyclic monomer with an epoxide and a thiolactone ring connected by a urethane bond is used for the synthesis of amino acid-functional polyelectrolytes. In a first step, lithium salts of amino acids react selectively with the thiolactone ring by ring-opening, formation of an amide bond, and a thiol group. In a second step and in the presence of a base a polymeric building block is formed by polyaddition of the thiolate to the epoxide ring. The reaction occurs at room temperature in water as solvent. The resulting polymeric building-block has a poly(thioether urethane) backbone, with hydroxyl- and amino acid side groups; the connection of the amino acid to the backbone occurs by an amide bond. As proof of concept, a selected series of amino acids and derivatives of such is used: glycine, alanine, tyrosine, glutamic acid, epsilon-amino caproic acid (as a lysine surrogate), BOC-lysine-O-methyl ester, BOC-lysine, and the dipeptide carnosine. The resulting polymer building blocks with molecular weights of M-n = 1830-9590 g/mol are entirely based on both bio-based and biodegradable components. Exemplarily, using:the lithium salts of glycine and lysine methyl ester, anionic and cationic polyelectrolyte building blocks are obtained. A mixture of the two polyelectrolyte solutions results in the formation of polyelectrolyte complexes (PECs). With decreasing concentration of the polyelectrolyte solutions, the radii of PECs decrease.
引用
收藏
页码:159 / 168
页数:10
相关论文
共 50 条
  • [41] One-pot synthesis of (−)-Ambrox
    Shaoxiang Yang
    Hongyu Tian
    Baoguo Sun
    Yongguo Liu
    Yanfeng Hao
    Yanyu Lv
    Scientific Reports, 6
  • [42] ONE-POT SYNTHESIS OF FUROFLAVANONES
    Soman, Shubhangi S.
    Patel, Jagdish M.
    INDIAN JOURNAL OF HETEROCYCLIC CHEMISTRY, 2010, 19 (03) : 209 - 214
  • [43] One-Pot Synthesis of Thiocarbamates
    Waibel, Kevin A.
    Barther, Dennis
    Malliaridou, Triantafillia
    Moatsou, Dafni
    Meier, Michael A. R.
    EUROPEAN JOURNAL OF ORGANIC CHEMISTRY, 2021, 2021 (31) : 4508 - 4516
  • [44] Synthesis of olefins in "one-pot"
    Bellone, H
    Adamus, SM
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2004, 227 : U634 - U634
  • [45] ONE-POT SYNTHESIS OF SPIROGLYCOL
    Xu, Jun Ming
    Liu, Fu Sheng
    Yu, Shi Tao
    BULLETIN OF THE CHEMICAL SOCIETY OF ETHIOPIA, 2008, 22 (01) : 149 - 152
  • [46] ONE-POT SYNTHESIS OF HEXATRIYNEDIAMINES
    FAUL, D
    LEBER, E
    HIMBERT, G
    SYNTHESIS-STUTTGART, 1987, (01): : 73 - 74
  • [47] A One-Pot Synthesis of Triazolodiazepines
    Hooyberghs, Geert
    Van Hove, Sofie
    Jacobs, Jeroen
    Van Meervelt, Luc
    Van der Eycken, Erik V.
    EUROPEAN JOURNAL OF ORGANIC CHEMISTRY, 2015, 2015 (21) : 4726 - 4731
  • [48] One-pot synthesis of (-)-Ambrox
    Yang, Shaoxiang
    Tian, Hongyu
    Sun, Baoguo
    Liu, Yongguo
    Hao, Yanfeng
    Lv, Yanyu
    SCIENTIFIC REPORTS, 2016, 6
  • [49] ONE-POT PROTEIN SYNTHESIS
    不详
    CHEMICAL & ENGINEERING NEWS, 2011, 89 (29) : 27 - 28
  • [50] A ONE-POT SYNTHESIS OF SULFENAMIDES
    BARTON, DHR
    HESSE, RH
    OSULLIVAN, AC
    PECHET, MM
    JOURNAL OF ORGANIC CHEMISTRY, 1991, 56 (23): : 6702 - 6704