POLYPHOSPHAZENES WITH GLUCOSYL AND METHYLAMINO, TRIFLUOROETHOXY, PHENOXY, OR (METHOXYETHOXY)ETHOXY SIDE GROUPS

被引:55
作者
ALLCOCK, HR
PUCHER, SR
机构
[1] Department of Chemistry, The Pennsylvania State University, University Park
关键词
D O I
10.1021/ma00001a005
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Four new types of polyphosphazenes have been synthesized that bear alpha-D-glucosyl side groups together with methylamino, trifluoroethoxy, phenoxy, or (methoxyethoxy)ethoxy cosubstituent groups. The formulas are [NP(Gl)x(NHMe)y]n, [NP(Gl)x(OCH2CF3)y]n, [NP(Gl)x(OPh)y]n, and [NP(Gl)x(OCH2CH2OCH2-CH2OCH3)y]n, where Gl = alpha-D-glucosyl, x + y = 2, and n almost-equal-to 15 000. The syntheses were accomplished by the following sequence of reactions. First, the sodium salt of diacetone D-glucose or the cosubstituent nucleophile was allowed to react with poly(dichlorophosphazene) to generate an intermediate of formula [NP(di-A-Gl)(x)Cl(y)]n or [NPCl(x)(OR)y]n, with the ratio of x to y being determined by the ratio of the reactants. Second, the cosubstituent (NHR, OR, or di-A-Gl) was introduced by replacement of the remaining chlorine by reaction with methylamine or the appropriate alkoxide or aryl oxide. Finally, the protecting groups on the glucosyl residues were removed by treatment with acid. A wide range of ratios of x to y was explored, and the resultant polymers were studied with respect to solubility in water, hydrophilicity or hydrophobicity, cross-linking by gamma-radiation or chemical reagents, and stability to hydrolysis. The new macromolecules offer a range of possibilities for utilization in membranes, hydrogels, biomaterials, and bioerodible polymers.
引用
收藏
页码:23 / 34
页数:12
相关论文
共 31 条
[1]   PHOSPHAZENE HIGH POLYMERS WITH BIOACTIVE SUBSTITUENT GROUPS - PROSPECTIVE ANESTHETIC AMINOPHOSPHAZENES [J].
ALLCOCK, HR ;
AUSTIN, PE ;
NEENAN, TX .
MACROMOLECULES, 1982, 15 (03) :689-693
[2]   HYDROPHILIC POLYPHOSPHAZENES AS HYDROGELS - RADIATION CROSS-LINKING AND HYDROGEL CHARACTERISTICS OF POLY[BIS(METHOXYETHOXYETHOXY)PHOSPHAZENE] [J].
ALLCOCK, HR ;
KWON, S ;
RIDING, GH ;
FITZPATRICK, RJ ;
BENNETT, JL .
BIOMATERIALS, 1988, 9 (06) :509-513
[3]   POLYPHOSPHAZENES WITH ETHERIC SIDE GROUPS - PROSPECTIVE BIOMEDICAL AND SOLID ELECTROLYTE POLYMERS [J].
ALLCOCK, HR ;
AUSTIN, PE ;
NEENAN, TX ;
SISKO, JT ;
BLONSKY, PM ;
SHRIVER, DF .
MACROMOLECULES, 1986, 19 (06) :1508-1512
[4]   SYNTHESIS OF SUGAR-SUBSTITUTED CYCLIC AND POLYMERIC PHOSPHAZENES AND THEIR OXIDATION, REDUCTION, AND ACETYLATION REACTIONS [J].
ALLCOCK, HR ;
SCOPELIANOS, AG .
MACROMOLECULES, 1983, 16 (05) :715-719
[5]   PHOSPHAZENE HIGH POLYMERS WITH STEROIDAL SIDE GROUPS [J].
ALLCOCK, HR ;
FULLER, TJ .
MACROMOLECULES, 1980, 13 (06) :1338-1345
[6]   SYNTHESIS OF POLY[(AMINO ACID ALKYL ESTER)PHOSPHAZENES] [J].
ALLCOCK, HR ;
FULLER, TJ ;
MACK, DP ;
MATSUMURA, K ;
SMELTZ, KM .
MACROMOLECULES, 1977, 10 (04) :824-830
[7]   ANTITUMOUR AGENTS SYNTHESIZED FROM K2PTCL4 AND POLYMERIC OR CYCLIC PHOSPHAZENES [J].
ALLCOCK, HR ;
ALLEN, RW ;
OBRIEN, JP .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1976, (18) :717-718
[8]   PHOSPHONITRILIC COMPOUNDS .6. HIGH MOLECULAR WEIGHT POLY(ALKOXY- AND ARYLOXPHOSPHAZENES) [J].
ALLCOCK, HR ;
KUGEL, RL ;
VALAN, KJ .
INORGANIC CHEMISTRY, 1966, 5 (10) :1709-&
[9]   SYNTHESIS, OXYGEN-BINDING BEHAVIOR, AND MOSSBAUER-SPECTROSCOPY OF COVALENTLY BOUND POLYPHOSPHAZENE-HEME COMPLEXES [J].
ALLCOCK, HR ;
NEENAN, TX ;
BOSO, B .
INORGANIC CHEMISTRY, 1985, 24 (17) :2656-2662
[10]   SYNTHESIS OF HIGH POLYMERIC ALKOXY- AND ARYLOXPHOSPHONITRILES [J].
ALLCOCK, HR ;
KUGEL, RL .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1965, 87 (18) :4216-&