IPC분류정보
국가/구분 |
United States(US) Patent
등록
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국제특허분류(IPC7판) |
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출원번호 |
US-0580098
(1984-02-14)
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우선권정보 |
HU-0000488 (1983-02-14) |
발명자
/ 주소 |
- Szejtli Jzsef (Budapest HUX) Fenyvesi va (Budapest HUX) Zsadon Bla (Budapest HUX) Szilasi Mria (Budapest HUX) Dcsei Lajos (Budapest HUX)
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출원인 / 주소 |
- Chinoin, Gyogyszer Es Vegyeszeti Termekek Gyara Rt. (Budapest HUX 03)
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인용정보 |
피인용 횟수 :
61 인용 특허 :
3 |
초록
The invention relates to water soluble cyclodextrin polymers substituted by ionic groups, containing structural units of formula (I) [Figure] (I) [Figure]
대표청구항
▼
Process for the preparation of water soluble cyclodextrin polymers substituted by ionic groups, containing structural units of formula (I) [Figure] (I) [Figure] wherein CD stands for a group obtained from abg1+t+r hydroxy group, R and R′stand independently for -CH2-, -CHOH-CH2-, -CH2-O-(CH2)2-O-CH2-
Process for the preparation of water soluble cyclodextrin polymers substituted by ionic groups, containing structural units of formula (I) [Figure] (I) [Figure] wherein CD stands for a group obtained from abg1+t+r hydroxy group, R and R′stand independently for -CH2-, -CHOH-CH2-, -CH2-O-(CH2)2-O-CH2-CHOH-CH2-, -CH2-O-CH2-CHOH-CH2-, -CH2-O-(CH2)4-O-CH2-CHOH-CH2-, X stands for a secondary or tertiary amino or -OR1 or -OR2, wherein R1 stands for hydrogen or when r is other than O, a group obtained from abg2 are the same or different and stand for hydrogen, -PO(OH)2-, -SO2OH-, -R3-(COOH)u, -R3-(SO2OH)u, -R3-(NR4R5)u, or a group obtained from abg2 substituents together from an R3-NR4-R3-or (-R3-)3N group, R2′has the same meaning as R2 excepting the groups obtained from cyclodextrin molecules, R3 stands for u+1 groups obtained from an alkane or an araliphatic hydrocarbon having 1 to 10 carbon atoms, the end carbon atom standing nearer to the polymeric chain of which is unsubstituted or substituted by an oxo group, R4 and R5 stand independently for hydrogen, alkyl having 1 to 4 carbon atoms unsubstituted or substituted by halogen, aryl having 6 to 10 carbon atoms or aralkyl or alkylaryl groups being obtainable by the combination thereof, m and n stand independently for an integer from 1 to 10, r stands for an integer from 0 to 23, p stands for an integer from 1 to 24, s and t stand independently for an integer from 0 to 7, u stands for an integer from 1 to 5, wherein m, n, r, t, and u can differ also in the side-chains within a unit and when CD stands for a group obtained from a≤18 and r+5 ≤17 and when CD stands for a group obtained from b≤21 and r+t≤20 and when CD stands for a group obtained from g≤24 and r+t≤23, or the aqueous solutions thereof characterized in that (a) calculated on 1 mole of the cyclodextrin, the abg0.1 to 7 moles of a halogen derivative of formula R2″-Hal, wherein Hal stands for halogen and R2″has the same meaning as R2′except hydrogen, -PO(OH)2 and -SO2OH, or 0.1 or 7 moles of a sulfone derived from a hydroxy sulfonic acid of formula HO-R3-SO2OH, wherein R3 has the same meaning as defined above, in the presence of 0.2 to 14 moles of an alkali metal or an alkali-earth metal hydroxide in 0.7 to 1.0 liter of water, the reaction mixture containing the cyclodextrin substituted by ionic groups is reacted calculated on 1 mole of the cyclodextrin contained therein with 5 to 15 moles of epichlorohydrin or a bisepoxy derivative of formula (II) [Figure] (II) wherein R6 stands for a direct bond or -CH2-O-CH2-, -CH2-O-CH2-CH2-O-CH2-or -CH2O-(CH2)4-O-CH2-. after adding 5 to 15 moles of an alkali metal or alkali-earth metal hydroxide and 1.8 to 2.5 liter of water at a temperature of 40°to 80°C., or (b) calculated on 1 mole of the cyclodextrin the abg0.1 to 7 moles of a halogen derivative of formula R2″-Hal, wherein R2″and Hal have the same meanings as defined above, or a sulfone derived from a hydroxy sulfonic acid of formula HO-R3-SO2OH, wherein R3 has the same meaning as defined above, or a primary or secondary amine or a hydroxy compound of formula R2″-OH, wherein R2″has the same meaning as defined above, as well as with 5 to 15 moles of epichlorohydrin or a bis epoxy derivative of formula (II), wherein R6 has the same meaning as defined above, in the presence of 5 to 20 moles of an alkali metal or alkali-earth metal hydroxide and 2.5 to 3.5 liter of water, or (c) claculated on 1 mole of the cyclodextrin the abg5 to 15 moles of an alkali metal or alkali-earth metal hydroxide, 2.5 to 3.5 liter of water and 5 to 15 moles of epichlorohydrin or a bisepoxy derivative of formula (II), wherein the cyclodextrin polymer solution obtained is reacted calculated on 1 mole of the cyclodextrin contained therein with 0.1 to 7 moles of a halogen derivative of formula R2″-Hal, wherein R2″and hal have the same meanings as defined above, or a sulfone derived from a hydroxy sulfonic acid of formula HO-R3-SO2OH, wherein R3 has the same meaning as defined above, in the presence of 0.2 to 14 moles alkali metal or alkali-earth metal hydroxide, or (d) for preparing cyclodextrin polymers having structural units of formfula (I), which contain on place of R2 and/or R2′the inorganic or organic acyl groups stated above, the abg1 mole of the cyclodextrin with 5 to 15 moles of an alkali metal or alkali-earth metal hydroxide, 2.5 to 3.5 liter of water and 5 to 15 moles of epichlorohydrin or bisepoxy derivative of formula (II), wherein R6 has the same meaning as defined above, and the cyclodextrin polymer obtained is reacted under heating with the corresponding inorganic or organic acid anhydride in the presence of an organic solvent and/or acid binding agent or with the salt of the corresponding acid in the absence of an organic solvent and/or acid binding agent, and from the reaction mixture containing the cyclodextrin polymer substituted by ionic groups, obtained by anyone of the processes (a) to (d) the by-products of low molecular weight, the salts dissolved and the water are removed and so the solid polymer is obtained.
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