首页> 外国专利> METHOD OF PREPARATION OF SUPERPARAMAGNETIC NANOPARTICLES BASED ON IRON OXIDES WITH MODIFIED SURFACE AND SUPERPARAMAGNETIC NANOPARTICLES OBTAINED BY SUCH A METHOD

METHOD OF PREPARATION OF SUPERPARAMAGNETIC NANOPARTICLES BASED ON IRON OXIDES WITH MODIFIED SURFACE AND SUPERPARAMAGNETIC NANOPARTICLES OBTAINED BY SUCH A METHOD

机译:基于修饰表面铁氧化物的超顺磁性纳米粒子的制备方法及获得的超顺磁性纳米粒子的制备方法

摘要

The subject of the invention is superparamagnetic nanoparticle probes based on iron oxides, to advantage magnetite or maghemite, with modified surface, coated with mono-, di- or polysaccharides from the group including D-arabinose, D-glucose, D-galactose, D-mannose, lactose, maltose, dextrans and dextrins, or with amino acids or poly(amino acid)s from the group including alanine, glycine, glutamine, asparagine, histidine, arginine, L-lysine, aspartic and glutamic acid or with synthetic polymers based on (meth)acrylic acid and their derivatives selected from the group containing poly(N,N-dimethylacrylamide), poly(N,N-dimethylmethacrylamide), poly(N,N-diethylacrylamide), poly(N,N-diethylmethacrylamide), poly(N-isopropylacrylamide), poly(N-isopropylmethacrylamide), which form a colloid consisting of particles with narrow distribution with polydispersity index smaller than 1.3, the average size of which amounts to 0.5-30 nm, to advantage 1-10 nm, the iron content is 70-99.9 wt. %, to advantage 90 wt. %, the modification agent content 0.1-30 wt. %, to advantage 10 wt. %. The particles of size smaller than 2 nm with polydispersity index smaller than 1.1 can be obtained by a modified method of preparation. Superparamagnetic nanoparticle probes according to the invention are prepared by pre-precipitation of colloidal Fe(OH)3 by the treatment of aqueous 0.1-0.2M solution of Fe(III) salt, to advantage FeCl3, with less than an equimolar amount of NH4OH, at 21° C., under sonication, to which a solution of a Fe(II) salt, to advantage FeCl2, is added in the mole ratio Fe(III)/Fe(II)=2 under sonication and the mixture is poured into five- to tenfold, to advantage eightfold, molar excess of 0.5M NH4OH. The mixture is left aging for 0-30 min, to advantage 15 min, and then the precipitate is repeatedly, to advantage 7-10 times, magnetically separated and washed with deionized water. Then 1-3 fold amount, to advantage 1.5 fold amount, relative to the amount of magnetite, of 0.1 M aqueous solution of sodium citrate is added and then, dropwise, 1-3 fold amount, to advantage 1.5 fold amount, relative to the amount of magnetite, of 0.7 M aqueous solution of sodium hypochlorite. The precipitate is repeatedly, to advantage 7-10 times, washed with deionized water under the formation of colloidal maghemite to which, after dilution, is added dropwise, to advantage under 5-min sonication, an aqueous solution of a modification agent, in the weight ratio modification agent/iron oxide=0.1-10, to advantage 0.2 for amino acids and poly(amino acid)s and 5 for saccharides. The particles smaller than 2 nm with polydispersity index smaller than 1.1 are prepared by mixing at 21° C. 1 volume part of 10-60 wt. %, to advantage 50 wt. %, of an aqueous solution of a saccharide, disaccharide or polysaccharide, such as D-arabinose, D-glucose, D-galactose, D-mannose, lactose, maltose, dextran and dextrins, and 1 volume part of aqueous solution of a Fe(II) and Fe(III) salt, to advantage FeCl2 and FeCl3, where the molar ratio Fe(III)/Fe(II)=2. A 5-15%, to advantage 7.5%, solution of NH4OH is added until pH 12 is attained and the mixture is heated at 60° C. for 15 min. The mixture is then sonicated at 350 W for 5 min and then washed for 24 h by dialysis in water using a membrane with molecular weight cut-off 14,000 until pH 7 is reached. The volume of solution is reduced by evaporation so that the final dry matter content is 50-100 mg/ml, to advantage 80 mg per 1 ml. Superparamagnetic nanoparticle probes according to the invention can be used for labelling cells used in magnetic resonance imaging for monitoring their movement, localization, survival and differentiation especially in detection of pathologies with cell dysfunction and of tissue regeneration and also for labelling and monitoring cells administered for cell therapy purposes, in particular embryonal stem cells, fetal stem cells, stem cells of an adult human including bone marrow stem cells, olfactory glial cells, fat tissue cells, in the recipient organism by magnetic resonance. The preparation of labelled cells proceeds by adding to the complete culture medium 5-20 mul, to advantage 10 mul, of a colloid containing 0.05-45 mg iron oxide per ml, to advantage 1-5 mg iron oxide per ml of the medium, and culturing the cells for a period of 1-7 days, to advantage for 1-3 days, at 37° C. and 5% of CO2.
机译:本发明的主题是基于氧化铁的超顺磁性纳米粒子探针,有利于磁铁矿或磁赤铁矿,具有修饰的表面,并涂覆有选自D-阿拉伯糖,D-葡萄糖,D-半乳糖,D的组的单糖,二糖或多糖-甘露糖,乳糖,麦芽糖,右旋糖酐和右旋糖酐,或与包括丙氨酸,甘氨酸,谷氨酰胺,天冬酰胺,组氨酸,精氨酸,L-赖氨酸,天冬氨酸和谷氨酸的氨基酸或聚(氨基酸)一起使用,或与合成聚合物一起使用基于(甲基)丙烯酸及其衍生物的聚(N,N-二甲基丙烯酰胺),聚(N,N-二甲基甲基丙烯酰胺),聚(N,N-二乙基丙烯酰胺),聚(N,N-二乙基甲基丙烯酰胺) ,聚(N-异丙基丙烯酰胺),聚(N-异丙基甲基丙烯酰胺),形成由窄分布的颗粒组成的胶体,其多分散指数小于1.3,其平均尺寸为0.5-30 nm,有利地为1-10 nm ,铁含量为70-99.9重量%。 %,有利地90 wt。 %,改性剂含量为0.1-30重量%。 %,有利地10重量%。 %。可以通过改进的制备方法获得尺寸小于2nm且多分散指数小于1.1的颗粒。根据本发明的超顺磁性纳米粒子探针是通过以下方法制备的:通过以小于等摩尔量的NH4OH处理Fe(III)盐的0.1-0.2M的Fe(III)盐水溶液使FeCl3预先沉淀而使胶体Fe(OH)3沉淀,在超声下在21℃下,在超声下以Fe(III)/ Fe(II)= 2的摩尔比加入Fe(II)盐的溶液,有利于FeCl 2,并将其倒入摩尔过量0.5M NH4OH的5至10倍,有利的是8倍。使混合物老化0-30分钟,有利地15分钟,然后将沉淀物重复进行,有利地7-10次,磁力分离并用去离子水洗涤。然后加入0.1M柠檬酸钠水溶液的1-3倍量,相对于磁铁矿量的1.5倍量,然后滴加1-3倍量,相对于磁铁矿量的1.5倍量,有利于磁铁矿的量。量的磁铁矿,0.7 M的次氯酸钠水溶液。用去离子水在形成胶体磁赤铁矿的条件下反复用去离子水洗涤至7-10次,然后将其稀释后滴加,在5分钟的超声下有利于将改性剂的水溶液滴加到水中。重量比改性剂/氧化铁= 0.1-10,对氨基酸和聚氨基酸而言为0.2,对糖类而言为5。通过在21℃下混合来制备小于2nm且多分散性指数小于1.1的颗粒。1体积份的10-60wt。 %,有利地50重量%。 %的糖,二糖或多糖的水溶液,例如D-阿拉伯糖,D-葡萄糖,D-半乳糖,D-甘露糖,乳糖,麦芽糖,右旋糖酐和糊精,和1体积份的Fe水溶液(II)和Fe(III)盐,有利于FeCl2和FeCl3,其中Fe(III)/ Fe(II)= 2的摩尔比。加入5-15%,有利地为7.5%的NH 4 OH溶液,直到达到pH 12,并且将混合物在60℃加热15分钟。然后将混合物在350 W下超声处理5分钟,然后使用截留分子量为14,000的膜在水中通过透析进行洗涤24小时,直到达到pH 7。通过蒸发减少溶液的体积,以使最终干物质含量为50-100 mg / ml,每1 ml有利于80 mg。根据本发明的超顺磁性纳米粒子探针可用于标记用于磁共振成像的细胞,以监测其运动,定位,存活和分化,尤其是在检测具有细胞功能障碍的病理和组织再生中,还可以标记和监测用于细胞的细胞治疗目的,特别是胚胎干细胞,胎儿干细胞,成年人类的干细胞,包括通过磁共振在受体生物体中的骨髓干细胞,嗅神经胶质细胞,脂肪组织细胞。标记细胞的制备是通过向完整的培养基中添加5-20 mul(有益于10 mul)每毫升培养基中含有0.05-45 mg氧化铁,有益于1-5 mg氧化铁/ ml培养基的胶体来进行的,并在37℃和5%CO 2下培养细胞1-7天,有利地1-3天。

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