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首页> 外文期刊>Journal of the Chemical Society of Pakistan >Drug-Polymer Interaction Studies of Cytarabine Loaded Chitosan Nanoparticles
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Drug-Polymer Interaction Studies of Cytarabine Loaded Chitosan Nanoparticles

机译:含沙糖烷型壳聚糖纳米粒子的药物 - 聚合物相互作用研究

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Assessment of possible incompatibilities between drug and excipients is an important parameter of preformulation stage during the pharmaceutical product development of active pharmaceutical ingredient (API). The potential physical and chemical interaction among the components of a delivery system can affect the chemical nature, bioavailability, stability, and subsequently therapeutic efficacy of drugs. In this study, ATR-FTIR spectroscopy was employed to investigate the possible intermolecular interaction of Cytarabine with deacetylated chitosan and tripolyphosphate in the resulting physical blends and crosslinked nanoparticulate system. Two different strategies, physical blending and ionotropic gelation, were adopted to prepare binary or tertiary mixtures and nanoparticulate formulation, respectively. The IR spectra of CB showed characteristic peaks at 3438.27 cm(-1) (primary amine), 3264.74 cm-1 (hydroxyl group) and 1654.98 cm-1 (C=O stretch in cyclic ring); CS at 3361.47 cm-1 (N-H stretching), 1646.18 cm-1 (C=O of Amide I), 1582.36 cm-1 (C=O of Amide II), and sTPP at 1135.77 cm-1 (P=O). CS-sTPP chemical interaction was confirmed from the shift in the absorption band of carbonyl groups (amide I, II) to 1634.66 cm-1 and 1541.17 cm-1 in blank chitosan nanoparticles, and 1636.87 cm-1, 1543.33 cm-1 in CSNP1 (2:6:1), and at 1646.15 cm-1 and 1557.04 cm-1 in CSNP2 (1:3:1). The characteristic peaks of CB were also present in chitosan formulation with a slight shift in the amino group at 3429.43 cm-1 and 3423.21 cm-1, in the hydroxyl group at 3274.54 cm-1 and 3270.73 cm-1, CSNP1 and CSNP2, respectively. The findings counseled no significant interaction in IR absorption pattern of cytarabine functional groups after encapsulation in CS-sTPP complex, which projected the potential of chitosan nanoparticulate system to entrap cytarabine.
机译:评估药物和赋形剂之间可能的不相容性是活性药物成分(API)的药物产品发育期间的预先形成阶段的重要参数。输送系统的组分之间的潜在物理和化学相互作用可以影响药物的化学性质,生物利用度,稳定性和随后的药物治疗效果。在该研究中,采用ATR-FTIR光谱法研究糖氨基胺与脱乙酰化壳聚糖和三聚磷酸盐中可能的分子间相互作用在所得物理混合物和交联的纳米颗粒系统中。采用两种不同的策略,物理混合和离子孔胶凝,分别制备二元或叔混合物和纳米颗粒制剂。 CB的IR光谱显示在3438.27cm(-1)(伯胺),3264.74cm-1(羟基)和1654.98cm-1(C = O中环状环中)的特征峰; CS在3361.47cm-1(N-H拉伸),1646.18cm-1(C = O的酰胺I),1582.36cm-1(酰胺II的C = O),STPP为1135.77cm-1(p = O)。从含有羰基(酰胺I,II)的吸收带中的换档和154.66cm-1和1541.17cm-1的壳聚糖纳米粒子中的换档和1636.87cm-1,1543.33cm-1中的CS-STPP化学相互作用。(CSNP1) (2:6:1),在CSNP2(1:3:1)中为1646.15cm-1和1557.04 cm-1。 Cb的特征峰也存在于壳聚糖制剂中,在3429.43cm-1和3423.21cm-1的氨基中,分别在3274.54cm-1和3270.73cm-1,CSNP1和CSNP2的羟基中略微偏移。 。在CS-STPP复合物中封装后,调查结果咨询了在CS-STPP复合物中封装后的红外官能团中的IR吸收模式的显着相互作用,这将诱导壳聚糖纳米颗粒系统诱捕含有胰酸的潜力。

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