Instituto de Química, Universidade Federal do Rio Grande do Norte, Campus Universitário, Lagoa Nova, Natal, RN 59078-970, Brazil.
Instituto de Química, Universidade Federal do Rio Grande do Norte, Campus Universitário, Lagoa Nova, Natal, RN 59078-970, Brazil.
Colloids Surf B Biointerfaces. 2018 Oct 1;170:210-218. doi: 10.1016/j.colsurfb.2018.05.071. Epub 2018 Jun 15.
Interpolyelectrolyte complexes of chitosan and poly(sodium 4-styrenesulfonate) [NaPSS] were synthesized and obtained in the form of solid particles, with two different sulfonate to aminium molar ratios: 0.7, resulting in particles with positive zeta potential (IPEC), and 1.4, yielding particles with negative zeta potential (IPEC). Both particles were characterized as potential drug sorbents using differently charged drugs: sodium cromoglycate (negatively charged), and tetracycline hydrochloride (positively charged). The adsorption isotherm for cromoglycate and tetracycline on IPEC was adequately described by the Langmuir model, while the IPEC sorption of tetracycline followed the Redlich-Peterson isotherm without the occurrence of cromoglycate sorption. The sorption kinetics consisted of two processes, one fast and the other slow, which were correlated to purely surface-related interactions and processes that resulted in diffusion and/or destruction/rearrangement on the particle surface and subsurface, respectively. Charge build up equilibrium and kinetics were also monitored via zeta potential measurements, and the differences between mass drug uptake and particle charging were used to propose adsorption mechanisms for the systems studied in this work.
壳聚糖和聚(4-苯乙烯磺酸钠)[NaPSS]的聚电解质复合物被合成并以固体颗粒的形式获得,具有两种不同的磺酸盐与氨基摩尔比:0.7,得到带正zeta 电位的颗粒(IPEC),和 1.4,得到带负 zeta 电位的颗粒(IPEC)。使用不同带电药物:顺式色甘酸钠(带负电荷)和盐酸四环素(带正电荷),将这两种颗粒分别作为潜在的药物吸附剂进行了表征。色甘酸钠和四环素在 IPEC 上的吸附等温线可以用 Langmuir 模型很好地描述,而 IPEC 对四环素的吸附则遵循 Redlich-Peterson 等温线,而没有色甘酸钠的吸附。吸附动力学由两个过程组成,一个快速,另一个缓慢,这两个过程分别与纯粹的表面相关相互作用和导致扩散和/或在颗粒表面和次表面上的破坏/重排的过程相关。还通过 zeta 电位测量监测电荷建立平衡和动力学,并且药物质量吸收和颗粒充电之间的差异用于提出用于研究中系统的吸附机制。