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首页> 外文期刊>Research journal of pharmacy and technology >Preliminary Formulation and Excipient Interaction Study of Floating CMtosan Beads of Carvedilo!
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Preliminary Formulation and Excipient Interaction Study of Floating CMtosan Beads of Carvedilo!

机译:卡维地洛的浮游壳聚糖微珠的初步配制和辅料相互作用研究!

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Objective of present study was to investigate the compatibility of carvedilol with chitosan and study the formulation factors like concentration of tri-polyphosphate (TPP) and curing time to establish a feasible range for these factors to formulate floating chitosan beads of carvedilol. Floating beads were prepared by ionic cross linking of 2 % w/v chitosan solution containing suspended drag, with TPP. Use of an acidic TPP solution offered denser cross linking. Formulations were prepared with varying concentration of tri-polyphosphate (0.5, 1.0, 1.5, 2.0, 3.0, 6.0, 8.0, 10.0, 12.0 and 14.0 % w/v) keeping the curing time constant at 30 min, to study the feasible range of TPP that can be used. Similarly, formulations were prepared with varying the curing time (5,10,20,30, 40, 80, 90,100 and 120 h) keeping the concentration of TPP constant at 6.0% w/v, to study the feasible range of curing time. It was concluded that a minimum of 2 % w/v of TPP and 30 minutes of curing time is required to form stable beads. The maximum concentration of TPP was observed to be 10 % w/v, as any higher concentration of TPP forms brittle beads. Compatibility of carvedilol with chitosan and formulation process was established using Fourier transform infrared spectroscopy (FTIR) and Differential scanning calorimetric (DSC). Scanning electron microscopic examination of the surface and cross section of the beads revealed the pores, which offer immediate buoyancy to the beads. Thus, a feasible range of process parameters for formulation of floating chitosan beads was established.
机译:本研究的目的是研究卡维地洛与壳聚糖的相容性,并研究三聚磷酸盐(TPP)的浓度和固化时间等配方因素,以为这些因素配制卡维地洛的漂浮壳聚糖微珠提供一个可行的范围。通过将含有悬浮药物的2%w / v壳聚糖溶液与TPP进行离子交联来制备浮珠。使用酸性TPP溶液可提供更紧密的交联。制备具有不同浓度的三聚磷酸盐(0.5、1.0、1.5、2.0、3.0、6.0、8.0、10.0、12.0和14.0%w / v)的配方,以保持30分钟的固化时间恒定,以研究该配方的可行范围可以使用TPP。类似地,制备具有不同固化时间(5、10、20、30、40、80、90,100和120 h)的制剂,以保持TPP浓度恒定在6.0%w / v,以研究可行的固化时间范围。结论是,至少需要2%w / v的TPP和30分钟的固化时间才能形成稳定的珠粒。观察到TPP的最大浓度为10%w / v,因为任何更高浓度的TPP都会形成脆性珠粒。卡维地洛与壳聚糖的相容性和配制工艺使用傅里叶变换红外光谱(FTIR)和差示扫描量热法(DSC)建立。珠的表面和横截面的扫描电子显微镜检查显示出孔,这些孔立即为珠提供了浮力。因此,建立了用于浮动壳聚糖珠粒配制的可行工艺参数范围。

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