Exploring the Effectiveness of Carboxymethylated and Crosslinked Albizia Procera Gum in Diltiazem Hydrochloride Matrix Tablets: A Comparative Analysis

IF 1.5 4区 医学 Q4 CHEMISTRY, MEDICINAL
Sudipta Mukherjee, Jasmina Khanam
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Abstract

This study investigates the efficacy of modified Albizia procera gum as a release-retardant polymer in Diltiazem hydrochloride (DIL) matrix tablets. Carboxymethylated Albizia procera gum (CAP) and ionically crosslinked carboxymethylated Albizia procera gum (Ca-CAP) were utilized, with Ca-CAP synthesized via crosslinking CAP with calcium ions (Ca2+) using calcium chloride (CaCl2). FTIR analysis affirmed polymer compatibility, while Differential scanning calorimetry (DSC) and X-ray diffraction (XRD) assessed thermal behavior and crystallinity, respectively. Zeta potential analysis explored surface charge and electrostatic interactions, while rheology examined flow and viscoelastic properties. Swelling and erosion kinetics provided insights into water penetration and stability. CAP's carboxymethyl groups (-CH2-COO-) heightened divalent cation reactivity, and crosslinking with CaCl2 produced Ca-CAP through -CH2-COO- and Ca2+ interactions. Structural similarities between the polymers were revealed by FTIR, with slight differences. DSC indicated modified thermal behavior in Ca-CAP, while Zeta potential analysis showcased negative charges, with Ca-CAP exhibiting lower negativity. XRD highlighted increased crystallinity in Ca-CAP due to calcium crosslinking. Minimal impact on RBC properties was observed with both polymers compared to the positive control as water for injection (WFI). Ca-CAP exhibited improved viscosity, strength, controlled swelling, and erosion, allowing prolonged drug release compared to CAP. Stability studies confirmed consistent six-month drug release, emphasizing Ca-CAP's potential as a stable, sustained drug delivery system over CAP. Robustness and accelerated stability tests supported these findings, underscoring the promise of Ca-CAP in controlled drug release applications.

探究羧甲基化和交联白花蛇舌草胶在盐酸地尔硫卓基质片中的功效:对比分析
本研究探讨了改性白花蛇舌草胶作为盐酸地尔硫卓(DIL)基质片剂的缓释聚合物的功效。研究采用了羧甲基白术胶(CAP)和离子交联羧甲基白术胶(Ca-CAP),其中 Ca-CAP 是通过氯化钙(CaCl2)使羧甲基白术胶与钙离子(Ca2+)交联合成的。傅立叶变换红外光谱分析确定了聚合物的相容性,而差示扫描量热法(DSC)和 X 射线衍射法(XRD)则分别评估了热行为和结晶度。Zeta 电位分析探讨了表面电荷和静电相互作用,流变学则研究了流动性和粘弹性。膨胀和侵蚀动力学则有助于深入了解水的渗透性和稳定性。CAP 的羧甲基基团(-CH2-COO-)提高了二价阳离子的反应性,通过 -CH2-COO- 和 Ca2+ 的相互作用,与 CaCl2 交联生成了 Ca-CAP。傅立叶变换红外光谱(FTIR)显示了聚合物之间的结构相似性,但略有不同。DSC 显示 Ca-CAP 的热行为有所改变,而 Zeta 电位分析显示了负电荷,其中 Ca-CAP 的负电荷较低。XRD 显示,由于钙交联,Ca-CAP 的结晶度增加。与阳性对照注射用水(WFI)相比,两种聚合物对 RBC 特性的影响都很小。与 CAP 相比,Ca-CAP 在粘度、强度、可控膨胀和侵蚀方面均有改善,从而延长了药物释放时间。稳定性研究证实,Ca-CAP 可持续释放药物达六个月之久,与 CAP 相比,Ca-CAP 具有作为稳定、持续给药系统的潜力。稳健性和加速稳定性测试也证实了这些研究结果,强调了 Ca-CAP 在药物控释应用中的前景。
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来源期刊
CiteScore
3.20
自引率
5.90%
发文量
132
审稿时长
1.7 months
期刊介绍: The CPB covers various chemical topics in the pharmaceutical and health sciences fields dealing with biologically active compounds, natural products, and medicines, while BPB deals with a wide range of biological topics in the pharmaceutical and health sciences fields including scientific research from basic to clinical studies. For details of their respective scopes, please refer to the submission topic categories below. Topics: Organic chemistry In silico science Inorganic chemistry Pharmacognosy Health statistics Forensic science Biochemistry Pharmacology Pharmaceutical care and science Medicinal chemistry Analytical chemistry Physical pharmacy Natural product chemistry Toxicology Environmental science Molecular and cellular biology Biopharmacy and pharmacokinetics Pharmaceutical education Chemical biology Physical chemistry Pharmaceutical engineering Epidemiology Hygiene Regulatory science Immunology and microbiology Clinical pharmacy Miscellaneous.
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