Zoology Department, Faculty of Science, Minia University, Minia 61519, Egypt.
Department of Chemistry, School of Sciences and Humanities, Nazarbayev University, 53 Kabanbay Batyr Avenue, Astana 010000, Kazakhstan.
Biomater Sci. 2023 Sep 12;11(18):6193-6209. doi: 10.1039/d3bm00638g.
Diclofenac sodium (DIC) is a pain reliever and anti-nociceptive medication. Significant limitations of DIC treatment stem from its adverse effects. This study investigates the feasibility of using natural sporopollenin (LCS) microcapsules loaded with DIC to mitigate the hepatotoxicity associated with DIC treatment. In addition, LCS microcapsules were tracked in the blood, stomach, small intestine, and feces of rats to demonstrate their morphological integrity and uptake behavior. Four groups (6 per group) of adult male albino rats were administered normal saline (control), empty LCS (30 mg kg), plain DIC (10 mg kg), and DIC-loaded LCS (40 mg kg) orally for seven consecutive days. The first comprehensive histological examination of the rat stomach demonstrated the robustness and bioadhesion ability of LCS under severe conditions. The findings suggested that these versatile microcapsules are unlikely to be digested in the gastrointestinal tract (GIT). The administration of DIC-loaded LCS was found to play a potential protective role in regulating DIC-induced substantially increased serum levels of transaminases, alkaline phosphatase, total bilirubin, and pro-inflammatory cytokines. In addition, DIC-loaded LCS restored the antioxidant enzymes, DNA damage, and liver histological architecture abnormalities caused by DIC. Microencapsulation of DIC into pollen-derived biomaterials could be employed as an efficient platform with enough safety coverage on rat liver, pending further clinical studies.
双氯芬酸钠(DIC)是一种止痛和抗伤害感受药物。DIC 治疗的显著局限性源于其不良反应。本研究探讨了使用负载 DIC 的天然孢粉素(LCS)微胶囊减轻 DIC 治疗相关肝毒性的可行性。此外,还追踪了 LCS 微胶囊在大鼠血液、胃、小肠和粪便中的形态完整性和摄取行为。四组(每组 6 只)成年雄性白化大鼠连续 7 天口服给予生理盐水(对照)、空 LCS(30mg/kg)、普通 DIC(10mg/kg)和负载 DIC 的 LCS(40mg/kg)。首次对大鼠胃进行全面组织学检查,证明了 LCS 在恶劣条件下的坚固性和生物粘附能力。研究结果表明,这些多功能微胶囊不太可能在胃肠道(GIT)中被消化。负载 DIC 的 LCS 的给药被发现对调节 DIC 引起的转氨酶、碱性磷酸酶、总胆红素和促炎细胞因子的显著升高水平发挥了潜在的保护作用。此外,负载 DIC 的 LCS 还恢复了 DIC 引起的抗氧化酶、DNA 损伤和肝组织学结构异常。将 DIC 包封入微胶囊中,利用花粉衍生的生物材料作为一种有效的平台,为大鼠肝脏提供足够的安全性覆盖,有待进一步的临床研究。