El Shahawy Maha, El Deeb Mona
Associate Professor, Oral Biology Department, Faculty of Dentistry, Minia University, Egypt.
Professor, Oral Biology Department, Faculty of Oral & Dental Medicine, Future University in Egypt (FUE), Egypt.
Saudi Dent J. 2022 Jul;34(5):375-384. doi: 10.1016/j.sdentj.2022.04.009. Epub 2022 Apr 29.
Nowadays, attention is directed to herbal treatments in an attempt to lessen the adverse effects of diabetes. Nanoformulation of curcumin (NC) was shown to enhance stability and water solubility compared to native curcumin.
To examine the effect of different NC concentrations on the histopathological structure of the submandibular salivary gland of diabetic rats.
28 rats were divided equally into 4 groups. Control group, (diabetic) (diabetic + nanocurcumin low dose), and (diabetic + nanocurcumin high dose): Rats of groups II, III and IV were injected with a single dose of alloxan (140 mg/kg) to induce diabetes. After 7 days, groups III and IV were treated for 6 weeks with NC (100 mg/kg/day) for group III, and (200 mg/kg/day) for group IV. Submandibular salivary glands were assessed histologically, immunohistochemically using α smooth muscle actin (α SMA) and ultrastructurally.
Diabetic samples showed destruction of parenchymal elements of the gland, with thick fiber bundles encircling the excretory ducts and minimal reaction for α SMA. Amelioration of the gland's architecture was detected in groups III and IV with reduction of collagen deposition and elevation of positive immunoreactivity to α SMA.
NC profoundly repaired the induced diabetic histopathological and ultrastructural alterations of the gland in a dose dependent manner.
如今,人们将注意力转向草药治疗,试图减轻糖尿病的不良反应。与天然姜黄素相比,姜黄素纳米制剂(NC)显示出更高的稳定性和水溶性。
研究不同浓度的NC对糖尿病大鼠下颌下唾液腺组织病理学结构的影响。
将28只大鼠平均分为4组。对照组、糖尿病组、糖尿病+低剂量纳米姜黄素组和糖尿病+高剂量纳米姜黄素组:第II、III和IV组大鼠注射单剂量四氧嘧啶(140mg/kg)诱导糖尿病。7天后,第III和IV组用NC治疗6周,第III组剂量为100mg/(kg·天),第IV组剂量为200mg/(kg·天)。对下颌下唾液腺进行组织学、免疫组织化学(使用α平滑肌肌动蛋白(α-SMA))和超微结构评估。
糖尿病样本显示腺体实质成分破坏,排泄导管周围有粗大纤维束,α-SMA反应轻微。在第III和IV组中检测到腺体结构改善,胶原沉积减少,α-SMA阳性免疫反应性升高。
NC以剂量依赖的方式显著修复了诱导的糖尿病腺体组织病理学和超微结构改变。