Aziz Ejaz, Batool Riffat, Khan Muhammad Usman, Rauf Abdur, Akhtar Wasim, Heydari Mojtaba, Rehman Shazia, Shahzad Tasmeena, Malik Ayesha, Mosavat Seyed Hamdollah, Plygun Sergey, Shariati Mohammad Ali
Department of Botany, Government Degree College Khanpur, Haripur 22650, Pakistan.
University Institute of Biochemistry and Biotechnology, Pir Mehr Ali Shah Arid Agriculture University Rawalpindi, Rawalpindi, Punjab, 46000, Pakistan.
J Complement Integr Med. 2020 Jul 22. doi: 10.1515/jcim-2019-0203.
Objectives To review red algae bioactive compounds and their pharmaceutical applications. Content Seaweed sources are becoming attractive to be used in health and therapeutics. Among these red algae is the largest group containing bioactive compounds utilized in cosmetic, pharmaceutical, food industry, manure and various supplements in food formula. Various significant bioactive compounds such as polysaccharides (aginate, agar, and carrageenan), lipids and polyphenols, steroids, glycosides, flavanoids, tannins, saponins, alkaloids, triterpenoids, antheraquinones and cardiac glycosides have been reported in red algae. The red algae have rich nutritional components Different polysaccharides of red algae possess the antiviral potential namely agarans, carrageenan, alginate, fucan, laminaran and naviculan. Sulfated polysaccharides and carraginans of red algae are rich source of soluble fibers which can account for antitumor activities depending upon chemistry of various secondary metabolites and metabolism of cell line. Flavons-3-ols containing catechins from many red algae block the telomerase activity in colon cancer cells. Contraceptive agents were tested from red algae as a source for post-coital. Lectin of red algae showed pro-healing properties and anti-ulcerogenic activities. Carragenates from red algae also conferred a positive influence on diabetes. Red algae depicted a reducing effect on plasma lipids and obesity. Porphyran from red alga can act as anti-hyperlipidemic agent also reduces the apolipoprotein B100 via suppression of lipid synthesis in human liver. Summary The polyphenolic extracts of Laurencia undulate, Melanothamnus afaqhusainii and Solieria robusta extract show anti-inflammatory effects against multiple genera of devastating fungi. Antioxidants such as phlorotannins, ascorbic acids, tocopherols, carotenoids from red algae showed toxicity on some cancer cells without side effects. Red algae Laurencia nipponica was found insecticidal against mosquito larvae. Red algae fibers are very important in laxative and purgative activities. Gracilaria tenuistipitat resisted in agricultural lands polluted with cadmium and copper. Outlook In the recent decades biotechnological applications of red algae has been increased. Polysaccharides derived from red algae are important tool for formulation of drugs delivery system via nanotechnology.
目标 回顾红藻生物活性化合物及其医药应用。
内容 海藻来源正变得在健康和治疗领域具有吸引力。在这些红藻中是包含用于化妆品、制药、食品工业、肥料及食品配方中各种补充剂的生物活性化合物的最大群体。已报道红藻中存在各种重要的生物活性化合物,如多糖(褐藻酸盐、琼脂和角叉菜胶)、脂质和多酚、类固醇、糖苷、类黄酮、单宁、皂苷、生物碱、三萜类化合物、蒽醌和强心苷。红藻具有丰富的营养成分。红藻的不同多糖具有抗病毒潜力,即琼脂糖、角叉菜胶、褐藻酸盐、岩藻聚糖、海带多糖和舟形藻多糖。红藻的硫酸化多糖和角叉菜胶是可溶性纤维的丰富来源,其抗肿瘤活性取决于各种次生代谢产物的化学性质和细胞系的代谢。许多红藻中含有的含儿茶素的黄酮 -3-醇可阻断结肠癌细胞中的端粒酶活性。已测试红藻作为性交后避孕药的来源。红藻的凝集素显示出促进愈合的特性和抗溃疡活性。红藻的角叉菜胶对糖尿病也有积极影响。红藻对血浆脂质和肥胖有降低作用。红藻的紫菜聚糖可作为抗高血脂剂,还可通过抑制人肝脏中的脂质合成降低载脂蛋白B100。
总结 波状凹顶藻、阿法黑顶藻和粗壮索藻的多酚提取物对多种毁灭性真菌属显示出抗炎作用。红藻中的抗氧化剂如间苯三酚鞣质、抗坏血酸、生育酚、类胡萝卜素对一些癌细胞显示出毒性且无副作用。发现日本凹顶藻对蚊子幼虫有杀虫作用。红藻纤维在泻药和通便活动中非常重要。细弱江蓠能在受镉和铜污染的农田中生长。
展望 在最近几十年中,红藻的生物技术应用有所增加。源自红藻的多糖是通过纳米技术制备药物递送系统的重要工具。