Adiguna Sya'ban Putra, Panggabean Jonathan Ardhianto, Atikana Akhirta, Untari Febriana, Izzati Fauzia, Bayu Asep, Rosyidah A'liyatur, Rahmawati Siti Irma, Putra Masteria Yunovilsa
Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Gadjah Mada, Bulaksumur, Yogyakarta 55281, Indonesia.
Research Center for Biotechnology, Research Organization for Life Sciences, National Research and Innovation Agency (BRIN), Jalan Raya Jakarta-Bogor KM. 46, Cibinong 16911, Indonesia.
Pharmaceuticals (Basel). 2021 Oct 28;14(11):1102. doi: 10.3390/ph14111102.
(Burm.f.) Nees has been used as a traditional medicine in Asian countries, especially China, India, Vietnam, Malaysia, and Indonesia. This herbaceous plant extract contains active compounds with multiple biological activities against various diseases, including the flu, colds, fever, diabetes, hypertension, and cancer. Several isolated compounds from , such as andrographolide and its analogs, have attracted much interest for their potential treatment against several virus infections, including SARS-CoV-2. The mechanisms of action in inhibiting viral infections can be categorized into several types, including regulating the viral entry stage, gene replication, and the formation of mature functional proteins. The efficacy of andrographolide as an antiviral candidate was further investigated since the phytoconstituents of exhibit various physicochemical characteristics, including low solubility and low bioavailability. A discussion on the delivery systems of these active compounds could accelerate their development for commercial applications as antiviral drugs. This study critically reviewed the current antiviral development based on andrographolide and its derivative compounds, especially on their mechanism of action as antiviral drugs and drug delivery systems.
(缅甸)尼斯已在亚洲国家,特别是中国、印度、越南、马来西亚和印度尼西亚被用作传统药物。这种草本植物提取物含有具有多种生物活性的活性化合物,可对抗各种疾病,包括流感、感冒、发烧、糖尿病、高血压和癌症。从该植物中分离出的几种化合物,如穿心莲内酯及其类似物,因其对包括SARS-CoV-2在内的几种病毒感染的潜在治疗作用而备受关注。抑制病毒感染的作用机制可分为几种类型,包括调节病毒进入阶段、基因复制以及成熟功能蛋白的形成。由于该植物的植物成分具有各种物理化学特性,包括低溶解度和低生物利用度,因此对穿心莲内酯作为抗病毒候选药物的疗效进行了进一步研究。对这些活性化合物递送系统的讨论可以加速它们作为抗病毒药物的商业应用开发。本研究批判性地综述了基于穿心莲内酯及其衍生物的当前抗病毒开发,特别是它们作为抗病毒药物的作用机制和药物递送系统。