Literature DB >> 22017767

Andrographolide and its analogues: versatile bioactive molecules for combating inflammation and cancer.

Jonathan Chee Woei Lim1, Tze Khee Chan, David S W Ng, Sreenivasa R Sagineedu, Johnson Stanslas, W S Fred Wong.   

Abstract

1. Andrographis paniculata (Burm. f) Nees, commonly known as 'king of bitters', is a herbaceous plant belonging to the Family Acanthaceae. It has been widely used for centuries in Asian countries like China, India, Thailand and Malaysia for the treatment of sore throat, flu and upper respiratory tract infections. 2. Andrographolide, 14-deoxy-11,12-didehydroandrographolide and neoandrographolide are examples of the major labdane diterpenoids isolated from A. paniculata. These bioactive molecules have exhibited varying degrees of anti-inflammatory and anticancer activities in both in vitro and in vivo experimental models of inflammation and cancer. 3. Extensive libraries of andrographolide analogues have been synthesised mainly by modifying the α,β-unsaturated γ-butyrolactone moiety, the two double bonds Δ(8,(17)) and Δ(12,(13)) and the three hydroxyls at C-3 (secondary), C-14 (allylic) and C-19 (primary). Many of these synthetic analogues exhibit superior anticancer activity over the naturally occurring andrographolides. 4. Andrographolide and its derivatives have been shown to have anti-inflammatory effects in experimental models of asthma, stroke and arthritis, as well as in patients with upper respiratory tract infections. Andrographolide reduces the production of cytokines, chemokines, adhesion molecules, nitric oxide and lipid mediators, probably via inhibition of the nuclear factor (NF)-κB signalling pathway. 5. The anticancer mechanisms for andrographolide include inhibition of Janus tyrosine kinases-signal transducers and activators of transcription, phosphatidylinositol 3-kinase and NF-κB signalling pathways, suppression of heat shock protein 90, cyclins and cyclin-dependent kinases, metalloproteinases and growth factors, and the induction of tumour suppressor proteins p53 and p21, leading to inhibition of cancer cell proliferation, survival, metastasis and angiogenesis. 6. Andrographolide drug discovery is a promising strategy for the development of a novel class of anti-inflammatory and anticancer drugs.
© 2011 The Authors. Clinical and Experimental Pharmacology and Physiology © 2011 Blackwell Publishing Asia Pty Ltd.

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Year:  2012        PMID: 22017767     DOI: 10.1111/j.1440-1681.2011.05633.x

Source DB:  PubMed          Journal:  Clin Exp Pharmacol Physiol        ISSN: 0305-1870            Impact factor:   2.557


  59 in total

1.  Inhibitory effects of andrographolide on activated macrophages and adjuvant-induced arthritis.

Authors:  Swati Gupta; Kamla Prasad Mishra; Shashi Bala Singh; Lilly Ganju
Journal:  Inflammopharmacology       Date:  2017-07-22       Impact factor: 4.473

2.  Andrographolide exerts anti-hepatitis C virus activity by up-regulating haeme oxygenase-1 via the p38 MAPK/Nrf2 pathway in human hepatoma cells.

Authors:  Jin-Ching Lee; Chin-Kai Tseng; Kung-Chia Young; Hung-Yu Sun; Shainn-Wei Wang; Wei-Chun Chen; Chun-Kuang Lin; Yu-Hsuan Wu
Journal:  Br J Pharmacol       Date:  2014-01       Impact factor: 8.739

3.  Protective effects of Andrographis paniculata extract and pure andrographolide against chronic stress-triggered pathologies in rats.

Authors:  Ajit Kumar Thakur; Upendra Kumar Soni; Geeta Rai; Shyam Sunder Chatterjee; Vikas Kumar
Journal:  Cell Mol Neurobiol       Date:  2014-07-18       Impact factor: 5.046

4.  Apoptosis induction of colorectal cancer cells HTL-9 in vitro by the transformed products of soybean isoflavones by Ganoderma lucidum.

Authors:  Mei-Lin Cui; Huan-Yi Yang; Guo-Qing He
Journal:  J Zhejiang Univ Sci B       Date:  2017 Dec.       Impact factor: 3.066

5.  Andrographolide protects against cigarette smoke-induced oxidative lung injury via augmentation of Nrf2 activity.

Authors:  S P Guan; W Tee; D S W Ng; T K Chan; H Y Peh; W E Ho; C Cheng; J C Mak; W S F Wong
Journal:  Br J Pharmacol       Date:  2013-04       Impact factor: 8.739

Review 6.  Anticancer activities of phytoconstituents and their liposomal targeting strategies against tumor cells and the microenvironment.

Authors:  Jing Zhang; Xiang Li; Leaf Huang
Journal:  Adv Drug Deliv Rev       Date:  2020-05-28       Impact factor: 15.470

7.  Anti-cancer labdane diterpenoids from adventitious roots of Andrographis paniculata: augmentation of production prospect endowed with pathway gene expression.

Authors:  Sailendra Singh; Pallavi Pandey; Sumit Ghosh; Suchitra Banerjee
Journal:  Protoplasma       Date:  2018-03-20       Impact factor: 3.356

8.  Andrographolide suppresses IL-6/Stat3 signaling in peripheral blood mononuclear cells from patients with chronic rhinosinusitis with nasal polyps.

Authors:  Wei Kou; Rong Sun; Ping Wei; Hong-Bing Yao; Cheng Zhang; Xin-Ye Tang; Su-Ling Hong
Journal:  Inflammation       Date:  2014-10       Impact factor: 4.092

9.  Accurate mass-time tag library for LC/MS-based metabolite profiling of medicinal plants.

Authors:  Daniel J Cuthbertson; Sean R Johnson; Jasenka Piljac-Žegarac; Julia Kappel; Sarah Schäfer; Matthias Wüst; Raymond E B Ketchum; Rodney B Croteau; Joaquim V Marques; Laurence B Davin; Norman G Lewis; Megan Rolf; Toni M Kutchan; D Doel Soejarto; B Markus Lange
Journal:  Phytochemistry       Date:  2013-04-16       Impact factor: 4.072

10.  Andrographolide derivatives inhibit guanine nucleotide exchange and abrogate oncogenic Ras function.

Authors:  Harrison J Hocker; Kwang-Jin Cho; Chung-Ying K Chen; Nandini Rambahal; Sreenivasa Rao Sagineedu; Khozirah Shaari; Johnson Stanslas; John F Hancock; Alemayehu A Gorfe
Journal:  Proc Natl Acad Sci U S A       Date:  2013-06-04       Impact factor: 11.205

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