Antitumor activity and structure-activity relationship of heparanase inhibitors: Recent advances

2020 ◽  
Vol 193 ◽  
pp. 112221 ◽  
Author(s):  
Kaishuo Fu ◽  
Zhifeng Bai ◽  
Lanlan Chen ◽  
Wenchong Ye ◽  
Meizhu Wang ◽  
...  
Author(s):  
Bhupender Nehra ◽  
Bijo Mathew ◽  
Pooja A Chawla

Aim: To describe structure activity relationship of heterocyclic derivatives with multi-targeted anticancer activity. Objectives: With the following goals in mind, this review tries to describe significant recent advances in the medicinal chemistry of heterocycle-based compounds: (1) To shed light on recent literature focused on heterocyclic derivatives' anticancer potential; (2) To discuss recent advances in the medicinal chemistry of heterocyclic derivatives, as well as their biological implications for cancer eradication; (3) To summarise the comprehensive correlation of structure activity relationship (SAR) with pharmacological outcomes in cancer therapy. Background: Cancer remains one of the major serious health issues devastating the world today. Cancer is a complex disease in which improperly altered cells proliferate at an uncontrolled, rapid, and severe rate. Variables such as poor dietary habits, high stress, age, and smoking, can all contribute to the development of cancer. Cancer can affect almost any organ or tissue, although the brain, breast, liver, and colon are the most frequently affected organs. From several years, surgical operations and irradiation are in use along with chemotherapy as a primary treatment of cancer but still effective treatment of cancer remains a huge challenge. Chemotherapy is now one of the most effective strategies to eradicate cancer, although it has been shown to have a number of cytotoxic and unfavourable effects on normal cells. Despite all of these cancer treatments, there are several other targets for anticancer drugs. Cancer can be effectively eradicated by focusing on these targets, which include both cell-specific and receptor-specific targets such as tyrosine kinase receptors (TKIs). Heterocyclic scaffolds also have a variety of applications in drug development and are a common moiety in the pharmaceutical, agrochemical, and textile industries. Methods: The association between structural activity relationship data of many powerful compounds and their anticancer potential in vitro and in vivo has been studied. SAR of powerful heterocyclic compounds can also be generated using molecular docking simulations, as reported vastly in literature. Conclusions: Heterocycles have a wide range of applications, from natural compounds to synthesised derivatives with powerful anticancer properties. To avoid cytotoxicity or unfavourable effects on normal mammalian cells due to a lack of selectivity towards the target site, as well as to reduce the occurrence of drug resistance, safer anticancer lead compounds with higher potency and lower cytotoxicity are needed. This review emphasizes on design and development of heterocyclic lead compounds with promising anticancer potential.


2016 ◽  
Vol 32 (6) ◽  
pp. 929-937 ◽  
Author(s):  
Hongshuang Li ◽  
Xinran Wang ◽  
Guiyun Duan ◽  
Chengcai Xia ◽  
Yuliang Xiao ◽  
...  

Author(s):  
Zhonghao Sun ◽  
Shuxian Yang ◽  
Chengfang Xu ◽  
Guoxu Ma ◽  
Li Cao ◽  
...  

(-)-Zeylenone is a promising cytotoxic agent,which is a natural product isolated from Uvaria grandiflora Roxb. Though substantial antitumor mechanism has been researched , little has focused on its enantiomer (+)-Zeylenone.This article will try to find a gram scale synthesis method of (+)-Zeylenone and explain the structure-activity relationship of this kind of compound. Total synthesis of (+)-zeylenone was completed in 13 steps with quinic acid as starting material in 8.8% overall yield. The highlight of the route was the control of the three carbon’s chirality by clever use of single step dihydroxylation under the direction of the key C-3 chirality. In addition, zeylenone derivatives were designed and synthesized and their antitumor activity were evaluated against three human cancer cell lines using the CCK8 assay. Structure-activity relationship suggested compounds with both two absolute configurations exhibited good activity. Besides, hydroxyls at C-1/2 position were crucial for the activity and esterification of C-1 hydroxyl with large groups made the activity disappeared. Hydroxyl at C-3 position was also important as proper ester substituent could increase the potency.


1996 ◽  
Vol 6 (11) ◽  
pp. 1247-1252 ◽  
Author(s):  
Pier Giovanni Baraldi ◽  
Italo Beria ◽  
Barbara Cacciari ◽  
Laura Capolongo ◽  
Paolo Cozzi ◽  
...  

1994 ◽  
Vol 4 (12) ◽  
pp. 1467-1472 ◽  
Author(s):  
Roberto D'Allessio ◽  
Cristina Geroni ◽  
Giovanni Biasoli ◽  
Enrico Pesenti ◽  
Maria Grandi ◽  
...  

2004 ◽  
Vol 12 (19) ◽  
pp. 5193-5201 ◽  
Author(s):  
Mitsuo Sekine ◽  
Kazuhisa Okada ◽  
Kohji Seio ◽  
Hideaki Kakeya ◽  
Hiroyuki Osada ◽  
...  

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