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Functionalized Spirocyclic Heterocycle Synthesis and Cytotoxicity Assay
Published on: February 9, 2021
Synthesis and biological activity evaluation of podophyllotoxin-linked bile acid derivatives as potential anti-liver
De-Sheng Cai1, Shao-Yan Lou1, Su Huo1
1School of Chinese Pharmacy, Beijing University of Chinese Medicine, Beijing 102488, PR China.
Abstract:
Podophyllotoxin's undifferentiated cytotoxicity and poor selectivity limit its clinical application. To improve above disadvantages, conjugation of bile acids with podophyllotoxin could improve cell line selectivity of liver cancer to achieve clinical translation further. Enlightened by the bile acids' moiety magic characters, thirty podophyllotoxin-linked bile acid derivatives had been designed and synthesized. The cytotoxicity of these compounds in vitro was evaluated on HepG2, HCT-116, A549 and MDCK cell lines. After conjunction with bile acids, most of the derivatives (IC50 = 0.066-0.831 μM) were more potent against above three types of tumor cells than Etoposide (VP-16, IC50 = 4.319-41.080 μM) and exhibited similar antitumor activity compared with doxorubicin (DOX, IC50 = 0.230-0.745 μM). Moreover, structure-activity relationship displayed the length of the linker chain between podophyllotoxin and bile acids affected the cytotoxicity. Especially, compound 23 exhibited strong activity against HepG2 cell lines (IC50 = 0.188 ± 0.01 μM) than MDCK cell lines (IC50 = 4.780 ± 0.50 μM) and its SI (IC50MDCK/IC50HepG2) value of compound 23 was 25.4. Further antitumor mechanism studies showed that compound 23 acted as Topo Ⅱ inhibition and induced cell apoptosis with S cell cycle arrest. In particular, compound 23 showed valid antitumor efficacy at 10 mg/kg by intraperitoneal administration with a tumor inhibition rate of 60.9% in the Hepa1-6 xenograft mice model. The current research displayed that introduction of bile acids contributed to improve selectivity and activity to cell, and compound 23 could be a promising anti-tumor candidate.
Insights
Researchers synthesized novel podophyllotoxin-bile acid derivatives to enhance liver cancer treatment. Compound 23 demonstrated potent antitumor activity and selectivity, showing promise as a clinical candidate.
Area of Science:
- Medicinal Chemistry
- Pharmacology
- Oncology
Background:
- Podophyllotoxin exhibits broad cytotoxicity, limiting its clinical use.
- Bile acid conjugation offers a strategy to improve drug selectivity and efficacy.
Purpose of the Study:
- To design and synthesize novel podophyllotoxin-bile acid derivatives.
- To evaluate the in vitro and in vivo antitumor activity and selectivity of these derivatives.
Main Methods:
- Synthesis of thirty podophyllotoxin-bile acid derivatives.
- In vitro cytotoxicity assays on HepG2, HCT-116, A549, and MDCK cell lines.
- In vivo efficacy study in a Hepa1-6 xenograft mouse model.
Main Results:
- Most derivatives showed enhanced potency against tumor cells compared to Etoposide (VP-16).
- Compound 23 displayed significant selectivity for HepG2 liver cancer cells over normal MDCK cells (SI=25.4).
- Compound 23 demonstrated Topoisomerase II inhibition, induced apoptosis, and showed a 60.9% tumor inhibition rate in vivo.
Conclusions:
- Bile acid conjugation effectively improves the selectivity and activity of podophyllotoxin derivatives.
- Compound 23 is a promising anti-tumor candidate with potential for clinical translation.
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