scholarly journals Croton gratissimus leaf extracts inhibit cancer cell growth by inducing caspase 3/7 activation with additional anti-inflammatory and antioxidant activities

Author(s):  
Emmanuel Mfotie Njoya ◽  
Jacobus N. Eloff ◽  
Lyndy J. McGaw
Molecules ◽  
2021 ◽  
Vol 26 (24) ◽  
pp. 7432
Author(s):  
Kanokwan Kulprachakarn ◽  
Supakit Chaipoot ◽  
Rewat Phongphisutthinant ◽  
Narisara Paradee ◽  
Adchara Prommaban ◽  
...  

Thua-nao, or Thai fermented soybeans, is a traditional Lanna fermented food in Northern Thailand. It is produced by using a specific bacterial species called Bacillus subtilis var. Thua-nao. We investigated the antioxidant activity and cytotoxic effect of isoflavones from Thua-nao. The phenolic compound contents and total flavonoid contents were determined by spectrophotometry. The antioxidant activity was examined using the ABTS, FRAP, and DPPH assays. The isoflavone contents and phenolic compositions were examined by the high-performance liquid chromatography (HPLC) and liquid chromatography-mass spectrometry (LC-MS) techniques. The ability of isoflavones to inhibit human cancer cell growth was assessed by the MTT assay. The total phenolic content, total flavonoid content, and antioxidant activities of the isoflavones were 49.00 ± 0.51 mg GAE/g of dry extract (DE), 10.76 ± 0.82 mg QE/g of DE, 61.03 ± 0.97 µmol Trolox/g of DE, 66.54 ± 3.97 µM FeSO4/g of DE, and 22.47 ± 1.92% of DPPH inhibition, respectively. Additionally, the isoflavone extracts from Thua-nao had high isoflavone contents and polyphenolic compound compositions, especially daidzein and genistein. The isoflavone demonstrated a weak inhibition of MCF-7 and HEK293 cancer cell growth. It has a high antioxidant component, which is beneficial and can be developed for new therapeutic uses. However, further studies on the benefits of Thua-nao should be performed for realizing better and more effective uses soon.


2020 ◽  
Vol 176 ◽  
pp. 113857 ◽  
Author(s):  
Mitali Chattopadhyay ◽  
Ravinder Kodela ◽  
Gabriela Santiago ◽  
Thuy Tien C. Le ◽  
Niharika Nath ◽  
...  

2019 ◽  
Vol 4 (1) ◽  
pp. 9
Author(s):  
Roihatul Mutiah ◽  
Yolanda Cahyaning Sukma ◽  
Dewi Sinta Megawati ◽  
Rahmi Annisa

<p>The root of <em>Calotropis gigantea</em> (thistle) is an Indonesian herb to treat cancer based on empirical and scientific evidences. The study aims to find out the infuence of ethanol extract of <em>Calotropis gigantea</em> root<em> </em>in inhibiting cancer cell growth of <em>Mus musculus</em> fibrosarcoma in vivo and to find out metabolite compound in the <em>Calotropis gigantea</em> root<em> </em>extract. The effect of cancer cell growth inhibition was tested on Mus musculus inducted with 7.12-dimetilbenz (α) antrasena (DMBA) and dose treatment of 50, 100 and 150 mg/Kg body weight. The metabolomic analysis on the root employs UPLC-QToF-MS/MS as a positive ESI ion source, the movement phase of water/acid mixture is 99.9/0.1 [v/v] and acetonitrile/formic acid was 99.9/0.1 [v/v] with gradient elution system and stationary phase of C18. The chromatogram was analyzed using Masslynx<em> </em>4.1. The component identification was based on the m/z ratio measured in <em>Masslynx </em>and m/z counted in chemdraw<em>.</em> The result of the study showed that the <em>Calotropis gigantea</em> root extract with the dose of 50, 100 dan 150 mg/Kg body weight were able to increase the weight of fibrosarcoma mice and have a significant influence on caspase-3 expression with cell apoptosis index 24.3 %; 13.3 % and 12.3 % respectively. The result of metabolomic analysis showed 14 compounds found in the root extract. There are two major compounds: 4-Chlorobenzenethiol with the area 32.51% and N-[1-(Adamantan-1-yl) ethyl]-2-(1-piperidinyl)-4-quinazolinamine with the area 37.20%. They are indicated responsible for the anticancer activity of <em>Calotropis gigantea</em> root<em> </em>extract.</p><p><strong> </strong><strong>Keywords:</strong> <em>Calotropis gigantea</em>, caspase-3,<strong> </strong>fibrosarcoma, metabolomic, UPLC-QToF-MS/MS</p>


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