| Literature DB >> 29976890 |
Tianyu Niu1, Weixiao Niu2, Yunyang Bao3, Ting Liu4, Danqing Song5, Yinghong Li6, Hongwei He7.
Abstract
A series of novel matrinic thiadiazole derivatives were designed, synthesized and evaluated for their inhibitory effect on COL1A1 promotor. The SAR indicated that: (i) the introduction of a thiadiazole on the 11-side chain was beneficial for activity; (ii) a 12-N-benzyl moiety was favorable for activity. Among them, compound 6n displayed a high activity with an inhibitory rate of 39.7% at a concentration of 40 μM. It also effectively inhibited the expression of two representative collagen proteins (COL1A1 and α-SMA) on both the mRNA and protein levels and showed a high safety profile in vivo, indicating its great promise as an anti-liver fibrosis agent. Further study indicated that it might repress hepatic fibrogenesis via the TGFβ/Smad pathway. This study provided powerful information for further strategic optimization and the top compound 6n was selected for further study as an ideal liver fibrosis lead for next investigation.Entities:
Keywords: COL1A1; TGFβ/Smad pathway; liver fibrosis; matrinic; structure-activity relationship; thiadiazole
Mesh:
Substances:
Year: 2018 PMID: 29976890 PMCID: PMC6099493 DOI: 10.3390/molecules23071644
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Chemical structures of matrine and the lead compound 1, and structure modification strategy.
Scheme 1Reagents and conditions: (a) 5 N NaOH, reflux, 9 h; 10 N HCl, pH = 3–5; (b) 2 N MeOH/HCl, reflux, 2 h; (c) Substituted benzensulfonyl chloride or benzyl bromide, TEA or K2CO3, CH2Cl2 or MeCN, r.t., 6–8 h; (d) 5 N NaOH, reflux, 6 h; 10 N HCl, pH = 7–7.5; (e) P2O5/MsOH (1:5), thiosemicarbazide, 70 °C, 8 h; (f) Acetyl chloride, TEA, THF, r.t., 0.5 h.
Inhibition of COL1A1 promotor of target compounds and cytotoxicity of key compounds.
| Code | R1 | R2 | Inhibition Percentage | CC50 (μM) |
|---|---|---|---|---|
|
| - | 18.5% ± 1.1% | >320 | |
|
| - | −3.7% ± 3.0% | NT | |
|
| C6H5CH2 | - | −33.6% ± 10.6% | NT |
|
| - | −116.2% ± 45.7% | NT | |
|
| - | 6.4%± 0.9% | NT | |
|
| NH2 | 21.2% ± 10.4% | >320 | |
|
| NHCH3 | 12.8% ± 7.3% | NT | |
|
| NHCH(CH3)2 | −84.2% ± 63.1% | NT | |
|
| N(CH3)2 | −36.7% ± 17.3% | NT | |
|
| NHPh | 69.0% ± 13.5% | 82.55 | |
|
| NH2 | −19.0% ± 7.8% | NT | |
|
| NHCH3 | 6.1% ± 0.8% | NT | |
|
| N(CH3)2 | −35.2% ± 2.1% | NT | |
|
| C6H5CH2 | NH2 | 47.8% ± 29.0% | >320 |
|
| C6H5CH2 | NHCH3 | 29.5% ± 6.1% | NT |
|
| C6H5CH2 | N(CH3)2 | 15.2% ± 7.1% | NT |
|
| NH2 | 38.7% ± 4.4% | >320 | |
|
| NHCH3 | −29.6% ± 13.6% | NT | |
|
| N(CH3)2 | 39.7%± 12.3% | >320 | |
|
| NH2 | 7.8% ± 3.0% | NT | |
|
| NHCOCH3 | 33.9% ± 9.9% | NT | |
|
| NHCOCH3 | −6.0% ± 5.0% | NT | |
|
| C6H5CH2 | NHCOCH3 | 12.9% ± 10.6% | NT |
|
| NHCOCH3 | 27.0% ± 9.5% | NT | |
| EGCG | - | - | 27.5% ± 7.9% | - |
| DMSO | - | - | 2.9% ± 0 | - |
The inhibition rate of COL1A1 promotor’s activity in LX2 cells; Cytotoxic concentration required to inhibit HepG2 cells cell growth by 50%; Not tested.
Figure 2Effects of compounds 6i, 6l and 6n inhibiting (A) COL1A1, (B) α-SMA mRNA levels in LX-2 cells. Data were analyzed by Real-time PCR and presented as the mean ± SEM, (#) p < 0.05 as compared to that of control group; (*) p < 0.05, (**) p < 0.01 as compared to that of TGF-β1 group. The mRNA expression levels were normalized against GAPDH.
Figure 3(A) Effects of compounds 6i, 6l and 6n on inhibiting fibrogenetic COL1A1 and α-SMA protein levels in LX-2 cells; (B) Effects of compounds 6i, 6l and 6n on p-smad2 and smad2 levels in LX-2 cells. Data were analyzed by western blot assay. The protein expression levels were normalized against GAPDH.
Figure 4Compound 6n exerted the anti-liver fibrotic activity via repressing the Smad/TGFβ pathway.