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Chemical Structure| 23496-41-5 Chemical Structure| 23496-41-5

Structure of Peimine
CAS No.: 23496-41-5

Chemical Structure| 23496-41-5

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Peimine can inhibit the production of inflammatory cytokines induced by LPS and block MAPK and NF-κB signaling pathways. It is purified from the bulbus of fritillaria thunbergii.

Synonyms: Verticine; Dihydroisoimperialine; 5α-Cevane-3β,6α,20-triol

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Product Details of Peimine

CAS No. :23496-41-5
Formula : C27H45NO3
M.W : 431.65
SMILES Code : [H][C@]12[C@]3([H])C[C@H](O)[C@@]4([H])C[C@@H](O)CC[C@]4(C)[C@@]3([H])C[C@]([H])1[C@]5([H])CN6C[C@@H](C)CC[C@]([H])6[C@@](C)(O)[C@]([H])5CC2
Synonyms :
Verticine; Dihydroisoimperialine; 5α-Cevane-3β,6α,20-triol
MDL No. :MFCD02259442
InChI Key :IUKLSMSEHKDIIP-BZMYINFQSA-N
Pubchem ID :131900

Safety of Peimine

GHS Pictogram:
Signal Word:Warning
Hazard Statements:H302-H315-H319-H335
Precautionary Statements:P261-P305+P351+P338

Isoform Comparison

Biological Activity

In Vitro:

Cell Line
Concentration Treated Time Description References
Caco-2 cells 10, 20, 50, 100, 200 µM 150 minutes To investigate the intestinal absorption mechanism of Peimine in Caco-2 cell monolayers. The results show that Peimine transport is concentration-dependent and involves active transport. Acta Pharm Sin B. 2016 Mar;6(2):125-31
293T/hACE2 cells 10 µM 2 hours Evaluating the efficacy of peimine in inhibiting SARS-CoV-2 pseudovirus entry in 293T/hACE2 cells, peimine was found to significantly inhibit viral entry. J Food Biochem. 2022 Oct;46(10):e14354
BV-2 microglia 7.5 μg/ml, 15 μg/ml, 30 μg/ml 24 hours To investigate the effects of Peimine on M1/M2 polarization in LPS-stimulated BV-2 microglia. Results showed that Peimine dose-dependently decreased the levels of M1 markers CD16 and IL-6, and increased the levels of M2 markers CD206 and IL-10. Heliyon. 2024 Jul 20;10(15):e34987
MH-S cells 12.5, 25, 50, 100 μg/ml 3 hours Peimine significantly reduced the mRNA expression of Arg-1 and Fizz-1 in IL-4-induced MH-S cells and decreased the protein levels of Arg-1 and CD206. Biosci Rep. 2022 Oct 28;42(10):BSR20220986

In Vivo:

Species
Animal Model
Administration Dosage Frequency Description References
Sprague–Dawley rats BLM-induced pulmonary fibrosis model Oral 0.24 mg/kg Daily administration from day 29 to day 42 Peimine significantly ameliorated BLM-induced pulmonary fibrosis by suppressing histological changes and collagen deposition, reducing the number of M2 macrophages and the expression of profibrotic factors. Biosci Rep. 2022 Oct 28;42(10):BSR20220986
Male albino Swiss mice Chronic constriction injury (CCI) model of the sciatic nerve Intrathecal injection 10, 20, 60 µg/5 µL Single administration on day 7 post-CCI To evaluate the effect of Peimine on tactile and thermal hypersensitivity in a neuropathic pain model. Results showed that Peimine dose-dependently attenuated CCI-induced tactile and thermal hypersensitivity. Int J Mol Sci. 2023 May 19;24(10):9000
Sprague Dawley (SD) rats Drug-resistant epilepsy (DRE) rat model Oral gavage 2.5 mg/kg, 5 mg/kg, 10 mg/kg Once daily for 30 days To investigate the effects of Peimine on epileptic behaviors and hippocampal neuron injury in DRE rats. Results showed that Peimine dose-dependently alleviated epileptic behaviors, reduced hippocampal neuron injury, and promoted a shift from M1 to M2 microglial phenotype. Heliyon. 2024 Jul 20;10(15):e34987
Sprague-Dawley rats Drug interaction model Oral 5 mg/kg Once daily for 10 days To investigate the effect of Peimine on the pharmacokinetics of Paeoniflorin, results showed that Peimine significantly increased the Cmax and AUC of Paeoniflorin, prolonged t1/2, and decreased clearance. Pharm Biol. 2021 Dec;59(1):129-133

Protocol

Bio Calculators
Preparing Stock Solutions 1mg 5mg 10mg

1 mM

5 mM

10 mM

2.32mL

0.46mL

0.23mL

11.58mL

2.32mL

1.16mL

23.17mL

4.63mL

2.32mL

Dissolving Methods
Please choose the appropriate dissolution scheme according to your animal administration guide.For the following dissolution schemes, clear stock solution should be prepared according to in vitro experiments, and then cosolvent should be added in turn:

in order to ensure the reliability of the experimental results, the clarified stock solution can be properly preserved according to the storage conditions; The working fluid for in vivo experiment is recommended to be prepared now and used on the same day;

The percentage shown in front of the following solvent refers to the volume ratio of the solvent in the final solution; If precipitation or precipitation occurs in the preparation process, it can be assisted by heating and/or ultrasound.
Protocol 1

References

 

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