New application of benzo [C] phenanthridine and protopine in producing overriding resistant bacterium medicament
A technology for drug-resistant bacteria and uses, which can be used in antibacterial drugs, pharmaceutical formulations, medical preparations containing active ingredients, etc., and can solve problems such as lack of documentation
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Embodiment 1
[0030] Example 1: Extraction and separation of monomeric alkaloids 1-4 from celandine.
[0031]Get the whole herb of celandine (Chelidonium majus) and adjust slightly according to the method introduced in references [2, 3]: 5 kg of medicinal materials are extracted three times with 70% ethanol containing 5% acetic acid, and the extracts are combined, concentrated and steamed under reduced pressure. Most of the ethanol was removed, and the acid water extract was treated with a conventional acid-base method. First, 5% hydrochloric acid was added to PH2, and extracted with petroleum ether. The resulting acid water layer (S-1) was extracted with chloroform to obtain 23g (L-1). Silica gel column chromatography, petroleum ether: chloroform (10:0 ~ 10:1.5) gradient elution, to give chelidonine (4 = 1.86g) and dihydrochelerythrine (2 = 45mg).
[0032] The above acidic aqueous layer (S-2) extracted with chloroform was allowed to stand, and the precipitate was collected by filtration, r...
Embodiment 2
[0033] Example 2: Conversion from quaternary ammonium benzo[C]phenanthridine alkaloids to tertiary amine benzo[C]phenanthridine alkaloids.
[0034] According to the method of reference [4], take chelerythrine hydrochloride (20 mg, 0.052 mM) and dissolve it in 15 ml of 10% dilute hydrochloric acid, add 0.3 g of zinc powder under stirring at room temperature, continue stirring overnight, and extract the reaction mixture with chloroform (60ml×3), wash the extract with a small amount of acidic water (10% dilute hydrochloric acid), then wash with water until neutral, recover chloroform, and recrystallize the residue with ethanol to obtain 14 mg of dihydrochelerythrine (yield 77%) . The obtained physical and chemical constants and spectral data are consistent with those obtained by extraction and separation of dihydrochelerythrine.
[0035] The conversion of other quaternary ammonium benzo[C]phenanthridine alkaloids into tertiary amine benzo[C]phenanthridine alkaloids can be prepar...
Embodiment 3
[0036] Example 3: Physicochemical and Spectroscopic Data of Monomeric Compounds.
[0037] Chelidonine hydrochloride (1): [C 21 h 18 NO 4 ] + , yellow needle crystal, mp 201-202 ℃, bismuth iodide potassium reaction is positive. IR KBr max (cm -1 ): 3380, 2920, 2824, 1642 (C≡N + ), 1575, 1450, 1364, 1250, 1100, 1035 (C-O-C), 970, 875, 825; UV (nm, logε): 228 (4.49), 274sh (4.54), 282 (4.62), 320 (4.26), 346sh(3.55); EIMS: m / z 348[M] + (100), 333(12), 318(5), 307(6), 290(5), 167(4), 154(38), 136(31), 124(4). 1 H-NMR (400MHz, DMSO-d 6 ): 4.07 (3H, s, OMe), 4.13 (3H, s, 3H, s, OMe), 4.93 (3H, s, 3H, s, N-Me), 6.22 (2H, s, 2H, s, - OCH 2 O-), 7.83 (1H, s, 1H, s, H-1), 8.24 (1H, d, J=9.0Hz, H-9), 8.26 (1H, s, H-4), 8.29 (1H, d, J=9.0 Hz, H-9), 8.80 (2H, d, J=9.0 Hz, H-11), 10.06 (1H, s).
[0038] Dihydrochelerythrine (2): off-white crystal, C 21 h 19 NO 4 , mp164-165 ° C, bismuth iodide potassium reaction was positive. EIMS: 349[M] + (100), 348 (80), 334 [M-Me] + (1...
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