A Molecularly Targeted Anticancer Photosensitizer Erlotinib-Phthalocyanine Conjugate
A technology of molecular targeting and photosensitizers, which can be applied in drug combinations, antineoplastic drugs, medical preparations containing active ingredients, etc., can solve the problems of poor tumor tissue targeting, difficult separation, and many side effects , to achieve the effect of low cost, easy access to raw materials, and less side reactions
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Embodiment 1
[0048] Embodiment 1 (M=Zn, m=3, R=-CH 3 O, α-position monosubstituted)
[0049] 1) Add 1.0g (5.07mmol) of the compound and 1.0g (10mmol) of formamidine acetate into 20ml of ethanol solution, and microwave for 3h. After the reaction was completed, the ethanol was spin-dried, and then extracted with dichloromethane and water to obtain a crude product. Afterwards, compound 2 was isolated by passing through a silica gel column with dichloromethane-methanol as the eluent.
[0050] ), adding 1g (4.8mmol) of compound 2 to 1.48g (9.7mmol) of phosphorus oxychloride, reacting for 4-9h, rotary evaporating to remove the remaining phosphorus oxychloride, and then extracting with water and dichloromethane to obtain the crude product. Compound 3 was obtained by passing through a silica gel column.
[0051] 3) Add 1g (4.46mmol) of compound 3 and 1g (8.92mmol) of 3-aminophenylacetylene into isopropanol. After reacting for 4-9 hours, the isopropanol was spin-dried, and then dichloromethane-...
Embodiment 2
[0056] Example 2 (M=Al, m=7, R=-H, α-position monosubstituted)
[0057] 1) Add 1g (mmol) of the compound and 1.0g (mmol) of formamidine acetate into 20ml of ethanol solution, and microwave for 3h. After the reaction was completed, the ethanol was spin-dried, and then extracted with dichloromethane and water to obtain a crude product. Afterwards, compound 2 was isolated by passing through a silica gel column with dichloromethane-methanol as the eluent.
[0058] 2) Add 1g (mmol) of compound 2 to 1.48g (mmol) of phosphorus oxychloride, react for 4-9 hours, remove the remaining phosphorus oxychloride by rotary evaporation, and then extract with water and dichloromethane to obtain the crude product. Compound 3 was obtained after passing through a silica gel column.
[0059] 3) Add 1g (mmol) of compound 3 and 1g (mmol) of 3-aminophenylacetylene into isopropanol. After reacting for 4-9 hours, the isopropanol was spin-dried, and the compound 4 was obtained by separation on a silica...
Embodiment 3
[0064] Embodiment 3 (M=Si, m=1, R=-CH 2 OCH 2 CH 2 OCH 3 , α-position monosubstituted)
[0065] 1) Add 1.0 g of compound 1 and 1.0 g of formamidine acetate into 20 ml of ethanol solution, and react with microwave for 3 h. After the reaction was completed, the ethanol was spin-dried, and then extracted with dichloromethane and water to obtain a crude product. Afterwards, compound 2 was isolated by passing through a silica gel column with dichloromethane-methanol as the eluent.
[0066] ), adding 1g of compound 2 to 1.51g of phosphorus oxychloride, reacting for 4-9h, rotary evaporation to remove the remaining phosphorus oxychloride, and then extracting with water and dichloromethane to obtain the crude product. Compound 3 was obtained after passing through a silica gel column.
[0067] 3) Add 1g of compound 3 and 1g of 3-aminophenylacetylene into isopropanol. After reacting for 4-9 hours, the isopropanol was spin-dried, and the compound 4 was obtained by separation on a s...
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