A kind of amphiphilic porphyrin photosensitizer and its preparation and application
A porphyrin-based photosensitizer and amphiphilic technology, applied in the field of biomedicine, can solve the problems of poor biocompatibility and tumor targeting, and achieve the effect of good tumor cell uptake rate and efficient uptake
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Embodiment 1
[0037] (1) Under the protection of nitrogen, the porphyrin raw material 49.5mg (0.1mmol) P 1 -OH(5,15-bis(4-hydroxyphenyl)-21H,23H-porphyrin)( figure 2 shown in), 207.0mg (0.5mmol) diiodotriethylene glycol (I-PEG-I) ( figure 1 shown in ) and 138mg (1.0mmol) potassium carbonate (K 2 CO 3 ) was dissolved in 5mL of anhydrous DMF, the temperature was raised to 65°C, the reaction was terminated by TLC detection, and the solvent was removed to obtain a crude product, which was separated with a silica gel chromatographic column to obtain the purple porphyrin intermediate P 1 -I, structural formula such as image 3 As shown in , the yield was 88%.
[0038] Characterization data: 1 HNMR (CDCl 3 ):δ-3.15(s,2H),3.12(t,J=6.76Hz,4H),3.52(m,4H),3.58(m,8H),3.67(m,4H),3.75(dt,J= 5.24Hz, J=6.36Hz, 4H), 3.94(t, J=4.6Hz, 4H), 4.34(t, J=4.66Hz, 4H), 7.36(dd, J=1.64Hz, J=6.08Hz, 2H ),7.66(t,J=7.82Hz,2H),7.85(d,J=2.4Hz,3H),7.87(s,1H),9.10(d,J=4.56Hz,4H),9.37(d,J =4.60Hz, 4H), 10.30(s, 2H)...
Embodiment 2
[0044] (1) Under nitrogen protection, 56.0mg (0.05mmol) Porphyrin raw material 2 -OH(5,10,15-tris(4-(triethylene glycol monomethyl ether))-20-(4-hydroxyphenyl)-21H,23H-porphyrin)( figure 2 shown in), 103.5mg (0.25mmol) diiodotriethylene glycol (I-PEG-I) ( figure 1 shown in ) and 69mg (0.5mmol) of potassium carbonate (K 2 CO 3 ) was dissolved in 5mL of anhydrous DMF, the temperature was raised to 65°C, the reaction was terminated by TLC detection, and the solvent was removed to obtain a crude product, which was separated with a silica gel chromatographic column to obtain the purple porphyrin intermediate P 2 -I, structural formula such as image 3 As shown in , the yield was 81%.
[0045] Characterization data: 1 HNMR (CDCl 3 ):δ-2.76(s,2H),3.27(t,J=6.72Hz,2H),3.41(s,9H),3.60(m,8H),3.71(m,10H),3.81(m,10H) ,3.88(m,8H),4.09(t,J=4.98Hz,8H),4.42(m,8H),7.29(d,J=6.10Hz,8H),8.15(d,J=6.1Hz,8H) ,8.89(s,8H); MALDI-TOF MS:calcd.for[M + ]:1403.3936,found:1403.4206.
[0046] (2) ...
Embodiment 3
[0051] (1) Under nitrogen protection, 56.0mg (0.05mmol) Porphyrin raw material 3 -OH(5,10,15-tris(4-(triethylene glycol monomethyl ether))-20-(3-hydroxyphenyl)-21H,23H-porphyrin)( figure 2 shown in), 103.5mg (0.25mmol) diiodotriethylene glycol (I-PEG-I) ( figure 1 shown in ) and 69mg (0.5mmol) of potassium carbonate (K 2 CO 3 ) was dissolved in 5mL of anhydrous DMF, the temperature was raised to 65°C, the reaction was terminated by TLC detection, and the solvent was removed to obtain a crude product, which was separated with a silica gel chromatographic column to obtain the purple porphyrin intermediate P 3 -I, structural formula such as image 3 As shown in , the yield was 79%.
[0052] Characterization data: 1 HNMR (CDCl 3 ):δ-2.79(s,2H),3.13(t,J=6.76Hz,2H),3.43(s,9H),3.53(m,2H),3.60(m,10H),3.66(m,2H) ,3.73(m,8H),3.78(m,6H),3.87(m,6H),3.94(t,J=4.64Hz,2H),4.04(t,J=4.72Hz,6H),4.31(t, J=4.96Hz, 2H), 4.41(t, J=4.52Hz, 6H), 7.28(d, J=8.36Hz, 6H), 7.32(m, 1H), 7.61(t, J=7...
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