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Phenylthiosubstituted phthalocyanines as new photosensitizers for photodynamic therapy

机译:苯硫基取代的酞菁类用作光动力疗法的新型光敏剂

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Current work is devoted to investigation of tetra-3-phenylthio-tetra-5-t-butylphthalocyanine [(PhS)_4(t-Bu)_4PcH_2], aluminium hydroxyde tetra-3-phenylthiophthalocyanine [(PhS)_4PcAlOH] and zinc tetra-3-phenylthiophthalocyanine [(PhS)_4PcZn] as potential photosensitizers of near-infrared range. Investigations were performed on F-1 mice bearing Erlich tumor. Photosensitizers were administered intravenously in liposomal form at doses of 4-10 mg/kg. Dynamic and selectivity of sensitizers' accumulation in tumor were estimated in vivo from fluorescence and absorption spectra of sensitized tissue. Photosensitizers have shown high selectivity of accumulation in tumor comparing to normal tissue of mice. Maxima of selectivity for (PhS)_4(t-Bu)_4PcH_2, (PhS)_4PcZn and (PhS)_4PcAlOH achieve the values up to 2.5:1, 5:1 and 8:1 respectively. All photosensitizers completely clear from the normal tissue in 7-8 days. For PDT investigations tumors were irradiated using 732 nm laser with power density of 100-500 mW/cm~2 and light dose density up to 400 J/cm~2. The photodynamic efficiency was estimated using the parameter of tumor growth inhibition (TGI). All photosensitizers had shown high photodynamic efficiency of relatively large tumors. PDT using (PhS)_4PcAlOH and (PhS)_4(t-Bu)_4PcH-2 caused pronounced TGI exceeding 80%. Using (PhS)_4PcZn caused moderate TGI of 60%. Investigations have shown that liposomal forms of phenylthiosubstituted phthalocyanine derivatives may be used to develop new efficient photosensitizers for PDT.
机译:目前的工作致力于研究四-3-苯基硫代四-5-叔丁基酞菁[(PhS)_4(t-Bu)_4PcH_2],氢氧化铝四-3-苯基硫代酞菁铝[(PhS)_4PcAlOH]和四氧化锌。 3-苯基硫代酞菁[(PhS)_4PcZn]作为近红外范围的潜在光敏剂。对患有Erlich肿瘤的F-1小鼠进行了研究。光敏剂以脂质体形式静脉内给药,剂量为4-10 mg / kg。从敏化组织的荧光和吸收光谱,体内估计敏化剂在肿瘤中积累的动态和选择性。与小鼠的正常组织相比,光敏剂在肿瘤中显示出高的蓄积选择性。 (PhS)_4(t-Bu)_4PcH_2,(PhS)_4PcZn和(PhS)_4PcAlOH的选择性最大值分别达到2.5:1、5:1和8:1。所有光敏剂在7至8天内从正常组织中完全清除。对于PDT研究,使用732 nm激光以功率密度为100-500 mW / cm〜2,光剂量密度高达400 J / cm〜2照射肿瘤。使用肿瘤生长抑制(TGI)参数估算光动力效率。所有光敏剂均显示出相对较大肿瘤的高光动力效率。使用(PhS)_4PcAlOH和(PhS)_4(t-Bu)_4PcH-2的PDT导致明显的TGI超过80%。使用(PhS)_4PcZn会导致60%的中等TGI。研究表明,苯硫基取代的酞菁衍生物的脂质体形式可用于开发用于PDT的新型高效光敏剂。

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