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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Sustained and efficient porphyrin generation in vivo using dendrimer conjugates of 5-ALA for photodynamic therapy
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Sustained and efficient porphyrin generation in vivo using dendrimer conjugates of 5-ALA for photodynamic therapy

机译:使用5-ALA的树状大分子缀合物在体内进行持续有效的卟啉生成,以进行光动力治疗

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摘要

The use of endogenous protoporphyrin IX (PpIX) after administration of 5-aminolaevulinic acid (ALA) has led to many applications in photodynamic therapy (PDT). However the efficacy of ALA-PDT is sub-optimal for thicker tumours and improved ALA delivery and therapeutic response are required. We have investigated the conjugation of ALA to a second-generation dxcendrimer for enhancing porphyrin synthesis in vitro and in vivo in a murine tumour model using systemic i.p. administration. In vitro, the dendrimer was more efficient than ALA for porphyrin synthesis at low concentrations in good correlation with higher cellular ALA dendrimer accumulation. In vivo, the porphyrin kinetics from ALA exhibited an early peak between 3 and 4 h in most tissues, whereas the dendrimer induced sustained porphyrin production for Over 24 h and basal values were not reached until 48 h after administration. Integrated porphyrin accumulation from the dendrimer and ALA, at equivalent molar ratios, was comparable showing that the majority of ALA residues were liberated from the dendrimer. The porphyrin kinetics appear to be governed by the rate of enzymatic cleavage of ALA from the dendrimer, which is consistent with in vitro results. ALA dendrimers may be useful for metronomic PDT, and Multiple low-dose ALA-PDT treatments.
机译:施用5-氨基戊酸(ALA)后使用内源性原卟啉IX(PpIX)在光动力疗法(PDT)中引起了许多应用。但是,对于较厚的肿瘤,ALA-PDT的疗效欠佳,需要改善ALA的递送和治疗反应。我们已经研究了将ALA与第二代dxcendrimer结合使用全身性i.p.在鼠肿瘤模型中增强体内和体内卟啉合成的能力。行政。在体外,树枝状大分子在低浓度下卟啉合成比ALA更有效,与较高的细胞ALA树枝状大分子蓄积具有良好的相关性。在体内,来自ALA的卟啉动力学在大多数组织中在3-4小时内显示出早期峰值,而树枝状聚合物诱导的卟啉持续产生超过24小时,直到给药后48小时才达到基础值。从树状聚合物和ALA以相等的摩尔比累积的卟啉积累是可比较的,表明大部分ALA残留物从树状聚合物中释放出来。卟啉动力学似乎受ALD从树枝状聚合物中酶促裂解的速率控制,这与体外结果一致。 ALA树状聚合物可用于节拍型PDT和多种低剂量ALA-PDT治疗。

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