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首页> 外文期刊>Investigative ophthalmology & visual science >Effects of Human Recombinant PEDF Protein and PEDF-Derived Peptide 34-mer on Choroidal Neovascularization
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Effects of Human Recombinant PEDF Protein and PEDF-Derived Peptide 34-mer on Choroidal Neovascularization

机译:人重组PEDF蛋白和PEDF衍生肽34-mer对脉络膜新生血管形成的影响

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摘要

Purpose.: Pigment epithelium-derived factor (PEDF) is a serpin with antiangiogenic properties. Previously, the authors showed that PEDF injected into the subconjunctiva reaches the choroid. Here, they examined the effects of PEDF polypeptide fragments on vessel sprouting and on choroidal neovascularization (CNV) after subconjunctival administration. Methods.: Recombinant human PEDF (rhuPEDF) was cleaved at its serpin-exposed loop by limited chymotrypsin proteolysis. Synthetic PEDF peptides 34-mer (Asp44-Asn77) and 44-mer (Val78-Thr121) were used. Ex vivo chick aortic vessel sprouting assays were performed. CNV was induced in rats by laser injury of Bruch's membrane. Daily subconjunctival injections (0.01a??10 pmol/d protein) were performed for 5 days starting at day of injury or at the seventh day after injury. New vessel volumes were quantified using optical sections of choroid/RPE flat-mounts labeled with isolectin-Ib4. PEDF distribution was evaluated by immunofluorescence of choroid/RPE/retina cross-sections. Results.: Full-length rhuPEDF, cleaved rhuPEDF, or peptide 34-mer exhibited ex vivo antiangiogenic activity, but peptide 44-mer was inefficient. PEDF immunostaining around CNV lesions diminished after laser injury. Subconjunctival administration of rhuPEDF or 34-mer at 0.1 pmol/d decreased CNV lesion volumes by 52% and 47%, respectively, whereas those of 44-mer were similar to vehicle injections. Doses of 0.1 and 1 pmol/d rhuPEDF decreased fully developed CNV complex volumes by 45% and 50%, respectively, compared with vehicle injections. Conclusions.: A functional region for the inhibition of vessel sprouting and CNV resides within the 34-mer region of PEDF. Furthermore, subconjunctival administration of optimal range dosages of rhuPEDF or 34-mer can suppress and regress rat CNV lesions, demonstrating that these agents reach the choroid/RPE complex as functionally active molecules.
机译:目的:色素上皮衍生因子(PEDF)是具有抗血管生成特性的丝氨酸蛋白酶抑制剂。以前,作者表明注入结膜下的PEDF到达脉络膜。在这里,他们检查了结膜下给药后PEDF多肽片段对血管发芽和脉络膜新生血管(CNV)的影响。方法:重组人PEDF(rhuPEDF)通过胰凝乳蛋白酶有限的蛋白水解在其丝氨酸蛋白酶暴露的环上裂解。使用合成的PEDF肽34-mer(Asp44-Asn77)和44-mer(Val78-Thr121)。进行了离体小鸡主动脉血管发芽测定。 CNV是通过布鲁氏膜的激光损伤在大鼠中诱导的。从受伤当天或受伤后第七天开始,连续5天每天进行结膜下注射(0.01a ?? 10 pmol / d蛋白)。使用标记有异凝集素-Ib4的脉络膜/ RPE扁平支架的光学切片来定量新血管的体积。通过脉络膜/ RPE /视网膜横截面的免疫荧光评估PEDF分布。结果:全长rhuPEDF,裂解的rhuPEDF或肽34聚体表现出离体抗血管生成活性,但是肽44聚体效率低下。激光损伤后,CNV病变周围的PEDF免疫染色减少。结膜下给予0.1pmol / d的rhuPEDF或34-mer的CNV病变体积分别减少52%和47%,而44-mer的类似于车辆注射。与媒介物注射剂相比,剂量为0.1 pmol / d和1 pmol / d的rhuPEDF可使完全发育的CNV复合物体积分别减少45%和50%。结论:PEDF的34-mer区域内有一个抑制血管发芽和CNV的功能区。此外,结膜下给予最佳剂量范围的rhuPEDF或34-mer可以抑制和消退大鼠CNV损伤,表明这些药物以功能活性分子的形式到达脉络膜/ RPE复合体。

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