首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Influence of solution viscosity and injection protocol on distribution patterns of jet injectors:Application to photodynamic tumour targeting
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Influence of solution viscosity and injection protocol on distribution patterns of jet injectors:Application to photodynamic tumour targeting

机译:溶液粘度和注射方案对喷射注射器分布模式的影响:在光动力肿瘤靶向治疗中的应用

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Photodynamic therapy of deep or nodular skin tumours is currently limited by the poor tissue penetration of the porphyrin precursor 5-aminolevulinic acid(ALA)and preformed photosensitisers.In this study,we investigated the potential of jet injection to deliver both ALA and a preformed photosensitiser(meso-tetra(N-methyl-4-pyridyl)porphine tetra tosylate,TMP)into a defined volume of skin.Initial studies using a model hydrogel showed that as standoff distance is increased,injection depth decreases.As the ejected volume is increased,injection depth increases.It was also shown,for the first time,that,as injection solution viscosity was increased,for a given injection setting and standoff distance,both total depth of jet penetration,L_t,and depth at which the maximum width of the penetration pattern occurred,L_m,decreased progressively.For a standoff distance of zero,the maximum width of the penetration pattern,L_w,increased progressively with increasing viscosity at each of the injection settings.Conversely,when the standoff distance was 2.5 mm,L_w decreased progressively with increasing viscosity.Studies with neonate porcine skin revealed that an injection protocol comprising an 8.98 mPas solution,an arbitrary injection setting of 8 and a standoff distance of zero was capable of delivering photosensitisers to a volume of tissue(L_t of 2.91 mm,L_m of 2.14 mm,L_w of 5.10 mm)comparable to that occupied by a typical nodular basal cell carcinoma.Both ALA and TMP were successfully delivered using jet injection,with peak tissue concentrations(67.3 mg cm~(-3)and 5.6 mg cm~(-3),respectively)achieved at a depth of around 1.0 mm and substantial reductions in drug concentration seen at depths below 3.0 mm.Consequently,jet injection may be suitable for selective targeting of ALA or preformed photosensitisers to skin tumours.
机译:卟啉前体5-氨基乙酰丙酸(ALA)和预制的光敏剂的组织渗透性差,目前对深部或结节性皮肤肿瘤的光动力治疗受到了限制。 (间-四(N-甲基-4-吡啶基)卟啉四甲苯磺酸盐,TMP)进入一定体积的皮肤。使用模型水凝胶进行的初步研究表明,随着距离增加,注射深度减小。随着排出量的增加还首次显示,对于给定的注射设置和支座距离,随着注射液粘度的增加,射流穿透总深度,L_t和最大注射宽度的深度都将增加。对于间距为零的情况,在每次注入s时,随着粘度的增加,最大渗透宽度L_w逐渐增加,对于渗透距离L_m逐渐减小。相反,当隔离距离为2.5 mm时,L_w随着粘度的增加而逐渐减小。对新生猪皮的研究表明,注射方案包括8.98 mPas溶液,任意注射设置为8且隔离距离为零。将光敏剂递送到与典型结节性基底细胞癌所占的组织相当的组织体积(L_t为2.91 mm,L_m为2.14 mm,L_w为5.10 mm).ALA和TMP均通过喷射注射成功递送,且组织浓度达到峰值在约1.0 mm的深度处分别达到(67.3 mg cm〜(-3)和5.6 mg cm〜(-3)),并且在3.0 mm以下的深度处药物浓度显着降低。因此,喷射注射可能适合ALA或预先形成的光敏剂对皮肤肿瘤的选择性靶向。

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