Donnelly Ryan F, Morrow Desmond I J, McCarron Paul A, Woolfson A David, Morrissey Anthony, Juzenas Petras, Juzeniene Asta, Iani Vladimir, McCarthy Helen O, Moan Johan
School of Pharmacy, Queen's University Belfast, Medical Biology Centre, 97 Lisburn Road, Belfast BT9 7BL, UK.
J Control Release. 2008 Aug 7;129(3):154-62. doi: 10.1016/j.jconrel.2008.05.002. Epub 2008 May 10.
Photodynamic therapy of deep or nodular skin tumours is currently limited by the poor tissue penetration of the porphyrin precursor 5-aminolevulinic acid (ALA). In this study, silicon microneedle arrays were used, for the first time, to enhance skin penetration of ALA in vitro and in vivo. Puncturing excised murine skin with 6 x 7 arrays of microneedles 270 microm in height, with a diameter of 240 mum at the base and an interspacing of 750 microm led to a significant increase in transdermal delivery of ALA released from a bioadhesive patch containing 19 mg ALA cm(-2). Microneedle puncture enhanced ALA delivery to the upper regions of excised porcine skin but, at mean depths of 1.875 mm, ALA concentrations were similar to control values, possibly reflecting binding of ALA by tissue components. However, and importantly, in vivo experiments using nude mice showed that microneedle puncture could reduce application time and ALA dose required to induce high levels of the photosensitizer protoporphyrin IX in skin. This clearly has implications for clinical practice, as shorter application times would mean improved patient and clinician convenience and also that more patients could be treated in the same session. As ALA is expensive and degrades rapidly via a second order reaction, reducing the required dose is also a notable advantage.
深部或结节性皮肤肿瘤的光动力疗法目前受到卟啉前体5-氨基酮戊酸(ALA)组织穿透性差的限制。在本研究中,首次使用硅微针阵列在体外和体内增强ALA对皮肤的穿透性。用高度为270微米、基部直径为240微米且间距为750微米的6×7微针阵列穿刺切除的鼠皮,导致从含有19毫克ALA/cm²的生物粘附贴剂释放的ALA经皮递送显著增加。微针穿刺增强了ALA向切除的猪皮上部区域的递送,但在平均深度为1.875毫米处,ALA浓度与对照值相似,这可能反映了ALA与组织成分的结合。然而,重要的是,使用裸鼠的体内实验表明,微针穿刺可以减少诱导皮肤中高水平光敏剂原卟啉IX所需的应用时间和ALA剂量。这显然对临床实践有影响,因为更短的应用时间意味着患者和临床医生会更方便,而且在同一疗程中可以治疗更多患者。由于ALA价格昂贵且会通过二级反应迅速降解,减少所需剂量也是一个显著的优势。