Welsh School of Pharmacy, Cardiff University, Cardiff, CF10 3NB, UK.
J Control Release. 2012 Feb 28;158(1):93-101. doi: 10.1016/j.jconrel.2011.10.024. Epub 2011 Oct 29.
Transdermal drug delivery is limited by the barrier properties of the outer skin layer. Microneedles (MNs) effectively circumvent the skin barrier to offer this route as a potential alternative to oral and parenteral delivery of therapeutics. Biodegradable microneedles offer particular advantages however processing commonly requires elevated temperatures that may adversely affect heat-labile molecules and macromolecules. In this study, solid amorphous sugar glasses containing low residual quantities of water were created by dehydration of trehalose and sucrose sugar combination solutions. Biodegradable sugar glass MNs were fabricated following optimisation of a simple and novel low temperature vacuum deposition micromoulding methodology. These had absolute morphological fidelity to silicon master structures and demonstrated sufficient structural rigidity to efficiently penetrate excised human breast skin. Sugar glass MNs incorporating a marker compound dissolved rapidly and completely in situ releasing dye into deeper skin layers. The biological activity of a model macromolecule was partially retained over extended storage following incorporation into sugar glass. This is the first demonstration that MNs created from amorphous sugar glasses can be used for incorporating and delivering molecules, and potentially biologically active macromolecules, via the transdermal route.
透皮药物递送受到外层皮肤层屏障特性的限制。微针(MNs)有效地绕过皮肤屏障,为治疗药物的口服和肠胃外给药提供了一种潜在的替代途径。然而,可生物降解的微针具有特殊的优势,但其加工通常需要升高温度,这可能会对热敏分子和大分子产生不利影响。在这项研究中,通过脱水海藻糖和蔗糖组合溶液,创建了含有低残留水量的固体无定形糖玻璃。在优化简单新颖的低温真空沉积微成型方法之后,制造了可生物降解的糖玻璃微针。这些微针具有与硅主结构完全相同的形态保真度,并表现出足够的结构刚性,能够有效地穿透切除的人体乳房皮肤。将标记化合物掺入糖玻璃微针中可快速且完全原位溶解,将染料释放到更深的皮肤层中。在掺入糖玻璃后,模型大分子的生物活性在长时间储存后部分保留。这是首次证明,可从无定形糖玻璃中制造的微针可用于通过透皮途径来掺入和输送分子,以及潜在的生物活性大分子。