Svenson Sonke
Drug Delivery Solutions LLC, Midland, MI 48642, USA.
Eur J Pharm Biopharm. 2009 Mar;71(3):445-62. doi: 10.1016/j.ejpb.2008.09.023. Epub 2008 Oct 17.
About forty percent of newly developed drugs are rejected by the pharmaceutical industry and will never benefit a patient because of poor bioavailability due to low water solubility and/or cell membrane permeability. New delivery technologies could help to overcome this challenge. Nanostructures with uniform and well-defined particle size and shape are of eminent interest in biomedical applications because of their ability to cross cell membranes and to reduce the risk of premature clearance from the body. The high level of control over the dendritic architecture (size, branching density, surface functionality) makes dendrimers ideal carriers in these applications. Many commercial small molecule drugs with anticancer, anti-inflammatory, and antimicrobial activity have been successfully associated with dendrimers such as poly(amidoamine) (PAMAM), poly(propylene imine) (PPI or DAB) and poly(etherhydroxylamine) (PEHAM) dendrimers, either via physical interactions or through chemical bonding ('prodrug approach'). Targeted delivery is possible via targeting ligands conjugated to the dendrimer surface or via the enhanced permeability and retention (EPR) effect. The biocompatibility of dendrimers follows patterns known from other small particles. Cationic surfaces show cytotoxicity; however, derivatization with fatty acid or PEG chains, reducing the overall charge density and minimizing contact between cell surfaces and dendrimers, can reduce toxic effects.
约40%新研发的药物被制药行业拒用,且由于低水溶性和/或细胞膜通透性导致生物利用度差,永远无法使患者受益。新的给药技术有助于克服这一挑战。具有均匀且明确粒径和形状的纳米结构因其能够穿过细胞膜并降低从体内过早清除的风险,在生物医学应用中备受关注。对树枝状结构(尺寸、分支密度、表面功能)的高度可控性使树枝状大分子成为这些应用中的理想载体。许多具有抗癌、抗炎和抗菌活性的商业小分子药物已成功与树枝状大分子如聚(酰胺胺)(PAMAM)、聚(丙烯亚胺)(PPI或DAB)和聚(醚羟胺)(PEHAM)树枝状大分子结合,要么通过物理相互作用,要么通过化学键合(“前药方法”)。通过与树枝状大分子表面偶联的靶向配体或通过增强的通透性和滞留(EPR)效应实现靶向给药。树枝状大分子的生物相容性遵循其他小颗粒已知的模式。阳离子表面具有细胞毒性;然而,用脂肪酸或聚乙二醇链进行衍生化,降低总电荷密度并使细胞表面与树枝状大分子之间的接触最小化,可以降低毒性作用。