Nanoparticles for the delivery of therapeutic antibodies: Dogma or promising strategy?

纳米载体 抗体 免疫原性 单克隆抗体 药理学 医学 药品 免疫学
作者
Flávia Sousa,Pedro M. Castro,Pedro Fonte,Patrick J. Kennedy,Maria Teresa Neves‐Petersen,Bruno Sarmento
出处
期刊:Expert Opinion on Drug Delivery [Taylor & Francis]
卷期号:14 (10): 1163-1176 被引量:92
标识
DOI:10.1080/17425247.2017.1273345
摘要

Over the past two decades, therapeutic antibodies have demonstrated promising results in the treatment of a wide array of diseases. However, the application of antibody-based therapy implies multiple administrations and a high cost of antibody production, resulting in costly therapy. Another disadvantage inherent to antibody-based therapy is the limited stability of antibodies and the low level of tissue penetration. The use of nanoparticles as delivery systems for antibodies allows for a reduction in antibody dosing and may represent a suitable alternative to increase antibody stability Areas covered: We discuss different nanocarriers intended for the delivery of antibodies as well as the corresponding encapsulation methods. Recent developments in antibody nanoencapsulation, particularly the possible toxicity issues that may arise from entrapment of antibodies into nanocarriers, are also assessed. In addition, this review will discuss the alterations in antibody structure and bioactivity that occur with nanoencapsulation. Expert opinion: Nanocarriers can protect antibodies from degradation, ensuring superior bioavailability. Encapsulation of therapeutic antibodies may offer some advantages, including potential targeting, reduced immunogenicity and controlled release. Furthermore, antibody nanoencapsulation may aid in the incorporation of the antibodies into the cells, if intracellular components (e.g. intracellular enzymes, oncogenic proteins, transcription factors) are to be targeted.
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