UCL Centre for Nanotechnology and Regenerative Medicine, Division of Surgery & Interventional Science, University College London, London, UK.
Aliment Pharmacol Ther. 2012 Aug;36(3):213-21. doi: 10.1111/j.1365-2036.2012.05179.x. Epub 2012 Jun 11.
Over the past 30 years, nanotechnology has evolved dramatically. It has captured the interest of variety of fields from computing and electronics to biology and medicine. Recent discoveries have made invaluable changes to future prospects in nanomedicine; and introduced the concept of theranostics. This term offers a patient specific 'two in one' modality that comprises of diagnostic and therapeutic tools. Not only nanotechnology has shown great impact on improvements in drug delivery and imaging techniques, but also there have been several ground-breaking discoveries in regenerative medicine.
Gastroenterology invites multidisciplinary approach owing to high complexity of gastrointestinal (GI) system; it includes physicians, surgeons, radiologists, pharmacologists and many more. In this article, we concentrate on current developments in nano-gastroenterology.
Literature search was performed using Web of Science and Pubmed search engines with terms--nanotechnology, nanomedicine and gastroenterology. Article search was concentrated on developments since 2005.
We have described original and innovative approaches in gastrointestinal drug delivery, inflammatory disease and cancer-target treatments. Here, we have reviewed advances in GI imaging using nanoparticles as fluorescent contrast, and their potential for site-specific targeting. This review has also depicted various approaches and novel discoveries in GI regenerative medicine using nanomaterials for scaffold designs and induced pluripotent stem cells as cell source.
Developments in nanotechnology have opened new range of possibilities to help our patients. This includes novel drug delivery vehicles, diagnostic tools for early and targeted disease detection and nanocomposite materials for tissue constructs to overcome cosmetic or physical disabilities.
在过去的 30 年中,纳米技术得到了迅猛的发展。它吸引了来自计算、电子、生物和医学等多个领域的关注。最近的发现使纳米医学的未来前景发生了巨大的变化,并引入了治疗诊断一体化的概念。这个术语提供了一种针对患者的“二合一”模式,包含了诊断和治疗工具。纳米技术不仅对药物输送和成像技术的改进产生了重大影响,而且在再生医学方面也有了一些突破性的发现。
由于胃肠道系统的高度复杂性,胃肠病学需要多学科的方法;它包括内科医生、外科医生、放射科医生、药理学家等等。在本文中,我们专注于纳米胃肠病学的当前发展。
使用 Web of Science 和 Pubmed 搜索引擎,以“纳米技术、纳米医学和胃肠病学”为关键词进行文献检索。文章搜索集中在 2005 年以来的发展。
我们描述了胃肠道药物输送、炎症性疾病和癌症靶向治疗方面的原创和创新方法。在这里,我们回顾了使用纳米粒子作为荧光对比剂的胃肠道成像技术的进展,以及它们在特定部位靶向的潜力。这篇综述还描述了使用纳米材料进行支架设计和诱导多能干细胞作为细胞来源的胃肠道再生医学中的各种方法和新发现。
纳米技术的发展为我们的患者带来了新的可能性。这包括新型药物输送载体、用于早期和靶向疾病检测的诊断工具以及用于克服美容或身体残疾的纳米复合材料。