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- Nasal administration also has specific immune properties.In this paper, the advances in studies on status and preparation of intranasal drug delivery are reviewed. 介绍药物鼻腔黏膜吸收的特点和影响因素,综述鼻腔给药制剂的研究方法和研制情况,旨为该领域研究提供参考。
- Advantage and limitation of intranasal drug delivery for systemic diseases 经鼻腔用药治疗全身性疾病的潜在优势和局限性
- intranasal drug delivery 鼻腔给药
- This is known as “intrathecal drug delivery. 这就是被称作“鞘内给药。”
- Modified transferrin will increase its drug delivery efficiency. 对转铁蛋白进行适当的修饰,可以提高其递送效率。
- Conclusion The expanders are not proved as drug delivery systems. 结论扩张器的硅胶囊壁不能使罂粟碱有效渗出。
- Intranasal drug majority contain ephedrine, the drug for Vasoconstrictor, hypertension patients, children with caution, atrophic rhinitis were banned. 滴鼻药多数都含有麻黄素,此药为血管收缩剂,高血压病人、儿童慎用,有萎缩性鼻炎者禁用。
- Quercetin self - microemulsifying drug delivery system. 槲皮素自微乳
- Conclusions As a new drug delivery system,liposome entrapped cyclodextri. 目的介绍环糊精包合物脂质体给药系统的研究进展。
- Solid lipid nanoparticle is a new drug delivery system of nano-range. 固体脂质纳米粒是一种新型的纳米给药系统。
- Molecular pharmaceutics, the development of novel drug delivery systems based on molecular interactions. 分子药剂学,基于分子间相互作用的药物输送技术的研究。
- Chemotherapeutic effect of implanted drug delivery system for advanced carcinoma of head of pancreas. 晚期胰头癌全植入式化疗效果观察。
- As a new dosage form of floating drug delivery systems, hollow microspheres have a very good prospect in pharmaceutics. 中空微球作为漂浮药物传递系统的一种新剂型,具有广阔的发展前景。
- HP initially developed the drug delivery technology as a way to repurpose its inkjet technology for use in new markets. 最初,HP开发这一药物施药技术作为其喷墨打印技术在新市场应用的途径。
- Examples include microelectronic circuitry, magnetic memory and drug delivery applications. 其中的范例包括微电子电路、性记忆体,以及药剂释出应用。
- Inhalation drug therapy (IDT) is a prevailing method of respiratory tract therapy as a main non-invasive drug delivery. 吸入治疗方法是一种重要的非注射给药途径,是治疗呼吸道疾病较为盛行的医疗方法。
- The utilization of transferrin as a carrier in peptide and protein peroral drug delivery is a promising approach. 转铁蛋白作为一种药物载体,在蛋白多肽药物的口服给药领域有着美好前景。
- They can be widely used in surfactant,solubilizer,drug delivery systems,and nanomaterials,etc. 广泛用作表面活性剂、增溶剂、药物载体和纳米材料等。
- Implantable drug delivery systems (IDDS)are long term acting controlled release systems. 植入型给药系统适用于长期给药和靶向给药。
- The purpose of this work is to prepare nanoparticles with thermosensitive or bio-adhesive properties for drug delivery. 本文旨在制备分别具有温度敏感和生物黏附功能的两种纳米粒子体系,并研究它们作为药物释放体系的性能。