Design platinum (Ⅳ) prodrugs of cisplatin and oxaliplatin with long lipid chains for drug delivery a

来源 :Fourth Symposium on Innovative Polymers for Controlled Deliv | 被引量 : 0次 | 上传用户:kinganguo
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
  Drug resistance,both inherent and acquired,is a major drawback and the main reason for the failure of Pt drugs[1].To overcome drug resistance,various non-classical platinum drugs have been synthesized,including multinuclear platinum and platinum(Ⅳ) (Pt(Ⅳ)) drugs[2].However,it is still a challenge to load cisplatin and oxaliplatin into conventional nano-carriers due to the lack of both hydrophobicity and hydrophilicity.
其他文献
Inspired by the structure and function of various organisms in nature,researchers have used biomimetic technology for excellent drug carriers which provide broader prospects for cancer therapy and dia
Nowadays,around 200 million insulin-dependent diabetic patients across the world must routinely receive unbearable multiple subcutaneous injections of insulin.Therefore,it is imperative to find a prom
Polydatin (PD) is a kind of natural extract of stilbenoid from plants with a variety of pharmacological activities[1].However,disadvantages like poor water solubility limits its applications[2].
Boron neutron capture therapy has already stimulated wide interest as an efficient method for cancer diagnosis.m-Carborane was chosen as the ideal boron source since its high boron content (75 wt.%).T
Targeting tumors with long-circulating polymeric micelles is a promising strategy in systemic cancer treatment.This carrier accumulates in solid tumors through the enhanced permeability and retention
While polymeric microspheres have been reported as strategy to extend therapeutic efficacy and reduce injection frequency of medicines for nearly 40 years,drugs delivered with this dosage form are lim
At present,thermally expandable microspheres are widely used in light industry as textile printing foam,braille printing and microfluidic components because of their unique expansion properties[1].The
Photodynamic therapy (PDT) has been increasingly applied in clinical cancer treatments.However,native hypoxic tumor microenvironment and lacking of oxygen supply are major barriers to potent photodyna
The development of multifunctional anti-cancer drug carriers functioning at the correct time and location is a challenge for clinical applications[1].Over the past decades,various techniques have been
Recently,the global trend in nanomedicine for cancer therapy has been toward the design of highly sophisticated,carrier-based,and targeted nanoscale drug delivery system for improving therapeutic effi