Inorganic polymers as drug carriers: opportunities and challenges

B. Divband
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Abstract

Innovative methods and significant developments in designing new synthetic inorganic materials have been used to overcome limitations of current drug delivery systems. Inorganic polymers are widely used in the field of biomedicine, imaging, tissue engineering and drug delivery because of their bioactivity, biocompatibility, and stability. A few of the more well-known wholly inorganic polymers are portland cement, silicon dioxide, polyanionic glasses (including titania- and aluminosilicate glasses), poly(sulphur nitride), polycrystalline diamond, graphite, poly(sulphur nitride), and alumi¬num-silicate materials. Inorganic polymers, especially those possessing significant porosity, are good potential candi¬dates for the delivery of several drugs (anticancer, antibiotics, and anti-inflammatories), providing advantages such as encapsulation, controlled delivery, and improved targeting of drugs. Choosing a suitable drug carrier with a selec¬tive targeting potential also seems to be a very promising way for improving stability as well as selectivity. Despite all the advances, developing homogeneous inorganic polymers with narrow molecular weight distributions is a multidis¬ciplinary challenge. The current keynote speech provides a review of the opportunities and challenges of using inor¬ganic polymers as drug carriers.
作为药物载体的无机聚合物:机遇与挑战
设计新型合成无机材料的创新方法和重大进展已被用于克服当前给药系统的局限性。无机聚合物因其生物活性、生物相容性和稳定性,被广泛应用于生物医学、成像、组织工程和给药领域。比较著名的全无机聚合物有硅酸盐水泥、二氧化硅、聚阴离子玻璃(包括二氧化钛玻璃和硅酸铝玻璃)、聚(氮化硫)、聚晶金刚石、石墨、聚(氮化硫)和硅酸铝材料。无机聚合物,尤其是具有显著孔隙率的无机聚合物,是输送多种药物(抗癌药、抗生素和消炎药)的理想潜在载体,具有封装、控制输送和改善药物靶向性等优点。选择具有选择性靶向潜力的合适药物载体似乎也是提高稳定性和选择性的一种非常有前景的方法。尽管取得了诸多进展,但开发分子量分布窄的均相无机聚合物仍是一项跨学科挑战。本主题演讲回顾了将无机聚合物用作药物载体的机遇与挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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