Multifunctional Drug Delivery System: Nanosponges.

IF 2 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Piyali Barik, Pooja Rani Bhaisal, Sonia Singh
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Abstract

In recent years, nanotechnology has been the focus of study for the cure of different diseases, among which nanosponge delivery system is one of a kind. Nano sponges are tiny, highly porous, three-dimensional nanostructures with a size range of 250nm-1µm in an amorphous or crystalline structure. Nanosponges usually act as an excipient or carrier of a drug in the different delivery systems. The type of polymers and cross-linkers, along with their concentration ratio, causes variation in nanosponges's dimension and encapsulation efficiency. Nanosponges have gained prominence in recent times due to their distinct ability to encapsulate both hydrophilic and lipophilic drugs within their internal cavity, thereby improving the solubility of drugs that have low water solubility. Virus-like size helps the nanosponges to circulate within the body without getting eliminated by the immune system until they stick to the targeted part of the body, which makes it the perfect candidate for a targeted drug delivery system and controlled delivery system as well because of its slow drug release property for a more extended period. Cyclodextrin-based nanosponges are the best choice for anticancer drug delivery as their small virus-like diameter helps them in passive targeting by enhancing the enhanced permeability and retention effect, allowing the anticancer drug to stay inside the tumour cell to show more significant therapeutic action on cancer, while for active targeting to the cancerous cell, nanosponges are attached with a ligand on it for receptor binding purpose. It can be used for drug delivery in many major diseases like brain-related diseases, diabetes, cancer, fungal, hypertension, etc., in different dosage forms, like oral, topical, hydrogel, parenteral, etc.

多功能给药系统:纳米海绵。
近年来,纳米技术一直是治疗各种疾病的研究热点,其中纳米药物输送系统就是其中之一。纳米海绵是一种微小、高度多孔的三维纳米结构,尺寸范围为250nm-1µm,呈无定形或结晶结构。纳米海绵通常在不同的递送系统中充当药物的赋形剂或载体。聚合物和交联剂的类型及其浓度比会导致纳米池的尺寸和封装效率的变化。近年来,纳米海绵由于其独特的能力将亲水性和亲脂性药物包封在其内腔中,从而提高了低水溶性药物的溶解度而变得突出。病毒样大小有助于纳米颗粒在体内循环,而不会被免疫系统消除,直到它们粘附在身体的靶向部位,这使其成为靶向药物递送系统和控制递送系统的完美候选者,因为它具有更长时间的缓慢药物释放特性。基于环糊精的纳米袋是抗癌药物递送的最佳选择,因为它们的小病毒样直径通过增强渗透性和滞留效应帮助它们被动靶向,使抗癌药物留在肿瘤细胞内,对癌症表现出更显著的治疗作用,而对于癌细胞的主动靶向,纳米池上附着有配体,用于受体结合目的。它可以用于许多重大疾病的药物递送,如脑相关疾病、糖尿病、癌症、真菌、高血压等,以不同的剂型,如口服、外用、水凝胶、胃肠外等。
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来源期刊
Recent Patents on Nanotechnology
Recent Patents on Nanotechnology NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
4.70
自引率
10.00%
发文量
50
审稿时长
3 months
期刊介绍: Recent Patents on Nanotechnology publishes full-length/mini reviews and research articles that reflect or deal with studies in relation to a patent, application of reported patents in a study, discussion of comparison of results regarding application of a given patent, etc., and also guest edited thematic issues on recent patents in the field of nanotechnology. A selection of important and recent patents on nanotechnology is also included in the journal. The journal is essential reading for all researchers involved in nanotechnology.
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