Unveiling Spanlastics as a Novel Carrier for Drug Delivery: A Review.

Q2 Pharmacology, Toxicology and Pharmaceutics
Dipanjan Karati, Swarupananda Mukherjee, Bhupendra G Prajapati
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引用次数: 0

Abstract

Innovative colloidal preparations that can alter the pharmacological properties of drugs have been made possible by the advancement of nanotechnology. Recent advances in the sciences of the nanoscale have led to the creation of new methods for treating illnesses. Developments in nanotechnology may lessen the side effects of medicine by using effective and regulated drug delivery methods. A promising drug delivery vehicle is spanlastics, an elastic nanovesicle that can transport a variety of drug compounds. Spanlastics have expanded the growing interest in many types of administrative pathways. Using this special type of vesicular carriers, medications intended for topical, nasal, ocular, and trans-ungual treatments are delivered to specific areas. Their elastic and malleable structure allows them to fit into skin pores, making them ideal for transdermal distribution. Spanlastic is composed of non-ionic surfactants or combinations of surfactants. Numerous studies have demonstrated how spanlastics significantly improve, drug bioavailability, therapeutic effectiveness, and reduce medication toxicity. The several vesicular systems, composition and structure of spanlastics, benefits of spanlastics over alternative drug delivery methods, and the process of drug penetration via skin are all summarized in this paper. Additionally, it provides an overview of the many medications that may be treated using spanlastic vesicles. The primary benefits of these formulations were associated with their surface properties, as a variety of proteins might be linked to the look. For instance, procedure assessment and gold nanoparticles were employed as biomarkers for different biomolecules, which included tumor label detection. Anticipate further advancements in the customization and combining of spanlastic vesicles with appropriate zeta potential to transport therapeutic compounds to specific areas for enhanced disease treatment.

揭秘作为新型载体的跨膜药物输送:综述。
纳米技术的发展使得能够改变药物药理特性的创新胶体制剂成为可能。纳米尺度科学的最新进展创造了治疗疾病的新方法。纳米技术的发展可以通过使用有效和规范的给药方法来减少药物的副作用。spanlastics是一种很有前途的给药载体,它是一种具有弹性的纳米微粒,可以输送多种药物化合物。Spanlastics扩大了人们对多种管理途径日益增长的兴趣。利用这种特殊的囊状载体,可将用于局部、鼻腔、眼部和经足底治疗的药物输送到特定部位。其弹性和延展性结构使其能够贴合皮肤毛孔,非常适合透皮给药。Spanlastic 由非离子表面活性剂或表面活性剂组合组成。大量研究表明,Spanlastic 能显著提高药物的生物利用度和治疗效果,并降低药物毒性。本文总结了几种囊泡系统、spanlastics 的成分和结构、spanlastics 与其他给药方法相比的优势以及药物经皮肤渗透的过程。此外,本文还概述了可使用spanlastic囊泡治疗的多种药物。这些配方的主要优点与它们的表面特性有关,因为各种蛋白质可能与外观有关。例如,程序评估和金纳米粒子被用作不同生物分子的生物标记,其中包括肿瘤标记检测。预计在定制和结合具有适当zeta电位的spanlastic囊泡方面将取得进一步进展,从而将治疗化合物运输到特定区域以加强疾病治疗。
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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来源期刊
Pharmaceutical nanotechnology
Pharmaceutical nanotechnology Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
4.20
自引率
0.00%
发文量
46
期刊介绍: Pharmaceutical Nanotechnology publishes original manuscripts, full-length/mini reviews, thematic issues, rapid technical notes and commentaries that provide insights into the synthesis, characterisation and pharmaceutical (or diagnostic) application of materials at the nanoscale. The nanoscale is defined as a size range of below 1 µm. Scientific findings related to micro and macro systems with functionality residing within features defined at the nanoscale are also within the scope of the journal. Manuscripts detailing the synthesis, exhaustive characterisation, biological evaluation, clinical testing and/ or toxicological assessment of nanomaterials are of particular interest to the journal’s readership. Articles should be self contained, centred around a well founded hypothesis and should aim to showcase the pharmaceutical/ diagnostic implications of the nanotechnology approach. Manuscripts should aim, wherever possible, to demonstrate the in vivo impact of any nanotechnological intervention. As reducing a material to the nanoscale is capable of fundamentally altering the material’s properties, the journal’s readership is particularly interested in new characterisation techniques and the advanced properties that originate from this size reduction. Both bottom up and top down approaches to the realisation of nanomaterials lie within the scope of the journal.
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