Novel drug delivery systems: Insight into self-powered and nano-enabled drug delivery systems

Ugochi E. Ewii , Adaeze L. Onugwu , Victor C. Nwokpor , Ikanke-abasi Akpaso , Toochukwu E. Ogbulie , Bibiana Aharanwa , Chinonye Chijioke , Ngozi Verla , Callistus Iheme , Cosmas Ujowundu , Chioma Anyiam , Anthony A. Attama
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Abstract

Novel drug delivery systems comprise sophisticated technology merged into drug delivery systems. These systems are created with the aim of addressing the limitations of conventional drug delivery systems. For instance, conventional drug delivery systems are inefficient in tackling challenging human diseases such as cancer. These systems are thus formed with materials to enhance permeation to target cells. They improve patients' compliance and efficacy. Novel drug delivery systems include self-powered drug delivery systems and microelectromechanical systems. Nanotechnology is a rapidly growing and promising field, especially in drug delivery system development and disease therapy. Novel drug delivery systems often utilise nanocarriers due to their numerous advantages. One of the benefits of nanocarriers is the ability to manipulate their size and surface functionalisation to achieve site-specific targeting. Many researchers have reported their controlled and targeted drug release profiles. Nanocarriers are propelled to their target tissues, where the entrapped drugs are released, prolonging therapeutic efficacy and decreasing undesired side effects. Hence, these systems offer the benefits of targeted and controlled drug delivery, low toxicity, high bioavailability and improved therapeutic efficiency. It is essential to understand the mechanisms of drug release and toxicity of these systems in order to develop efficient and safe drug delivery systems. This review describes the utilisation of novel drug delivery systems. It also dwells on the drug loading, targeting and drug release from nanocarriers. The primary concerns of clinical applications and the potential toxicity of these systems are also presented. It is expected that this review will be helpful to drug formulation researchers seeking solutions to challenging diseases such as cancer and cardiovascular diseases.

新型给药系统:洞察自供电和纳米给药系统
新型给药系统由融合到给药系统中的尖端技术组成。创建这些系统的目的是解决传统给药系统的局限性。例如,传统的给药系统在应对癌症等具有挑战性的人类疾病方面效率低下。因此,这些系统采用了可增强对靶细胞渗透的材料。它们提高了患者的依从性和疗效。新型给药系统包括自供电给药系统和微电子机械系统。纳米技术是一个发展迅速、前景广阔的领域,尤其是在给药系统开发和疾病治疗方面。新型给药系统通常利用纳米载体,因为它们有许多优点。纳米载体的优点之一是能够操纵其尺寸和表面功能化,以实现特定部位的靶向。许多研究人员已经报道了它们的可控和靶向药物释放特性。纳米载体被推进到目标组织,夹带的药物在那里释放,从而延长疗效并减少不良副作用。因此,这些系统具有靶向和可控给药、低毒性、高生物利用度和提高治疗效率等优点。了解这些系统的药物释放机制和毒性对于开发高效安全的给药系统至关重要。本综述介绍了新型给药系统的应用。它还详细介绍了纳米载体的药物负载、靶向性和药物释放。此外,还介绍了这些系统在临床应用中的主要问题和潜在毒性。预计这篇综述将有助于药物制剂研究人员为癌症和心血管疾病等具有挑战性的疾病寻求解决方案。
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