Innovations in Drug Delivery Systems for Biologics: Enhancing Stability and Targeted Delivery for Next-Generation Therapeutics.

Pushpendra Kumar, Ankit Goel, Biswajit Dash, Poonam Rishishwar, Jailani S, Meghraj Vivekanand Suryawanshi, Sanjay Rishishwar, Neethu Asokan
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Abstract

The aim of this study is to explore and evaluate recent innovations in drug delivery systems (DDS) for biologics, focusing on enhancing stability and targeted delivery to improve the efficacy and safety of next-generation therapeutics. The most recent developments in a variety of DDS, such as nanoparticles, microneedles, hydrogels, and biodegradable polymers, were examined in depth. Information from peer-audited diaries, clinical preliminaries, and mechanical reports were blended to survey the presentation of these frameworks concerning dependability, designated conveyance, patient consistence, and controlled discharge. A radar chart was used in a comparative analysis to show the advantages and disadvantages of each DDS. Utilizing cutting-edge DDS, our analysis revealed significant improvements in the stability and targeted delivery of biologics. Nanoparticles exhibited the most elevated precision in designated conveyance at 92% and showed a 85% improvement in soundness. With an 88% satisfaction rate and moderate improvements in other criteria, microneedles achieved the highest level of patient compliance. Biodegradable polymers provided a balanced enhancement across all criteria, with 88% improvements in stability, 87% improvements in targeted delivery, and 89% improvements in controlled release for hydrogels. Nanoparticles lost only 6% of their stability, microneedles lost 10% of their controlled release, hydrogels lost 7% of their stability, and biodegradable polymers lost 5% of their patient compliance across all of these systems. The stability and precise delivery of biologics have been significantly improved by advancements in drug delivery systems. Hydrogels and microneedles, on the other hand, provide advantages in controlled release and patient compliance. Biodegradable polymers and nanoparticles are promising for maintaining drug integrity and targeting particular sites. In order to overcome the limitations that exist currently and enhance the therapeutic outcomes of biologics, future research ought to concentrate on hybrid strategies that combine the advantages of multiple DDS.

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生物制剂给药系统的创新:增强下一代治疗药物的稳定性和靶向给药。
本研究的目的是探索和评估生物制剂药物递送系统(DDS)的最新创新,重点是提高稳定性和靶向递送,以提高下一代治疗方法的疗效和安全性。深入研究了各种DDS的最新发展,如纳米颗粒、微针、水凝胶和可生物降解聚合物。来自同行审计日记、临床初步研究和机械报告的信息被混合在一起,以调查这些框架在可靠性、指定运输、患者一致性和控制出院方面的表现。在比较分析中使用了雷达图来显示每种DDS的优缺点。利用尖端的DDS,我们的分析揭示了生物制剂稳定性和靶向递送的显着改善。纳米颗粒在指定传输中表现出最高的精度,达到92%,并且在健康方面表现出85%的改善。由于88%的满意率和其他标准的适度改善,微针达到了最高水平的患者依从性。可生物降解聚合物在所有标准上都有平衡的增强,稳定性提高88%,靶向递送提高87%,水凝胶控释提高89%。在所有这些系统中,纳米颗粒仅失去了6%的稳定性,微针失去了10%的控释,水凝胶失去了7%的稳定性,可生物降解聚合物失去了5%的患者依从性。由于药物输送系统的进步,生物制剂的稳定性和精确性得到了显著提高。另一方面,水凝胶和微针在控释和患者依从性方面具有优势。可生物降解聚合物和纳米颗粒在维持药物完整性和靶向特定部位方面很有前景。为了克服目前存在的局限性,提高生物制剂的治疗效果,未来的研究应该集中在结合多种DDS优势的混合策略上。
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0.70
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发文量
53
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Innovations in Drug Delivery Systems for Biologics: Enhancing Stability and Targeted Delivery for Next-Generation Therapeutics. Harnessing Pharmacogenomics for Personalized Medicine: Tailoring Drug Therapy to Genetic Profiles. Breakthrough Biomarkers in Lung Cancer: Pioneering Early Detection and Precision Treatment Strategies. Exploring Computational Advancements in ADME: Essential Insights for Drug Disposition. Oncogenetics: Unraveling the Genetic Underpinnings of Cancer for Improved Immunotherapeutic Outcomes.
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