Опубликована: Янв. 1, 2024
Язык: Английский
Опубликована: Янв. 1, 2024
Язык: Английский
International Journal of Molecular Sciences, Год журнала: 2024, Номер 25(11), С. 5842 - 5842
Опубликована: Май 27, 2024
This study provides a brief discussion of the major nanopharmaceuticals formulations as well impact nanotechnology on future pharmaceuticals. Effective and eco-friendly strategies biofabrication are also highlighted. Modern approaches to designing pharmaceutical nanoformulations (e.g., 3D printing, Phyto-Nanotechnology, Biomimetics/Bioinspiration, etc.) outlined. paper discusses need use natural resources for “green” design new with therapeutic efficiency. Nanopharmaceuticals research is still in its early stages, preparation nanomaterials must be carefully considered. Therefore, safety long-term effects not overlooked. The testing represents an essential point their further applications. Vegetal scaffolds obtained by decellularizing plant leaves represent valuable, bioinspired model nanopharmaceutical that avoids using animals. Nanoformulations critical various fields, especially pharmacy, medicine, agriculture, material science, due unique properties advantages over conventional allows improved solubility, bioavailability, targeted drug delivery, controlled release, reduced toxicity. have transitioned from experimental stages being vital component clinical practice, significantly improving outcomes medical fields cancer treatment, infectious diseases, neurological disorders, personalized advanced diagnostics. Here key points highlighting importance. significant challenges, opportunities, directions mentioned final section.
Язык: Английский
Процитировано
23Coordination Chemistry Reviews, Год журнала: 2024, Номер 510, С. 215851 - 215851
Опубликована: Апрель 8, 2024
Язык: Английский
Процитировано
21Small, Год журнала: 2024, Номер 20(47)
Опубликована: Авг. 16, 2024
Abstract Metal‐organic frameworks (MOFs) are a new variety of solid crystalline porous functional materials. As an extension inorganic materials, it has made important progress in preparation and application. MOFs widely used various fields such as gas adsorption storage, drug delivery, sensing, biological imaging due to their high specific surface area, porosity, adjustable pore size, abundant active sites, modification by introducing groups. In this paper, the types classified, synthesis methods mechanisms materials summarized. Finally, application prospects challenges metal‐organic framework biomedical field discussed, hoping promote multidisciplinary fields.
Язык: Английский
Процитировано
20Solid State Sciences, Год журнала: 2024, Номер 154, С. 107584 - 107584
Опубликована: Май 28, 2024
Язык: Английский
Процитировано
17Coordination Chemistry Reviews, Год журнала: 2024, Номер 514, С. 215943 - 215943
Опубликована: Май 14, 2024
Язык: Английский
Процитировано
11Talanta, Год журнала: 2025, Номер 289, С. 127771 - 127771
Опубликована: Фев. 23, 2025
Язык: Английский
Процитировано
1Advanced Healthcare Materials, Год журнала: 2024, Номер unknown
Опубликована: Окт. 10, 2024
Over the past two decades, iron-based metal-organic frameworks (Fe-MOFs) have attracted significant research interest in biomedicine due to their low toxicity, tunable degradability, substantial drug loading capacity, versatile structures, and multimodal functionalities. Despite great potential, transition of Fe-MOFs-based composites from laboratory clinical products remains challenging. This review evaluates key properties that distinguish Fe-MOFs other MOFs highlights recent advances synthesis routes, surface engineering, shaping technologies. In particular, it focuses on applications biosensing, antimicrobial, anticancer therapies. addition, emphasizes need develop scalable, environmentally friendly, cost-effective production methods for additional meet specific requirements various biomedical applications. ability combine therapies, hurdles still remain, including a deeper understanding therapeutic mechanisms potential risks resistance overdose. Systematically addressing these challenges could significantly enhance prospects potentially facilitate integration into mainstream practice.
Язык: Английский
Процитировано
6Chemical Engineering Journal, Год журнала: 2024, Номер 496, С. 154342 - 154342
Опубликована: Июль 27, 2024
Язык: Английский
Процитировано
4Journal of Materials Chemistry B, Год журнала: 2025, Номер unknown
Опубликована: Янв. 1, 2025
This review discusses the functionalization strategies of ZIF-8 and challenges future developments in ZIF-8-based platforms for drug delivery cancer therapy.
Язык: Английский
Процитировано
0Materials Today, Год журнала: 2024, Номер 78, С. 142 - 180
Опубликована: Июль 20, 2024
Язык: Английский
Процитировано
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