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Packaging biological cargoes in mesoporous materials: Opportunities for drug delivery

机译:用中孔材料包装生物货物:药物输送的机会

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Introduction: Confinement of biomolecules in structured nanoporous materials offers several desirable features ranging from chemical and thermal stability, to resistance to degradation from the external environment. A new generation of mesoporous materials presents exciting new possibilities for the formulation and controlled release of biological agents. Such materials address niche applications in enteral and parenteral delivery of biologics, such as peptides, polypeptides, enzymes and proteins for use as therapeutics, imaging agents, biosensors, and adjuvants.Areas covered: Mesoporous silica Santa Barbara Amorphous-15 (SBA-15), with its unique, tunable pore diameter, and easily functionalized surface, provides a representative example of this new generation of materials. Here, we review recent advances in the design and synthesis of nanostructured mesoporous materials, focusing on SBA-15, and highlight opportunities for the delivery of biological agents to various organ and tissue compartments.Expert opinion: The SBA-15 platform provides a delivery carrier that is inherently separated from the active biologic due to distinct intra and extra-particle environments. This permits the SBA-15 platform to not require direct modification of the active biological therapeutic. Additionally, this makes the platform universal and allows for its application independent of the desired methods of discovery and development. The SBA-15 platform also directly addresses issues of targeted delivery and controlled release, although future challenges in the implementation of this platform reside in particle design, biocompatibility, and the tunability of the internal and external material properties. Examples illustrating the flexibility in the application of the SBA-15 platform are also discussed.
机译:简介:将生物分子限制在结构化的纳米多孔材料中可提供多种理想的功能,从化学和热稳定性到抵抗外部环境降解的能力。新一代的介孔材料为生物制剂的配制和控制释放提供了令人兴奋的新可能性。这些材料解决了在肠道和肠胃外生物制剂中的利基应用,例如用作治疗剂,显像剂,生物传感器和佐剂的肽,多肽,酶和蛋白质涵盖的领域:中孔二氧化硅Santa Barbara Amorphous-15(SBA-15)具有独特,可调节的孔径和易于功能化的表面,是这种新一代材料的代表示例。在这里,我们回顾了纳米结构介孔材料在设计和合成方面的最新进展,重点是SBA-15,并重点介绍了将生物制剂输送到各个器官和组织隔室的机会。专家意见:SBA-15平台提供了输送载体由于存在独特的内部和外部粒子环境,因此与活性生物成分固有地分离。这使得SBA-15平台无需直接修改活性生物治疗剂。此外,这使平台具有通用性,并使其应用程序独立于所需的发现和开发方法。 SBA-15平台还直接解决了目标交付和控释问题,尽管该平台实施中的未来挑战在于颗粒设计,生物相容性以及内部和外部材料特性的可调节性。还讨论了说明SBA-15平台应用灵活性的示例。

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