Saravanan Tejas, Pan Jennifer M, Zingl Franz G, Waldor Matthew K, Zheng Yifan, Khalil Hassan A, Mentzer Steven J
Laboratory of Adaptive and Regenerative Biology, Brigham & Women's Hospital, Harvard Medical School, Boston, MA 02115, USA.
Division of Infectious Diseases, Brigham & Women's Hospital, Department of Microbiology, Harvard Medical School, Boston, MA 02115, USA.
Polymers (Basel). 2024 Nov 19;16(22):3202. doi: 10.3390/polym16223202.
Hydrogels are hydrophilic 3-dimensional networks characterized by the retention of a large amount of water. Because of their water component, hydrogels are a promising method for targeted drug delivery. The water component, or "free volume", is a potential vehicle for protein drugs. A particularly intriguing hydrogel is pectin. In addition to a generous free volume, pectin has structural characteristics that facilitate hydrogel binding to the glycocalyceal surface of visceral organs. To test drug function and pectin integrity after loading, we compared pectin films from four distinct plant sources: lemon, potato, soybean, and sugar beet. The pectin films were tested for their micromechanical properties and intrinsic antibacterial activity. Lemon pectin films demonstrated the greatest cohesion at 30% water content. Moreover, modest growth inhibition was observed with lemon pectin ( < 0.05). No effective inhibition was observed with soybean, potato, or sugar beet films ( > 0.05). In contrast, lemon pectin films embedded with carbenicillin, chloramphenicol, or kanamycin demonstrated significant bacterial growth inhibition ( < 0.05). The antibacterial activity was similar when the antibiotics were embedded in inert filter disks or pectin disks ( > 0.05). We conclude that lemon pectin films represent a promising structural platform for antibacterial drug delivery.
水凝胶是一种亲水性三维网络结构,其特点是能保留大量水分。由于其水分成分,水凝胶是一种很有前景的靶向给药方法。水分成分,即“自由体积”,是蛋白质药物的潜在载体。一种特别引人关注的水凝胶是果胶。除了有充足的自由体积外,果胶还具有一些结构特征,有助于水凝胶与内脏器官的糖萼表面结合。为了测试负载后药物的功能和果胶的完整性,我们比较了来自四种不同植物来源的果胶膜:柠檬、土豆、大豆和甜菜。对果胶膜的微观力学性能和固有抗菌活性进行了测试。柠檬果胶膜在含水量为30%时表现出最大的内聚力。此外,观察到柠檬果胶有适度的生长抑制作用(<0.05)。大豆、土豆或甜菜膜未观察到有效抑制作用(>0.05)。相比之下,嵌入羧苄青霉素、氯霉素或卡那霉素的柠檬果胶膜表现出显著的细菌生长抑制作用(<0.05)。当抗生素嵌入惰性滤纸片或果胶纸片时,抗菌活性相似(>0.05)。我们得出结论,柠檬果胶膜是一种很有前景的抗菌药物递送结构平台。