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Ultrastructural and Immunohistochemical Studies on Uptake and Distribution of FITC-Conjugated PLGA Nanoparticles Administered Intratracheally in Rats
Authors:Hara Kaori  Tsujimoto Hiroyuki  Huang C C  Kawashima Yoshiaki  Ando Rie  Kusuoka Osamu  Tamura Kazutoshi  Tsutsumi Masahiro
Institution:1. Hosokawa Micron Corporation, 1-9 Shoudai, Tajika, Hirakata, Osaka 573-1132, Japan;2. Hosokawa Micron Powder Systems, 10 Chatham Road, Summit, NJ 07901, USA;3. Aichi Gakuin University, 1-100 Kusumoto, Chikusaku, Nagoya, Aichi 464-8650, Japan;4. BOZO Research Center Inc., 1284 Kamado, Gotemba-shi, Shizuoka 412-0039, Japan;5. Saiseikai Chuwa Hospital, 323 Abe, Sakurai, Nara 633-0054, Japan
Abstract:Polylactide-glycolide (PLGA) nanoparticles have been developed as pulmonary drug delivery carriers. To investigate their behavior, small- (d50 = 74?nm) and large-sized (d50 = 250?nm) FITC-conjugated PLGA nanoparticles were intratracheally administered to rats and were traced for 5, 30 and 60 minutes and 24 hours after administration (HAT). Immunohistochemically, a, FITC-positive reaction was observed in type-I alveolar epithelial cells (type-I AEC), endothelial cells and alveolar macrophages in the lungs from 5 minutes after treatment (MAT) to 24 HAT in both nanoparticle groups. In the kidneys, a positive reaction was observed in proximal tubular epithelial cells at 30 MAT; the reaction peaked at 60 MAT and was reduced at 24 HAT, while no positive reaction was seen in other sites. Ultrascructurally, the number of membrane-bound vesicles, which were approximately 70?nm in size and hard to distinguish from pinocytic vesicles, apparently increased in type-I AEC and endothelial cells at 5 MAT in the small-sized group, in comparison with the control group receiving physiological saline. The number of vesicles in the large-sized group was almost same as that in the control group. On the other hand, in both nanoparticle groups, lysosomes filled with nanoparticles appeared in alveolar macrophages from 30 MAT to 24 HAT. These results indicate that PLGA nanoparticles might be quickly transferred from the alveolar space to the blood vessel via type-I alveolar epithelial cells and excreted into urine, and that there is a threshold for particle size, less than approximately 70?nm in diameter, with regard to absorption through the alveolar wall.
Keywords:drug delivery system  PLGA nanoparticles  pulmonary administration  ultrastructure  immunohistochemistry
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