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Inhibition of human pancreatic cancer growth in nude mice by boron neutron capture therapy.

Immunoliposomes were prepared by conjugating anti-carcinoembryonic antigen (CEA) monoclonal antibody with liposomes containing [10B]compound. These immunoliposomes were shown to bind selectively to human pancreatic carcinoma cells (AsPC-1) bearing CEA on their surface. The cytotoxic effects of local...

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Autores principales: Yanagië, H., Tomita, T., Kobayashi, H., Fujii, Y., Nonaka, Y., Saegusa, Y., Hasumi, K., Eriguchi, M., Kobayashi, T., Ono, K.
Formato: Texto
Lenguaje:English
Publicado: Nature Publishing Group|1 1997
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2063329/
https://www.ncbi.nlm.nih.gov/pubmed/9043021
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author Yanagië, H.
Tomita, T.
Kobayashi, H.
Fujii, Y.
Nonaka, Y.
Saegusa, Y.
Hasumi, K.
Eriguchi, M.
Kobayashi, T.
Ono, K.
author_facet Yanagië, H.
Tomita, T.
Kobayashi, H.
Fujii, Y.
Nonaka, Y.
Saegusa, Y.
Hasumi, K.
Eriguchi, M.
Kobayashi, T.
Ono, K.
author_sort Yanagië, H.
collection PubMed
description Immunoliposomes were prepared by conjugating anti-carcinoembryonic antigen (CEA) monoclonal antibody with liposomes containing [10B]compound. These immunoliposomes were shown to bind selectively to human pancreatic carcinoma cells (AsPC-1) bearing CEA on their surface. The cytotoxic effects of locally injected [10B]compound, multilamellar liposomes containing [10B]compound or [10B]immunoliposomes (anti-CEA) on human pancreatic carcinoma xenografts in nude mice were evaluated with thermal neutron irradiation. After thermal neutron irradiation of mice injected with [10B]solution, 10B-containing liposomes or [10B]immunoliposomes, AsPC-1 tumour growth was suppressed relative to controls. Injection of [10B]immunoliposomes caused the greatest tumour suppression with thermal neutron irradiation in vivo. Histopathologically, hyalinization and necrosis were found in 10B-treated tumours, while tumour tissue injected with saline or saline-containing immunoliposomes showed neither destruction nor necrosis. These results suggest that intratumoral injection of boronated immunoliposomes can increase the retention of 10B atoms by tumour cells, causing tumour growth suppression in vivo upon thermal neutron irradiation. Boron neutron capture therapy (BNCT) with intratumoral injection of immunoliposomes is able to destroy malignant cells in the marginal portion between normal tissues and cancer tissues from the side of 4He generation. IMAGES:
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spelling pubmed-20633292009-09-10 Inhibition of human pancreatic cancer growth in nude mice by boron neutron capture therapy. Yanagië, H. Tomita, T. Kobayashi, H. Fujii, Y. Nonaka, Y. Saegusa, Y. Hasumi, K. Eriguchi, M. Kobayashi, T. Ono, K. Br J Cancer Research Article Immunoliposomes were prepared by conjugating anti-carcinoembryonic antigen (CEA) monoclonal antibody with liposomes containing [10B]compound. These immunoliposomes were shown to bind selectively to human pancreatic carcinoma cells (AsPC-1) bearing CEA on their surface. The cytotoxic effects of locally injected [10B]compound, multilamellar liposomes containing [10B]compound or [10B]immunoliposomes (anti-CEA) on human pancreatic carcinoma xenografts in nude mice were evaluated with thermal neutron irradiation. After thermal neutron irradiation of mice injected with [10B]solution, 10B-containing liposomes or [10B]immunoliposomes, AsPC-1 tumour growth was suppressed relative to controls. Injection of [10B]immunoliposomes caused the greatest tumour suppression with thermal neutron irradiation in vivo. Histopathologically, hyalinization and necrosis were found in 10B-treated tumours, while tumour tissue injected with saline or saline-containing immunoliposomes showed neither destruction nor necrosis. These results suggest that intratumoral injection of boronated immunoliposomes can increase the retention of 10B atoms by tumour cells, causing tumour growth suppression in vivo upon thermal neutron irradiation. Boron neutron capture therapy (BNCT) with intratumoral injection of immunoliposomes is able to destroy malignant cells in the marginal portion between normal tissues and cancer tissues from the side of 4He generation. IMAGES: Nature Publishing Group|1 1997 /pmc/articles/PMC2063329/ /pubmed/9043021 Text en https://creativecommons.org/licenses/by/4.0/This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit https://creativecommons.org/licenses/by/4.0/.
spellingShingle Research Article
Yanagië, H.
Tomita, T.
Kobayashi, H.
Fujii, Y.
Nonaka, Y.
Saegusa, Y.
Hasumi, K.
Eriguchi, M.
Kobayashi, T.
Ono, K.
Inhibition of human pancreatic cancer growth in nude mice by boron neutron capture therapy.
title Inhibition of human pancreatic cancer growth in nude mice by boron neutron capture therapy.
title_full Inhibition of human pancreatic cancer growth in nude mice by boron neutron capture therapy.
title_fullStr Inhibition of human pancreatic cancer growth in nude mice by boron neutron capture therapy.
title_full_unstemmed Inhibition of human pancreatic cancer growth in nude mice by boron neutron capture therapy.
title_short Inhibition of human pancreatic cancer growth in nude mice by boron neutron capture therapy.
title_sort inhibition of human pancreatic cancer growth in nude mice by boron neutron capture therapy.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2063329/
https://www.ncbi.nlm.nih.gov/pubmed/9043021
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