Cargando…
In Vitro and In Vivo Characterization of (89)Zirconium-Labeled Lintuzumab Molecule
Objective: Positron emission tomography (PET) imaging is a powerful non-invasive method to determine the in vivo behavior of biomolecules. Determining biodistribution and pharmacokinetic (PK) properties of targeted therapeutics can enable a better understanding of in vivo drug mechanisms such as tum...
Autores principales: | , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9571394/ https://www.ncbi.nlm.nih.gov/pubmed/36235126 http://dx.doi.org/10.3390/molecules27196589 |
_version_ | 1784810353622777856 |
---|---|
author | Allen, Kevin J. H. Jiao, Rubin Li, Jason Beckford-Vera, Denis R. Dadachova, Ekaterina |
author_facet | Allen, Kevin J. H. Jiao, Rubin Li, Jason Beckford-Vera, Denis R. Dadachova, Ekaterina |
author_sort | Allen, Kevin J. H. |
collection | PubMed |
description | Objective: Positron emission tomography (PET) imaging is a powerful non-invasive method to determine the in vivo behavior of biomolecules. Determining biodistribution and pharmacokinetic (PK) properties of targeted therapeutics can enable a better understanding of in vivo drug mechanisms such as tumor uptake, off target accumulation and clearance. Zirconium-89 ((89)Zr) is a readily available tetravalent PET-enabling radiometal that has been used to evaluate the biodistribution and PK of monoclonal antibodies. In the current study, we performed in vitro and in vivo characterization of (89)Zr-lintuzumab, a radiolabeled anti-CD33 antibody, as a model to evaluate the in vivo binding properties in preclinical models of AML. Methods: Lintuzumab was conjugated to p-SCN-Bn-deferoxamine (DFO) and labeled with (89)Zr using a 5:1 µCi:µg specific activity at 37 °C for 1h. The biological activity of (89)Zr-lintuzumab was evaluated in a panel of CD33 positive cells using flow cytometry. Fox Chase SCID mice were injected with 2 × 10(6) OCI-AML3 cells into the right flank. After 12 days, a cohort of mice (n = 4) were injected with (89)Zr-lintuzumab via tail vein. PET/CT scans of mice were acquired on days 1, 2, 3 and 7 post (89)Zr-lintuzumab injection. To demonstrate (89)Zr-lintuzumab specific binding to CD33 expressing tumors in vivo, a blocking study was performed. This cohort of mice (n = 4) was injected with native lintuzumab and 24 h later (89)Zr-lintuzumab was administered. This group was imaged 3 and 7 days after injection of (89)Zr-lintuzumab. A full ex vivo biodistribution study on both cohorts was performed on day 7. The results from the PET image and ex vivo biodistribution studies were compared. Results: Lintuzumab was successfully radiolabeled with (89)Zr resulting in a 99% radiochemical yield. The (89)Zr-lintuzumab radioconjugate specifically binds CD33 positive cells in a similar manner to native lintuzumab as observed by flow cytometry. PET imaging revealed high accumulation of (89)Zr-lintuzumab in OCI-AML3 tumors within 24h post-injection of the radioconjugate. The (89)Zr-lintuzumab high tumor uptake remains for up to 7 days. Tumor analysis of the PET data using volume of interest (VOI) showed significant blocking of (89)Zr-lintuzumab in the group pre-treated with native lintuzumab (pre-blocked group), thus indicating specific targeting of CD33 on OCI-AML3 cells in vivo. The tumor uptake findings from the PET imaging study are in agreement with those from the ex vivo biodistribution results. Conclusions: PET imaging of (89)Zr-lintuzumab shows high specific uptake in CD33 positive human OCI-AML3 tumors. The results from the image study agree with the observations from the ex vivo biodistribution study. Our findings collectively suggest that PET imaging using (89)Zr-lintuzumab could be a powerful drug development tool to evaluate binding properties of anti-CD33 monoclonal antibodies in preclinical cancer models. |
format | Online Article Text |
id | pubmed-9571394 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-95713942022-10-17 In Vitro and In Vivo Characterization of (89)Zirconium-Labeled Lintuzumab Molecule Allen, Kevin J. H. Jiao, Rubin Li, Jason Beckford-Vera, Denis R. Dadachova, Ekaterina Molecules Article Objective: Positron emission tomography (PET) imaging is a powerful non-invasive method to determine the in vivo behavior of biomolecules. Determining biodistribution and pharmacokinetic (PK) properties of targeted therapeutics can enable a better understanding of in vivo drug mechanisms such as tumor uptake, off target accumulation and clearance. Zirconium-89 ((89)Zr) is a readily available tetravalent PET-enabling radiometal that has been used to evaluate the biodistribution and PK of monoclonal antibodies. In the current study, we performed in vitro and in vivo characterization of (89)Zr-lintuzumab, a radiolabeled anti-CD33 antibody, as a model to evaluate the in vivo binding properties in preclinical models of AML. Methods: Lintuzumab was conjugated to p-SCN-Bn-deferoxamine (DFO) and labeled with (89)Zr using a 5:1 µCi:µg specific activity at 37 °C for 1h. The biological activity of (89)Zr-lintuzumab was evaluated in a panel of CD33 positive cells using flow cytometry. Fox Chase SCID mice were injected with 2 × 10(6) OCI-AML3 cells into the right flank. After 12 days, a cohort of mice (n = 4) were injected with (89)Zr-lintuzumab via tail vein. PET/CT scans of mice were acquired on days 1, 2, 3 and 7 post (89)Zr-lintuzumab injection. To demonstrate (89)Zr-lintuzumab specific binding to CD33 expressing tumors in vivo, a blocking study was performed. This cohort of mice (n = 4) was injected with native lintuzumab and 24 h later (89)Zr-lintuzumab was administered. This group was imaged 3 and 7 days after injection of (89)Zr-lintuzumab. A full ex vivo biodistribution study on both cohorts was performed on day 7. The results from the PET image and ex vivo biodistribution studies were compared. Results: Lintuzumab was successfully radiolabeled with (89)Zr resulting in a 99% radiochemical yield. The (89)Zr-lintuzumab radioconjugate specifically binds CD33 positive cells in a similar manner to native lintuzumab as observed by flow cytometry. PET imaging revealed high accumulation of (89)Zr-lintuzumab in OCI-AML3 tumors within 24h post-injection of the radioconjugate. The (89)Zr-lintuzumab high tumor uptake remains for up to 7 days. Tumor analysis of the PET data using volume of interest (VOI) showed significant blocking of (89)Zr-lintuzumab in the group pre-treated with native lintuzumab (pre-blocked group), thus indicating specific targeting of CD33 on OCI-AML3 cells in vivo. The tumor uptake findings from the PET imaging study are in agreement with those from the ex vivo biodistribution results. Conclusions: PET imaging of (89)Zr-lintuzumab shows high specific uptake in CD33 positive human OCI-AML3 tumors. The results from the image study agree with the observations from the ex vivo biodistribution study. Our findings collectively suggest that PET imaging using (89)Zr-lintuzumab could be a powerful drug development tool to evaluate binding properties of anti-CD33 monoclonal antibodies in preclinical cancer models. MDPI 2022-10-05 /pmc/articles/PMC9571394/ /pubmed/36235126 http://dx.doi.org/10.3390/molecules27196589 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Allen, Kevin J. H. Jiao, Rubin Li, Jason Beckford-Vera, Denis R. Dadachova, Ekaterina In Vitro and In Vivo Characterization of (89)Zirconium-Labeled Lintuzumab Molecule |
title | In Vitro and In Vivo Characterization of (89)Zirconium-Labeled Lintuzumab Molecule |
title_full | In Vitro and In Vivo Characterization of (89)Zirconium-Labeled Lintuzumab Molecule |
title_fullStr | In Vitro and In Vivo Characterization of (89)Zirconium-Labeled Lintuzumab Molecule |
title_full_unstemmed | In Vitro and In Vivo Characterization of (89)Zirconium-Labeled Lintuzumab Molecule |
title_short | In Vitro and In Vivo Characterization of (89)Zirconium-Labeled Lintuzumab Molecule |
title_sort | in vitro and in vivo characterization of (89)zirconium-labeled lintuzumab molecule |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9571394/ https://www.ncbi.nlm.nih.gov/pubmed/36235126 http://dx.doi.org/10.3390/molecules27196589 |
work_keys_str_mv | AT allenkevinjh invitroandinvivocharacterizationof89zirconiumlabeledlintuzumabmolecule AT jiaorubin invitroandinvivocharacterizationof89zirconiumlabeledlintuzumabmolecule AT lijason invitroandinvivocharacterizationof89zirconiumlabeledlintuzumabmolecule AT beckfordveradenisr invitroandinvivocharacterizationof89zirconiumlabeledlintuzumabmolecule AT dadachovaekaterina invitroandinvivocharacterizationof89zirconiumlabeledlintuzumabmolecule |