Alpha radioimmunotherapy using (225)Ac-proteus-DOTA for solid tumors – Safety at curative doses Journal Article


Authors: Cheal, S. M.; McDevitt, M. R.; Santich, B. H.; Patel, M.; Yang, G.; Fung, E. K.; Veach, D. R.; Bell, M.; Ahad, A.; Burnes Vargas, D.; Punzalan, B.; Pillarsetty, N. V. K.; Xu, H.; Guo, H. F.; Monette, S.; Michel, A. O.; Piersigilli, A.; Scheinberg, D. A.; Ouerfelli, O.; Cheung, N. K. V.; Larson, S. M.
Article Title: Alpha radioimmunotherapy using (225)Ac-proteus-DOTA for solid tumors – Safety at curative doses
Abstract: This is the initial report of an α-based pre-targeted radioimmunotherapy (PRIT) using 225Ac and its theranostic pair, 111In. We call our novel tumor-targeting DOTA-hapten PRIT system “proteus-DOTA” or “Pr.” Herein we report the first results of radiochemistry development, radiopharmacology, and stoichiometry of tumor antigen binding, including the role of specific activity, anti-tumor efficacy, and normal tissue toxicity with the Pr-PRIT approach (as α-DOTA-PRIT). A series of α-DOTA-PRIT therapy studies were performed in three solid human cancer xenograft models of colorectal cancer (GPA33), breast cancer (HER2), and neuroblastoma (GD2), including evaluation of chronic toxicity at ~20 weeks of select survivors. Methods: Preliminary biodistribution experiments in SW1222 tumor-bearing mice revealed that 225Ac could not be efficiently pretargeted with current DOTA-Bn hapten utilized for 177Lu or 90Y, leading to poor tumor uptake in vivo. Therefore, we synthesized Pr consisting of an empty DOTA-chelate for 225Ac, tethered via a short polyethylene glycol linker to a lutetium-complexed DOTA for picomolar anti-DOTA chelate single-chain variable fragment (scFv) binding. Pr was radiolabeled with 225Ac and its imaging surrogate, 111In. In vitro studies verified anti-DOTA scFv recognition of [225Ac]Pr, and in vivo biodistribution and clearance studies were performed to evaluate hapten suitability and in vivo targeting efficiency. Results: Intravenously (i.v.) administered 225Ac- or 111In-radiolabeled Pr in mice showed rapid renal clearance and minimal normal tissue retention. In vivo pretargeting studies show high tumor accumulation of Pr (16.71 ± 5.11 %IA/g or 13.19 ± 3.88 %IA/g at 24 h p.i. for [225Ac]Pr and [111In]Pr, respectively) and relatively low uptake in normal tissues (all average ≤ 1.4 %IA/g at 24 h p.i.). Maximum tolerated dose (MTD) was not reached for either [225Ac]Pr alone or pretargeted [225Ac]Pr at administered activities up to 296 kBq/mouse. Single-cycle treatment consisting of α-DOTA-PRIT with either huA33-C825 bispecific anti-tumor/anti-DOTA-hapten antibody (BsAb), anti-HER2-C825 BsAb, or hu3F8-C825 BsAb for targeting GPA33, HER2, or GD2, respectively, was highly effective. In the GPA33 model, no complete responses (CRs) were observed but prolonged overall survival of treated animals was 42 d for α-DOTA-PRIT vs. 25 d for [225Ac]Pr only (P < 0.0001); for GD2, CRs (7/7, 100%) and histologic cures (4/7, 57%); and for HER2, CRs (7/19, 37%) and histologic cures (10/19, 56%) with no acute or chronic toxicity. Conclusions: [225Ac]Pr and its imaging biomarker [111In]Pr demonstrate optimal radiopharmacologic behavior for theranostic applications of α-DOTA-PRIT. For this initial evaluation of efficacy and toxicity, single-cycle treatment regimens were performed in all three systems. Histologic toxicity was not observed, so MTD was not observed. Prolonged overall survival, CRs, and histologic cures were observed in treated animals. In comparison to RIT with anti-tumor IgG antibodies, [225Ac]Pr has a much improved safety profile. Ultimately, these data will be used to guide clinical development of toxicity and efficacy studies of [225Ac]Pr, with the goal of delivering massive lethal doses of radiation to achieve a high probability of cure without toxicity. © The author(s).
Keywords: radioimmunotherapy; ac-225; pretargeted radioimmunotherapy; tat; pretargeting
Journal Title: Theranostics
Volume: 10
Issue: 25
ISSN: 1838-7640
Publisher: Ivyspring International Publisher  
Date Published: 2020-12-01
Start Page: 11359
End Page: 11375
Language: English
DOI: 10.7150/thno.48810
PUBMED: 33052220
PROVIDER: scopus
PMCID: PMC7546012
DOI/URL:
Notes: Article -- Export Date: 2 November 2020 -- Source: Scopus
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MSK Authors
  1. Nai-Kong Cheung
    652 Cheung
  2. Michael R Mcdevitt
    144 Mcdevitt
  3. Darren Veach
    98 Veach
  4. Ouathek Ouerfelli
    102 Ouerfelli
  5. Sebastien Monette
    150 Monette
  6. Guangbin Yang
    28 Yang
  7. Hong Xu
    54 Xu
  8. Steven M Larson
    959 Larson
  9. Sarah Marie Cheal
    49 Cheal
  10. Hong-Fen Guo
    76 Guo
  11. Edward Komin Fung
    12 Fung
  12. Brian Horacio Santich
    18 Santich
  13. Miteshkumar V Patel
    15 Patel
  14. Afruja Ahad
    9 Ahad
  15. Meghan Bell
    5 Bell
  16. Adam Oliver Michel
    19 Michel