Radium-223

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Radium-223
General
Symbol223Ra
Namesradium-223,
actinium X, AcX
Protons Page Template:Nobold/styles.css has no content.(Template:Itco)88
Neutrons Page Template:Nobold/styles.css has no content.(Template:Itco)135
Nuclide data
Half-life Page Template:Nobold/styles.css has no content.(t1/2)11.435 d[1]
Isotope mass223.0185007[2] Da
Parent isotopes227Th
223Fr
Decay products219Rn
Decay modes
Decay modeDecay energy (MeV)
α5.979[3]
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Complete table of nuclides

Radium-223 (223Ra, Ra-223) is an alpha-emitting isotope of radium with half-life 11.435 days. It was discovered in 1905 by T. Godlewski,[4][5][6] a Polish chemist from Kraków, and was historically known as actinium X (AcX).[7][8] Radium-223 dichloride is an alpha particle-emitting radiotherapy drug that mimics calcium and forms complexes with hydroxyapatite at areas of increased bone turnover.[9] The principal use of radium-223, as a radiopharmaceutical to treat metastatic cancers in bone, takes advantage of its chemical similarity to calcium, and the short range of the alpha radiation it emits.[10]

Origin and preparation

Although radium-223 is naturally formed in trace amounts by the decay of uranium-235, it is generally made artificially,[11] by exposing natural radium-226 to neutrons to produce radium-227, which decays with a 42-minute half-life to actinium-227. Actinium-227 (half-life 21.8 years) in turn decays via thorium-227 (half-life 18.7 days) to radium-223. This decay path makes it convenient to prepare radium-223 by "milking" it from an actinium-227 containing generator or "cow", similar to the moly cows widely used to prepare the medically important isotope technetium-99m.[11]

223Ra itself decays to 219Rn (half-life 3.96 s), a short-lived gaseous radon isotope, with total energy 5.979 MeV.[3]

Medical uses

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Radium-223 chloride
Clinical data
Trade namesXofigo
AHFS/Drugs.comMicromedex Detailed Consumer Information
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Routes of
administration
Intravenous
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Identifiers
  • Radium-223 chloride
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Chemical and physical data
Formula223RaCl2
Molar mass296.91 g/mol
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The pharmaceutical product and medical use of radium-223 against skeletal metastases was invented by Roy H. Larsen, Gjermund Henriksen and Øyvind S. Bruland[15] and has been developed by the former Norwegian company Algeta ASA, in a partnership with Bayer, under the trade name Xofigo (formerly Alpharadin), and is distributed as a solution containing radium-223 chloride (1100 kBq/ml), sodium chloride, and other ingredients for intravenous injection. Algeta ASA was later acquired by Bayer who is the sole owner of Xofigo.[14][16]

Mechanism of action

Script error: No such module "Labelled list hatnote". The use of radium-223 to treat metastatic bone cancer relies on the ability of alpha radiation from radium-223 and its short-lived decay products to kill cancer cells. Radium is preferentially absorbed by bone by virtue of its chemical similarity to calcium, with most radium-223 that is not taken up by the bone being cleared, primarily via the gut, and excreted.[17] Although radium-223 and its decay products also emit beta and gamma radiation, over 95% of the decay energy is in the form of alpha radiation.[18] Alpha radiation has a very short range in tissues compared to beta or gamma radiation: around 2–10 cells. This reduces damage to surrounding healthy tissues, producing an even more localized effect than the beta-emitter strontium-89, also used to treat bone cancer.[19] Taking account of its preferential uptake by bone and the alpha particles' short range, radium-223 is estimated to give targeted osteogenic cells a radiation dose at least eight times higher than other non-targeted tissues.[13]

Clinical trials and FDA and EMA approval

The phase II study of radium-223 in castration-resistant prostate cancer (CRPC) patients with bone metastases showed minimum myelotoxicity and good tolerance for the treatment.[20]

223Ra successfully met the primary endpoint of overall survival in the phase III ALSYMPCA (ALpharadin in SYMptomatic Prostate CAncer patients) study for bone metastases resulting from CRPC in 922 patients.[21]

The ALSYMPCA study was stopped early after a pre-planned efficacy interim analysis, following a recommendation from an Independent Data Monitoring Committee, on the basis of achieving a statistically significant improvement in overall survival (two-sided p-value = 0.0022, HR = 0.699, the median overall survival was 14.0 months for 223Ra and 11.2 months for placebo).[21] Earlier phase II of the trial showed a median increased survival of 18.9 weeks (around 4.4 months).[20] The lower figure of 2.8 months increased survival in interim phase III results is a probable result of stopping the trial; median survival time for patients still alive could not be calculated. A 2014 update indicates a median increased survival of 3.6 months.[22]

In May 2013, 223Ra received marketing approval from the US Food and Drug Administration (FDA)[23][24] as a treatment for CRPC with bone metastases in people with symptomatic bone metastases and without known visceral disease. 223Ra received priority review as a treatment for an unmet medical need, based on its ability to extend overall survival as shown its Phase III trial.[23]

This study also led to approval in the European Union in November 2013,[14][25] The European Medicines Agency subsequently recommended restricting its use to patients who have had two previous treatments for metastatic prostate cancer or who cannot receive other treatments. The medicine must also not be used with abiraterone acetate, prednisone or prednisolone and its use is not recommended in patients with a low number of osteoblastic bone metastases.[26]

223Ra also showed promising preliminary results in a phase IIa trial enrolling 23 women with bone metastases resulting from breast cancer that no longer responds to endocrine therapy.[27] 223Ra treatment reduced the levels of bone alkaline phosphatase (bALP) and urine N-telopeptide (uNTX), key markers of bone turnover associated with bone metastases in breast cancer, diminished bone pain slightly though consistently, and was well tolerated. Another single-arm, open-label Phase II trial reported possible efficacy of 223Ra combined with endocrine therapy in hormone-receptor-positive, bone-dominant breast cancer metastasis.[28]

Side effects

The most common side effects reported during clinical trials in men receiving 223Ra were nausea, diarrhea, vomiting and swelling of the leg, ankle or foot. The most common abnormalities detected during blood testing were anemia, lymphocytopenia, leukopenia, thrombocytopenia and neutropenia.[23]

Other radium-223-based compounds

Although radium does not easily form stable molecular complexes,[29] data has been presented on methods to increase and customize its specificity for particular cancers by linking it to monoclonal antibodies, by enclosing the 223Ra in liposomes bearing the antibodies on their surface.[30]

References

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  1. ^ Template:NUBASE2020
  2. ^ Template:AME2020 II
  3. ^ a b Template:NNDC
  4. ^ Page Module:Citation/CS1/styles.css has no content.Godlewski T (1905). "A new radio-active product from actinium". Nature. 71 (1839): 294–295. Bibcode:1905Natur..71..294G. doi:10.1038/071294b0. ISSN 0028-0836. S2CID 4047285.
  5. ^ Page Module:Citation/CS1/styles.css has no content.Godlewski T (1905). "V. Actinium and its successive products". The London, Edinburgh, and Dublin Philosophical Magazine and Journal of Science. 10 (55): 35–45. doi:10.1080/14786440509463342. ISSN 1941-5982.
  6. ^ Page Module:Citation/CS1/styles.css has no content.Hahn O (1906). "A new product of actinium". Nature. 73 (1902): 559–560. Bibcode:1906Natur..73..559H. doi:10.1038/073559b0. ISSN 0028-0836. S2CID 4052127.
  7. ^ Page Module:Citation/CS1/styles.css has no content.Kirby HW (1971). "The discovery of actinium". Isis. 62 (3): 290–308. doi:10.1086/350760. JSTOR 229943. S2CID 144651011.
  8. ^ Page Module:Citation/CS1/styles.css has no content.Fry C, Thoennessen M (2013). "Discovery of actinium, thorium, protactinium, and uranium isotopes". Atomic Data and Nuclear Data Tables. 99 (3): 345–364. arXiv:1203.1194. Bibcode:2013ADNDT..99..345F. doi:10.1016/j.adt.2012.03.002. ISSN 0092-640X. S2CID 97142872.
  9. ^ Page Module:Citation/CS1/styles.css has no content.Lewis SL, Bucher L, Heitkemper M, Harding MM (2017). Medical-Surgical Nursing: Assessment and Management of Clinical Problems (10th ed.). Elsevier. ISBN 978-0-323-32852-4.
  10. ^ Page Module:Citation/CS1/styles.css has no content.Marques IA, Neves AR, Abrantes AM, Pires AS, Tavares-da-Silva E, Figueiredo A, et al. (July 2018). "Targeted alpha therapy using Radium-223: From physics to biological effects". Cancer Treatment Reviews. 68: 47–54. doi:10.1016/j.ctrv.2018.05.011. PMID 29859504. S2CID 44144271.
  11. ^ a b Bruland O.S., Larsen R.H. (2003). Radium revisited. In: Bruland O.S., Flgstad T., editors. Targeted cancer therapies: An odyssey. University Library of Tromso, Ravnetrykk No. 29. Template:ISBN, pp. 195–202. [1] Script error: No such module "webarchive".
  12. ^ Page Module:Citation/CS1/styles.css has no content."Prescription medicines: registration of new chemical entities in Australia, 2014". Therapeutic Goods Administration (TGA). 21 June 2022. Retrieved 10 April 2023.
  13. ^ a b Page Module:Citation/CS1/styles.css has no content."Xofigo- radium ra 223 dichloride injection". DailyMed. 10 December 2019. Retrieved 10 August 2024.
  14. ^ a b c Page Module:Citation/CS1/styles.css has no content."Xofigo EPAR". European Medicines Agency (EMA). 13 November 2013. Retrieved 10 August 2024.
  15. ^ "Preparation and use of radium-223 to target calcified tissues for pain palliation, bone cancer therapy, and bone surface conditioning" US 6635234
  16. ^ Page Module:Citation/CS1/styles.css has no content."Xofigo Summary of Product Characteristics" (PDF). European Medicines Authority. Bayer. 11 October 2018. Retrieved 9 October 2019.
  17. ^ Page Module:Citation/CS1/styles.css has no content.Nilsson S, Larsen RH, Fosså SD, Balteskard L, Borch KW, Westlin JE, et al. (June 2005). "First clinical experience with alpha-emitting radium-223 in the treatment of skeletal metastases". Clinical Cancer Research. 11 (12): 4451–9. doi:10.1158/1078-0432.CCR-04-2244. PMID 15958630. S2CID 72948306.{{cite journal}}: CS1 maint: overridden setting (link)
  18. ^ Page Module:Citation/CS1/styles.css has no content.Bruland ØS, Nilsson S, Fisher DR, Larsen RH (October 2006). "High-linear energy transfer irradiation targeted to skeletal metastases by the alpha-emitter 223Ra: adjuvant or alternative to conventional modalities?". Clinical Cancer Research. 12 (20 Pt 2): 6250s–6257s. doi:10.1158/1078-0432.CCR-06-0841. PMID 17062709. S2CID 21171264.
  19. ^ Page Module:Citation/CS1/styles.css has no content.Henriksen G, Fisher DR, Roeske JC, Bruland ØS, Larsen RH (February 2003). "Targeting of osseous sites with alpha-emitting 223Ra: comparison with the beta-emitter 89Sr in mice". Journal of Nuclear Medicine. 44 (2): 252–9. PMID 12571218.
  20. ^ a b Page Module:Citation/CS1/styles.css has no content.Nilsson S, Franzén L, Parker C, Tyrrell C, Blom R, Tennvall J, et al. (July 2007). "Bone-targeted radium-223 in symptomatic, hormone-refractory prostate cancer: a randomised, multicentre, placebo-controlled phase II study". The Lancet. Oncology. 8 (7): 587–94. doi:10.1016/S1470-2045(07)70147-X. PMID 17544845.{{cite journal}}: CS1 maint: overridden setting (link)
  21. ^ a b Full data report from the ALSYMPCA trial of radium-223 presented
  22. ^ Page Module:Citation/CS1/styles.css has no content.Parker C, Nilsson S, Heinrich D, Helle SI, O'Sullivan JM, Fosså SD, et al. (18 July 2013). "Alpha Emitter Radium-223 and Survival in Metastatic Prostate Cancer". New England Journal of Medicine. 369 (3): 213–223. doi:10.1056/NEJMoa1213755. PMID 23863050.{{cite journal}}: CS1 maint: overridden setting (link)
  23. ^ a b c Page Module:Citation/CS1/styles.css has no content."FDA approves new drug for advanced prostate cancer" (Press release). U.S. Food and Drug Administration (FDA). Archived from the original on 4 June 2013. Retrieved 16 December 2019. Public Domain This article incorporates text from this source, which is in the public domain.
  24. ^ Page Module:Citation/CS1/styles.css has no content."Drug Approval Package: Xofigo (radium Ra 223 dichloride) Injection NDA #203971". U.S. Food and Drug Administration (FDA). 21 June 2013. Archived from the original on 22 February 2017. Retrieved 10 August 2024.
  25. ^ Page Module:Citation/CS1/styles.css has no content."Xofigo". 17 September 2018. Archived from the original on 19 August 2018. Retrieved 3 September 2015.
  26. ^ Page Module:Citation/CS1/styles.css has no content."EMA restricts use of prostate cancer medicine Xofigo". European Medicines Agency. 28 September 2018.
  27. ^ Page Module:Citation/CS1/styles.css has no content.Coleman R, Aksnes AK, Naume B, Garcia C, Jerusalem G, Piccart M, et al. (June 2014). "A phase IIa, nonrandomized study of radium-223 dichloride in advanced breast cancer patients with bone-dominant disease". Breast Cancer Research and Treatment. 145 (2): 411–418. doi:10.1007/s10549-014-2939-1. PMC 4025174. PMID 24728613.{{cite journal}}: CS1 maint: overridden setting (link)
  28. ^ Page Module:Citation/CS1/styles.css has no content.Ueno NT, Tahara RK, Fujii T, Reuben JM, Gao H, Saigal B, et al. (February 2020). "Phase II study of Radium-223 dichloride combined with hormonal therapy for hormone receptor-positive, bone-dominant metastatic breast cancer". Cancer Medicine. 9 (3): 1025–1032. doi:10.1002/cam4.2780. PMC 6997080. PMID 31849202.{{cite journal}}: CS1 maint: overridden setting (link)
  29. ^ Page Module:Citation/CS1/styles.css has no content.Henriksen G, Hoff P, Larsen RH (May 2002). "Evaluation of potential chelating agents for radium". Applied Radiation and Isotopes. 56 (5): 667–71. Bibcode:2002AppRI..56..667H. doi:10.1016/s0969-8043(01)00282-2. PMID 11993940.
  30. ^ Page Module:Citation/CS1/styles.css has no content.Henriksen G, Schoultz BW, Michaelsen TE, Bruland ØS, Larsen RH (May 2004). "Sterically stabilized liposomes as a carrier for alpha-emitting radium and actinium radionuclides". Nuclear Medicine and Biology. 31 (4): 441–9. doi:10.1016/j.nucmedbio.2003.11.004. PMID 15093814.

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