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Research Article

Brain Injury after Cranial Radiotherapy Combined with Immunotherapy for Brain Metastases in Lung Cancer: A Retrospective Study

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Pages 947-959 | Received 13 Mar 2023, Accepted 09 May 2023, Published online: 18 May 2023

References

  • Gavrilovic IT , PosnerJB. Brain metastases: epidemiology and pathophysiology. J. Neurooncol.75(1), 5–14 (2005).
  • Brastianos HC , CahillDP, BrastianosPK. Systemic therapy of brain metastases. Curr. Neurol. Neurosci. Rep.15(2), 518 (2015).
  • Ashrafizadeh M , FarhoodB, EleojoMusa Aet al. Abscopal effect in radioimmunotherapy. Int. Immunopharmacol.85, 106663 (2020).
  • Fridman WH , PagèsF, Sautès-FridmanCet al. The immune contexture in human tumours: impact on clinical outcome. Nat. Rev. Cancer12(4), 298–306 (2012).
  • Holmgaard RB , ZamarinD, LiYet al. Tumor-expressed IDO recruits and activates MDSCs in a Treg-dependent manner. Cell Rep.13(2), 412–424 (2015).
  • Shaverdian N , LisbergAE, BornazyanKet al. Previous radiotherapy and the clinical activity and toxicity of pembrolizumab in the treatment of non-small-cell lung cancer: a secondary analysis of the KEYNOTE-001 phase 1 trial. Lancet Oncol.18(7), 895–903 (2017).
  • Petrelli F , DeStefani A, TrevisanFet al. Combination of radiotherapy and immunotherapy for brain metastases: a systematic review and meta-analysis. Crit. Rev. Oncol. Hematol.144, 102830 (2019).
  • Ali FS , ArevaloO, ZorofchianSet al. Cerebral radiation necrosis: incidence, pathogenesis, diagnostic challenges, and future opportunities. Curr. Oncol. Rep.21(8), 66 (2019).
  • Martin AM , CagneyDN, CatalanoPJet al. Immunotherapy and symptomatic radiation necrosis in patients with brain metastases treated with stereotactic radiation. JAMA Oncol.4(8), 1123–1124 (2018).
  • Diao K , BianSX, RoutmanDMet al. Combination ipilimumab and radiosurgery for brain metastases: tumor, edema, and adverse radiation effects. J. Neurosurg.129(6), 1397–1406 (2018).
  • Moon SY , YoonM, ChungM, ChungWK, KimDW. Comparison of the extent of hippocampal sparing according to the tilt of a patient’s head during WBRT using linear accelerator-based IMRT and VMAT. Phys Med.32(5), 657–663 (2016).
  • Wang YX , KingAD, ZhouHet al. Evolution of radiation-induced brain injury: MR imaging-based study. Radiology254(1), 210–218 (2010).
  • Healy SD . Animal cognition. Integr. Zool.14(2), 128–131 (2019).
  • Fazekas F , ChawlukJB, AlaviAet al. MR signal abnormalities at 1.5 T in Alzheimer’s dementia and normal aging. AJR Am. J. Roentgenol.149(2), 351–356 (1987).
  • Plevkova J , BrozmanovaM, MatloobiAet al. Animal models of cough. Respir. Physiol. Neurobiol.290, 103656 (2021).
  • Kim PH , SuhCH, KimHSet al. Immune checkpoint inhibitor therapy may increase the incidence of treatment-related necrosis after stereotactic radiosurgery for brain metastases: a systematic review and meta-analysis. Eur. Radiol.31(6), 4114–4129 (2021).
  • Shepard MJ , XuZ, DonahueJet al. Stereotactic radiosurgery with and without checkpoint inhibition for patients with metastatic non-small cell lung cancer to the brain: a matched cohort study. J. Neurosurg.133(3), 655–663 (2019).
  • Parvez K , ParvezA, ZadehG. The diagnosis and treatment of pseudoprogression, radiation necrosis and brain tumor recurrence. Int. J. Mol. Sci.15(7), 11832–11846 (2014).
  • Wen PY , MacdonaldDR, ReardonDAet al. Updated response assessment criteria for high-grade gliomas: response assessment in neuro-oncology working group. J. Clin. Oncol.28(11), 1963–1972 (2010).
  • Pollock BE . Management of vestibular schwannomas that enlarge after stereotactic radiosurgery: treatment recommendations based on a 15 year experience. Neurosurgery58(2), 241–248; discussion 241–248 (2006).
  • Mathis NJ , WijetungaNA, ImberBSet al. Recent advances and applications of radiation therapy for brain metastases. Curr. Oncol. Rep.24(3), 335–342 (2022).
  • Maranzano E , TrippaF, LoretiF. Tumor relapse or radionecrosis after radiosurgery: single-photon emission computed tomography for differential diagnosis. In regard to Blonigen et al. Irradiated volume as a predictor of brain radionecrosis after linear accelerator stereotactic radiosurgery. (Int. J.Radiat. Oncol. Biol. Phys. 2010;77:996–1001). Int. J. Radiat. Oncol. Biol. Phys.78(4), 1279 (2010).
  • Minniti G , ScaringiC, ClarkeEet al. Frameless linac-based stereotactic radiosurgery (SRS) for brain metastases: analysis of patient repositioning using a mask fixation system and clinical outcomes. Radiat. Oncol.6, 158 (2011).
  • Korytko T , RadivoyevitchT, ColussiVet al. 12 Gy gamma knife radiosurgical volume is a predictor for radiation necrosis in non-AVM intracranial tumors. Int. J. Radiat. Oncol. Biol. Phys.64(2), 419–424 (2006).
  • Bauman GS , SneedPK, WaraWMet al. Reirradiation of primary CNS tumors. Int. J. Radiat. Oncol. Biol. Phys.36(2), 433–441 (1996).
  • Ruben JD , DallyM, BaileyMet al. Cerebral radiation necrosis: incidence, outcomes, and risk factors with emphasis on radiation parameters and chemotherapy. Int. J. Radiat. Oncol. Biol. Phys.65(2), 499–508 (2006).
  • Prabhu RS , PressRH, PatelKRet al. Single-fraction stereotactic radiosurgery (SRS) alone versus surgical resection and SRS for large brain metastases: a multi-institutional analysis. Int. J. Radiat. Oncol. Biol. Phys.99(2), 459–467 (2017).
  • Jeong WJ , ParkJH, LeeEJet al. Efficacy and safety of fractionated stereotactic radiosurgery for large brain metastases. J. Korean Neurosurg. Soc.58(3), 217–224 (2015).
  • Cerghet M , RedmanB, JunckLet al. Prolonged survival after multifocal brain radiation necrosis associated with whole brain radiation for brain metastases: case report. J. Neurooncol.90(1), 85–88 (2008).
  • Rammo R , AsmaroK, SchultzLet al. The safety of magnetic resonance imaging-guided laser interstitial thermal therapy for cerebral radiation necrosis. J. Neurooncol.138(3), 609–617 (2018).
  • Rahmathulla G , RecinosPF, ValerioJEet al. Laser interstitial thermal therapy for focal cerebral radiation necrosis: a case report and literature review. Stereotact. Funct. Neurosurg.90(3), 192–200 (2012).
  • Bowden GN , KimJO, FaramandAet al. Clinical dose profile of gamma knife stereotactic radiosurgery for extensive brain metastases. J. Neurosurg.134(5), 1430–1434 (2020).
  • Cheung MC , ChanAS, LawSCet al. Impact of radionecrosis on cognitive dysfunction in patients after radiotherapy for nasopharyngeal carcinoma. Cancer97(8), 2019–2026 (2003).
  • De Reuck J , AugerF, DurieuxNet al. Topographic distribution of white matter changes and lacunar infarcts in neurodegenerative and vascular dementia syndromes: a post-mortem 7.0-tesla magnetic resonance imaging study. Eur. Stroke J.1(2), 122–129 (2016).
  • Colaco RJ , MartinP, KlugerHMet al. Does immunotherapy increase the rate of radiation necrosis after radiosurgical treatment of brain metastases? J. Neurosurg. 125(1), 17–23 (2016).

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