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  1. Chandrasekaran S, Ramli N, Ahmad MJ, Effendi I, Amir NN, Chow RC, et al.
    J Adolesc Young Adult Oncol, 2021 08;10(4):425-431.
    PMID: 32996803 DOI: 10.1089/jayao.2020.0064
    Purpose: Childhood cancer survivors (CCS) demonstrate features of premature aging in a multitude of organ systems. The aim of this pilot study is to determine the presence of premature ocular aging features in CCS, specifically childhood acute lymphoblastic leukemia (ALL) survivors. Methods: This prospective case-control study was conducted over a period of 21 months, starting July 2015 till March 2017. A total of 59 childhood ALL survivors who attended the Paediatric Oncology Clinic of University Malaya Medical Centre (UMMC) and 48 age, race, and gender-matched controls went through a series of ocular examinations and tests. Inclusion criteria used to recruit survivors were age above 16 years, history of ALL in childhood, completion of treatment for ALL, and a remission period of at least 5 years. Patients with ocular disease and those who received hematopoietic stem cell transplantation were excluded. The parameters measured were visual acuity, amplitude of accommodation, pupil cycle time (PCT), and tear break-up time (TBUT). Results: Survivors of childhood ALL demonstrated significant differences in amplitude of accommodation, PCT, and TBUT compared to age-matched controls. Survivors had a lower median (interquartile range [IQR]) amplitude of accommodation compared to controls (11.0 D [9.0-13.0] vs. 12.0 D [10.5-15]; p = 0.045). Survivors also showed a longer median (IQR) PCT in comparison to controls (931.00 mseconds (857.00-1063.00) vs. 875.50 mseconds (825.75-966.00); p = 0.024). In addition, median (IQR) TBUT was worse in survivors in comparison to the control group (9 seconds [6-13] vs. 11 seconds [10-15]; p = 0.001). Conclusion: Survivors of childhood ALL demonstrate premature ocular aging features compared to age-matched controls. Thus, survivors may benefit from having ocular examinations as part of their routine late-effects screening to detect age-related ocular morbidities early in its course.
  2. Ariffin H, Azanan MS, Abd Ghafar SS, Oh L, Lau KH, Thirunavakarasu T, et al.
    Cancer, 2017 Nov 01;123(21):4207-4214.
    PMID: 28654149 DOI: 10.1002/cncr.30857
    BACKGROUND: Large epidemiologic studies have reported the premature onset of age-related conditions, such as ischemic heart disease and diabetes mellitus, in childhood cancer survivors, decades earlier than in their peers. The authors investigated whether young adult survivors of childhood acute lymphoblastic leukemia (ALL) have a biologic phenotype of cellular ageing and chronic inflammation.

    METHODS: Plasma inflammatory cytokines were measured using a cytometric bead array in 87 asymptomatic young adult survivors of childhood ALL (median age, 25 years; age range, 18-35 years) who attended annual follow-up clinic and compared with healthy, age-matched and sex-matched controls. Leukocyte telomere length (LTL) was measured using Southern blot analysis.

    RESULTS: Survivors had significant elevation of plasma interleukin-2 (IL-2), IL-10, IL-17a, and high-sensitivity C-reactive protein levels (all P 0.8 mg/dL) was related to increased odds of having metabolic syndrome (odds ratio, 7.256; 95% confidence interval, 1.501-35.074). Survivors also had significantly shorter LTL compared with controls (median, 9866 vs 10,392 base pairs; P = .021). Compared with published data, LTL in survivors was similar to that in healthy individuals aged 20 years older. Survivors who received cranial irradiation had shorter LTL compared with those who had not (P = .013).

    CONCLUSIONS: Asymptomatic young adult survivors of childhood ALL demonstrate a biologic profile of chronic inflammation and telomere attrition, consistent with an early onset of cellular processes that drive accelerated aging. These processes may explain the premature development of age-related chronic conditions in childhood cancer survivors. Understanding their molecular basis may facilitate targeted interventions to disrupt the accelerated aging process and its long-term impact on overall health. Cancer 2017;123:4207-4214. © 2017 American Cancer Society.

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