Effect of FLASH proton therapy on primary bronchial epithelial cell organoids

被引:0
|
作者
Kuipers, Merian E. [1 ]
van Liefferinge, Floriane [1 ]
van der Wal, Ernst [2 ]
Rovituso, Marta [2 ]
Slats, Annelies M. [1 ]
Hiemstra, Pieter S. [1 ]
Van Doorn-Wink, Krista C. J. [2 ,3 ]
机构
[1] Leiden Univ Med Ctr LUMC, Dept Pulmonol, C02-Q,Albinusdreef 2, NL-2333 ZA Leiden, Netherlands
[2] Holland Proton Therapy Ctr HollandPTC, Huismansingel 4, NL-2629 JH Delft, Netherlands
[3] Leiden Univ Med Ctr LUMC, Dept Radiotherapy, K01-P,Albinusdreef 2, NL-2333 ZA Leiden, Netherlands
关键词
FLASH effect; Organoid model; NSCLC; Proton radiation; Ultra-high dose rate (UHDR); Primary cells; 3D model; LUNG-CANCER; RADIATION PNEUMONITIS; RISK;
D O I
10.1016/j.ctro.2025.100927
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Purpose: The effects of conventional (CONV) and FLASH proton therapy on primary bronchial epithelial cell (PBEC) organoids from individuals with chronic obstructive pulmonary disease (COPD) were investigated. The primary objective was to compare the effect of FLASH and CONV on COPD PBEC organoids with a focus on DNA damage, organoid formation, and gene expression. Methods: PBECs were obtained from six COPD donors, cultured as three-dimensional (3D) organoids and exposed to 2 and 8 Gy CONV and FLASH proton radiation at the Holland Proton Therapy Center. DNA damage was assessed by gamma H2AX staining. Organoid formation capacity was assessed by counting the organoids formed after reseeding irradiated cells at 24 h and 7 days. Bulk RNA sequencing (RNAseq) and qPCR analyses were performed to identify pathways and differences in the radiation response. Results: gamma H2AX foci analysis showed a significant dose-dependent increase in DNA damage at 1 h for both CONV and FLASH treatments, without differences between the two modalities. Organoid formation assays revealed a dose-dependent decrease in organoid formation capacity at 24 h for both treatments. At 7 days, 2 Gy FLASHtreated samples showed significantly reduced organoid formation compared to 2 Gy CONV (p = 0.008). RNAseq identified CONV and FLASH-induced changes in expression of DNA-damage response and apoptosis pathway genes. A dose-dependent upregulation of MDM2, GDF15, DDB2, BAX, P21, AEN and a decrease in MKi67 expression was confirmed by qPCR analysis. Conclusion: No significant differences were found in DNA damage or gene expression profiles between CONV and FLASH. The organoid formation assay showed a prolonged detrimental effect in the FLASH-treated organoids, suggesting a more complex interaction of FLASH with lung epithelial cells. The results of this study contribute to the advancement of robust in vitro human lung models for investigating the mechanisms of action of FLASH, potentially facilitating the treatment of NSCLC patients with proton FLASH therapy.
引用
收藏
页数:8
相关论文
共 50 条
  • [41] Cigarette smoke alters primary human bronchial epithelial cell differentiation at the air-liquid interface
    Andrea C. Schamberger
    Claudia A. Staab-Weijnitz
    Nikica Mise-Racek
    Oliver Eickelberg
    Scientific Reports, 5
  • [42] Primary human bronchial epithelial cell responses to diesel and biodiesel emissions at an air-liquid interface
    Vaughan, Annalicia
    Stevanovic, Svetlana
    Jafari, Mohammad
    Bowman, Rayleen V.
    Fong, Kwun M.
    Ristovski, Zoran D.
    Yang, Ian A.
    TOXICOLOGY IN VITRO, 2019, 57 : 67 - 75
  • [43] CIGARETTE SMOKE INDUCES GOBLET CELL HYPERPLASIA IN IN VITRO CULTURES OF PRIMARY HUMAN BRONCHIAL EPITHELIAL CELLS
    Hewitt, Katherine
    Haswell, Linsey E.
    Richter, Audrey
    Thorne, David
    Gaca, Marianna D.
    BASIC & CLINICAL PHARMACOLOGY & TOXICOLOGY, 2014, 115 (01) : 155 - 155
  • [44] The ROCK inhibitor Y-27632 enhances primary equine bronchial epithelial cell proliferation and differentiation
    Bonicelli, J.
    Hofmann-Orsetti, C. L.
    Kazca, J.
    Vahlenkamp, T.
    Abraham, G.
    NAUNYN-SCHMIEDEBERGS ARCHIVES OF PHARMACOLOGY, 2016, 389 (01) : S66 - S66
  • [45] Pharmacological Rescue of Conventional Primary Equine Bronchial Epithelial Cells
    Abraham, Getu
    Engelmann, Janko
    Kacza, Johannes
    Bonicelli, Jana
    EUROPEAN RESPIRATORY JOURNAL, 2017, 50
  • [46] Cell response analysis in SARS-CoV-2 infected bronchial organoids
    Emi Sano
    Tatsuya Suzuki
    Rina Hashimoto
    Yumi Itoh
    Ayaka Sakamoto
    Yusuke Sakai
    Akatsuki Saito
    Daisuke Okuzaki
    Daisuke Motooka
    Yukiko Muramoto
    Takeshi Noda
    Tomohiko Takasaki
    Jun-Ichi Sakuragi
    Shohei Minami
    Takeshi Kobayashi
    Takuya Yamamoto
    Yasufumi Matsumura
    Miki Nagao
    Toru Okamoto
    Kazuo Takayama
    Communications Biology, 5
  • [47] CERAMIDE INHIBITS CFTR CURRENT IN PRIMARY BRONCHIAL EPITHELIAL CELLS
    Cottrill, K. A.
    McCarty, N. A.
    PEDIATRIC PULMONOLOGY, 2019, 54 : S194 - S194
  • [48] Cell response analysis in SARS-CoV-2 infected bronchial organoids
    Sano, Emi
    Suzuki, Tatsuya
    Hashimoto, Rina
    Itoh, Yumi
    Sakamoto, Ayaka
    Sakai, Yusuke
    Saito, Akatsuki
    Okuzaki, Daisuke
    Motooka, Daisuke
    Muramoto, Yukiko
    Noda, Takeshi
    Takasaki, Tomohiko
    Sakuragi, Jun-Ichi
    Minami, Shohei
    Kobayashi, Takeshi
    Yamamoto, Takuya
    Matsumura, Yasufumi
    Nagao, Miki
    Okamoto, Toru
    Takayama, Kazuo
    COMMUNICATIONS BIOLOGY, 2022, 5 (01)
  • [49] Effect of EGFR on Calcium Mobilization and Epithelial Repair in Gastric Organoids
    Engevik, Kristen
    Aihara, Eitaro
    Matthis, Andrea
    Montrose, Marshall
    FASEB JOURNAL, 2018, 32 (01):
  • [50] Effect of diesel exhaust (DE) on stress responses and innate immunity in primary bronchial epithelial cell (PBEC) cultures from patients with COPD and controls
    Hiemstra, Pieter S.
    Zarcone, Maria C.
    Duistermaat, Evert
    Alblas, Marcel J.
    van Schadewijk, Annemarie
    Ninaber, Dennis K.
    Moerman, Marcel M.
    Vaessen, Daan
    Kooter, Ingeborg
    EUROPEAN RESPIRATORY JOURNAL, 2016, 48