Research map: Soluble factor–mediated enhancement of cell viability via plasma-induced bystander effects

Back to the article

Papers in this map

  1. The emerging role of reactive oxygen and nitrogen species in redox biology and some implications for plasma applications to medicine and biology · David B. Graves · 2012 · 1524 citations · Cited by this paper
  2. DVH parameters and gastrointestinal/genitourinary toxicities in moderate hypofractionated salvage radiotherapy after radical prostatectomy · 2026 · Related
  3. Reactive species in non-equilibrium atmospheric-pressure plasmas: Generation, transport, and biological effects · Xinpei Lu · 2016 · 1234 citations · Cited by this paper
  4. 2025 Terasima award · 2026 · Related
  5. Radiation-induced bystander signalling in cancer therapy · Kevin M. Prise · 2009 · 810 citations · Cited by this paper
  6. Comparison of percutaneous and transarterial fiducial marker placement before proton therapy for pancreatic cancer · 2026 · Related
  7. Cold atmospheric plasma, a novel promising anti-cancer treatment modality · Dayun Yan · 2016 · 549 citations · Cited by this paper
  8. Feasibility and treatment outcomes of simultaneous definitive chemoradiotherapy for elderly patients with synchronous hypopharyngeal and esophageal squamous cell carcinoma · 2026 · Related
  9. Effects of Non-Thermal Plasma on Mammalian Cells · Sameer Rajendra Kalghatgi · 2011 · 511 citations · Cited by this paper
  10. Cost-effectiveness analysis of intensity modulated radiation therapy versus robot-assisted radical prostatectomy for patients with low-risk prostate cancer in Japan · 2026 · Related
  11. ROS from Physical Plasmas: Redox Chemistry for Biomedical Therapy · Angela Privat‐Maldonado · 2019 · 306 citations · Cited by this paper
  12. Quantitative analysis of autophagic flux reveals radiation-induced activation of SQSTM1-mediated degradation of protein aggregates and ER-phagy · 2026 · Related
  13. Cold Atmospheric Plasma for Selectively Ablating Metastatic Breast Cancer Cells · Mian Wang · 2013 · 220 citations · Cited by this paper
  14. Low- and high-dose-rate radiation exposure alters the cellular composition and dynamics of the rat mammary epithelium for weeks preceding carcinogenesis · 2025 · Related
  15. Low dose, low-LET ionizing radiation-induced radioadaptation and associated early responses in unirradiated cells · Rashi S. Iyer · 2002 · 182 citations · Cited by this paper
  16. Salvage stereotactic body radiotherapy for post-prostatectomy recurrence: are we almost there? · 2026 · Related
  17. Foundations of plasmas for medical applications · Thomas von Woedtke · 2022 · 146 citations · Cited by this paper
  18. Development of a spatially indexed dose–volume histogram for treatment plan evaluation · 2026 · Related
  19. Optical diagnostics of reactive species in atmospheric-pressure nonthermal plasma · Ryo Ono · 2016 · 144 citations · Cited by this paper
  20. Anti-tumor immune response induced by nanosecond pulsed streamer discharge in mice · Kazue Mizuno · 2017 · 107 citations · Cited by this paper
  21. Medical gas plasma technology: Roadmap on cancer treatment and immunotherapy · Sander Bekeschus · 2023 · 96 citations · Cited by this paper
  22. Radiation-Induced Adaptive Responses and Bystander Effects · Hideki Matsumoto · 2004 · 82 citations · Cited by this paper
  23. The Strong Cell-based Hydrogen Peroxide Generation Triggered by Cold Atmospheric Plasma · Dayun Yan · 2017 · 75 citations · Cited by this paper
  24. Dynamics of Singlet Oxygen-Triggered, RONS-Based Apoptosis Induction after Treatment of Tumor Cells with Cold Atmospheric Plasma or Plasma-Activated Medium · Georg Bauer · 2019 · 73 citations · Cited by this paper
  25. Cell proximity is a prerequisite for the proliferative response of bystander cells co‐cultured with cells irradiated with γ‐rays · Bogdan I. Gerashchenko · 2003 · 71 citations · Cited by this paper
  26. Radiation-induced bystander effect and its clinical implications · Haoyi Tang · 2023 · 56 citations · Cited by this paper
  27. Nitric oxide mediated DNA double strand breaks induced in proliferating bystander cells after α-particle irradiation · Wei Han · 2009 · 53 citations · Cited by this paper
  28. Temporal evaluation of the anti‐tumor efficiency of plasma‐activated media · Soheila Mohades · 2016 · 50 citations · Cited by this paper
  29. Plasma-Induced Suppression of Recurrent and Reinoculated Melanoma Tumors in Mice · Kazue Mizuno · 2018 · 47 citations · Cited by this paper
  30. Bystander cell proliferation is modulated by the number of adjacent cells that were exposed to ionizing radiation · Bogdan I. Gerashchenko · 2005 · 37 citations · Cited by this paper
  31. Flow cytometry as a strategy to study radiation‐induced bystander effects in co‐culture systems · Bogdan I. Gerashchenko · 2003 · 37 citations · Cited by this paper
  32. Reconceptualization of Hormetic Responses in the Frame of Redox Toxicology · Zoi Skaperda · 2021 · 35 citations · Cited by this paper
  33. Cold Atmospheric Plasma for Cancer Treatment: Molecular and Immunological Mechanisms · Yingjie Lu · 2022 · 22 citations · Cited by this paper
  34. Antitumor abscopal effects in mice induced by normal tissue irradiation using pulsed streamer discharge plasma · Reima Jinno · 2022 · 21 citations · Cited by this paper
  35. Perspectives and Advances of Nonthermal Plasma Technology in Cancers · Ajinkya M. Trimukhe · 2022 · 15 citations · Cited by this paper
  36. The extended transmission of cold atmospheric plasma-induced anticancer effects between cells · Jishen Zhang · 2024 · 9 citations · Cited by this paper
  37. Radiation-quality-dependent bystander cellular effects induced by heavy-ion microbeams through different pathways · Masao Suzuki · 2023 · 8 citations · Cited by this paper
  38. Inhibitory effect of streamer discharge on the local recurrence of B16F10 melanoma tumor in mice · Ryuichiro Ito · 2025 · 6 citations · Cited by this paper
  39. Study on the anticancer effects of cold atmospheric plasma on deep subcutaneous tumor cells · Jishen Zhang · 2024 · 3 citations · Cited by this paper

Source: OpenAlex (CC0)