Related Experiment Video
Updated: Nov 16, 2025

Cryo-Structured Illumination Microscopic Data Collection from Cryogenically Preserved Cells
Published on: May 28, 2021
Cryoimmunology: Opportunities and challenges in biomedical science and practice
Nikolai N Korpan1, Anatoliy N Goltsev2, Olexii I Dronov3
1International Institute of Cryosurgery, Rudolfinerhaus Clinic, Billrothstrasse 78, 1190, Vienna, Austria; 1(st) Department of Surgery, National Medical University, T. Shevchenko Blvd. 13, 01601, Kyiv, Ukraine.
Insights
Cryoimmunology explores immune responses to tissues altered by freezing. New cryoinduced immunogenic substances form, impacting cancer treatment and adoptive cell therapy.
Area of Science:
- Cryoimmunology
- Biomedical Science
- Clinical Practice
Background:
- Cryoimmunology studies immune responses to ultralow temperature-altered biological structures.
- It examines changes in immune cells and tissues post-cryopreservation.
- Cryogenic protein denaturation and cryomodified proteins are key to understanding these responses.
Purpose of the Study:
- To review the novel field of cryoimmunology.
- To explore immune interactions with malignant neoplasms after subzero temperature exposure.
- To highlight advancements in cryogenic techniques and their applications.
Main Methods:
- Review of existing literature on cryoimmunology.
- Analysis of cryogenic protein denaturation.
- Examination of dendritic cells and cryocell debris formation post-ultralow temperature exposure.
Main Results:
- Formation of novel autologous and allogeneic cryoinduced immunogenic substances.
- Identification of cryomodified proteins as crucial in cryoimmunology.
- Dendritic cells and cryocell debris as potential mechanisms in cryoimmunological response.
Conclusions:
- Cryoimmunology is a new frontier in biomedical research.
- Understanding cryopreserved immune cells is vital for adoptive cell therapy, particularly in oncology.
- Further research into cryoimmunological mechanisms can advance cancer treatment strategies.
Abstract:
Autologous and allogeneic cryoimmunological medicine is a brand new branch of biomedical science and clinical practice that examines the features and formation of the immune response to immunogenic properties of normal and malignant biological structures altered by ultralow temperature, as well as specific changes in the structural and functional characteristics of immune cells and tissues after cryopreservation. Cryogenic protein denaturation phenomenon provides important insights into the mechanisms underlying the damage to cryogenic lesions immediately after freeze-thawing sessions in bioscience and medicine applications. The newly formed cryocoagulated protein components (cryomodified protein components) are crucial in cryoimmunology from the perspective of the formation of immunological substances at ultralow temperatures. Dendritic cells and cryocell detritus (cryocell debris) formed in living biological tissue after exposure to ultralow temperature in vivo may be an indication of one of the essential mechanisms involved in the cryoimmunological response of living structures to the impact of ultralow temperature exposure. Hence, the formation of new autologous and allogeneic cryoinduced immunogenic substances is a novel concept in biomedical research globally. Accordingly, this review focuses on issues concerning the peculiarities of the interaction of the immune system with a dominant malignant neoplasm tissue after exposure to subzero temperatures, considering the original cryogenic technical approaches. We present an overview of the state-of-the-art methods of cryoimmunology, and their major developments, past and present. The need for the delineation of structural and functional characteristics of the biological substrates of the immune system after cryopreservation that can be used in adoptive cell therapy, especially in cancer patients, is emphasized.
More Related Videos
Related Concept Videos
Cryo-electron Microscopy
Microorganisms in Medicine and Therapeutics

