Publications by authors named "Katerina Kalkusova"

Nanoparticles are commonly used in diagnostics and therapy. They are also increasingly being implemented in cancer immunotherapy because of their ability to deliver drugs and modulate the immune system. However, the effect of nanoparticles on immune cells involved in the anti-tumor immune response is not well understood.

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Article Synopsis
  • CD8 T cells are crucial for the immune response against infections and tumors, and their proliferation is stimulated by dendritic cells (DCs).
  • This study reveals that products released from thapsigargin-stimulated mast cells impair the ability of DCs to induce CD8 T-cell proliferation and Th1 cytokine production.
  • While thapsLAD2-matured DCs show some maturation markers, they produce no detectable TNF or IL-12 and are less effective than R848-matured DCs in promoting CD8 T-cell proliferation, highlighting a new way mast cells can regulate immune responses.
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Soft tissue sarcomas are aggressive mesenchymal-origin malignancies. Undifferentiated pleomorphic sarcoma (UPS) belongs to the aggressive, high-grade, and least characterized sarcoma subtype, affecting multiple tissues and metastasizing to many organs. The treatment of localized UPS includes surgery in combination with radiation therapy.

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Ex vivo-produced dendritic cells (DCs) constitute the core of active cellular immunotherapy (ACI) for cancer treatment. After many disappointments in clinical trials, the current protocols for their preparation are attempting to boost their therapeutic efficacy by enhancing their functionality towards Th1 response and capability to induce the expansion of cytotoxic tumor-specific CD8 T cells. LL-37 is an antimicrobial peptide with strong immunomodulatory potential.

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MicroRNAs belong to a group of short non-coding RNA molecules that are involved in the regulation of gene expression at multiple levels. Their function was described two decades ago, and, since then, microRNAs have become a rapidly developing field of research. Their participation in the regulation of cellular processes, such as proliferation, apoptosis, cell growth, and migration, made microRNAs attractive for cancer research.

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The immune checkpoint inhibitors have revolutionized cancer immunotherapy. These inhibitors are game changers in many cancers and for many patients, sometimes show unprecedented therapeutic efficacy. However, their therapeutic efficacy is largely limited in many solid tumors where the tumor-controlled immune microenvironment prevents the immune system from efficiently reaching, recognizing, and eliminating cancer cells.

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