Charlotte Steenblock-Group

Stem-like Cells of the HPA axis and their role in stress

Improving susceptibility of neuroendocrine tumors to radionuclide therapies: personalized approaches towards complementary treatments


Journal article


Susan Richter, C. Steenblock, A. Fischer, S. Lemm, C. G. Ziegler, Nicole Bechmann, S. Nölting, Jens Pietzsch, M. Ullrich
Theranostics, 2024

Semantic Scholar DOI PubMedCentral PubMed
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APA   Click to copy
Richter, S., Steenblock, C., Fischer, A., Lemm, S., Ziegler, C. G., Bechmann, N., … Ullrich, M. (2024). Improving susceptibility of neuroendocrine tumors to radionuclide therapies: personalized approaches towards complementary treatments. Theranostics.


Chicago/Turabian   Click to copy
Richter, Susan, C. Steenblock, A. Fischer, S. Lemm, C. G. Ziegler, Nicole Bechmann, S. Nölting, Jens Pietzsch, and M. Ullrich. “Improving Susceptibility of Neuroendocrine Tumors to Radionuclide Therapies: Personalized Approaches towards Complementary Treatments.” Theranostics (2024).


MLA   Click to copy
Richter, Susan, et al. “Improving Susceptibility of Neuroendocrine Tumors to Radionuclide Therapies: Personalized Approaches towards Complementary Treatments.” Theranostics, 2024.


BibTeX   Click to copy

@article{susan2024a,
  title = {Improving susceptibility of neuroendocrine tumors to radionuclide therapies: personalized approaches towards complementary treatments},
  year = {2024},
  journal = {Theranostics},
  author = {Richter, Susan and Steenblock, C. and Fischer, A. and Lemm, S. and Ziegler, C. G. and Bechmann, Nicole and Nölting, S. and Pietzsch, Jens and Ullrich, M.}
}

Abstract

Radionuclide therapies are an important tool for the management of patients with neuroendocrine neoplasms (NENs). Especially [131I]MIBG and [177Lu]Lu-DOTA-TATE are routinely used for the treatment of a subset of NENs, including pheochromocytomas, paragangliomas and gastroenteropancreatic tumors. Some patients suffering from other forms of NENs, such as medullary thyroid carcinoma or neuroblastoma, were shown to respond to radionuclide therapy; however, no general recommendations exist. Although [131I]MIBG and [177Lu]Lu-DOTA-TATE can delay disease progression and improve quality of life, complete remissions are achieved rarely. Hence, better individually tailored combination regimes are required. This review summarizes currently applied radionuclide therapies in the context of NENs and informs about recent advances in the development of theranostic agents that might enable targeting subgroups of NENs that previously did not respond to [131I]MIBG or [177Lu]Lu-DOTA-TATE. Moreover, molecular pathways involved in NEN tumorigenesis and progression that mediate features of radioresistance and are particularly related to the stemness of cancer cells are discussed. Pharmacological inhibition of such pathways might result in radiosensitization or general complementary antitumor effects in patients with certain genetic, transcriptomic, or metabolic characteristics. Finally, we provide an overview of approved targeted agents that might be beneficial in combination with radionuclide therapies in the context of a personalized molecular profiling approach.


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