Methods for cancer and immunotherapy using glutamine analogues, including don
A technology of immunotherapy and glutamine, applied in the direction of medical raw materials, drug combinations, and pharmaceutical formulas derived from mammals
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Embodiment 1
[0455] To study the effect of DON on cancer, the EL4 mouse lymphoma model was used, and it showed that DON can significantly inhibit lymphoma growth, suggesting that bone marrow-derived tumors may be very sensitive to DON ( figure 1 ). However, DON had a modest effect on inhibiting the growth of melanomas that were not bone marrow-derived tumors ( figure 2 ).
Embodiment 2
[0457] image 3 DON was shown to suppress tumor-infiltrating regulatory T cells (Foxp3 + ) to opsonize B16 melanoma to be killed by immunotherapy.
Embodiment 3
[0459] Summarize
[0460] The glutamine antagonist 6-diazo-5-oxo-L-norleucine (DON, 1) showed strong anticancer efficacy in preclinical and clinical studies but was discontinued due to significant systemic toxicity its development. Here, we demonstrate that DON inhibits glutamine metabolism and provides antitumor efficacy in a mouse glioblastoma model, despite observed toxicity. To increase the therapeutic index of DON, we used a prodrug strategy to increase its brain delivery and limit systemic exposure. Although these bipartite prodrugs exhibit rapid metabolism in mouse plasma, several bipartite prodrugs provided excellent stability in monkey and human plasma. The most stable compound (5c, methyl-POM_DON-isopropyl ester) was evaluated in monkeys, where it showed a 10-fold increase in the brain:plasma ratio compared to DON. This strategy may provide an avenue for the utilization of DON in GBM patients.
[0461] introduce
[0462] Glioblastoma multiforme (GBM) is the most...
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