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Exhilaratingly, the activity level of 6m rivaled that of 5-Fluorouracil (5-Fu) against MCF-7 cell lines, which might be used as novel lead scaffold for potential anticancer development.
This provides an exciting insight into the future of anticancer development.
Thus, the route of administration, the strong antitumor properties, and the low toxicity to normal cells suggest SBP has potential for future anticancer development.
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A wide variety of models are routinely developed during anticancer drug development, including PK, disease progression, and exposure-response modeling.
We review anticancer drug development, showing how integration of modeling and simulation throughout development can inform anticancer dose selection, potentially improving the late-phase success rate.
Given the importance of this receptor in both ovarian cancer growth and progression, it represents a good target for anticancer drug development.
HIF-1 is currently a target for anticancer drug development [ 5, 6], with the aim of inhibiting tumour growth.
Anticancer drug development remains slow, costly and inefficient.
Effective anticancer drug development represents the key for translation of research advances into medicines.
Tubulin binding compounds represent one of the most attractive targets for anticancer drug development.
The epidermal growth factor receptor (EGFR) has become an important target protein in anticancer drug development.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com