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Supporting Drug Development for Neglected Tropical Diseases Using Mathematical Modeling
Author(s) -
Martin Walker,
Jonathan I. D. Hamley,
Philip Milton,
Frédéric Monnot,
Sally Kinrade,
Sabine Specht,
Belén Pedrique,
Marı́a-Gloria Basáñez
Publication year - 2021
Publication title -
clinical infectious diseases
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.44
H-Index - 336
eISSN - 1537-6591
pISSN - 1058-4838
DOI - 10.1093/cid/ciab350
Subject(s) - onchocerciasis , neglected tropical diseases , lymphatic filariasis , context (archaeology) , trachoma , tropical disease , risk analysis (engineering) , drug development , medicine , drug , intensive care medicine , business , public health , filariasis , computer science , management science , disease , biology , immunology , pharmacology , economics , pathology , paleontology , helminths
Drug-based interventions are at the heart of global efforts to reach elimination as a public health problem (trachoma, soil-transmitted helminthiases, schistosomiasis, lymphatic filariasis) or elimination of transmission (onchocerciasis) for 5 of the most prevalent neglected tropical diseases tackled via the World Health Organization preventive chemotherapy strategy. While for some of these diseases there is optimism that currently available drugs will be sufficient to achieve the proposed elimination goals, for others-particularly onchocerciasis-there is a growing consensus that novel therapeutic options will be needed. Since in this area no high return of investment is possible, minimizing wasted money and resources is essential. Here, we use illustrative results to show how mathematical modeling can guide the drug development pathway, yielding resource-saving and efficiency payoffs, from the refinement of target product profiles and intended context of use to the design of clinical trials.

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