TY - JOUR
T1 - Insights into drug discovery from natural medicines using reverse pharmacokinetics
AU - Hao, Haiping
AU - Zheng, Xiao
AU - Wang, Guangji
PY - 2014/4
Y1 - 2014/4
N2 - Natural medicines (NMs) are indispensable sources for the development of modern drugs. However, the targets for most natural compounds are unknown and the current pharmacokinetic evaluation systems developed for target-defined drugs may not be directly applicable to NM-based drug discovery, which is a major hindrance in bringing natural compounds to the clinic. Here, we propose the concept of 'reverse pharmacokinetics' and discuss how a 'reverse pharmacokinetics' perspective could help clarify key questions in modern drug discovery from NMs with validated clinical benefits, thereby strengthening the translational potential. Reverse pharmacokinetics can provide physiologically relevant clues to the target identification and mechanistic study of NMs, which may also innovate drug discovery for complex diseases. We anticipate that an evolving deep understanding of the novel mode of action of natural compounds with a reverse pharmacokinetic insight may improve discovery of both single ingredient and multiple-component modern drugs from NMs.
AB - Natural medicines (NMs) are indispensable sources for the development of modern drugs. However, the targets for most natural compounds are unknown and the current pharmacokinetic evaluation systems developed for target-defined drugs may not be directly applicable to NM-based drug discovery, which is a major hindrance in bringing natural compounds to the clinic. Here, we propose the concept of 'reverse pharmacokinetics' and discuss how a 'reverse pharmacokinetics' perspective could help clarify key questions in modern drug discovery from NMs with validated clinical benefits, thereby strengthening the translational potential. Reverse pharmacokinetics can provide physiologically relevant clues to the target identification and mechanistic study of NMs, which may also innovate drug discovery for complex diseases. We anticipate that an evolving deep understanding of the novel mode of action of natural compounds with a reverse pharmacokinetic insight may improve discovery of both single ingredient and multiple-component modern drugs from NMs.
KW - gut microbiota
KW - multiple-component and multiple-target drugs
KW - remote target
KW - target identification
KW - translational medicine
UR - https://www.scopus.com/pages/publications/84898809667
U2 - 10.1016/j.tips.2014.02.001
DO - 10.1016/j.tips.2014.02.001
M3 - 文献综述
C2 - 24582872
AN - SCOPUS:84898809667
SN - 0165-6147
VL - 35
SP - 168
EP - 177
JO - Trends in Pharmacological Sciences
JF - Trends in Pharmacological Sciences
IS - 4
ER -