Theoretical and experimental approaches aimed at drug design targeting neurodegenerative diseases

Samuel Morales-Navarro, Luis Prent-Peñaloza, Yeray A.Rodríguez Núñez, Laura Sánchez-Aros, Oscar Forero-Doria, Wendy González, Nuria E. Campilllo, Miguel Reyes-Parada, Ana Martínez, David Ramírez

Resultado de la investigación: Contribución a una revistaArtículo de revisiónrevisión exhaustiva

2 Citas (Scopus)

Resumen

In recent years, green chemistry has been strengthening, showing how basic and applied sciences advance globally, protecting the environment and human health. A clear example of this evolution is the synergy that now exists between theoretical and computational methods to design new drugs in the most efficient possible way, using the minimum of reagents and obtaining the maximum yield. The development of compounds with potential therapeutic activity against multiple targets associated with neurodegenerative diseases/disorders (NDD) such as Alzheimer's disease is a hot topic in medical chemistry, where different scientists from various disciplines collaborate to find safe, active, and effective drugs. NDD are a public health problem, affecting mainly the population over 60 years old. To generate significant progress in the pharmacological treatment of NDD, it is necessary to employ different experimental strategies of green chemistry, medical chemistry, and molecular biology, coupled with computational and theoretical approaches such as molecular simulations and chemoinformatics, all framed in the rational drug design targeting NDD. Here, we review how green chemistry and computational approaches have been used to develop new compounds with the potential application against NDD, as well as the challenges and new directions of the drug development multidisciplinary process.

Idioma originalInglés
Número de artículo940
PublicaciónProcesses
Volumen7
N.º12
DOI
EstadoPublicada - 1 dic 2019

Áreas temáticas de ASJC Scopus

  • Bioingeniería
  • Ingeniería química (miscelánea)
  • Química de procesos y tecnología

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