Harnessing the 12 Green Chemistry Principles for Sustainable Antiparasitic Drugs: Toward the One Health Approach

IF 4 2区 医学 Q2 CHEMISTRY, MEDICINAL ACS Infectious Diseases Pub Date : 2024-05-09 DOI:10.1021/acsinfecdis.4c00172
Bianca Martinengo, Eleonora Diamanti, Elisa Uliassi and Maria Laura Bolognesi*, 
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Abstract

Antiparasitic drug development stands as a critical endeavor in combating infectious diseases which, by affecting the well-being of humans, animals, and the environment, pose significant global health challenges. In a scenario where conventional pharmacological interventions have proven inadequate, the One Health approach, which emphasizes interdisciplinary collaboration and holistic solutions, emerges as a vital strategy. By advocating for the integration of One Health principles into the R&D pharmaceutical pipeline, this Perspective promotes green chemistry methodologies to foster the development of environmentally friendly antiparasitic drugs for both human and animal health. Moreover, it highlights the urgent need to address vector-borne parasitic diseases (VBPDs) within the context of One Health-driven sustainable development, underscoring the pivotal role of medicinal chemists in driving transformative change. Aligned with the Sustainable Development Goals (SDGs) and the European Green Deal, this Perspective explores the application of the 12 Principles of Green Chemistry as a systematic framework to guide drug discovery and production efforts in the context of VBPD. Through interdisciplinary collaboration and a constant commitment to sustainability, the field can overcome the challenges posed by VBPD while promoting global and environmental responsibility. Serving as a call to action, scientists are urged to integrate One Health concepts and green chemistry principles into routine drug development practices, thereby paving the way for a more sustainable R&D pharmaceutical pipeline for antiparasitic drugs.

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利用 12 项绿色化学原则开发可持续的抗寄生虫药物:实现 "一种健康方法"。
抗寄生虫药物开发是抗击传染病的一项重要工作,传染病影响人类、动物和环境的福祉,对全球健康构成重大挑战。在传统药物干预已被证明不足的情况下,强调跨学科合作和整体解决方案的 "一体健康 "方法成为一项重要战略。通过倡导将 "一体健康 "原则纳入研发制药管道,本视角提倡采用绿色化学方法,促进开发对环境友好的抗寄生虫药物,以造福人类和动物健康。此外,它还强调了在 "一体健康 "驱动的可持续发展背景下应对病媒传播寄生虫病(VBPDs)的迫切需要,突出了药物化学家在推动变革中的关键作用。本视角与可持续发展目标(SDGs)和欧洲绿色协议保持一致,探讨了绿色化学 12 项原则作为系统框架的应用,以指导 VBPD 背景下的药物发现和生产工作。通过跨学科合作和对可持续发展的不懈追求,该领域可以克服 VBPD 带来的挑战,同时促进全球和环境责任。该书呼吁科学家们采取行动,将 "同一健康 "理念和绿色化学原则融入常规药物开发实践中,从而为更可持续的抗寄生虫药物研发制药管道铺平道路。
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来源期刊
ACS Infectious Diseases
ACS Infectious Diseases CHEMISTRY, MEDICINALINFECTIOUS DISEASES&nb-INFECTIOUS DISEASES
CiteScore
9.70
自引率
3.80%
发文量
213
期刊介绍: ACS Infectious Diseases will be the first journal to highlight chemistry and its role in this multidisciplinary and collaborative research area. The journal will cover a diverse array of topics including, but not limited to: * Discovery and development of new antimicrobial agents — identified through target- or phenotypic-based approaches as well as compounds that induce synergy with antimicrobials. * Characterization and validation of drug target or pathways — use of single target and genome-wide knockdown and knockouts, biochemical studies, structural biology, new technologies to facilitate characterization and prioritization of potential drug targets. * Mechanism of drug resistance — fundamental research that advances our understanding of resistance; strategies to prevent resistance. * Mechanisms of action — use of genetic, metabolomic, and activity- and affinity-based protein profiling to elucidate the mechanism of action of clinical and experimental antimicrobial agents. * Host-pathogen interactions — tools for studying host-pathogen interactions, cellular biochemistry of hosts and pathogens, and molecular interactions of pathogens with host microbiota. * Small molecule vaccine adjuvants for infectious disease. * Viral and bacterial biochemistry and molecular biology.
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