利用人类微生物组及其对免疫肿瘤学的影响和纳米技术促进下一代癌症疗法。

IF 4.2 3区 医学 Q1 PHARMACOLOGY & PHARMACY European journal of pharmacology Pub Date : 2025-02-27 DOI:10.1016/j.ejphar.2025.177436
Mamali Das , Chandramohan Kiruthiga , R. Beema Shafreen , Kathiresan Nachammai , Chandrabose Selvaraj , K. Langeswaran
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Harnessing the human microbiome and its impact on immuno-oncology and nanotechnology for next-generation cancer therapies
The integration of microbiome research and nanotechnology represents a significant advancement in immuno-oncology, potentially improving the effectiveness of cancer immunotherapies. Recent studies highlight the influential role of the human microbiome in modulating immune responses, presenting new opportunities to enhance immune checkpoint inhibitors (ICIs) and other cancer therapies. Nanotechnology offers precise drug delivery and immune modulation capabilities, minimizing off-target effects while maximizing therapeutic outcomes. This review consolidates current knowledge on the interactions between the microbiome and the immune system, emphasizing the microbiome's impact on ICIs, and explores the incorporation of nanotechnology in cancer treatment strategies. Additionally, it provides a forward-looking perspective on the synergistic potential of microbiome modulation and nanotechnology to overcome existing challenges in immuno-oncology. This integrated approach may enhance the personalization and effectiveness of next-generation cancer treatments, paving the way for transformative patient care.
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来源期刊
CiteScore
9.00
自引率
0.00%
发文量
572
审稿时长
34 days
期刊介绍: The European Journal of Pharmacology publishes research papers covering all aspects of experimental pharmacology with focus on the mechanism of action of structurally identified compounds affecting biological systems. The scope includes: Behavioural pharmacology Neuropharmacology and analgesia Cardiovascular pharmacology Pulmonary, gastrointestinal and urogenital pharmacology Endocrine pharmacology Immunopharmacology and inflammation Molecular and cellular pharmacology Regenerative pharmacology Biologicals and biotherapeutics Translational pharmacology Nutriceutical pharmacology.
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Editorial Board Retraction notice to "MicroRNA-128 knockout inhibits the development of Alzheimer's disease by targeting PPAR? In mouse models" [Eur. J. Pharmacol. 843 (2018) 134-144]. Mechanisms of NMDA receptor inhibition by vortioxetine - comparison with fluoxetine. Dictamnine alleviates DSS-induced colitis mice by inhibiting ferroptosis of enterocytes via activating Nrf2-Gpx4 signaling pathway. In vivo pharmacodynamic study of the novel polymyxin MRX-8.
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