Multifunctional nanoparticle-mediated combining therapy for human diseases

Многофункциональная наночастицо-опосредованная комбинированная терапия заболеваний человека
Makhloufi Zoulikha, Wei He, Yanmin Ju, Xiaotong Li, Xiuju Peng, George Frimpong Boafo, Kosheli Thapa Magar
2024-01-01

combination therapydrug co-deliverymultifunctional nanoparticlesnanoparticle-mediated drug deliverytargeted drug delivery
Combining existing drug therapy is essential in developing new therapeutic agents in disease prevention and treatment. In preclinical investigations, combined effect of certain known drugs has been well established in treating extensive human diseases. Attributed to synergistic effects by targeting various disease pathways and advantages, such as reduced administration dose, decreased toxicity, and alleviated drug resistance, combinatorial treatment is now being pursued by delivering therapeutic agents to combat major clinical illnesses, such as cancer, atherosclerosis, pulmonary hypertension, myocarditis, rheumatoid arthritis, inflammatory bowel disease, metabolic disorders and neurodegenerative diseases. Combinatorial therapy involves combining or co-delivering two or more drugs for treating a specific disease. Nanoparticle (NP)-mediated drug delivery systems, i.e., liposomal NPs, polymeric NPs and nanocrystals, are of great interest in combinatorial therapy for a wide range of disorders due to targeted drug delivery, extended drug release, and higher drug stability to avoid rapid clearance at infected areas. This review summarizes various targets of diseases, preclinical or clinically approved drug combinations and the development of multifunctional NPs for combining therapy and emphasizes combinatorial therapeutic strategies based on drug delivery for treating severe clinical diseases. Ultimately, we discuss the challenging of developing NP-codelivery and translation and provide potential approaches to address the limitations. This review offers a comprehensive overview for recent cutting-edge and challenging in developing NP-mediated combination therapy for human diseases.
1
Combination therapy can produce synergistic effects by targeting multiple disease pathways, potentially reducing doses, toxicity, and drug resistance.
2
Liposomal nanoparticles, polymeric nanoparticles, and nanocrystals support targeted delivery, prolonged drug release, and improved drug stability compared with conventional administration.
3
Major challenges remain in nanoparticle co-delivery development and clinical translation; addressing these requires improved strategies to overcome current delivery and translational limitations.
4
Multifunctional nanoparticles enable co-delivery of two or more therapeutic agents for diseases including cancer, cardiovascular, inflammatory, metabolic, and neurodegenerative disorders.
5
The review summarizes preclinical and clinically approved drug combinations alongside disease targets and nanoparticle designs for combination therapy.

Multifunctional nanoparticle-mediated combination therapy for human diseases

Nanoparticle-enabled co-delivery of multiple therapeutic drugs, including its disease targets, therapeutic benefits, development strategies, and translational challenges

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Publication Date
2024-01-01
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Authors
Makhloufi Zoulikha
Wei He
Yanmin Ju
Xiaotong Li
Xiuju Peng
George Frimpong Boafo
Kosheli Thapa Magar
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