TY - JOUR
T1 - Single-cell technology for cell-based drug delivery and pharmaceutical research
AU - Hu, Huihui
AU - Fan, Yunlong
AU - Wang, Jiawen
AU - Zhang, Jialu
AU - Lyu, Yidan
AU - Hou, Xiaoqi
AU - Cui, Jizhai
AU - Zhang, Yamin
AU - Gao, Jianqing
AU - Zhang, Tianyuan
AU - Nan, Kewang
N1 - Publisher Copyright:
© 2025 Elsevier B.V.
PY - 2025/5/10
Y1 - 2025/5/10
N2 - Leveraging the capacity to precisely manipulate and analyze individual cells, single-cell technology has rapidly become an indispensable tool in the advancement of cell-based drug delivery systems and innovative cell therapies. This technology offers powerful means to address cellular heterogeneity and significantly enhance therapeutic efficacy. Recent breakthroughs in techniques such as single-cell electroporation, mechanical perforation, and encapsulation, particularly when integrated with microfluidics and bioelectronics, have led to remarkable improvements in drug delivery efficiency, reductions in cytotoxicity, and more precise targeting of therapeutic effects. Moreover, single-cell analyses, including advanced sequencing and high-resolution sensing, offer profound insights into complex disease mechanisms, the development of drug resistance, and the intricate processes of stem cell differentiation. This review summarizes the most significant applications of these single-cell technologies, highlighting their impact on the landscape of modern biomedicine. Furthermore, it provides a forward-looking perspective on future research directions aimed at further optimizing drug delivery strategies and enhancing therapeutic outcomes in the treatment of various diseases.
AB - Leveraging the capacity to precisely manipulate and analyze individual cells, single-cell technology has rapidly become an indispensable tool in the advancement of cell-based drug delivery systems and innovative cell therapies. This technology offers powerful means to address cellular heterogeneity and significantly enhance therapeutic efficacy. Recent breakthroughs in techniques such as single-cell electroporation, mechanical perforation, and encapsulation, particularly when integrated with microfluidics and bioelectronics, have led to remarkable improvements in drug delivery efficiency, reductions in cytotoxicity, and more precise targeting of therapeutic effects. Moreover, single-cell analyses, including advanced sequencing and high-resolution sensing, offer profound insights into complex disease mechanisms, the development of drug resistance, and the intricate processes of stem cell differentiation. This review summarizes the most significant applications of these single-cell technologies, highlighting their impact on the landscape of modern biomedicine. Furthermore, it provides a forward-looking perspective on future research directions aimed at further optimizing drug delivery strategies and enhancing therapeutic outcomes in the treatment of various diseases.
KW - Cell therapies
KW - Cell-based drug delivery systems
KW - Single-cell sensing
KW - Single-cell sequencing
KW - Single-cell technology
UR - https://www.scopus.com/pages/publications/85219500586
U2 - 10.1016/j.jconrel.2025.113587
DO - 10.1016/j.jconrel.2025.113587
M3 - 文献综述
C2 - 40032008
AN - SCOPUS:85219500586
SN - 0168-3659
VL - 381
JO - Journal of Controlled Release
JF - Journal of Controlled Release
M1 - 113587
ER -