Aug 2026· TIPS - Trends in Pharmacological Sciences· 0 citations· 101 references
Medicine
TL;DR
The design principles of LTPD platforms are summarized to address the stringent requirements imposed by the LTPD process and may contribute to the rational design of LTPD platforms.
Abstract
Lysosome-targeted protein degradation (LTPD) represents a therapeutic strategy that degrades membrane and extracellular target proteins through the endolysosomal pathway. LTPD chimeras are molecular degraders that mediate LTPD, but their in vivo performance is limited by poor spatiotemporal control of degradation-existing chimeras have suboptimal pharmacokinetics, tissue selectivity, and endolysosomal trafficking. To overcome these hurdles associated with chimeras, LTPD platforms have emerged. LTPD platforms function as chimera-loaded systems for targeted delivery and controlled release of chimeras, or as platform-based degraders that mediate disease-targeted and on-demand degradation without chimeras. We discuss how LTPD platforms spatiotemporally control degradation and describe their therapeutic applications. In particular, we summarize the design principles of LTPD platforms to address the stringent requirements imposed by the LTPD process. These principles may contribute to the rational design of LTPD platforms.
This Review provides a framework for selecting disease-matched degradation routes and advancing meTPDs from platform-specific demonstrations towards predictable therapeutic modalities by integrating molecular design, receptor biology, intracellular trafficking, delivery and pharmacodynamic considerations.
Shu-Tong Lin, Hui-Ling Zhou, Jia-Yan Qiu et al.· Advanced Drug Delivery Revie...· 0 citations
This critical review is an outline of all lipid, polymeric, inorganic, biomimetic, targeted, activatable, and self-assembling delivery systems for TPD, and assess compositional considerations, in vitro and in vivo evidence, challenges for translation, and clinical endpoints required to support delivery-enabled degradat...
ABSTRACT Targeted protein degradation (TPD) redirects endogenous protein‐disposal pathways to selectively eliminate therapeutically relevant proteins. Over the past two decades, this field has progressed from proteolysis‐targeting chimeras (PROTACs) to an expanding repertoire of proteasomal and lysosomal degradation st...
Kong-Jun Liu, Xue-Yin Yuan, Yan Zhou et al.· Advancement of science· 0 citations
ABSTRACT Lysosome‐targeting chimeras (LYTACs) have emerged as a strategy for eliminating secreted, extracellular, and plasma‐membrane proteins by redirecting them to the endolysosomal system. By coupling target recognition to receptor‐mediated uptake, LYTACs exploit endogenous trafficking pathways to access disease‐ass...
Ke Liu, Xi-Yan Wang, Xiao-Zhen Liu et al.· Advancement of science· 0 citations
This work develops a tetrahedral DNA nanostructure-based multivalent lysosome-targeting antibody platform (TDN-MLYTAB) and demonstrates how programmable DNA nanostructures can overcome persistent bioconjugation challenges, advancing modular therapeutics toward application.
Xin Wan, Quan-Hao Dou, Jia-Lin Zeng et al.· ACS Applied Materials and In...· 0 citations