Co‐Delivery of Metabolic Modulators Leads to Simultaneous Lactate Metabolism Inhibition and Intracellular Acidification for Synergistic Cancer Therapy

Author:

Lee Bowon12,Park Ok Kyu13,Pan Limin12,Kim Kang12,Kang Taegyu12,Kim Hyunjoong12,Lee Nohyun4,Choi Seung Hong13,Hyeon Taeghwan12ORCID

Affiliation:

1. Center for Nanoparticle Research Institute for Basic Science (IBS) Seoul 08826 Republic of Korea

2. School of Chemical and Biological Engineering Institute of Chemical Processes Seoul National University Seoul 08826 Republic of Korea

3. Department of Radiology Seoul National University College of Medicine Seoul 03080 Republic of Korea

4. School of Advanced Materials Engineering Kookmin University Seoul 02707 Republic of Korea

Abstract

AbstractSimultaneous lactate metabolism inhibition and intracellular acidification (LIIA) is a promising approach for inducing tumor regression by depleting ATP. However, given the limited efficacy of individual metabolic modulators, a combination of various modulators is required for highly efficient LIIA. Herein, a co‐delivery system that combines lactate transporter inhibitor, glucose oxidase, and O2‐evolving nanoparticles is proposed. As a vehicle, a facile room‐temperature synthetic method for large‐pore mesoporous silica nanoparticles (L‐MSNs) is developed. O2‐evolving nanoparticles are then conjugated onto L‐MSNs, followed by immobilizing the lactate transporter inhibitor and glucose oxidase inside the pores of L‐MSNs. To load the lactate transporter inhibitor, which is too small to be directly loaded into the large pores, it is encapsulated in albumin by controlling the albumin conformation before being loaded into L‐MSNs. Notably, inhibiting lactate efflux shifts the glucose consumption mechanism from lactate metabolism to glucose oxidase reaction, which eliminates glucose and produces acid. This leads to synergistic LIIA and subsequent ATP depletion in cancer cells. Consequently, L‐MSN‐based co‐delivery of modulators for LIIA shows high anticancer efficacy in several mouse tumor models without toxicity in normal tissues. This study provides new insights into co‐delivery of small‐molecule drugs, proteins, and nanoparticles for synergistic metabolic modulation in tumors.

Funder

Institute for Basic Science

Seoul National University

National Research Foundation of Korea

Samsung

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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