Yuta Morisaki, Nanaka Nomura, Miruto Matsuda, Motoki Ohshima, Raza Fukuda, Okiru Komine, Takashi Okuda, Koji Yamanaka, Hidemi Misawa
Immune checkpoint molecules have emerged as regulators of microglial function in neurodegenerative diseases. We previously demonstrated that LAG-3 shapes disease-associated microglial phenotypes in ALS and that germline LAG-3 deletion in SOD1 G93A mice accelerated disease onset but extended duration, leaving survival unchanged. Here, we investigated the therapeutic efficacy of anti-LAG-3 antibody treatment starting after symptom onset. Anti-LAG-3 treatment extended survival, slowed neurological and motor decline, preserved body weight and motor neurons, and reduced microgliosis. Within microglia, the Axl + phagocytic-module fraction increased while the Dectin-1 + inflammatory-module fraction decreased. These findings indicate that post-onset LAG-3 inhibition is a promising therapeutic strategy for ALS.