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Biology subjects

Pant, A.

Publications and source records attributed to Pant, A..

2 recordsLinked to original sources

Complementary cytotoxicity of GD2-targeted photoimmunotherapy and 5-aminolevulinic acid photodynamic therapy in neuroblastoma and osteosarcoma

Phototherapy, a light-activated anticancer treatment, enables localized tumor-cell killing with distinct mechanisms of action. Photoimmunotherapy (PIT) produces immunogenic tumor cell death upon near-infrared light activation of a photoabsorber through antigen-specific targeting. Photodynamic therapy (PDT) produces reactive oxygen species through red-light activation of intracellular protoporphyrin IX generated from 5-aminolevulinic acid uptake and metabolism. PIT may have limited activity in antigen-low cells, whereas PDT has less precise tumor selectivity. We combined these modalities to define their interaction, broaden cytotoxicity, and determine whether dual treatment could reduce light-dose requirements. We conjugated dinutuximab, which targets the GD2 antigen, to IRDye 700DX and characterized plasma-membrane localization by confocal and widefield microscopy. PIT and PDT monotherapies were evaluated across agent and light doses in neuroblastoma (NB) and osteosarcoma (OS) cell lines. Combination matrices were tested using interaction, highest-single-agent, and Bliss analyses. Both monotherapies demonstrated significant light-dose-dependent effects in NB and OS. PIT produced no measurable cytotoxicity in antigen-blunted control cells, whereas PDT remained effective, confirming antigen-dependence of PIT and antigen-independence of PDT. The combination interaction was significant in SK-N-BE(2) but not LM7. At selected combinations, however, dual treatment produced greater killing than the more effective matched monotherapy in both SK-N-BE(2) and LM7 (Padj<0.022). Notably, lowest combination of PIT 10 J/cm2 plus PDT 10 J/cm2 achieved 90.3% killing in SK-N-BE(2), exceeding higher light-dose PIT or PDT monotherapy, suggesting a light-dose sparing effect. These findings establish potent and complementary PIT-PDT activity, supporting dual phototherapy to broaden cytotoxicity and reduce light-dose requirements in GD2-expressing tumor phototherapy.

cancer biology

Asparagine availability is an essential limiting factor for poxvirus protein synthesis

Virus actively interfaces with host metabolism because viral replication relies on host cells to provide nutrients and energy. For efficient viral replication in culture, vaccinia virus (VACV; the prototype poxvirus) prefers glutamine to glucose, to the extent that in glutamine-free medium, VACV replication is inefficient. Remarkably, VACV replication can be fully rescued from glutamine depletion by asparagine supplementation. By global metabolic profiling, genetic and chemical intervening of asparagine supply, we provide evidence demonstrating that the requirement of asparagine for efficient viral replication accounts for VACVs preference of glutamine to glucose, rather than because glutamine is superior to glucose in feeding the tricarboxylic acid (TCA) cycle. Further, we show that asparagine availability is a critical factor for efficient viral protein synthesis. Our study highlights that the asparagine metabolism, whose regulation has been evolutionarily tailored in mammalian cells, presents a critical barrier to poxvirus replication, suggesting new directions of anti-viral strategy development.

microbiology