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Rivista di Letterature Moderne e Comparate Journal Specifications
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| Overview | |
| Publisher | Pacini Editore SpA |
| Language | Multi-Language |
| Frequency | Quarterly |
| General Details |
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Check my PaperRecently Published Papers in Rivista di Letterature Moderne e Comparate
Biomimetic adhesive hydrogel microcarriers for gas therapy and chemotherapy of gastric cancer.
- 1 Jul 2026
- Acta biomaterialia
Engineered microparticle morphology for enhanced intestinal retention in oral drug delivery.
- 1 Jul 2026
- Acta biomaterialia
A catalytic redox-cycling nanoreactor enables robust oxidative stress amplification for synergistic tumor apoptosis and ferroptosis.
- 1 Jul 2026
- Acta biomaterialia
Focused acoustic vortex-mediated targeted aggregation of engineered bacteria for in situ antibody production to enhance immunotherapy.
- 1 Jul 2026
- Acta biomaterialia
Degradation-controlled synchronization of HIF-2α and MEK inhibition using self-sealed porous silicon nanoparticles to reprogram tumor immunogenicity.
- 1 Jul 2026
- Acta biomaterialia
A high-performance, biodegradable Zn-3Cu-0.8Sr alloy with superior strength, biotribology, osteogenesis, and antibacterial activity for orthopedic fixation through deep-cryogenic rolling.
- 1 Jul 2026
- Acta biomaterialia
Biomimetic adhesive hydrogel microcarriers for gas therapy and chemotherapy of gastric cancer.
- 1 Jul 2026
- Acta biomaterialia
Engineered microparticle morphology for enhanced intestinal retention in oral drug delivery.
- 1 Jul 2026
- Acta biomaterialia
A catalytic redox-cycling nanoreactor enables robust oxidative stress amplification for synergistic tumor apoptosis and ferroptosis.
- 1 Jul 2026
- Acta biomaterialia
Focused acoustic vortex-mediated targeted aggregation of engineered bacteria for in situ antibody production to enhance immunotherapy.
- 1 Jul 2026
- Acta biomaterialia
Degradation-controlled synchronization of HIF-2α and MEK inhibition using self-sealed porous silicon nanoparticles to reprogram tumor immunogenicity.
- 1 Jul 2026
- Acta biomaterialia
A high-performance, biodegradable Zn-3Cu-0.8Sr alloy with superior strength, biotribology, osteogenesis, and antibacterial activity for orthopedic fixation through deep-cryogenic rolling.
- 1 Jul 2026
- Acta biomaterialia