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In Vivo Protein Generation Using Nanoparticle Delivery: Emerging Platforms and CMC Strategies
Tao (Tony) Li, PhD
Senior Director, Head of mRNA & Nanoparticle Platform
WuXi Biologics
Panelist
Tao (Tony) Li, PhD
Tao Li, PhD, is a results-driven senior director at WuXi Biologics who leads the design, scale-up, and commercialization of integrated mRNA and nanoparticle (NP) platforms—delivering end-to-end solutions from DNA synthesis to IND-enabling studies. He directs innovations in synthetic DNA, mRNA and targeted LNP technologies and partners across CMC, analytical/QC, and regulatory functions to accelerate clinical translation and ensure manufacturing and testing readiness.
Previously he set corporate R&D strategy at BCF, aligning product specifications with U.S., EU, and Asian regulations. At the U.S. FDA he specialized in analytical testing, lab automation, quality systems, audits, and training, standardizing workflows that strengthened compliance. Earlier roles include building LC–MS/MS testing programs, achieving >$150K in annual operational savings, expanding Asian market share by 50%, and conducting research on peptide conjugated PEGylated liposomes and bioinformatics. He holds a PhD from University of California, Davis in chemical engineering with designated emphasis in biotechnology.
- Time:
In vivo protein generation using nanoparticle delivery has evolved from vaccine applications into protein replacement, immunotherapy, and gene editing. Lipid nanoparticles (LNPs) and other nanocarriers remain the platform of choice for protecting cargo, enhancing cellular uptake, and facilitating endosomal escape. Scaling across oncology, infectious diseases, and genetic disorders demands progress on mRNA/DNA design, nanoparticle delivery, manufacturability, CMC strategy, cost, timeline, and speed. In this GEN webinar, our expert speaker, Tao (Tony) Li, PhD, will discuss nanoparticle delivery opportunities beyond oncology and infectious disease, compare emerging nanocarrier platforms, and examine important CMC considerations critical for progressing from research through IND. He will also present a case study on decorated mRNA/LNP for in vivo CAR T, from R&D gap evaluation and process development to full GMP manufacturing. Key takeaways from the webinar include:
- A deeper understanding of the landscape beyond vaccine and oncology applications
- How emerging platforms compare including their advantages, limitations, and development considerations
- Key CMC challenges from research through IND including manufacturing, analytical characterization, and quality attributes
- Strategic insights for future directions derived from fundamental questions
A live Q&A will follow the presentation offering you a chance to pose questions to our expert panelist.
Produced with support from:
The post <i>In Vivo</i> Protein Generation Using Nanoparticle Delivery: Emerging Platforms and CMC Strategies appeared first on GEN – Genetic Engineering and Biotechnology News.
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New webinar: Tackling drug discovery challenges in cancer research

Hosted by Drug Discovery World and supported by Sartorius and BioIVT, this webinar will explore the opportunities and challenges that exist within cancer research drug discovery and development.
You will hear from Dr Sudha Rao, Chief Scientific Officer of Kazia Therapeutics, Karol Budzik, PhD, Business Development Associate at Vyriad Therapeutics and Lars van der Veen, Chief Scientific Officer at iOnctura.
Presentations will cover how cancer treatments have shifted towards reprogramming the biology driving tumour growth, immune escape and treatment resistance, the trajectory that in vivo CAR-T treatments are taking, and how challenging tumours burdened by stroma and immune-mediated resistance can be tackled.
Q&A with the speakers follows the presentations.
The post New webinar: Tackling drug discovery challenges in cancer research appeared first on Drug Discovery World (DDW).
Uncategorized
Psilocybin proves promising in neuropathic pain mouse study
Amid the rise of psychedelics in the mental health space, researchers have begun to explore psilocybin as a treatment for chemotherapy-induced peripheral neuropathy.
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New Spectrometry Technique Could Aid Formulation Development
New Spectrometry Technique Could Aid Formulation Development
A new technique combining two forms of spectrometry could help biopharmaceutical companies improve their choice of formulation buffer for antibody manufacturing by revealing how molecular forms and three-dimensional shapes of complex biologics respond to their environment. That’s the view of Christian Bleiholder, PhD, a professor at Florida State University who helped develop the technique.
According to Bleiholder, what happens structurally when a complex biological molecule, such as an antibody or viral spike protein, binds to its target is currently poorly understood.
“This is where [this approach] can help with the bioprocessing and formulation,” he says, as structural changes “can affect the lifespan [of the product] and lead to issues, such as aggregation.”
Because antibodies are complex, existing techniques tend to be powerful at different levels of complexity, he explains. Mass spectrometry is particularly powerful for distinguishing molecular composition, while structural approaches such as X-ray crystallography and cryo-electron microscopy can provide high-resolution structural information.
The challenge is understanding the link between these things within a heterogeneous sample, he says.
To overcome this, Bleiholder and his team worked with Bruker Daltonics to develop Tandem-Trapped Ion Mobility Spectrometry (Tandem-TIMS). This combines tandem ion mobility spectrometry with tandem mass spectrometry to disentangle three overlapping layers of molecular complexity: molecular form, three-dimensional shape, and binding or assembly state, he says.
He explains that, if the proteins have different structures, they can be characterized with tandem ion mobility spectrometry, and then mass spectrometry can be used to look at their molecular forms and binding states.
Going forward, Bleiholder hopes the technique can be used for formulation development but also earlier, during drug discovery of new products, such as multi-specific antibodies, to determine which molecular states are important and how those change when a biologic engages its target. He also plans to look at automating the technique.
Bleiholder spoke about using Tandem-TIMS at the Bioprocessing Summit in Boston earlier this year.
The post New Spectrometry Technique Could Aid Formulation Development appeared first on GEN – Genetic Engineering and Biotechnology News.
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