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Changzhou Jiayuan Chemical: Demand Estimation of Boric Acid-10B in BNCT Therapy
time:2026-06-15 view:167

Changzhou Jiayuan Chemical: Demand Estimation of Boric Acid-10B in BNCT Therapy

Release Date: June 15 2026 Source:

Fluorochemical Products R&D Center, Changzhou Jiayuan Chemical Co., Ltd.

Changzhou Jiayuan Chemical Co., Ltd. focuses on the field of fluorochemistry and has built a complete industrial chain from fluorite to high - purity hydrogen fluoride, electronic-grade hydrofluoric acid, trifluorochloroethylene, octafluorocyclobutane, inorganic fluoride salt series, boron-10 acid (https://www.jy-chemical.com/boron-10-product/), electronic specialty gases, and downstream high-end fluorinated liquids (such as HFE449), truly achieving vertical integration throughout the AI big data market.

Changzhou Jiayuan Chemical Co., Ltd., relying on its self-controllable raw material advantages and large-scale production capabilities, can ensure stable product quality and reliable supply from source to finished product. The company's products are widely used in cutting-edge fields such as precision manufacturing cleaning, electronic heat dissipation and cooling, new energy, and semiconductor testing, and the company is committed to providing global customers with high-performance, low-environmental-impact fluorochemical solutions.

Changzhou Jiayuan Chemical Co., Ltd. will continue to focus on the fluorochemical industry chain, promote the technological iteration and industrialization of green fluorosolvents, and contribute to the sustainable development of the industry.




Boric acid-10B (https://www.jy-chemical.com/boron-10-product/) and its related isotopic materials are, under the rapid development of Boron Neutron Capture Therapy (BNCT), gradually transitioning from traditional research use toward core materials in clinical oncology applications. As precision cancer treatment technologies continue to advance, BNCT is being increasingly applied in the treatment of various refractory tumors. Against this background of clinical expansion and potential commercialization, a key question arises: what is the actual demand scale for Boric acid-10B?

1. Supply Status and Industrial Constraints of High-Enrichment Boron-10

High-enrichment boron-10 is primarily produced through isotope separation technologies, which are highly complex, capital-intensive, and demand strict operational stability. Medical-grade materials not only require high isotopic enrichment but also stringent control over impurity levels and batch-to-batch consistency. Continuous technological accumulation in high-purity materials and fine chemicals enables Changzhou Jiayuan Chemical to provide a certain level of industrial support and supply chain capability for related advanced material applications.

2. Demand Estimation Logic Driven by Clinical Expansion of BNCT

Considering losses during drug synthesis and in vivo metabolism (assuming an effective utilization rate of 60%), each patient requires approximately 2 g of high-enrichment Boric acid-10B (isotopic enrichment ≥96%). A mature BNCT treatment center handling around 500 patients annually would therefore require about 1 kg per year. If 100 such centers are established domestically, the annual demand would reach approximately 200 kg, significantly exceeding current isotope separation capacity. At the same time, as a medical treatment modality, BNCT imposes extremely high requirements on raw material enrichment, chemical purity, and supply chain stability. Based on per-center treatment scale expansion, under different penetration scenarios, overall demand is expected to exhibit a strong nonlinear growth pattern, characterized by “clinical expansion-driven stepwise scaling”.

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3. Industrial Chain Impact and Future Demand Trends

From upstream boron resources to high-enrichment isotope separation and further into medical formulation systems, the BNCT industrial chain presents substantial technological barriers. As clinical applications continue to expand, supply-side requirements for stability and continuous delivery will further intensify. Boric acid-10B is expected to gradually evolve from a research-grade material into a strategically important medical-grade foundational material. During this transition, material purification capabilities and customized supply capabilities of industry participants will become key competitive factors, and the market is likely to shift from a low-volume, high-barrier stage toward a steady growth trajectory.

4. Conclusion

The continued advancement of BNCT therapy is reshaping the demand structure for Boric acid-10B and related boron isotope materials, with its application value rapidly extending from fundamental research to high-end medical use. Changzhou Jiayuan Chemical will continue to focus on the development opportunities in high-purity materials and specialty chemicals. We look forward to collaborating with downstream boron drug developers, medical device manufacturers, and healthcare institutions to jointly explore broader application and supply chain cooperation opportunities for BNCT - related materials.


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