Novus Life Sciences Limited’s cover photo
Novus Life Sciences Limited

Novus Life Sciences Limited

Biotechnology

Technologies for lives

About us

NOVUS Life Sciences Limited, founded in 2014 and headquartered in Hong Kong, is a global biomaterials R&D and manufacturing company specializing in medical-grade 3D printing materials and solutions for implants, surgical guides, dental applications, and regenerative medicine. With advanced manufacturing and technical capabilities in Hong Kong and Shenzhen, NOVUS develops and manufactures ISO 13485-certified polymer filaments, including PEEK, PLLA, PETG, PC, PMMA, as well as nano-composites and resorbable polymer composites engineered for hard- and soft-tissue regeneration. Our proprietary bioactive material, Bonlecule®, is designed to enhance biological performance in additively manufactured implants and regenerative applications. Beyond materials supply, NOVUS provides end-to-end technical and regulatory support, including material development, process validation, and medical 3D printing production line setup, enabling partners to translate advanced biomaterials into regulated, real-world clinical use. Today, NOVUS supports 150+ clients across 50+ countries, including hospitals, research institutes, manufacturers, and industry partners, working together to advance innovation in medical additive manufacturing and regenerative medicine. #Medical3DPrinting #Biomaterials #RegenerativeMedicine #NanoComposites #MedicalInnovation #NOVUSLifeSciences

Website
http://novusls.com
Industry
Biotechnology
Company size
11-50 employees
Headquarters
Sha Tin District
Type
Privately Held
Founded
2014
Specialties
Biotechnology, Research and Development, Medical 3D Printing, Medical Devices, 3D Printing, Implants, Veterinary Devices, Biomaterials, and Regenerative Medicine

Locations

  • Primary

    Shan Mei St

    Workshop D35-37, 4/F, Wah Lok Industrial Centre (Phase II)

    Sha Tin District, HK

    Get directions

Employees at Novus Life Sciences Limited

Updates

  • The most resorbable material in our lineup, Ossfila Medical PLLA is engineered to support, built to last exactly as long as healing takes. Unlike standard PLLA, our Medical PLLA is a pharmaceutical-grade polymer designed for safe degradation within the body. It's certified to USP 43 Class VI for biocompatibility and non-toxicity, and the raw material meets all ISO 10993 requirements for implantable medical devices. It is sterilizable by gamma radiation, e-beam, and ethylene oxide. It's naturally absorbed by the body over approximately 3 years, with no second surgery required for removal. With a flexural strength of 68 MPa and flexural modulus of 2.46 GPa, it closely resembles the mechanical behavior of native bone. Manufactured under strict diameter control at 1.75mm ± 0.05mm, PLLA is compatible with standard FFF machines and ships ready to print. From oral maxillofacial implants and cranioplasty to spinal interbody fusion cages, parietal bone, and radius, ulna, carpal, metacarpal, and phalangeal bone applications, Medical PLLA is built for the implants and scaffolds where the material itself is part of the healing process. Full product profile in the infographic. Reach out directly to discuss your application. #MedicalPLLA #PLLA3DPrinting #Medical3DPrinting #BioresorbableMaterial #Bioresorbable #NOVUSLifeSciences #MedTech #ISO13485 #MedicalDevices #Biomaterials #FDM3DPrinting #Cranioplasty #Orthopaedic #MedicalManufacturing

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  • Choosing a 3D printing filament for a clinical application comes down to one question: can it perform where it actually matters like under sterilization, under stress, under inspection? Ossfila Medical PETG is built for exactly that. Unlike standard PETG, it's certified to USP 43 Class VI for biocompatibility and non-toxicity, and sterilizable by gamma radiation, e-beam, and ethylene oxide, suitable for direct and indirect patient contact. It delivers a flexural strength of 51.7 MPa and flexural modulus of 1.67 GPa, with high toughness, impact resistance, and optical clarity built for demanding clinical environments. Manufactured under ISO 13485 certification with diameter held to 1.75mm ± 0.05mm, it's compatible with standard FFF machines and ships ready to print. Available in VITA shades A1, A2, A3, B1, C2, color-matched to natural dentition, and 3 gum-pink shades, as well as with custom colors available on request. From customized surgical guides and surgical instruments to dental crowns, prostheses, training models, and anatomical models, Medical PETG is trusted by 160+ clients across 60+ countries. Full product profile in the infographic. Reach out directly to discuss your application. #MedicalPETG #PETG3DPrinting #Medical3DPrinting #BiocompatibleFilament #DentalCrowns #NOVUSLifeSciences #MedTech #ISO13485 #MedicalDevices #Biomaterials #FDM3DPrinting #DigitalDentistry #SurgicalGuides #MedicalManufacturing

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  • In medical device manufacturing, structural integrity is not optional. It is the baseline. That is where Ossfila Medical Polycarbonate (PC) 3D Printer Filament earns its place. Polycarbonate (PC) is one of the most impact-resistant high-performance thermoplastics in medical 3D printing, valued for its exceptional rigidity, superior drillability, and ability to withstand aggressive sterilization cycles without deformation. Our Medical PC has a flexural strength of 86 MPa and a flexural modulus of 2.01 GPa, resistant to most chemicals, particularly acids, with outstanding impact resistance, polishability, and UV tolerance. It is biocompatible and non-toxic, certified to USP 43 Class VI, and sterilizable by gamma radiation, e-beam, autoclave, and ethylene oxide. At NOVUS Life Sciences, we manufacture medical-grade polycarbonate filament under ISO 13485 certification and ISO 14644 cleanroom conditions, with strict diameter control at 1.75mm ± 0.05mm, compatible with standard FFF machines, vacuum sealed with desiccants, and ready to print. From surgical instruments and surgical guides to microfluidic devices, body fluid containers, and medical device housings, Medical PC is the material for applications where strength and structural integrity cannot be compromised. Full product profile in the infographic. Reach out directly to discuss your application. #MedicalPC #Polycarbonate3DPrinting #Medical3DPrinting #BiocompatibleFilament #SurgicalInstruments #NOVUSLifeSciences #MedTech #ISO13485 #MedicalDevices #Biomaterials #FDM3DPrinting #HighPerformancePolymer #MedicalManufacturing #SurgicalGuides

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  • Clarity is not just a material property. In the right application, it is what makes the difference. That is where Ossfila Medical PMMA 3D Printer Filament earns its place. Polymethyl methacrylate (PMMA) is one of the most widely specified optically transparent materials in medical device manufacturing, valued for its glass-like clarity, high-gloss finish, and proven biocompatibility. Our PMMA has a flexural strength of 81.7 MPa and a flexural modulus of 2.12 GPa, with outstanding chemical resistance, particularly to acids, and the ability to outlast aggressive sterilization cycles. It is biocompatible and non-toxic, tested to ISO 10993-5, 7, 10, ISO 11737-2, and USP 43 Class VI, and sterilizable by gamma radiation, e-beam, and ethylene oxide. At NOVUS Life Sciences, we manufacture medical-grade PMMA filament with strict diameter control at 1.75 mm ± 0.05 mm, under ISO 13485 certification and ISO 14644 cleanroom conditions, compatible with standard FFF machines, vacuum sealed with desiccants, and ready to print. From surgical training models and anatomical replicas to microfluidic devices and body fluid containers, PMMA is the material for applications where optical clarity and precision are non-negotiable. Full product profile in the infographic. Reach out directly to discuss your application. #MedicalPMMA #PMMA3DPrinting #Medical3DPrinting #BiocompatibleFilament #SurgicalModels #NOVUSLifeSciences #MedTech #ISO13485 #MedicalDevices #Biomaterials #FDM3DPrinting #CranialReconstruction #TransparentFilament #MedicalManufacturing

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  • In medical device manufacturing, mechanical performance is not a preference. It is a requirement. That is where Ossfila® Medical PEEK 3D Printer Filament earns its place. Ossfila® Medical Polyetheretherketone (PEEK) is one of the most specified high-performance thermoplastics in medical 3D printing. It has a flexural strength of 151 MPa and a flexural modulus of 3.57 GPa which outperforms most polymers used in medical applications on pure mechanical terms. It is sterilizable by gamma radiation, e-beam, autoclave, and ethylene oxide, and it is biocompatible and non-toxic, tested to ISO 10993-5, 6, 10, and 23, and USP 43 Class VI. At NOVUS Life Sciences, we manufacture medical-grade PEEK filament under ISO 13485 certification and ISO 14644 cleanroom conditions, with strict diameter control at 1.75mm ± 0.05mm and unique device identification (UID) for full traceability. Compatible with all professional FFF machines, vacuum sealed with desiccants, and ready to print. From surgical tools, implants and spinal interbody fusion devices to cranioplasty and orthopaedic applications, PEEK is the material for procedures where mechanical performance is non-negotiable. Full product profile in the infographic. Reach out directly to discuss your application. #MedicalPEEK #PEEK3DPrinting #Medical3DPrinting #BiocompatibleFilament #SurgicalImplants #NOVUSLifeSciences #MedicalDevices #Biomaterials #SpinalFusion #Cranioplasty #ISO13485 #MedTech #FDM3DPrinting #HighPerformancePolymer

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  • Most bioactive materials in bone repair rely on coatings. A layer of hydroxyapatite applied to the surface of an implant after manufacturing. The problem with coatings is that they can delaminate, degrade unevenly, or lose effectiveness after sterilization. The question we kept returning to was: what if the bioactivity was built into the material itself, at the molecular level, rather than applied on top? That is the principle behind Bonlecule®, our PMMA-based bioactive 3D printing filament embedded with nano-hydroxyapatite particles of approximately 20nm, chemically bonded to copolymer nanoparticles within the polymer matrix. Unlike commercial filaments that mix nano-HA as a filler, Bonlecule®'s nano-HA is structurally integrated, which means more even distribution, more consistent biological performance, and a material that behaves differently at the cellular level. In vitro studies confirmed it. MC3T3-E1 osteoprogenitor cells cultured for 28 days in osteogenic medium showed significantly greater calcium deposition on Bonlecule® compared to standard PMMA, a direct marker of osteoconductivity and extracellular matrix mineralization. The material does not wait for the body to adapt to it. It actively facilitates the process. For labs and hospitals evaluating bioactive materials for 3D-printed implants like cranioplasty, spinal interbody fusion, and oral maxillofacial reconstruction, this distinction matters. A biocompatible material tolerates the body. A bioactive material works with it. Bonlecule® is the world's first bioactive FDM 3D printer filament. ISO 13485 certified. Sterilizable by gamma radiation, e-beam, and ethylene oxide. Compatible with standard FFF machines. Full product profile in the infographic. Reach out directly to discuss your application. #Bonlecule® #BioactiveFilament #Medical3DPrinting #Biomaterials #NOVUSLifeSciences #Osteoconductivity #RegenerativeMedicine #MedTech #ISO13485 #SurgicalImplants

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  • Medical PEEK is one of the most demanding materials to manufacture to clinical standards. It is also one of the most widely used high-performance polymers for medical applications. At NOVUS Life Sciences, we produce medical-grade PEEK filament under ISO 13485 certification and ISO 14644 cleanroom conditions, making high-quality materials accessible to labs, hospitals, and medical device manufacturers worldwide without the price barriers that have historically limited access. Follow Novus Life Sciences Limited for more on our full range of medical 3D printing filaments. #MedicalPEEK #Medical3DPrinting #NOVUSLifeSciences #Biomaterials #MedTech #PEEK

  • Our 2026 Summer Interns Have Arrived! 🧬 We're thrilled to welcome our newest batch of interns to the NOVUS Life Sciences family this summer. Joining us from universities across more than 10 countries, our interns will be working across R&D and Business Development & Marketing, contributing to projects that span biomaterials, medical 3D printing, product development, and commercial strategy, bringing fresh perspectives from around the world into our lab and our work. At NOVUS, we believe innovation happens when different perspectives come together. Working alongside our team on projects that genuinely move the needle, from the lab bench to the markets we serve. Please join us in welcoming our 2026 intern class. We can't wait to see what this summer brings. 🤝 #Internship2026 #NOVUSLifeSciences #MedicalDevices #Biomaterials #3DPrinting

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  • Novus Life Sciences Limited reposted this

    If you told me a year ago that I'd be mentoring students, serving in leadership positions, and spending my summer interning in Hong Kong, I probably wouldn't have believed you. Yet somehow, that's exactly where this year led me. A year ago, I was focused on academics. I went to class, studied, and worried about grades. While there is nothing wrong with that, I didn't realize how much I was missing by staying within my comfort zone. This year, I decided to start saying "yes." Yes to opportunities that scared me. Yes to positions I wasn't sure I was qualified for. Yes to meeting new people, joining organizations, and stepping into spaces where I didn't know anyone. And somewhere along the way, everything changed. Through MESA University Program - SJSU, Conference for Engineering - CED, BMES as well as many other communities, I found more than just extracurriculars. I found people who challenged me, supported me, and believed in me. I had the privilege of serving as a MESA Peer Advisor, working alongside amazing student leaders, mentoring others, and helping build communities that made campus feel a little more like home. There were moments when I felt overwhelmed. For the first time, I wasn't just balancing classes, I was balancing responsibilities, commitments, leadership roles, friendships, and opportunities. I had to learn how to manage my time, set priorities, and accept that I couldn't do everything. But looking back, those challenges became some of the most valuable lessons I learned this year. What I'm most grateful for isn't the positions or titles. It's the people. The coworkers who became friends. The mentors who offered guidance when I needed it most. The student leaders who inspired me to aim higher. The friends who celebrated my successes. Even my mentees, who helped me grow and reminded me why community matters. You all helped create an environment where I could grow into a more confident version of myself. This year taught me that growth rarely happens when you're comfortable. It happens when you take chances, put yourself out there, and trust that you'll figure things out along the way. As I look to next year, I'm excited to continue my journey as a Peer Mentor with Peer Connections, a member of CED Staff, and BMES Secretary. Before that, I'll be spending the summer in Hong Kong as a Research and Production Trainee at Novus Life Sciences Limited. An opportunity I never imagined when I first started college. To everyone who has been part of my journey this year, Thank You!!. Thank you for believing in me, teaching me, challenging me, and helping me become the person I am today. And to anyone reading this who's hesitant to put themselves out there: Join the club, apply for the position, attend the event, introduce yourself to someone new. You never know which opportunity, conversation, or community might change your life. Here's to growth, gratitude, and all the adventures still ahead. 💙 #Mentorship #Growth

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  • Novus Life Sciences Limited reposted this

    I’m excited to share that I have spent the last month interning at Novus Life Sciences Limited in Hong Kong! It has been an incredible learning experience so far. I’ve had the opportunity to dive deeper into biomedical and mechanical engineering by designing and validating medical-grade 3D-printed implants, developing bioactive filaments, and building automated production machinery. I’m deeply inspired by Novus’ push for advanced and affordable implant solutions, and by the relentless dedication of this team. I’m absolutely loving my time in Hong Kong, as well— a culturally rich, vibrant international hub that I’m excited to continue exploring over the next month and a half! Many thanks to the brilliant Wilson Wong and the rest of the team for the guidance and support. Looking forward to what the next few weeks bring! #3DPrinting #BiomedicalEngineering #MechanicalEngineering #MedTech #Biomaterials #HongKong #Internship

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