Partnered with Kyoto University and backed by Nobel Prize-winning
innovation, we deliver personalized cell therapies
in China’s most advanced facility.
At Ruizhi International Medical Biological Products Laboratory, we provide a comprehensive array of advanced stem cell therapies designed to address complex medical needs. Each therapy is meticulously crafted to enhance regenerative capacity and improve quality of life through targeted treatments. Our core services include Induced Pluripotent Stem Cells (iPS Cells) for organ regeneration, Mesenchymal Stem Cells (MSCs) for inflammation reduction and tissue repair, Embryonic Stem Cells (ESCs) for high-differentiation applications, and Placental and Umbilical Cord Stem Cells for immune and blood-related health. With over 20 years of clinical experience and a dual backup system for cell storage, we combine top-tier technology and patient-focused care to provide secure, long-term solutions tailored to individual health goals.
Stem cells are a unique class of cells known for their remarkable ability to self-renew and differentiate into various specialized cell types. They serve as the foundational building blocks for the body’s tissues and organs, possessing the potential to repair, replace, and regenerate damaged cells. Originating from sources such as the umbilical cord, placenta, and adult tissues, stem cells are classified by their differentiation potential: totipotent, pluripotent, and unipotent. At Ruizhi, we leverage this transformative potential to provide regenerative treatments aimed at restoring health, improving immune function, and supporting the body’s natural healing processes.
At Ruizhi International Medical Biological Products Laboratory, we are dedicated to advancing regenerative medicine as China’s premier center for stem cell therapy and research. As the only iPS cell storage facility in China partnered with the esteemed Shinya Yamanaka team at Kyoto University—pioneers of Nobel-winning stem cell technology—we bring cutting-edge innovation directly to our patients.
With 20 years of clinical experience, over 60,000 cases successfully treated, and collaborations with 12 top Japanese universities, we leverage world-class expertise and advanced medical technology. Our state-of-the-art dual backup cell storage system ensures the highest level of safety and longevity for our patients’ cells, safeguarding them for future treatments.
Stem cell therapy offers promising solutions for individuals across a wide spectrum of health needs. Patients experiencing chronic diseases, autoimmune disorders, or degenerative conditions such as osteoarthritis, heart disease, and diabetes can often benefit from these therapies, which target and repair damaged tissues at the cellular level. Individuals with neurological disorders, like Parkinson’s disease and Alzheimer’s, or those recovering from injuries (such as sports injuries or burn wounds) may also experience improvements through specialized stem cell applications. Stem cell therapy’s regenerative capabilities make it a compelling choice for immune system support and anti-ageing treatments, providing cellular rejuvenation and potentially slowing down certain effects of ageing.
Induced Pluripotent Stem Cells (iPS Cells) are a transformative solution for regenerative medicine, created from your own skin or blood cells. Our exclusive partnership with the Kyoto University Shinya Yamanaka team allows us to harness Nobel-winning technology for groundbreaking therapies.
Applications – iPS cells have the unique ability to develop into nearly any cell type, making them ideal for:
No risk of immune rejection as the therapy uses your own cells.
iPS cells offer permanent relief by replacing damaged tissues rather than just managing symptoms.
Cells can be banked for future treatments, allowing access to cutting-edge therapies as they develop.
Content: Mesenchymal Stem Cells (MSCs) are powerful tools for repairing tissue damage and rejuvenating various body systems. MSCs are harvested from tissues such as bone marrow, fat, or the umbilical cord and have multi-directional differentiation abilities. They are primarily used to:
MSCs help your body regenerate and repair itself, leading to faster recovery and improved functionality.
MSCs can treat various conditions, from joint issues to heart disease, making them one of the most widely applicable stem cell therapies.
Treatments using MSCs often involve simple injections, offering a non-surgical option for tissue repair.
Embryonic stem cells (ESCs) are pluripotent cells derived from early-stage embryos. Their ability to differentiate into any cell type makes them incredibly valuable for research and therapeutic use. Embryonic stem cells are especially promising for:
No risk of immune rejection as the therapy uses your own cells.
With continuous advancements in stem cell research, embryonic stem cell therapies offer patients access to cutting-edge treatments for severe diseases.
Storing stem cells today ensures access to cutting-edge treatments tomorrow. Whether you opt for iPS cells, MSCs, or immune cells, our dual backup system guarantees the safe and secure preservation of your cells. Storing stem cells now means:
Stem cells stored now can be used for future medical breakthroughs, giving you a lifelong health advantage.
Our state-of-the-art facility, in partnership with Kyoto University, offers a dual backup system for ultimate safety and reliability.
Whether for regenerative therapies or disease treatment, your stored cells can be used to address a variety of future health needs.
Placental and umbilical cord stem cells are rich in hematopoietic stem cells, which are the building blocks for blood and immune cells. These cells are particularly beneficial in:
These stem cells are easily harvested at birth, with no harm to the mother or child.
Placental and umbilical cord stem cells are ideal for treating a wide range of immune and blood-related diseases
These cells have a unique ability to rapidly regenerate blood and immune cells, offering life-saving solutions for patients with blood cancers or immune disorders.