The human body strives to maintain a constant state of homeostasis in order to remain healthy. When tissue and cells within the body become damaged, stem cells act quickly to target the damaged area and initiate repair. Stem cells are the incredible cells from which all other cells with specialized functions in the human body are generated. They are undifferentiated cells that have the capacity to duplicate indefinitely and change into various cell types depending on the body’s need1,5.
1M+
Patients Treated Globally
Over 1 million patients worldwide have benefited from stem cell therapy, showcasing its transformative impact.
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Countless Conditions Treated
Stem cell therapy has shown promise in effectively treating countless conditions, offering new hope to many.
15
Biological Age of Stem Cells
Our stem cells have a biological age of 15 years, ensuring they remain vibrant, youthful, and highly effective in treatments.
3 Days
Rapid Health Improvement
After a 3-day treatment, most patients report significant improvements in their overall health and well-being.
Umbilical Cord Lining Stem Cells
Mesenchymal stem cells (MSCs) can be derived from various sources, including bone marrow, adipose tissue, and placenta. Our research focuses on isolating and cultivating umbilical cord lining stem cells (ULSCs) using a proprietary method. These allogeneic cells, sourced from umbilical cord lining tissue, are the youngest and most vibrant MSCs available. Unlike adult stem cells, which may carry diseases, ULSCs are scientifically proven to be more potent, efficient, and free from age-related risks.
Immune Modulation for Healing
Each type of specialized cell has unique characteristic shapes, structures, and functions depending on their function and location. Studies have shown that stem cells can obtain signals and cues from distressed cells throughout the body, then use these signals to differentiate depending on which area of the body needs repair. Additionally, stem cells can also control the immune system (immune modulation) and increase blood flow (angiogenesis) to help heal and repair the entire system4,5.
Power of Stem Cells and Their Unique Abilities
Umbilical Cord Stem Lining Cells
A Breakthrough for Patient Healing
A Breakthrough for Patient Healing



Each time our cells divide, our telomeres become shorter. As we age, cells start to have ‘critically short telomeres’, and at some point, cells stop dividing altogether and become senescent. Cells produce telomerase to stop shortening of telomeres. As seen in the graphs, ULSCs have much higher telomere length and much higher telomerase activity than adipose and bone marrow SC. This data suggests at a cellular level how youthful ULSCs are.
- Gonzalez et al. Stem Cells Targeting Inflammation as Potential Anti-aging Strategies and Therapies. Cell & Tissue Transplantation & Therapy 2015:7 1–8 doi:10.4137/CTTT.S19477.
- Gonzalez R, Griparic L, Umana M, et al. An Efficient Approach to Isolation and Characterization of Pre- and Postnatal Umbilical Cord Lining Stem Cells for Clinical Applications. Cell Transplantation. 2010;19(11):1439-1449. doi:10.3727/096368910X514260
- Wang D, Zhang H, Cao M, Tang Y, Liang J, Feng X, Wang H, Hua B, Liu B, Sun L. Efficacy of allogeneic mesenchymal stem cell transplantation in patients with drug-resistant polymyositis and dermatomyositis. Ann Rheum Dis. 2011 Jul;70(7):1285-8. doi: 10.1136/ard.2010.141804. PMID: 21622775.
- Cao N, Liao T, Liu J, Fan Z, Zeng Q, Zhou J, Pei H, Xi J, He L, Chen L, Nan X, Jia Y, Yue W, Pei X. Clinical-grade human umbilical cord-derived mesenchymal stem cells reverse cognitive aging via improving synaptic plasticity and endogenous neurogenesis. Cell Death Dis. 2017 Aug 10;8(8):e2996. doi: 10.1038/cddis.2017.316. PMID: 28796260; PMCID: PMC5596535.
- El Omar R, Beroud J, Stoltz JF, Menu P, Velot E, Decot V. Umbilical cord mesenchymal stem cells: the new gold standard for mesenchymal stem cell-based therapies? Tissue Eng Part B Rev. 2014 Oct;20(5):523-44. doi: 10.1089/ten.TEB.2013.0664. Epub 2014 Apr 22. PMID: 24552279.