Showing posts with label aging. Show all posts
Showing posts with label aging. Show all posts

Friday, November 14, 2014

Immune System/Stem Cell Health and Aging

Looking, feeling and  performing your best depends on balanced immunity and stem cell vitality

As we age we encounter:
  • Slower healing
  • Longer recovery time from vigorous exercise
  • More general aches and pains
  • Longer recovery from illness
  • Wrinkled, dry and thinning skin
Why is that? What are the causes? Answers can be found by a better understanding of immune/inflammatory response and stem cell systems. As we age our immune system weakens or becomes dysregulated (autoimmunity) and our stem cell "bank balances" deplete. My friend and world class stem cell therapies expert, Dr. Neil Riordan, gives an excellent description of the process: Your Body’s Stem Cell Bank Account.

To oversimplify, the immune system is responsible for cleansing the body of pathogens, toxins, allergens and damaged tissues/cells. This creates a healthy environment for stem cells to repair and regenerate new, healthy cells and tissue. We call this process the immunoLinkTM.

immunoLink Therapies is a new company of mine slated to launch in the spring of 2015. Our goal is to slow the aging process by offering solutions that balance your immunity and increase your stem cell vitality. Our vanguard product (currently available) is Stem-Kine. It is a blood stem cell booster which increases the level of immune factors and red blood cells in your cardiovascular system. The result is faster healing/recovery and increased endurance via better oxygen delivery.

If you desire to learn more, do not hesitate to call (612-801-1007) or e-mail: pshuster@neuromics.com. Thank you. Pete Shuster

Wednesday, August 15, 2012

Mu Opioid Receptor, Aging and Immune Response

Mu Opioid Receptors (MOR) play an integral role in modulating perception of pain. Our Opioid Receptor and Opioid Neuropeptide Antibodies have been widely used and extensively published by Pain Researchers.

Here researchers determine a pivotal role of synaptic IGF-1R/Fyn signaling controlled by MOR downstream signaling cascades were crucial for the age-dependent neuroimmune modulation following traumatic stress: Hui Zhao, Xiaocong Zhao, Xiaoding Cao and Gencheng Wu. Age-Dependent Neuroimmune Modulation of IGF-1R in the Traumatic Mice. Immunity & Ageing 2012, 9:12 doi:10.1186/1742-4933-9-12.

Highlights: Fyn activity, as well as its molecular connection with IGF-1R was dependent on MOR, on account of that their coupling was obviously not able to be observed when lack of MOR, accordingly, there was not improvement from the immuno-suppression mediated by traumatic stress in MOR (−/−) mice. Likewise, there was not remarkable change in MOR expression, as well as the association of MOR with IGF-1R or Fyn in the synaptic zone. Then, it is plausible that a characteristic feature of IGF-1R was probably due to age-dependent Fyn activation that was triggered by MOR signaling cascades, this specialized process was mainly concentrated within synaptic zone and might contribute to the recovery from traumatic stress mediated immuno-suppression.

Images: MOR expression during traumatic stress. 2-month and 1-year mice were killed 1 and 3 days after traumatic stress (n = 5 for each group), synaptoneurosome from frontal cortex was prepared, Western blot analysis was used to detect MOR expression (A). Immunoprecipitation was used to analyze alterations of MOR and IGF-1R/Fyn interaction. The immunoprecipitation antibody was anti-Fyn (B) or anti-IGF-1R (D) and the immunoblotting antibody was anti-MOR. Panel C and E depict quantitative analysis of B and D respectively. Data are presented as percentage of control, values represent mean ± SD for 3 independent experiments. Con: control; T3: 3 days after trauma.

I will continue to post new applications for our MOR antibodies.