CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Regenerative Actions

  • Can yoga therapy stimulate stem cell trafficking from bone marrow? 📎

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    Abstract Title:

    Can yoga therapy stimulate stem cell trafficking from bone marrow?

    Abstract Source:

    J Ayurveda Integr Med. 2016 Jul - Sep;7(3):181-184. Epub 2016 Sep 17. PMID: 27649634

    Abstract Author(s):

    Nitya Shree, Ramesh R Bhonde

    Article Affiliation:

    Nitya Shree

    Abstract:

    It has been established that mesenchymal stromal cells (MSCs) from bone marrow enter the peripheral circulation intermittently for possible tissue regeneration, repair and to take care of daily wear and tear. This is evident from the detection of MSCs from peripheral blood. The factors governing this migration remain elusive. These MSCs carry out the work of policing and are supposed to repair the injured tissues. Thus, these cells help in maintaining the tissue and organ homeostasis. Yoga and pranayama originated in India and is now being practiced all over the world for positive health. So far, the chemical stimulation of bone marrow has been widely used employing injection of colony stimulating factor. However, the role of physical factors such as mechanical stimulation and stretching has not been substantiated. It is claimed that practicing yoga delays senescence, improves the physiological functions of heart and lung and yoga postures make the body elastic. It remains to be seen whether the yoga therapy promotes trafficking of the stem cells from bone marrow for possible repair and regeneration of worn out and degenerating tissues. We cover in this short review, mainly the role of physical factors especially the yoga therapy on stem cells trafficking from bone marrow.

  • Can yoga therapy stimulate stem cell trafficking from bone marrow? 📎

    facebook Share on Facebook
    Abstract Title:

    Can yoga therapy stimulate stem cell trafficking from bone marrow?

    Abstract Source:

    J Ayurveda Integr Med. 2016 Jul - Sep;7(3):181-184. Epub 2016 Sep 17. PMID: 27649634

    Abstract Author(s):

    Nitya Shree, Ramesh R Bhonde

    Article Affiliation:

    Nitya Shree

    Abstract:

    It has been established that mesenchymal stromal cells (MSCs) from bone marrow enter the peripheral circulation intermittently for possible tissue regeneration, repair and to take care of daily wear and tear. This is evident from the detection of MSCs from peripheral blood. The factors governing this migration remain elusive. These MSCs carry out the work of policing and are supposed to repair the injured tissues. Thus, these cells help in maintaining the tissue and organ homeostasis. Yoga and pranayama originated in India and is now being practiced all over the world for positive health. So far, the chemical stimulation of bone marrow has been widely used employing injection of colony stimulating factor. However, the role of physical factors such as mechanical stimulation and stretching has not been substantiated. It is claimed that practicing yoga delays senescence, improves the physiological functions of heart and lung and yoga postures make the body elastic. It remains to be seen whether the yoga therapy promotes trafficking of the stem cells from bone marrow for possible repair and regeneration of worn out and degenerating tissues. We cover in this short review, mainly the role of physical factors especially the yoga therapy on stem cells trafficking from bone marrow.

  • Electro-acupuncture promotes survival, differentiation of the bone marrow mesenchymal stem cells as well as functional recovery in the spinal cord-transected rats. 📎

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    Abstract Title:

    Electro-acupuncture promotes survival, differentiation of the bone marrow mesenchymal stem cells as well as functional recovery in the spinal cord-transected rats.

    Abstract Source:

    BMC Neurosci. 2009;10:35. Epub 2009 Apr 20. PMID: 19374777

    Abstract Author(s):

    Ying Ding, Qing Yan, Jing-Wen Ruan, Yan-Qing Zhang, Wen-Jie Li, Yu-Jiao Zhang, Yan Li, Hongxin Dong, Yuan-Shan Zeng

    Abstract:

    BACKGROUND: Bone marrow mesenchymal stem cells (MSCs) are one of the potential tools for treatment of the spinal cord injury; however, the survival and differentiation of MSCs in an injured spinal cord still need to be improved. In the present study, we investigated whether Governor Vessel electro-acupuncture (EA) could efficiently promote bone marrow mesenchymal stem cells (MSCs) survival and differentiation, axonal regeneration and finally, functional recovery in the transected spinal cord. RESULTS: The spinal cords of adult Sprague-Dawley (SD) rats were completely transected at T10, five experimental groups were performed: 1. sham operated control (Sham-control); 2. operated control (Op-control); 3. electro-acupuncture treatment (EA); 4. MSCs transplantation (MSCs); and 5. MSCs transplantation combined with electro-acupuncture (MSCs+EA). After 2-8 weeks of MSCs transplantation plus EA treatment, we found that the neurotrophin-3 (NT-3), cAMP level, the differentiation of MSCs, the 5-HT positive and CGRP positive nerve fibers in the lesion site and nearby tissue of injured spinal cord were significantly increased in the MSCs+EA group as compared to the group of the MSCs transplantation or the EA treated alone. Furthermore, behavioral test and spinal cord evoked potentials detection demonstrated a significantly functional recovery in the MSCs +EA group. CONCLUSION: These results suggest that EA treatment may promote grafted MSCs survival and differentiation; MSCs transplantation combined with EA treatment could promote axonal regeneration and partial locomotor functional recovery in the transected spinal cord in rats and indicate a promising avenue of treatment of spinal cord injury.

  • Mediterranean diet reduces endothelial damage and improves the regenerative capacity of endothelium📎

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    Abstract Title:

    Mediterranean diet reduces endothelial damage and improves the regenerative capacity of endothelium.

    Abstract Source:

    Am J Clin Nutr. 2011 Feb;93(2):267-74. Epub 2010 Dec 1. PMID: 21123460

    Abstract Author(s):

    Carmen Marin, Rafael Ramirez, Javier Delgado-Lista, Elena Maria Yubero-Serrano, Pablo Perez-Martinez, Julia Carracedo, Antonio Garcia-Rios, Fernando Rodriguez, Francisco Miguel Gutierrez-Mariscal, Purificación Gomez, Francisco Perez-Jimenez, Jose Lopez-Miranda

    Article Affiliation:

    Lipids and Atherosclerosis Unit, IMIBIC/Reina Sofía University Hospital, University of Cordoba, Córdoba, Spain.

    Abstract:

    BACKGROUND:Endothelial dysfunction is a fundamental step in the atherosclerotic disease process. Activation or injury of the endothelium leads to a variety of inflammatory disorders, including the release of microparticles. Endothelial progenitor cells may contribute to the maintenance of the endothelium by replacing injured mature endothelial cells.

    OBJECTIVE:We studied the influence of dietary fat on the release of endothelial microparticles (EMPs) and endothelial progenitor cells (EPCs) in elderly subjects.

    DESIGN:Twenty healthy, elderly subjects (10 men and 10 women) consumed 3 diets following a randomized crossover design, each for 4 wk: a saturated fatty acid diet; a low-fat, high-carbohydrate diet; and a Mediterranean diet (MedDiet) enriched in monounsaturated fatty acids. We investigated total microparticles, EMPs from activated endothelial cells (activated EMPs), EMPs from apoptotic endothelial cells (apoptotic EMPs), EPCs, oxidative stress variables, and ischemic reactive hyperemia (IRH).

    RESULTS:The MedDiet led to lower total microparticle, activated EMP, and apoptotic EMP concentrations and higher EPC numbers than did the other diets (P<0.001). We detected lower superoxide dismutase activity (P<0.001), a higher plasmaβ-carotene concentration (P<0.001), and lower urinary isoprostane and plasma nitrotyrosine concentrations after consumption of the MedDiet than after consumption of the other 2 diets (P<0.05). Furthermore, the occurrence of IRH was higher after consumption of the MedDiet than after consumption of the other 2 diets (P<0.05).

    CONCLUSION:Consumption of the MedDiet induces a reduction in endothelial damage and dysfunction, which is associated with an improvement in the regenerative capacity of the endothelium, in comparison with 2 other diets.

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