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Stem
cells have the remarkable potential to develop into many
different cell types in the body. Serving as a sort of
repair system for the body, they can theoretically divide
without limit to replenish other cells as long as the person
or animal is still alive. When a stem cell divides, each
new cell has the potential to either remain a stem cell
or become another type of cell with a more specialized
function, such as a muscle cell, a red blood cell, or a
brain cell.
Stem cells are cells found in all multi-cellular organisms.
They retain the ability to renew themselves through mitotic
cell division and can differentiate into a diverse range
of specialized cell types. Research in the stem cell field
grew out of findings by Canadian scientists Ernest A. McCulloch
and James E. Till in the 1960s
Stem cell research has been hailed for the potential to
revolutionize the future of medicine with the ability to
regenerate damaged and diseased organs. On the other hand,
stem cell research has been highly controversial due to
the ethical issues concerned with the culture and use of
stem cells derived from human embryos. This article presents
an overview of what stem cells are, what roles they play
in normal processes such as development and cancer, and
how stem cells could have the potential to treat incurable
diseases.
Stem cell research has been hailed for the potential
to revolutionize the future of medicine with the ability
to regenerate damaged and diseased organs. On the other
hand, stem cell research has been highly controversial
due to the ethical issues concerned with the culture and
use of stem cells derived from human embryos. This article
presents an overview of what stem cells are, what roles
they play in normal processes such as development and cancer,
and how stem cells could have the potential to treat incurable
diseases.
In addition to offering unprecedented hope in treating
many debilitating diseases, stem cells have advanced our
understanding of basic biological processes.
Three processes in which stem cells play a central role
in an organism, development, repair of damaged tissue,
and cancer resulting from stem cell division going awry.
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Research and clinical applications of cultured
stem cells: this includes the types of stem cells used,
their characteristics, and the uses of stem cells in studying
biological processes, drug development and stem cell therapy;
heart disease, diabetes and Parkinson's disease are used
as examples.
During development, stem cells divide and produce more
specialized cells. Stem cells are also present in the adult
in far lesser numbers. The role of adult stem cells (also
called somatic stem cells) is believed to be replacement
of damaged and injured tissue. Observed in continually-replenished
cells such as blood cells and skin cells, stem cells have
recently been found in other tissue, such as neural tissue.
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Organ regeneration has long been believed to be through
organ-specific and tissue-specific stem cells. Hematopoietic
stem cells were believed to replenish blood cells, stem
cells of the gut to replace cells of the gut and so on.
Recently, using cell lineage tracking, stem cells from
one organ have been discovered that divide to form cells
of another organ. Hematopoietic stem cells can give rise
to liver, brain and kidney cells. This plasticity of adult
stem cells has been observed not only under experimental
conditions, but also in people who have received bone marrow
transplants.
For wound healing in the skin, epidermal stem cells and
bone-marrow progenitor cells both contribute.6 Thus it
is likely that organ-specific progenitors and hematopoietic
stem cells are involved in repair, even for other organ
repair.
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Bill Lohmeyer • I'm sixty-seven years
old and have Type II diabetes. I suffer from neuropathy
and had difficulty sleeping at night because of
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I have also had problems keeping my blood sugar
stable. I tried to keep it down with prescription
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as high as 325.
My blood pressure was over 200 and my kidneys
tested at number 9, when they should be 1.5 or
1.8. My doctor thought I might end up on dialysis.
Also, I've been blind for the past six years. The
doctors say that my optic nerves are dead. They
think that the chemicals I used while crop spraying
my farm caused my blindness. I felt hopeless until
I heard about stem cell nutrition.
After taking it for sixty days, I went back
to the doctor. My test results were unbelievable!
My blood pressure had fallen to 110/70, and my
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medication, and today my blood sugar is normal
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My neuropathy is 75 percent improved. Because
of my blindness, I had to use a large pencil to
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My doctor wrote to tell me that my hemoglobin
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Because of stem cell nutrition, I now have hope
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What are stem
cell enhancers?
Recent scientific developments have revealed that stem
cells derived from the bone marrow, travel throughout the
body, and act to support optimal organ and tissue function.
Stem cell enhancers are products that support the natural
role of adult stem cells.
As you age, the number and quality of stem cells that
circulate in your body gradually decrease, leaving your
body more susceptible to injury and other age-related health
challenges.
Just as antioxidants are important to protect your cells
from “free radical” damage, stem cell enhancement
is equally important to support your stem cells in maintaining
proper organ and tissue functioning in your body.
When you take two capsules, the ingredients help to support
the release of stem cells from the bone marrow into the
bloodstream. Through a natural process, those stem cells
then travel to areas of the body where they are most needed.
How does StemEnhance™ affect the immune system
1. StemEnhance contains a polysaccharide fraction that
was shown to stimulate the migration of Natural Killer
(NK) cells out of the blood into tissues. The same polysaccharide
fraction was also shown to strongly stimulate the activation
of NK cells. NK cells play the very important role in
the body of identifying aberrant or defective cells and
eliminating them. NK cells are especially known for their
ability to detect and destroy virally infected cells
and cells undergoing uncontrolled cellular division.
Marjorie L. S., New Mexico:
If you met Marjorie, you would never guess that she's
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vision (extreme astigmatism and extreme presbyopia)
that made wearing thick glasses mandatory. "During
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and I was shocked that I could see the license
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I would not have been able to see the cars from
that distance, I am so nearsighted. Since then
I have noticed continual improvement in my vision.
I check myself daily, and every day I am seeing
better and better!" More
2. The same polysaccharide fraction was also shown to
stimulate macrophage activity. Macrophages constitute the
front line of the immune system. They first detect an infection
or the presence of bacteria or virally infected cells,
and they then call for a full immune response. They call
for backup!
3. The immune system is the main producer of free radicals
and inflammation in the body. Therefore, the fact of “stimulating” the
immune system carries the possibility of increasing oxidative
stress and inflammation in the body. The effect of AFA
consumption of the ability of neutrophils to produce free
radicals was tested. To our surprise, consumption of AFA
actually slightly reduced the ability neutrophils to produced
free radicals.
4. StemEnhance contains a significant concentration of
phycocyanin, the blue pigment in AFA. Phycocyanin has strong
anti-inflammatory properties and therefore can assist the
immune system.
5. StemEnhance also contains chlorophyll, which is well
known for its blood purifying properties.
StemEnhance™ support several aspects of immune function
while reducing the production of free radicals. As such,
StemEnhance™ is not so much an “immune stimulant” as
an “immune balancer.”
What are stem cells?
Stem cells can be thought of as “master” cells.
You’ve probably heard about the controversy of embryonic
stem cells in the news. Stem cells are found in human embryos,
but are also found in adult tissue.
Adult stem cells are most abundantly found in bone marrow.
Stem cells circulate and function to replace dysfunctional
cells, thus fulfilling the natural process of maintaining
optimal health.StemEnhance supports the release of adult
stem cells from bone marrow into circulation.
The recent advances in stem cell research were listed
as one of the most significant health-related stories in
the past 25 years by CNN, second only to the complete mapping
of the human genome.
Yes. Several clinical studies have been conducted
on the product, in addition to several in-vitro trials.
Where is it available?
StemEnhance is only available through its independent
distributors. The formulation is patented and is the first
of its kind on the market.
Why the StemEnhance Product?
Effectiveness of StemEnhance was demonstrated in a triple-blind
study.Volunteers rested for one hour before establishing
baseline levels. After the first blood samples, volunteers
were given StemEnhance™ or placebo. Thereafter, blood
samples were taken at 30, 60 and 120 minutes after taking
the consumables. The number of circulating stem cells was
quantified by analyzing the blood samples using Fluorescence-Activated
Cell Sorting (FACS). Consumption of StemEnhance™ triggered
a significant 25-30% increase in the number of circulating
stem cells.
Few quarrel with predictions of the awesome potential
that stem cell research holds. One day, scientists say,
stem cells may be used to replace or repair damaged cells,
and have the potential to drastically change the treatment
of conditions like cancer, Alzheimer's and Parkinson's
disease and even paralysis.
Reported
Benefits Of StemEnhance
The benefits of the increased amount of adult stem cells
in your body assisted by Stem Enhance are going to be different
for everyone based on the needs of your own body. Weither
you suffer from joint pain, need assistance in healing
wounds, or suffer from respatory problems, StemEnhance
can help. Take a look at some of the comments below. These
were taken from medical articles, papers, and publications:
• Stem cells can form cartilage and bone - Science
(the world's leading journal of original scientific research)
284, 143-47; 2 Apr 1999
•
Bone marrow stem cells can form liver, skin and digestive
tract cells - New England Journal of Medicine 346, 738-746,
7 Mar 2002
•
Bone marrow stem cells can participate in cutaneous healing,
contributing to wound healing - Journal of Cellular Physiology
196, 245-250; 2003
•
Stem cells participate in the generation of new neurons
within the human brain - Proceedings of the National Academy
of Sciences USA 100, 1364-1369; 4 Feb 2003
•
Mobilized stem cells have also been used in renewal of
cardiac tissue - Journal of Clinical Investigation 107,
1395-1402; Jun 2001
•
Bone marrow stem cells have also shown the ability to participate
in renewal of retinal tissues - Nature Medicine 8, 1004-1010;
Sep 2002
•
Bone marrow stem cells can participate in cutaneous healing,
contributing to wound healing - Journal of Cellular Physiology
196, 245-250; 2003
Wait, there's even more benefits:
• Stem cells participate in the generation of new
neurons within the human brain - Proceedings of the National
Academy of Sciences USA 100, 1364-1369; 4 Feb 2003
•
Bone marrow stem cells have also shown the ability to participate
in renewal of retinal tissues - Nature Medicine 8, 1004-1010;
Sep 2002
•
Stem cell patients showed significant improvements in nerve
conduction velocities, and showed maintenance or slight
improvement in bone mineral density - Bone Marrow Transplant
215-222; Aug 2002, published by the NIH
•
Bone marrow derived stem cells have also been shown capable
of renewing muscle tissue - Science 279, 1528-1530; Mar
6, 1998
•
Bone marrow stem cells can participate in restoring kidney
tissue - Journal of the American Society of Nephrology
14, S48-S54; 2003
•
Repopulation of liver cells from bone marrow stem cells
could take place in humans - Nature 406, 257; 20 July 2000
•
Bone marrow derived stem cells have also demonstrated the
ability to induce renewal of the pancreas - Bone Marrow
Transplant 215-222; Aug 2002
•
Bone marrow derived stem cells can renew cardiac tissue
and improve cardiac performance in humans - Nature Medicine
7, 430-436; April 2001 and many more
•
Stem cells can home to lung tissue, then participate in
renewal of lung tissue and reduction of inflammation -
Proceedings of the National Academy of Sciences USA 100:
8407-8411; 8 July 2003
•
Bone marrow derived stem cells have been shown to contribute
to renewal of gastrointestinal tissue in human patients
- Archives of Dermatology 137, 1071-1072; Aug 2001
As you can see by the number of noticeable results stated
in these articles, papers and medical publications, Adult
Stem Cells have the ability to become any part of the body.
People have reported many other benefits of using Stem
Enhance to increase adult stem cell circulation from treatemnt
of cancer and other internal illnesses to the alievation
of arthritis.
More then anything else though, always remember that the
human body was created to heal itself! Providing it with
an increased amount of Adult Stem Cells assists your body
in performing the functions it was naturally meant to do!,
Your own body can and will heal itself.
Technical Description
of StemEnhance™
StemEnhance™ is a blend of two compounds (concentrated)
extracted from the cyanophyta Aphanizomenon flos-aquae
(AFA). These compounds are extracted using a proprietary
process that utilizes no chemicals or harsh agents.
StemEnhance™ Ingredients
One extract, which contains an L-selectin ligand,
supports the release of stem cells (CD34+ cells) from the
bone marrow. The other extract, a polysaccharide-rich fraction
named Migratose™, may support the migration of stem
cells out of the blood into tissues.
Contradictions Those with bone marrow disease should
consult their physician before taking StemEnhance™.
Also, like vitamin E, StemEnhance™ tends to naturally
keep the blood thinner, so those who are taking blood thinning
medication would want to check with their physician about
making necessary adjustments
Recommended Dose
One gram of StemEnhance™ triggers an average 25-30%
increase in the number of circulating stem cells. the effect
lasts for a few hours. The recommended dosage is therefore
2 capsules once or twice a day, at least 6 hours apart.
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StemEnhance™ for FREE, check this out!
Becoming a member of StemEnhance™ also enables you
to earn real income by sharing StemEnhance™ with
others. If you choose, we can show you how by introducing
this break through product StemEnhance™ to just a
few people a month you can get your
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Sources ans more Study info
For ethical issues and stem cell research refer to http://stemcells.nih.gov/info/ethics.asp;
http://athome.harvard.edu/programs/psc/index.html; http://www.aaas.org/spp/sfrl/projects/stem/main.htm
Ethical Issues Associated with Pluripotent Stem Cells.
Human Embryonic Stem Cells (2003) ed. by Chiu A.Y., Rao,
M.S, 3-25.
Sell, S. (2004) Stem cells. Stem Cell Handbook ed. by Sell,
S. 1-18.
http://stemcells.nih.gov/info/scireport/chapter4.asp
Forbes, S.J., Vig, P., Poulsom, R., Wright, N.A., Alison,
M.R. (2002) Adult Stem Cell Plasticity: New Pathways of
Tissue Regeneration become Visible. Clin. Sci. 103, 355-369.
Asahara T., Isner, J.M. (2004) Endothelial Progenitor Cells.
Stem Cell Handbook ed. by Sell, S. 221-227.
Lindblad, W.J. (2004) Stem cells in Dermal Wound Healing.
Stem Cell Handbook ed. by Sell, S. 101-105.
McCulloch, E.A. (2004) Normal and Leukemic Hematopietic
Stem cells and Lineages. Stem Cell Handbook ed. by Sell,
S. 119-131.
Tsai, R.Y.L. (2004) A Molecular View of Stem Cell and Cancer
Cell Self-renewal. Intl. J. Biochem. Cell Biol. 36, 684-694.
Cai, J., Weiss M.L., Rao, M.S. (2004) In Search of "stemness".
Exp. Hematol. 32, 585-598.
Roach, M.L., McNeish, J.D. (2002) Methods for the Isolation
and Maintenance of Murine Embryonic Stem Cells. Embryonic
Stem Cells Methods and Protocols ed. by Turksen K. 1-16.
back to article
Evans, M.J., Kaufman, M.H. (1981) Establishment in Culture
of Pluripotenial Cells from Mouse Embryos. Nature 292,
154-156; Axelrod, H.R. (1984) Embryonic Stem Cell Lines
Derived from Blastocysts by a Simplified Technique. Dev.
Biol. 101, 225-228; Wobus, A.M., Holzhausen H., Jakel,
P., Schneich, J. (1984) Characterization of a Pluripotent
Stem Cell Line Derived from a Mouse Embryo. Exp. Cell
Res. 152, 212-219; Doetschman, T.C. Eistattaer, H., Katz,
M., Schmidt, W., and Kemler, R. (1985) The in vitro development
of Blastocyst Derived Embryonic Stem Cell Lines: formation
of Yolk Sac, Blood Islands and Myocardium. J. Embryol.
Exp. Morphol. 87, 27-45.
Thompson, J.A., Kalishman, J., Golos, T.G., Durning, M.,
Harris, C.P., Becker, R.A., Hearn, J.P. (1995) Isolation
of a Primate Embryonic Stem Cell Line. Proc. Natl. Acad.
Sci. USA 86, 7844-7848; Thomson, J.A, Itskovitz-Eldor,
J., Shapiro, S.S., Waknitz, M.A., Swiergiel, J.J., Marshal,
V.S., Jones, J.M. (1998) Embryonic Stem Cell Lines Derived
from Human Blastocysts. Science 282, 1145-1147.
Amit, M., Segev, H., Manor, D., Itskovitz-Eldor, J. (2003)
Subcloning and Alternative Methods for the Derivation and
Culture of Human Embryonic Stem Cells. Human Embyronic
Stem Cells ed. by Chiu, M., Rao, M.S. 127-141.
Carpenter, M.K., Xu, C., Daigh, C.A., Antosiewicz, J.E.,
Thomson, J.A. (2003) Protocols for the Isolation and Maintenance
of Human Embryonic Stem Cells. Human Embyronic Stem Cells
ed. by Chiu, M., Rao, M.S.
Drukker M., Benvenisty, N. (2003) Genetic Manipulation
of Human Embryonic Stem Cells. Human Embryonic Stem Cells
ed. by Chiu, A.Y., Rao, M.S. 265-284.
back to article
Shamblott, M.J., Axelman, J., Wang, S., Bugg, E.M., Littlefield,
J.W., Donovan, P.J., Blumenthal, P.D., Huggins, G. R.,
Gearhart J.D., (1998) Derivation of Pluripotent Stem
Cells from Cultured Human Primordial Germ CellS. Proc.
Natl. Acad. Sci.USA 95, 13726-13731.
Doyonnas, R., Blau, H.M. (2004) What is the Future of Stem
Cell Research? Stem Cell Handbook ed. by Sell, S. 491-499.
Draper, J.S. Moore, H., Andrews, P.W. (2003) Embryonal
Carcinoma Cells. Human Embryonic Stem Cells ed. Chiu, A.
Y., Rao, M.S. 63-87.
Adult Stem Cells ed. Turksen, K. (2004) For reviews of
hematopoietic stem cells: http://stemcells.nih.gov/info/scireport/chapter5.asp;
http://www.stemcell.com/technical/Hema%20SC%20MiniReview.pdf;
for mesenchymal stem cells: http://www.stemcell.com/technical/MSC%20MiniReview.pdf;
for neural stem cells: http://www.stemcell.com/technical/Neurocult%20MiniReview.pdf
Nosrat, I.V., Smith, C. A., Mullally, P., Olson, L., Nosrat
C.A. (2004) Dental Pulp Cells Provide Neurotrophic Support
for Dopaminergic Neurons and Differentiate into Neurons
in vitro; implications for Tissue Engineering and Repair
in the Nervous System. Eur. J. of Neurosci. 19, 2388-2398.
back to article
Shen, C-N., Horb, M.E., Slack, J.M.W., Tosh,D. (2003) Transdifferentiation
of Pancreas to Liver. Mech. Dev.120, 107-116.
Priller, J. (2004) From Marrow to Brain. Adult Stem Cells
ed. by Turksen, K. 215-233.
de Wynter, E.A. (2003) What is the future of Cord blood
stem cells? Cytotech. 41, 133-138.
Gossler, A., Doetschman, T.C., Eistattaer, H., Katz, M.,
Schmidt, W., Kemler, R. (1986) Transgenesis by means of
Blastocyst Derived Embryonic Stem Cell Lines. Proc. Natl.
Acad. Sci. USA 83, 9065-9069.
Thomas, K.R., Capecchi, M.R. (1987) Site-directed Mutagenesis
by Gene Targeting in Mouse Embryo-derived Stem Cells. Cell
51, 503-512.; Koller, B.H., Hageman, L.J., Doetschman,
T.C., Hagaman, J.R., Huang, S., Williams, P.J., et. al.
(1989) Proc. Natl. Acad. Sci. USA 86, 8924-8931.
back to article
For review: Floss,T., Wurst, W. (2002) Functional Genomics
by Gene-trapping in ES cells. Embryonic Stem Cells Methods
and Protocols ed. by Turksen, K. 347-379.
McNeish, J. (2004) Embryonic Stem Cells in Drug Discovery
Nat. Rev. Drug Discov. 3, 70-80.
Davila, J.C., Cezar, G.G., Thiede, M., Strom, S., Miki,
T., Trosko J. (2004) Use and Application of Stem Cells
in Toxicology. Toxicol. Sci. 79, 214-223.
Till, J.E., McCulloch, E.A. (1961) A Direct Measurement
of the Radiation Sensitivity of Normal Mouse Bone Marrow
Cells. Radiat. Res. 14, 2213-222.
Thomas, E.D. (1999) Bone Marrow Transplantation: a Review.
Semin. Hematol. 36, 95-103.
back to article
Barker, R.A., Jain, M., Armstrong, R.J.E., Caldwell, M.A.
(2003) Stem Cells and Neurological Disease. J. Neurol.
Neurosurg. Psychiat. 74, 553-557.
http://www.who.int/cardiovascular_diseases/resources/atlas/en/
Jackson, K.A., Goodell, M.A. (2004) Generation and Stem
Cell Repair of Cardiac Tissue. Stem Cell Handbook, edited
by Sell, S. 259-266.
Kehat, I., Khimovich, L., Caspi, O., Gepstein, A., Shofti,
R., Arbel, G., Huber, I., Satin, J., Itskovitz-Eldor, J.,
Gepstein, L. (2004) Electromechanical Integration of Cardiomyocytes
Derived from Human Embryonic Stem Cells . Nature Biotechnol.
22, 1282-1289.
Fraser, J.K., Schreiber, R.E., Zuk, P.A., Hedrick, M.H.
(2004) Adult Stem Cell Therapy for the Heart. Intl. J.
Biochem. Cell Biol. 36, 658-666.
back to article
Cohen, S., Leor, J. (2004) Rebuilding Broken Hearts. Scientific
American Nov. 2004, 45-51.
http://stemcells.nih.gov/info/scireport/chapter7.asp; Street,
C.N., Sipione, S., Helms, L., Binette, T., Rajotte, R.V.,
Bleackley, R.C., Korbutt, G.S. (2004) Stem Cell-based Approaches
to Solving the Problem of Tissue Supply for Islet Transplantation
in Type I Diabetes. Intl. J. Biochem. Cell Biol. 36, 667-683.
Bouwens, L. (2004) Islet Cells. Stem Cell Handbook ed.
by Sell, S. 429-438.
Seaberg, R.M., Smukler, S.R., Kieeffer, T.J., Enikolopov,
G., Asghar, Z., Wheeler M.B., Korbutt, G., van der Kooy,
D. (2004) Clonal Identification of Multipotent Precursors
from Adult Mouse Pancreas that Generate Neural and Pancreatic
Lineages. Nat. Biotechnol. 22, 1115-1124.; SeNakajima-Nagata,
N., Sakurai, T., Mitaka, T., Katakai, T., Yamaot, E., Miyazaki,
J., Tabata, Y., Sugai, M., Shimzu, A.. (2004) In vitro
Induction of Adult Hepatic Progenitor Cells into Insulin-producing
Cells. Biochem. Biophys. Res. Commun. 318, 625-630.
http://www.parkinson.org/site/pp.asp?c=9dJFJLPwB&b=71125
back to article
http://stemcells.nih.gov/info/scireport/chapter8.asp
Baier, P.C., Schindehutte HJ., Thinane, K., Flugge G.,
Fuchs, E., Mansouri, A., Paulus, W., Gruss, P.,Trenwalder,
C.(2004) Behavioral Changes in Unilaterally 6-Hydroxy-Dopamine
Lesioned Rats after Transplantation of Differentiated Mouse
Embryonic Stem Cells without Morphological Integration.
Stem Cells 22, 396-404.
Lindvall O., Bjorklund, A. (2004) Cell Therapy in Parkinson's
Disease. NeuroRx. 1, 382-393.
Zheng, X., Cai, J., Chen, J., Luo, Y., Zhi-Bing Y., Fotter,
E., Wang, Y., Harvey, B., Miura, T., Backman, C., Chen,
G-J., Rao, M.S., Freed. W.J. (2004) Dopaminergic Differentiation
of Human Embryonic Stem Cells. Stem Cells 22, 925-940;
Wilmut, I., Paterson, L.A. (2004) Stem cells and Cloning.
Stem Cell Handbook ed. by Sell, S. 75-80.
Barker, R.A., Widner, H. (2004). Immune Problems in the
Central Nervous System Cell Therapy. NeuroRx. 1, 472-481.
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In 1925, Georges Lakhovsky published a paper with the explicit
title of “Curing Cancer with Ultra Radio Frequencies” in
Radio News.
His expressed philosophy was that “the
amplitude of cell oscillations must reach a certain
value, in order that the organism be strong enough to repulse
the destructive vibrations from certain microbes.” He
goes on to say, “The remedy in my opinion, is not to
kill the microbes in contact with the healthy cells but to
reinforce the oscillations of the cell either directly by
reinforcing the radio activity of the blood or in producing
on the cells a direct action by means of the proper rays.” Lakhovsky’s
Radio-Cellulo-Oscillator (RCO) produced low frequency ELF
all the way through gigahertz radiowaves with lots of “extremely
short harmonics.” He favored such a wide bandwidth
device so that, “The cells with very weak vibrations,
when placed in the field of multiple vibrations, finds its
own frequency and starts again to oscillate normally through
the phenomenon of resonance.” As a result, Lakhovsky’s
RCO is now more often called MWO (multiple wave oscillator)
for these reasons. The
MWO uses a Tesla coil and special antenna with
concentric rings that induce multiple sparks between them
A malfunctioning immune system
can cause allergies or arthritis and can fail to stop the growth
of cancer cells.
The
immune system is important to cancer patients in many ways
The cancer can weaken the immune system
Cancer treatment can weaken the immune system
The immune system may help to fight your bodies cancer
The cancer can weaken the immune system by invading the bone marrow
where the cells that help fight infection are made. This happens most
often in leukaemia or lymphoma. But it can happen with other cancers
too.
Chemotherapy
and radiotherapy can weaken immunity by causing a drop in the number
of white blood cells made in the bone marrow. Apart from bone marrow
or stem cell transplants, this effect on the bone marrow is temporary.
Some
cells of the immune system can recognise cancer cells as abnormal
and kill them. Unfortunately, this is not enough to get rid of
a cancer altogether.
Some NATURAL treatments aim to use the immune system to fight
cancer.
The individual has always
had to struggle to keep from being overwhelmed by the tribe.
If you try it, you will be lonely often, and sometimes frightened.
But no price is too high to pay for the privilege of owning yourself.
Friedrich Nietzsche
The University of Southern California preformed clinical
trials in 1934 with Rife machine technology on 16 terminally ill cancer
patients and all 16 were cured within the trial period of 3 to 4 months.
It is claimed that the treatment was painless, did not have side effects,
did not harm healthy cells and did not include pharmaceutical treatment
for the cancers
In the Fall of 1990, two researchers, Drs. William Lyman
and Steven Kaali, working at Albert Einstein Medical College in New
York City made an important discovery. They found that they could inactivate
the HIV virus by applying a low voltage current to HIV infected blood
in a test tube. They applied a direct current to the electrodes and
found that a current flow in the range of 50-100 microamperes (uA)
produced the most effective results. Practically all of the HIV viral
particles were adversely affected while normal blood cells remained
unharmed. The viral particles were not directly destroyed by the electric
current, but rather the outer protein coating of the virus was affected
in such a way as to prevent the virus from producing reverse transcriptase,
a necessary enzyme needed by the virus to invade human cells.
Oxygen is not something that God reaches out from Heaven and replaces
on this planet. Oxygen is primarily provided by photosynthesis from
the trees and vegetation. The Amazon forests alone, just one hundred
years ago, provided over one third of this planet’s global oxygen.
Today, through deforestation and man’s greed, the Amazon basin
is struggling to make three-sixteenths of our global oxygen. The ramifications
of the former upon life on this planet are severe. Up and coming countries
that are frantic to keep up with other commercially affluent countries,
are expanding their commercial capabilities each day, consuming more
and more energy
Rife machines and Multiwave
oscillators are claimed to complement each other based on the
principle that life forms absorb energy. A multiwave Oscillator
uses this principle to strengthen cells within the body to resist
disease while a Rife machine uses this principle to destroy microorganisms
with an overdose of frequency energy.
Georges
Lakhovsky
In 1925, Georges Lakhovsky published a paper with the explicit
title of “Curing
Cancer with Ultra Radio Frequencies” in Radio News.
His expressed
philosophy was
that “the amplitude of cell oscillations must reach a certain
value, in order that the
organism be strong enough to repulse the destructive vibrations
from certain microbes.” He goes on to say, “The remedy
in my opinion, is not to kill the microbes in contact with the
healthy cells but to reinforce the oscillations of the cell either
directly by reinforcing the radio activity of the blood or in
producing on the cells a direct action by means of the proper
rays.” Lakhovsky’s Radio-Cellulo-Oscillator (RCO)
produced low frequency ELF all the way through gigahertz radiowaves
with lots of “extremely short harmonics.” He
favored such a wide bandwidth device so that, “The
cells with very weak vibrations, when placed in the field of
multiple vibrations, finds its own frequency and starts again
to oscillate normally through the phenomenon of resonance.” As
a result, Lakhovsky’s RCO is now more often called MWO
(multiple wave oscillator) for these reasons. The MWO uses a
Tesla coil and special antenna with concentric rings that induce
multiple sparks between them
Amazing
Complimentary Alternative Health Site
with tools for wellness and health "Never must the physician
say, the disease is incurable. By that admission he denies God,
our Creator; he doubts Nature with her profuseness of hidden
powers and mysteries."
Quoted from the last page of the book "THE
MEDICAL FOLLIES" printed
in 1925 and written by Morris Fishbein, M.D.
Editor of the Journal of the American Medical Association
The mutation of healthy cells
into cancer cells occur continuously, even in healthy bodies. But
such cancer cells are destroyed by the body's natural immune system
at a rate about the same as they occur, and when the body condition
is stable, there is nothing manifest that a healthy person would
experience as cancer. Some types of Cancer are reported to be caused
by a virus. Like with any virus, upon invading a body tissue cell
it will take over the cells reproductive chemical factory thereby
forcing the cell to replicate the virus instead, the cell will
revert to the primitive state thus enabling the Colloidal Silver
to be effective and kill the cancerous cell. A higher concentration
of Colloidal Silver means more immediate contact with any virus
or other pathogen. OTHER
ESTABLISHED USES OF COLLOIDAL SILVER
The left side of the brain governs the kinds of thoughts
and perceptions which historically our cultures have associated
with the mind,intellect. Whereas the right side of the brain
governs the kinds of thoughts and perceptions which historically
we have associated with the heart,imotions.
In a 1999 study, Thomas Budzynski, Ph.D worked with 8 struggling
college students. After undergoing audio-visual brainwave stimulation,
the students outperformed a control group and significantly increased
their GPA. GPA for the 8 students continued to rise even after
treatment was discontinued!
Psychologist Michael Joyce used brainwave entrainment with a
group of 30 children. He observed improvements in reading and
a half year advancement in grade level as well as substantial
improvements in attention, reaction and a reduction in impulsivity
and variability.
Harold Russel Ph.D. and John Carter, Ph.D., of the University
of Houston, did several studies in which they used brainwave
entrainment to treat ADHD and other learning disorders, testing
their IQ before and after treatment. Astonishingly, after treatment
the subjects showed a 5 to 7 point increases in IQ score.
Michael Tansey used a similar protocol to treat dyslexia and
other learning disorders, reporting a 19 point average increase
in IQ score post-treatment.
Drs. Siegfried and Susan Othmer found that neurofeedback brainwave
training in the 15-18 Hz range can produce significant shifts
in IQ score, particularly with people who are suffering from
ADD/ADHD and other disorders. In cases where the starting IQ
value is less than 100, the average IQ increase was 33 points!
They also found significant improvements in memory, reading and
arithmetic. In a one year follow-up, trainees showed major improvements
in self-esteem, concentration and self-expression.
Thank you
we appreciate your support,
We will continue to bring you the
best most reliable products available
Disclaimer: To comply with FDA requirements
we need to inform you the fact that a lot of people have had tremendous
results does not guarantee that you will have the same results. Also,
if you have a serious medical condition, this use of this technology
should not replace any competent medical advice you are currently
receiving. Our experiences have been that most people will use this
technology while continuing to visit their usual/normal medical professionals
A SITE DEDICATED TO TRUTH, PEACE,
JUSTICE, LOVE AND FREEDOM
"As long
as there is breath in my body
I will never ever cease to be a seeker of truth."
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