Archive for the ‘Ticks’ Category

Chlamydia Trachomatis & Lyme Disease

https://natemat.pl/blogi/borelioza/120559,borelioza-objawy-koinfekcji-boreliozy-cz-3-chmamydia-trachomatis

The following is taken from the above website and translated by a Lyme/MSIDS patient.

Chlamydia Trachomatis

Today on the blog about Lyme disease, a text about another co-infection to Lyme disease – chlamydia trachomatis. From the experience of our Center, it appears more and more often among our clients as “accompanying” Lyme disease. Its symptoms cause a number of female ailments, but the male gender is also not free from them. All the time on our blog, readers may notice that the catalog of symptoms that may indicate Lyme disease is growing dynamically and at the same time the catalog of symptoms that may indicate specific co-infections to Lyme disease is also growing dynamically. A natural question may arise: Is it possible to realistically have so many different symptoms? Answer: yes, it is possible.
 
Chlamydia trachomatis (bacteria), like other co-infections to Lyme disease, which we wrote about earlier on the blog, can be transmitted, among others, by a tick. Infection can also occur through intimate contact.

At the initial stage, such an infection does not show any clinical symptoms, which does not mean that such an infection does not develop in the body. At this point, our common belief bows – no symptoms, e.g. no pain – no disease. In many cases, then we are dealing with an asymptomatic infection.
The characteristic symptoms of an infection – chlamydia trachomatis – mainly concern the genitourinary system, including:
  • urethritis
  • epididymitis
  • prostatitis
In contrast, the symptoms that affect women are increased
  • vaginal discharge
  • vaginal bleeding
  • bleeding after intercourse
  • cervical erosion
  • cyst formation
  • secondary infertility
The occurrence of the infection in question and its symptoms causes a significant decrease in the comfort of life, including the comfort of intimate contacts. That is why it is so important to recognize it properly and early. Then there is a chance to use the right therapy – about which we will write on our blog.
An important point worth mentioning here is that the occurrence of chlamydia trachomatis with Lyme disease is not an “absolute relationship”. This means that the presence of this infection is not an automatic indication that we are also dealing with a Lyme infection.
Intimate infections in men and women related to specific pathogens are a wide issue that goes far beyond the scope of the blog. By presenting the problem of tick-borne disease – Lyme disease, or rather the problem of tick-borne diseases – Lyme Disease – on our blog, we want to draw the attention of natemat.pl readers that you need to look at specific symptoms and disease states in a much wider perspective. Only in this way are we able to more effectively counteract infections that attack us and our loved ones.
Finally, I would like to point out one more symptom that, based on the experience of our Center, can and does cause chlamydia trachomatis – eye problems:
  • burning
  • itching
  • tearing
  • feeling of sand in the eyes

These symptoms can last for months and no drops can solve the problem.

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For more:

Co-infecting agents can be transmitted together with Borrelia burgdorferi by tick bite resulting in multiple infections but a fraction of co-infections occur independently of tick bite. Clinically relevant co-infections are caused by Bartonella species, Yersinia enterocolitica, Chlamydophila pneumoniae, Chlamydia trachomatis, and Mycoplasma pneumoniae…..Chlamydia trachomatis primarily causes polyarthritis.  Chlamydophila pneumoniae not only causes arthritis but also affects the nervous system and the heart, which renders the differential diagnosis difficult.

Fluorescent immunohistochemical and in situ hybridization methods demonstrated the presence of Chlamydia antigen and DNA in 84% of Borrelia biofilms. Confocal microscopy revealed that Chlamydia locates in the center of Borrelia biofilms, and together, they form a well-organized mixed patho-
genic structure.

Deadly Disease Spread By Ticks Found in Queensland For the First Time

https://www.9news.com.au/national/brown-dog-tick-found-in-queensland-pet-owner-warning

Deadly disease spread by ticks found in Queensland for the first time

A deadly disease spread by ticks has arrived in Queensland for the first time, sparking a warning for pet owners to remain vigilant this summer.
Canine Ehrlichia is spread by brown dog ticks and can go undetected for weeks.
The dangerous disease has been detected in North Queensland.  (See link for article)
___________________
SUMMARY:
  • Ehrlichiosis can cause serious illness, including death.
  • Symptoms include fever, lethargy, loss of appetite, weight loss, cloudy eyes/conjunctivitis, pain and stiffness, bleeding disorders including bruising, and swelling of the chest or front legs.
  • It can lay dormant but attacks the immune system, even infecting bone marrow making treatment difficult.
  • It’s important to vigilantly and regularly check pets for ticks including in between toes, ears, nose, mouth, and stomach.
  • It’s also important to keep diligent with tick treatments and to avoid shrubby areas, although ticks can be found in wide-open spaces.

According to this, the disease seems to be particularly severe in German Shepherds and Doberman Pinschers; however, people can be infected with it as well, although the article states the disease is ONLY transmitted through tick bites, not through contact….

I remain skeptical of this tenet.

For more:

Record Numbers of Tick-borne Diseases in Maine This Year

https://www.lymedisease.org/tick-borne-diseases-in-maine/

Record numbers of tick-borne diseases in Maine this year

Sept. 30, 2022

Maine is on track to break records for several tick-borne diseases this year.

In a news release this week, the Maine Center for Disease Control and Prevention reported more than 1,900 cases of Lyme disease so far in 2022. This compares to about 1,500 last year.

The agency also recorded nearly 700 cases of anaplasmosis, over 160 cases of babesiosis, 10 cases of hard tick relapsing fever and four cases of Powassan encephalitis.

“This is a record high for Powassan encephalitis cases,” the agency said. “Maine is also on track to break records for anaplasmosis, babesiosis and Lyme disease cases this year.”

For more:

Seeking to Unlock the Mysteries of Lyme Arthritis

https://www.lymedisease.org/unlock-mysteries-lyme-athritis/

Seeking to unlock the mysteries of Lyme arthritis

By Richard Harth
Biodesign Institute at Arizona State University

A nature lover from early childhood, Karie Behm found peace and renewal through hiking and cross-country running. She spent much of her time exploring the forested terrain of her native Kansas, as well as Minnesota and Colorado, during family vacations.

She did not suspect that on one unremarkable day, microscopic, corkscrew-like pathogens known as spirochetes would stealthily invade her body, causing a succession of painful, debilitating and perplexing disease symptoms. It would take physicians over six years to untangle the mystery.

Behm had contracted Lyme disease, following a tick bite.

A recent doctoral graduate from the School of Molecular Sciences and the Biodesign Institute at Arizona State University, Behm has devoted her energies to unlocking some of the secrets of Lyme disease, a tenacious ailment affecting some 500,000 Americans every year.

“People have finally come to the realization that Lyme disease has been around a long time and has been affecting a lot of people who have been chronically ill and couldn’t get help,” Behm says. “Patient advocacy groups have been working tirelessly for the last 20 years to try to bring attention to this problem. It’s not a little thing and it’s not a joke. It can affect you your entire life.”

Studying the disease that debilitated her

Behm came to ASU in 2016, with a personal goal in mind — to study the disease causing her often incapacitating symptoms. A highly motivated scholar and researcher, she managed to convince her advisor, Debra Hansen, of the importance of studying this underreported and misunderstood ailment.

Behm and Hansen, both researchers with the Biodesign Center for Applied Structural Discovery (CASD), then consulted Petra Fromme, director of the center and an authority on the structural characterization of proteins, including those associated with infectious disease.

The team hatched a plan to study Lyme arthritis, a pervasive symptom found in many Lyme disease cases. “Petra loves students who share her passion,” Behm says.

“During my first interview with her, she got really excited about how the lab’s structural techniques could be applied to Lyme disease.” Prior to her arrival at the lab, Behm, working independently, had already completed an NSF proposal to study Lyme disease.

The project gathered momentum when Behm conducted a literature search, identifying a suite of proteins believed to decorate the surface of Borrelia burgdorferi, the bacterial parasite transmitted by a tick bite that causes Lyme disease.

Drawing on a recent award from ASU Women and Philanthropy, the team is advancing its efforts by using a powerful method known as cryo-EM to observe membrane proteins found on the surface of the Borrelia parasite in stunning detail.

A remarkable discovery

Eureka moment: Behm’s negative stain electron microscopy image, offering the first visual evidence of a membrane pore identified by the researchers. This pore may provide an attractive therapeutic target for future drug design against Lyme arthritis. Photo courtesy Biodesign Institute.

The research has already led to a remarkable discovery. One such membrane protein, known as BBA57, binds to copies of itself to form a complex at the membrane surface. The result appears to be a portal to and from the cell’s interior — a pore.

The discovery arrived late one night in the lab, in the form of fresh electron microscope images. It was the culmination of years of dogged research and opens the door to effective therapies against Lyme disease, and potentially other serious afflictions as well.

Of the 100 or so membrane proteins recognized in B. burgdorferi, BBA57 is special. Its presence is linked to Lyme arthritis, a painful, untreatable and often lifelong affliction occurring in 20% of Lyme disease patients.

The discovery of the membrane hole may be a turning point, as it provides an ideal site to attack Lyme arthritis by designing a drug that can plug up the pore.

“This project aims to discover the first structure of the major protein responsible for Lyme arthritis, BB57, which forms a pore-like structure in the membrane,” Fromme says. “When we unravel the structural basis for Lyme arthritis, new drugs can be developed to fight the condition and prevent the lifelong suffering of hundreds of thousands of patients.”

Climate change and Lyme disease

The bacteria responsible for Lyme disease are carried in the saliva of several tick varieties. In the Northeast and upper Midwestern U.S., the disease is transmitted by the blacklegged tick (Ixodes scapularis), and by the western blacklegged tick (Ixodes pacificus) along the Pacific Coast.

Lyme-carrying ticks operate by stealth. They are not able to fly or jump, instead finding their targets through a process known as questing. Resting atop grasses or shrubs, the ticks hold fast to leaves or grass using their lower legs. The upper pair of legs is kept outstretched, awaiting an unsuspecting passerby. When a suitable host brushes past the place where the tick lies in wait, it quickly climbs onto the host and locates a place to bite and feed on blood.

Ticks may attach themselves to any part of the human body but are often found in well-concealed regions, including the groin area, armpits and scalp. Once a tick has attached and begun feeding, it usually takes 36–48 hours for the Lyme bacteria to be transmitted.

While Borrelia bacteria can cause severe illness in their human hosts, in a diabolical twist, they may improve the tick’s fitness by modifying its central nervous system, extending the length of time the tick spends questing and making it more resistant to extremes of temperature and dryness. To make matters worse, many Lyme disease patients become co-infected with other pathogenic microbes lurking in ticks.

Another area of concern is the fact that reported cases of the disease have roughly doubled since 1991. This is likely due to a combination of factors, including more awareness of the disease and better diagnostic approaches. But there is also mounting evidence that the geographic range over which Lyme-carrying ticks wander may be expanding due to climate change.

Disease of a thousand faces

Many factors may affect the timing and nature of symptoms of Lyme disease, which typically begin three to 30 days following infection. Such symptoms may include fever, chills, headache, fatigue, muscle and joint aches, and swollen lymph nodes, with or without an accompanying rash.

One reason Lyme disease is so vexing to properly diagnose is that it can manifest in many ways in different patients. While 70% of Lyme cases develop the signature circular rash according to reporting, even this figure remains a topic of fierce controversy, and the CDC believes there may be a significant overreporting of rashes. This is because without the rash, Lyme cases are less likely to be diagnosed and treated in a timely manner by physicians.

Should the telltale rash known as erythema migrans occur, it will appear at the site of the tick bite, expanding gradually over several days. The rash may feel warm to the touch but is usually not painful or itchy. The rash sometimes clears as it enlarges, producing a characteristic bullseye appearance, but can assume different shapes, if it is present at all.

An array of further symptoms can develop days or months after infection, including facial palsy; neck stiffness; severe headache; intermittent pain in tendons, muscles, joints and bones; heart palpitations or an irregular heartbeat (known as Lyme carditis); nerve pain and inflammation of the brain and spinal cord; episodes of dizziness; and shortness of breath.

Behm recalls the perplexing constellation of symptoms at the start of her illness: “As a younger teenager, I had random medical issues that came up that just didn’t seem to make sense,” she says.

“There were visits to a lot of medical facilities. They knew something was wrong but couldn’t figure out what it was. I got passed around to specialists until I was officially diagnosed my senior year of high school.”

Lyme arthritis can cause severe pain and permanent joint damage

Approximately one in four Lyme disease patients may develop Lyme arthritis, involving chronic joint pain and swelling, particularly the knees and other large joints. The disorder occurs when the Lyme disease bacteria migrate to joint tissues, causing inflammation.

If left untreated, Lyme arthritis causes permanent damage to joints. While knees are the most commonly affected area, other large joints may be involved, including the shoulder, ankle, elbow, jaw, wrist or hip.

Following diagnosis, Lyme disease is treated with a course of antibiotics, which can work to eliminate the spirochete bacteria and gradually relieve symptoms. Yet, there is an important caveat: time is of the essence.

“The existing treatments generally don’t work if you’ve been infected more than two to six months prior,” Hansen says.

By this time, “the bacteria have disseminated in your body, and go into a persistent, antibiotic-resistant form. So if you’re diagnosed six years later, like Karie, and you’re treated for the disease, that treatment probably doesn’t work because the bacteria are resistant,” she says.

The result can be a collection of symptoms referred to [by some] as Post-Treatment Lyme Disease Syndrome. The causes are varied and remain poorly understood. It may be that the bacterium has changed form and sequestered itself in ways that evade detection. In other cases, autoimmune responses may be involved. To date, no treatment exists for these common complications.

Roughly 70,000 people in the U.S. each year experience lifelong, untreatable Lyme disease. Among these are some 42,000 who develop Lyme arthritis. Currently, physicians have had little to offer such patients, but that may be about to change.

Protein components of Lyme unmasked

Using electron microscopy, Behm, Hansen and Fromme were able to zero in on a protein that had been identified in previous research as an essential element in the process leading to Lyme arthritis. This work had been carried out by Dr. Uptal Pal, a Lyme disease authority from the University of Maryland, who is now collaborating with the ASU group.

The Lyme disease protein complex at the membrane surface of B. burgdorferi is comparatively large, tricky to crystallize and not easily amenable to X-ray crystallography, the conventional gold standard for protein structural analysis. Instead, a relatively new and powerful method known as cryo-EM, ideal for large proteins, was used.

Cryo-EM, a groundbreaking method for investigating 3D protein shapes, has racked up a long list of impressive achievements since 2017, when its discoverers were awarded the Nobel Prize in Chemistry. Nevertheless, the new study marks the first time it has been applied to the study of Lyme disease.

The technique involves flash-freezing solutions of proteins or other biomolecules in vitreous ice, then bombarding them with electrons to produce images of individual molecules suitable for electron microscopy. The images are used to reconstruct the 3D structure of the molecule, an essential step in understanding how proteins work, how their dysfunction (or use by pathogens) can trigger disease and how drugs may be custom engineered to target them.

Molecular mugshot spurs eureka moment

Peering at the specimens through electron eyes, the researchers began to produce a molecular portrait of the suspect believed to be responsible for Lyme arthritis, through the acquisition of thousands of cryo-EM snapshots.

Research by Pal had already shown that strains of Borrelia engineered to lack BBA57 did not produce Lyme arthritis, though the reasons for this remained obscure. It was only through the work of Behm and her team that a plausible mechanism gradually came into focus.

In addition to complex sample preparation, thousands of images had to be carefully assembled. Often, it seemed the researchers were feeling their way through the dark. But late one evening in the lab, a new set of negative stain electron microscopy images were developed, and the results were riveting. At long last, the team had pictures with just enough resolution to make out what unmistakably appeared as a small hole in the membrane, composed of protein subunits.

It was the break they had been waiting for, after three years of work.

The team had theorized that perhaps Borrelia causes Lyme arthritis by transporting some disease factor from within the cell, out into the extracellular environment. And here, before their eyes, was the transport tunnel likely used as a passageway from inside the cell to outside, into the host’s bloodstream.

“Debbie, Petra and I were all there, having a late-night meeting when we saw the images. And everyone shouted, ‘Yay!’” Behm recalls.

The elusive pores they had long suspected had materialized with unmistakable clarity.

The race for a cure

The most gratifying news for the group was not simply that their hard work was rewarded with an important insight into the structure of BBA57, but that the finding suggests a promising approach for preventing Lyme arthritis.

The basic idea is simple: Design a drug that plugs up the hole on the Borrelia membrane surface. But to accomplish this, the protein structure of BBA57 will require much more refinement.

The team has calculated that the images of a million pores will be needed to visualize the protein with sufficient resolution to permit drug design. The researchers are using the new award from ASU Woman and Philanthropy to achieve this feat, collecting the mass of images that will permit structural determination down to the locations of atoms.

Achieving atomic resolution will allow the researchers to see where each of the roughly 800,000 atoms making up each pore-forming molecule are situated.

“We’ll know the position of each of those atoms, and that kind of intimate detail is enough to be able to computationally look for drug binders, with existing drug libraries,” Hansen says.

Teaming up with Pal, the researchers are pursuing long-term funding through a $3 million grant proposal to NIH, due to begin as early as 2023. The funding will be contingent on the early results the group is producing now, so the pace of study is hectic.

Once the final structural determination of a given protein has been made, drug companies can take the 3D data and use high-performance computers to begin designing drugs to act on it.

The long and winding road ahead

BBA57 is just one protein active in Lyme disease. Many others exist, and once they have been characterized, may also be targeted by smart drugs. The possibility of preventing Lyme disease altogether may be on the horizon, and the general approach pursued by Behm and her colleagues may be applicable to other tick-borne diseases or, possibly, other spirochete afflictions, such as syphilis, yaws and relapsing fever.

Having suffered through the ups and downs of this enigmatic illness, Behm is doubly committed to finding answers. She describes the early days of her pitched battle with the disease as a mixture of fear and determination.

Behm continues her explorations of Lyme disease at her new position as ORISE Fellow at the CDC in Atlanta.

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**Comment**

I have numerous issues with this article:

  1. Lyme arthritis IS treatable.  Please see the comment section after the article:  https://madisonarealymesupportgroup.com/2022/05/04/why-do-some-people-develop-severe-lyme-arthritis-others-dont/  I must also add that chelation (pulling heavy metals out of the body) is another strategy I am currently using. I have also found the following form of curcumin completely eradicated my pain. Dealing with inflammation is a must.
  2. Minimum transmission times have never been studied and to continue to regurgitate the mantra that it “usually takes 36-48” hours for it to happen is causing untold suffering.
  3. There is often more than Lyme at play and transmission time can be within minutes.
  4. “Climate change” has NOTHING to do with tick and disease proliferation but continues to be chanted like a mantra from research institutions who depend upon government grants.  It is part of a much larger scheme for power and money.
  5. Pigeon-holing symptoms happening three-30 days after infection is mythology also dooming thousands.  Nothing is said about psychological issues often experienced.
  6. It is a complete LIE that 70% develop the EM rash. It is highly variable & often not there.
  7. We need to drop the PTLDS label like a bad habit.  It does not explain a huge subset of patients but is still being used to put patients into a four-cornered box.
  8. To throw out that 70,000 in the US experience untreatable Lyme is complete guesswork.  According to this, the actual number is much, much higher.  No research is done on this group.  They simply don’t exist because mainstream medicine/research, led by the nose by the CDC/NIH/IDSA, don’t believe chronic/persistent Lyme exists.  Nobody even talks about the coinfections and the ramifications of having both.
  9. While researchers are riveted on finding/creating an expensive pharmaceutical “smart” drug (with patents to go all around making everyone wealthy) to plug up the elusive “pore” or conduit through which supposedly arthritis is created from, they ignore cheaper, safer, options such as nutraceuticals which desperate Lyme patients have had to discover, often on their own, to be effective.  Unfortunately, this myopic patent-oriented thinking is the “new norm” in research – even led by a patient who should know better due to the prolific and blatant corruption in all things in Lymeland.

Morphological Abnormalities in Blacklegged Tick, Ixodes scapularis, Initiated by Environmental Contaminant

http://www.remedypublications.com/open-access/morphological-abnormalities-in-blacklegged-tick-ixodes-scapularis-initiated-by-environmental-9184.pdf

Morphological Abnormalities in Blacklegged Tick, Ixodes scapularis, Initiated by Environmental Contaminant

John D Scott1*, Nguyen Nguyen2, Jaclyn TA McKeown3 and Evgeny V Zakharov2,3,4

Aug. 29, 2022

Open Journal of Of Public Health

1Upper Grand Tick Centre, Fergus, Ontario, Canada
2
Canadian Centre for DNA Barcoding, Biodiversity of Ontario, University of Guelph, Ontario, Canada
3
Centre for Biodiversity Genomics, University of Guelph, Ontario, Canada
4
Department of Integrative Biology, University of Guelph, Guelph, Ontario, Canada

Abstract
Environmental pollutants cause teratogenic abnormalities in ectoparasites and their hosts.  These contaminants are consumed or absorbed, and often invisible causing deformities in arthropods, including ticks. Teratogen in arthropods arises as physiological and morphological change, and often halts proper metabolic function. During normal bird band operations, we collected a replete tick from an American Robin, Turdus migratorius, and the fully engorged larva molted to an unfed nymph. The larva was normal, but the subsequent nymph was deformed. Consequently, we could not identify the unusual specimen with standard taxonomy, so we took microphotographs and employed DNA barcoding by means of the mitochondrial cytochrome c oxidase subunit 1 gene. Based on molecular analysis, we confirmed the aberrant specimen was a blacklegged tick, Ixodes scapularis. Our finding collaborates that songbirds can pass teratogenic compounds to ticks during a blood meal, and cause environmental abnormalities in ticks.

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**Comment**

Study shows that environmental contaminants do strange things – even to the despised tick. In this case the nymph had a deformity that prohibits it from feeding.  Go to the top link to view a picture of a normal tick and then the mutant tick which does not have mouth parts.

This of course leaves a larger question and concern: if environmental contaminants can cause a tick to mutate without mouth parts, what are these contaminants doing to other creatures and humans?

While I’ve posted on the “climate change” agenda and the fact it’s a coverup for governmental “climate engineering” and is a huge money maker for leaders who are political, emotionally driven, unscientific, and the worst hypocrites on the planet, environmental contaminants ARE a serious threat to all life forms.  And while climate experts have stated that the simple reason the climate narrative is being followed is due to the fact scientists are on a gravy train to secure research funding, there is big money in geoengineering where nanoparticles, including many metals, are sprayed into the atmosphere and then uses microwave transmissions such as 5G to weaponize the weather.

A popular Lyme literate doctor, Dr. Klinghardt explains how the nano-aluminum poisoning affects our health, especially when combined with other toxins in our environment, such as the herbicide glyphosate, which is in most of our food, and with microwave radiation from smart meters, cell phones, Wi-Fi routers, and cell towers (which are now upgrading to 5G.)

According to Dr. Dietrich Klinghardt, MD, PhD, the ingredients of the persistent contrail formula that is being sprayed in the upper atmosphere by jet aircraft contains nanoparticles of aluminum (in several forms) along with barium, strontium, mercury, plastics and various other ingredients. Even viable Lyme disease cysts and other biological substances have been found in the nanoparticle dust that is falling from the sky.

Dr. Klinghardt has contributed significantly to the understanding of metal toxicity & its connection with chronic infections, chronic illness, & pain. He has been instrumental in advancing various fields within biological medicine, and regularly sees patients in the Sophia Health Institute located in Washington State and in his German clinic.

In Germany, his understanding of modern illness and his methods for assessing and treating modern chronic illnesses are being used by two thousand doctors.

Dr. Klinghardt identifies two powerful factors that are destroying the health of Americans. They are environmental toxicity from the interaction of various toxic metals and glyphosate, and environmental exposure to electromagnetic frequency radiation from technology that uses microwaves. (Read the full article.)

And now, with the roll-out of the experimental COVID “vaccines” which for the first time have lipid nanoparticles, we have the added burden of wondering just how these particles will affect people, aside from the concern of mRNA protein spikes. See:

Lipid nanoparticles—where do they go and what do they do? – The BMJ (bottom of article)

One of the major problems Dr. Klinghardt found in his practice was that there were very few laboratories in the world that can even measure and detect nano-aluminum.

For important connections between climate engineering, bio-weaponry, Lyme & ticks: