Changing stroke rehab and research worldwide now.Time is Brain! trillions and trillions of neurons that DIE each day because there are NO effective hyperacute therapies besides tPA(only 12% effective). I have 523 posts on hyperacute therapy, enough for researchers to spend decades proving them out. These are my personal ideas and blog on stroke rehabilitation and stroke research. Do not attempt any of these without checking with your medical provider. Unless you join me in agitating, when you need these therapies they won't be there.

What this blog is for:

My blog is not to help survivors recover, it is to have the 10 million yearly stroke survivors light fires underneath their doctors, stroke hospitals and stroke researchers to get stroke solved. 100% recovery. The stroke medical world is completely failing at that goal, they don't even have it as a goal. Shortly after getting out of the hospital and getting NO information on the process or protocols of stroke rehabilitation and recovery I started searching on the internet and found that no other survivor received useful information. This is an attempt to cover all stroke rehabilitation information that should be readily available to survivors so they can talk with informed knowledge to their medical staff. It lays out what needs to be done to get stroke survivors closer to 100% recovery. It's quite disgusting that this information is not available from every stroke association and doctors group.

Wednesday, September 9, 2026

Parkinson's Risk and Carbon Monoxide: What a New Study Found

 

Will your competent? doctor be doing something with this because of your risk of Parkinsons post stroke? Oh NO, NOTHING DOING! So, INCOMPETENCE REIGNS AGAIN! Your doctor is becoming an expert at incompetence and your board of directors is so incompetent they can't recognize it in their hospital! 

Of course your fuckingly incompetent? doctor did nothing with this earlier carbon monoxide research, right!

Parkinson's Risk and Carbon Monoxide: What a New Study Found

Key Takeaways

  • Nicotine was long thought to fuel the inverse relationship between smoking and Parkinson's disease.
  • In this study, nonsmokers with high carbon monoxide (CO) levels had less Parkinson's risk, suggesting CO may underlie smoking's neuroprotective effects.
  • The study followed more than 500,000 people for 12 years, measuring exhaled CO at baseline.

Non-smokers with higher exhaled carbon monoxide (CO) levels had a lower risk of Parkinson's disease, a prospective study of more than 500,000 people in China showed.

Among people who never smoked, exhaled CO levels of 3 ppm or greater were associated with an approximately 30% lower risk of Parkinson's (HR 0.71, 95% CI 0.59-0.84) compared with exhaled levels under 3 ppm, reported Andri Iona, DPhil, of the Nuffield Department of Population Health at the University of Oxford in England, and co-authors.

Regular smoking also was tied to a reduced risk of Parkinson's disease (HR 0.70, 95% CI 0.62-0.79) but unlike CO measurements, was significantly associated with higher risks of lung cancer, ischemic heart disease, stroke, and all-cause mortality, the researchers wrote in JAMA Neurology.

"For the first time, this study provides robust evidence in humans supporting a potentially protective role for CO in Parkinson's," co-author Clara Bueno Lopez, MSc, also of Oxford, told MedPage Today.

Epidemiology research has repeatedly documented lower Parkinson's risks among people who smoke, a finding highlighted in a study that followed 30,000 British doctors for 65 years. Nicotine was long thought to be fueling this link.

In recent years, researchers have investigated other tobacco constituents and smoking by-products. Of these, CO has emerged as a promising candidate, noted Sirwan Darweesh, MD, PhD, of Radboud University Medical Center in Nijmegen, the Netherlands, and colleagues in an accompanying editorial.

"Carbon monoxide is formed during the burning process of cigarette smoking, as well as via incomplete combustion of carbon-containing fuels, such as gasoline," Darweesh and colleagues explained. "Exposure to CO in the context of smoking or air pollution has been associated with multiple harmful effects on health, and individuals who smoke have markedly higher levels of carboxyhemoglobin in their blood," they noted.

Conversely, CO is an essential signaling molecule that provides protection against oxidative damage and supports immune response and cell proliferation, survival, and death, the editorialists pointed out. "Preclinical studies and animal experiments have shown neuroprotective effects of small concentrations of CO, raising the hypothesis that CO may underlie the apparent neuroprotective effects of smoking in Parkinson's disease."

Studies also have investigated associations between air pollution -- another leading source of environmental CO -- and Parkinson's, but these exposures are "inevitably confounded by the effects of other gases, particles, and chemicals with well-known adverse health consequences," Iona and colleagues observed.

In the present study, the researchers assessed data from 512,701 adults in the China Kadoorie Biobank recruited between 2004 and 2008. Mean age was 52 years and 58.9% were women. Smoking status was self-reported and exhaled CO was measured at baseline.

Overall, 74.5% of men and 3.3% of women had ever smoked regularly. Mean exhaled CO levels were higher among those who regularly smoked (11.1 ppm) compared with those who never smoked (3.5 ppm), those who occasionally smoked (3.8 ppm), and those who formerly smoked regularly (3.7 ppm).

The median follow-up period was 12.1 years; in that time, 1,131 people with Parkinson's disease and 2,949 with other neurodegenerative diseases were identified. Findings were adjusted for sociodemographic characteristics, lifestyle factors, and confounding variables like solid fuel use and passive smoking exposure.

In non-smokers, higher exhaled CO levels showed a broad dose-dependent inverse relationship with Parkinson's risk, decreasing from HR 1.00 (95% CI 0.85-1.18) for levels under 2.0 ppm to HR 0.65 (95% CI 0.45-0.92) for levels of 11.5 ppm or more. Passive smoke exposure among never-smokers showed no clear relationship with Parkinson's risk.

The study had several limitations, Iona and colleagues acknowledged. Participants were relatively young at baseline, and a single measurement of exhaled CO may not fully capture long-term CO exposure, they said. The possibility that nicotine or other tobacco components contributed to the association between smoking and Parkinson's could not be excluded.

An ongoing phase IIa trial is investigating the effects of a low-dose oral CO liquid drug product in people with Parkinson's disease, the researchers noted.


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