Take a look! 📌
Take a look! 📌 https://pin.it/60uydXp4A
cherry valley forever
The Bowery Presents
Today's Document
The Stonewall Inn
One Nice Bug Per Day
Fai_Ryy
Mike Driver

Jar Jar Binks Fan Club
Cosmic Funnies

ellievsbear
he wasn't even looking at me and he found me
h

gracie abrams
noise dept.
sheepfilms

Game of Thrones Daily
Claire Keane
seen from United States
seen from United Kingdom

seen from Malaysia
seen from United States
seen from Brazil
seen from Czechia

seen from Malaysia

seen from United Kingdom
seen from South Africa

seen from Venezuela

seen from United Kingdom
seen from United States

seen from Türkiye
seen from United Kingdom

seen from United States
seen from Venezuela
seen from United States

seen from Ghana
seen from United States
seen from United States
@iaidcare
Take a look! 📌
Take a look! 📌 https://pin.it/60uydXp4A

Anya is live and ready to show you everything. Watch her strip, dance, and perform exclusive shows just for you. Interact in real-time and make your fantasies come true.
Free to watch • No registration required • HD streaming
Take a look! 📌
Take a look! 📌 https://pin.it/4FqTkeMl9
How Can I Help My Elderly Parent Stay At Home
Take a look! 📌
Take a look! 📌 https://pin.it/38y7sKFE3
When older people have more time, there is scope to do some of the things they have never had time to do before., but it is hard to get the inspiration for new hobbies and activities. Great ideas here
My mom is still at the hospital. Her doctor is the chief of medicine. I was there for hours this morning. Came home after she had lunch. She was nodding off. Now I'm back I've spent over $100 in Ubers in the last 18 hours. Please help me. I need enough to cover expenses.

Anya is live and ready to show you everything. Watch her strip, dance, and perform exclusive shows just for you. Interact in real-time and make your fantasies come true.
Free to watch • No registration required • HD streaming
Source
National Geographic: ‘Living with Dementia’ (2024) photography: Isadora Kosofsky
Source | Dec 21
Gerontocracy, baby
Study Adds to Evidence That Parkinson’s Starts in the Gut
Ask any neurologist: Parkinson’s disease is a brain disorder. The conspicuous symptoms of Parkinson’s disease—uncontrollable tremors, slowed down motions, and the feeling that one’s feet are stuck to the ground—all stem from the loss of neurons in a region of the brain that helps control movement.
But many researchers believe that the neurodegenerative disorder may get started far away from the brain—in the gut—and years before the first neurological signs appear.
New findings by Columbia researchers David Sulzer, PhD, and Dritan Agalliu, PhD, and two of their graduate students are adding to evidence backing this hypothesis—and showing that what triggers initial gastrointestinal changes in Parkinson’s could be a misdirected immune attack.
“If this is the beginning of Parkinson’s in many people, we could potentially identify who has the disease before it ever reaches the brain and hopefully stop it in its tracks,” Sulzer says. The new findings were published in Neuron.
Autoimmunity and the gut
The gut-first theory of Parkinson’s, originally proposed 20 years ago, started to intrigue Sulzer after his own research pointed toward the role of an autoimmune response in Parkinson’s.
In Parkinson’s, a protein called alpha-synuclein becomes misfolded, accumulates inside neurons, and slowly poisons the cells. Sulzer’s lab in collaboration with immunologists at the La Jolla Institute of Immunology has shown that small portions of the misfolded alpha-synuclein also can appear on the outside of neurons, which makes the neurons vulnerable to attack from the immune system. The immune attack could be doing more acute damage to the neurons than the internal deposits of alpha synuclein.
“The blood of Parkinson’s patients often contains immune cells that are primed to attack the neurons,” Sulzer says, “but it’s not clear where or when they are primed.”
The gut was an intriguing possibility because it contains the same neurons and because most Parkinson’s patients experience constipation years before brain symptoms emerge and the disease is diagnosed. To pursue this hypothesis, Sulzer teamed up with Agalliu, a neuroimmunologist with expertise in mouse models of another neurological disorder (multiple sclerosis) that has autoimmune features.
Immune response to alpha synuclein leads to gut symptoms
To find out if an immune reaction to alpha-synuclein can kick-start the disease and where, Francesca Garretti and Connor Monahan, grad students directed by Agalliu and Sulzer, first created a mouse capable of displaying pieces of misfolded alpha-synuclein on cell surfaces (natural mice do not have this ability). They then injected the mice with alpha-synuclein and monitored what happened in the brain and the gut.
The researchers did not see any signs resembling Parkinson’s disease in the brain, but they did see that an immune attack on neurons in the gut produced constipation and other gastrointestinal effects resembling those seen in most Parkinson’s patients years before they are diagnosed with the disease.
“This shows that an autoimmune reaction can lead to what appears to be the early stages of Parkinson’s and is strong support that Parkinson’s is in part an autoimmune disease,” Sulzer says.
The findings also raise the possibility that early detection—and then interruption—of an immune response in the gut could prevent a later attack on the brain’s neurons and stop Parkinson’s in its tracks.
Wanted: A mouse with Parkinson’s disease
Right now, though, it’s not clear how big a role the immune system plays in the Parkinson’s brain. The answer to that question may become clearer if the researchers find out why the brains of their mice did not develop any signs of Parkinson’s.
The team hypothesizes that the immune cells in their mouse model may not be reaching the brain because the animals are young and age has not yet weakened the blood-brain barrier sufficiently to let immune cells squeeze through. Opening the barrier or accelerating the aging process may lead to mice that develop gastrointestinal and brain symptoms.
“Our ultimate goal is to develop a model of Parkinson’s disease in mice that recreates the human disease process, which doesn’t exist right now,” Sulzer says. “That will be critical in answering questions about the disease that we can’t explore in people and eventually developing better therapies.”
Me when the bug i hallucinated was a real bug afterall (im terrified of bugs):

Anya is live and ready to show you everything. Watch her strip, dance, and perform exclusive shows just for you. Interact in real-time and make your fantasies come true.
Free to watch • No registration required • HD streaming
Scientists Discover Previously Unknown Way Cells Break Down Proteins
Short-lived proteins control gene expression in cells to carry out a number of vital tasks, from helping the brain form connections to helping the body mount an immune defense. These proteins are made in the nucleus and are quickly destroyed once they’ve done their job.
Despite their importance, the process by which these proteins get broken down and removed from cells once they are no longer needed has eluded scientists for decades — until now.
In a cross-departmental collaboration, researchers from Harvard Medical School identified a protein called midnolin that plays a key role in degrading many short-lived nuclear proteins. The study shows that midnolin does so by directly grabbing the proteins and pulling them into the cellular waste-disposal system, called the proteasome, where they are destroyed.
The findings were published Aug. 24 in Science.
“These particular short-lived proteins have been known for over 40 years, but no one had established how they are actually degraded,” said co-lead author Xin Gu, a research fellow in neurobiology at HMS.
Because the proteins broken down by this process modulate genes with important functions related to the brain, the immune system, and development, scientists may eventually be able to target the process as a way of controlling protein levels to alter these functions and correct any dysfunction.
“The mechanism we found is very simple and quite elegant,” added co-lead author Christopher Nardone, a PhD candidate in genetics at HMS. “It is a basic science discovery, but there are many implications for the future.”
A molecular mystery
It is well established that cells can break down proteins by tagging them with a small molecule called ubiquitin. The tag tells the proteasome that the proteins are no longer needed, and it destroys them. Much of the pioneering research on this process was done by the late Fred Goldberg at HMS.
However, sometimes the proteasome breaks down proteins without the help of ubiquitin tags, leading researchers to suspect that there was another, ubiquitin-independent mechanism of protein degradation.
“There has been sporadic evidence in the literature that somehow the proteasome can directly degrade unmarked proteins, but no one understood how that can happen,” Nardone said.
One group of proteins that seemed to be degraded by an alternative mechanism are stimuli-induced transcription factors: Proteins rapidly made in response to cellular stimuli that travel to the nucleus of a cell to turn on genes, after which they are rapidly destroyed.
“What struck me in the beginning is that these proteins are extremely unstable and they have a very short half-life — once they are produced, they carry out their function, and they are quickly degraded afterwards,” Gu said.
These transcription factors support a range of important biological processes in the body, yet even after decades of research, “the mechanism of their turnover was largely unknown,” said Michael Greenberg, the Nathan Marsh Pusey Professor of Neurobiology in the Blavatnik Institute at HMS and a co-senior author on the paper with Stephen Elledge, the Gregor Mendel Professor of Genetics and of Medicine at HMS and Brigham and Women’s Hospital.
From a handful to hundreds
To investigate this mechanism, the team began with two familiar transcription factors: Fos, studied extensively by the Greenberg lab for its role in learning and memory, and EGR1, which is involved in cell division and survival. Using sophisticated protein and genetic analyses developed in the Elledge lab, the researchers homed in on midnolin as a protein that helps break down both transcription factors. Follow-up experiments revealed that in addition to Fos and EGR1, midnolin may also be involved in breaking down hundreds of other transcription factors in the nucleus.
Gu and Nardone recall being shocked and skeptical about their results. To confirm their findings, they decided they needed to figure out exactly how midnolin targets and degrades so many different proteins.
“Once we identified all these proteins, there were many puzzling questions about how the midnolin mechanism actually works,” Nardone said.
With the aid of a machine learning tool called AlphaFold that predicts protein structures, plus results from a series of lab experiments, the team was able to flesh out the details of the mechanism. They established that midnolin has a “Catch domain” — a region of the protein that grabs other proteins and feeds them directly into the proteasome, where they are broken down. This Catch domain is composed of two separate regions linked by amino acids (think mittens on a string) that grab a relatively unstructured region of a protein, thus allowing midnolin to capture many different types of proteins.
Of note are proteins like Fos that are responsible for turning on genes that prompt neurons in the brain to wire and rewire themselves in response to stimuli. Other proteins like IRF4 activate genes that support the immune system by ensuring that cells can make functional B and T cells.
“The most exciting aspect of this study is that we now understand a new general, ubiquitination-independent mechanism that degrades proteins,” Elledge said.
Tantalizing translational potential
In the short term, the researchers want to delve deeper into the mechanism they discovered. They are planning structural studies to better understand the fine-scale details of how midnolin captures and degrades proteins. They are also making mice that lack midnolin to understand the protein’s role in different cells and stages of development.
The scientists say their finding has tantalizing translational potential. It may offer a pathway that researchers can harness to control levels of transcription factors, thus modulating gene expression, and in turn, associated processes in the body.
“Protein degradation is a critical process and its deregulation underlies many disorders and diseases,” including certain neurological and psychiatric conditions, as well as some cancers, Greenberg said.
For example, when cells have too much or too little of transcription factors such as Fos, problems with learning and memory may arise. In multiple myeloma, cancer cells become addicted to the immune protein IRF4, so its presence can fuel the disease. The researchers are especially interested in identifying diseases that may be good candidates for the development of therapies that work through the midnolin-proteasome pathway.
“One of the areas we are actively exploring is how to tune the specificity of the mechanism so it can specifically degrade proteins of interest,” Gu said.
A colossal study has revealed a variation of a gene involved in an immune response has been secretly giving protection to the billions who c
A colossal study has revealed a variation of a gene involved in an immune response has been secretly giving protection to the billions who carry it from Alzheimer's and Parkinson's disease. Known as DR4, the variant, or allele, is part of a family of genes that normally help our immune system pinpoint and destroy foreign invaders, like bacteria and viruses. "In an earlier study, we'd found that carrying the DR4 allele seemed to protect against Parkinson's disease," says psychiatrist and geneticist Emmanual Mignot from Stanford University in the US, the institution that led the study. But Alzheimer's and Parkinson's are distinct conditions with different pathological biomarkers in the brain – Lewy bodies for Parkinson's, and abnormal tangles of a protein called tau in Alzheimer's. Discovering DR4 as a common factor was astounding.
Continue Reading
Defy the order of creation, become your own God.
For nearly two decades, the negotiation skills of working women have frequently been blamed for the gender pay gap. New research by Vanderbi
For nearly two decades, the negotiation skills of working women have frequently been blamed for the gender pay gap. New research by Vanderbilt Professor Jessica A. Kennedy finds the gender difference in tendency to negotiate has now reversed, and the widespread narrative that women don't ask is outdated. While other measures are necessary to completely close the gender pay gap, the study also discusses how people who believe and adhere to the notion that "women don't ask" hinder progress. "Our research shows that women are willing to do their part to close the gender pay gap. Unfortunately, negotiating well isn't enough to close the gender pay gap. It's not the source of the problem," says Kennedy.
Continue Reading
Here's the KEY paragraph if you don't want to read the whole thing.
In one study, 990 participants who graduated from business school between 2015 and 2019 were asked a series of questions about their job search, the essential one being, "Did you negotiate your job offer?" A total of 54% of women reported negotiating offers compared to 44% of men, contradicting the idea that women don't ask.
Ok actually I'm kind of in love with the new flag as it's coming along. All thanks to the creative, smart and encouraging people in the discord tbh!! I can't wait to show y'all what we've been working on!! I feel like we managed to get a lot of symbolism in there by now, while keeping the design pretty simple and recognisable. I'm so excited to share it .. but wanna make sure it's 'done', since I've learned from my mistakes about sharing a half finished sketch of a design hehe

Anya is live and ready to show you everything. Watch her strip, dance, and perform exclusive shows just for you. Interact in real-time and make your fantasies come true.
Free to watch • No registration required • HD streaming
Webb Captures Stunning Images of Uranus and Its Moons
https://www.sci.news/astronomy/webb-uranus-11815.html
Cómo podemos ayudar a personas que cuidan de otras?
"Sólo hay algo tan hermoso como vivir, ayudan a que los demás vivan" María Pilar O.M. (#Melilla)
Las personas que cuidan de otras, ya sea de familiares enfermos o de amigos cercanos, a menudo experimentan un alto nivel de estrés y agotamiento emocional debido a las exigencias físicas y emocionales del cuidado. También, y esto lo digo por experiencia propia, por no entender la enfermedad, lo que aumenta o puede aumentar ese desconcierto. Por lo tanto, es importante ofrecerles apoyo y ayuda…
View On WordPress