βI noticed most of the information and awareness on the coronavirus is in big English. Meanwhile a huge number of our population canβt understand. So I have cut out some to search and post 2 mins videos in Yoruba, Igbo, Hausa, Efik and pidgin. These videos are meant to be shared on WhatsApp. Letβs share facts in the same place rumors are being shared.
Many thanks to Niyi Akinmolayan, Mariam Adeyinka, Gatiri Asaolu, Blessing Obasi, Amaka Chidioka, Joy Umoren, Danlami Wasinda, Anjekele Arthur, Sunday Jacob Ali, Azuka OnwukaPhilip AnicheJulius IkpekaoguOkeke KingsleyNwokeke Sammy OnyebuchiandNoreen Makosewe for helping out in a short time.
Please, if youβre in Nigeria, you could download these videos and share with your contacts that donβt speak English, and send them in their native language. This way, we all can spread the awareness on Coronavirus.
EFIK LANGUAGE: For ibibio, Akwa Ibom and Cross River. The videos are meant for WhatsApp and TV for people wey no to sabi big English download here we.tl/t-TMPTGrfWFy
SWAHILI LANGUAGE: For people in Kenya, Tanzania and Uganda. Please share and download the WhatsApp version here https://we.tl/t-ocDBW8x0G0
RADIO VERSION: Each Language has a voice only and voice with music version. The transcript if you want to make your own in your language. Download here https://we.tl/t-SIj48wCTbkβ¬
And if youβre a News Media, and wish yo broadcast this on TV (or radio) you can contact me for the HD version of the videos.
Thank you so much Mr. Niyi Akinmolayan. I love that this is happening. Friends, please take the challenge! Let's do more in other local languages. πππ
The coronavirus isnβt alive. Thatβs why itβs so hard to kill.
The science behind what makes this coronavirus so sneaky,
deadly and difficult to defeat
What are the symptoms of covid-19 or coronavirus?
0:12 / 1:24
Coronavirus or covid-19 symptoms range from mild to severe. Theyβre most likely to be similar to a regular cold, the flu or seasonal allergies. (Video: Daron Taylor/Photo: Brian Monroe/The Washington Post)
By
Sarah Kaplan,
William Wan and
Joel Achenbach
Viruses have spent billions of years perfecting the art of surviving without living β a frighteningly effective strategy that makes them a potent threat in todayβs world.
Thatβs especially true of the deadly new coronavirus that has brought global society to a screeching halt. Itβs little more than a packet of genetic material surrounded by a spiky protein shell one-thousandth the width of an eyelash, and it leads such a zombielike existence that itβs barely considered a living organism.
But as soon as it gets into a human airway, the virus hijacks our cells to create millions more versions of itself.
There is a certain evil genius to how this coronavirus pathogen works: It finds easy purchase in humans without them knowing. Before its first host even develops symptoms, it is already spreading its replicas everywhere, moving onto its next victim. It is powerfully deadly in some but mild enough in others to escape containment. And for now, we have no way of stopping it.
As researchers race to develop drugs and vaccines for the disease that has already sickened 350,000 and killed more than 15,000 people, and counting, this is a scientific portrait of what they are up against.
βBetween chemistry and biologyβ
A man wears a mask provided by Border Patrol because he was coughing. (Larry W. Smith/EPA-EFE/Shutterstock) (Larry W Smith/EPA-EFE/REX/Shutterstock)
Respiratory viruses tend to infect and replicate in two places: In the nose and throat, where they are highly contagious, or lower in the lungs, where they spread less easily but are much more deadly.
This new coronavirus, SARS-CoV-2, adeptly cuts the difference. It dwells in the upper respiratory tract, where it is easily sneezed or coughed onto its next victim. But in some patients, it can lodge itself deep within the lungs, where the disease can kill. That combination gives it the contagiousness of some colds, along with some of the lethality of its close molecular cousin SARS, which caused a 2002-2003 outbreak in Asia.
Another insidious characteristic of this virus: By giving up that bit of lethality, its symptoms emerge less readily than those of SARS, which means people often pass it to others before they even know they have it.
It is, in other words, just sneaky enough to wreak worldwide havoc.
Viruses much like this one have been responsible for many of the most destructive outbreaks of the past 100 years: the flus of 1918, 1957 and 1968; and SARS, MERS and Ebola. Like the coronavirus, all these diseases are zoonotic β they jumped from an animal population into humans. And all are caused by viruses that encode their genetic material in RNA.
Thatβs no coincidence, scientists say. The zombielike existence of RNA viruses makes them easy to catch and hard to kill.
Outside a host, viruses are dormant. They have none of the traditional trappings of life: metabolism, motion, the ability to reproduce.
And they can last this way for quite a long time. Recent laboratory research showed that, although SARS-CoV-2 typically degrades in minutes or a few hours outside a host, some particles can remain viable β potentially infectious β on cardboard for up to 24 hours and on plastic and stainless steel for up to three days. In 2014, a virus frozen in permafrost for 30,000 years that scientists retrieved was able to infect an amoeba after being revived in the lab.
When viruses encounter a host, they use proteins on their surfaces to unlock and invade its unsuspecting cells. Then they take control of those cellsβ molecular machinery to produce and assemble the materials needed for more viruses.
βItβs switching between alive and not alive,β said Gary Whittaker, a Cornell University professor of virology. He described a virus as being somewhere βbetween chemistry and biology.β
The new coronavirus is one-thousandth the width of an eyelash in size and, like other viruses, is so molecularly simple that scientists barely consider it a living organism. (National Institutes of Health/EPA-EFE/Shutterstock)
Among RNA viruses, coronaviruses β named for the protein spikes that adorn them like points of a crown β are unique for their size and relative sophistication. They are three times bigger than the pathogens that cause dengue, West Nile and Zika, and are capable of producing extra proteins that bolster their success.
βLetβs say dengue has a tool belt with only one hammer,β said Vineet Menachery, a virologist at the University of Texas Medical Branch. This coronavirus has three different hammers, each for a different situation.
Among those tools is a proofreading protein, which allows coronaviruses to fix some errors that happen during the replication process. They can still mutate faster than bacteria but are less likely to produce offspring so riddled with detrimental mutations that they canβt survive.
Meanwhile, the ability to change helps the germ adapt to new environments, whether itβs a camelβs gut or the airway of a human unknowingly granting it entry with an inadvertent scratch of her nose.
Scientists believe that the SARS virus originated as a bat virus that reached humans via civet cats sold in animal markets. This current virus, which can also be traced to bats, is thought to have had an intermediate host, possibly an endangered scaly anteater called a pangolin.
βI think nature has been telling us over the course of 20 years that, βHey, coronaviruses that start out in bats can cause pandemics in humans, and we have to think of them as being like influenza, as long-term threats,ββ said Jeffery Taubenberger, virologist with the National Institute of Allergy and Infectious Diseases.
Funding for research on coronaviruses increased after the SARS outbreak, but in recent years that funding has dried up, Taubenberger said. Such viruses usually simply cause colds and were not considered as important as other viral pathogens, he said.
The search for weapons
Medical personnel help a patient with covid-19, the disease caused the novel coronavirus, in Wuhan, China. (AFP/Getty Images)
Once inside a cell, a virus can make 10,000 copies of itself in a matter of hours. Within a few days, the infected person will carry hundreds of millions of viral particles in every teaspoon of his blood.
The onslaught triggers an intense response from the hostβs immune system: Defensive chemicals are released. The bodyβs temperature rises, causing fever. Armies of germ-eating white blood cells swarm the infected region. Often, this response is what makes a person feel sick.
Andrew Pekosz, a virologist at Johns Hopkins University, compared viruses to particularly destructive burglars: They break into your home, eat your food, use your furniture and have 10,000 babies. βAnd then they leave the place trashed,β he said.
Unfortunately, humans have few defenses against these burglars.
Most antimicrobials work by interfering with the functions of the germs they target. For example, penicillin blocks a molecule used by bacteria to build their cell walls. The drug works against thousands of kinds of bacteria, but because human cells donβt use that protein, we can ingest it without being harmed.
But viruses function through us. With no cellular machinery of their own, they become intertwined with ours. Their proteins are our proteins. Their weaknesses are our weaknesses. Most drugs that might hurt them would hurt us, too.
For this reason, antiviral drugs must be extremely targeted and specific, said Stanford virologist Karla Kirkegaard. They tend to target proteins produced by the virus (using our cellular machinery) as part of its replication process. These proteins are unique to their viruses. This means the drugs that fight one disease generally donβt work across multiple ones.
And because viruses evolve so quickly, the few treatments scientists do manage to develop donβt always work for long. This is why scientists must constantly develop new drugs to treat HIV, and why patients take a βcocktailβ of antivirals that viruses must mutate multiple times to resist.
βModern medicine is constantly needing to catch up to new emerging viruses,β Kirkegaard said.
SARS-CoV-2 emerges from the surface of cells cultured in a lab. (National Institutes of Health/AFP)
SARS-CoV-2 is particularly enigmatic. Though its behavior is different from that of its cousin SARS, there are no obvious differences in the virusesβ spiky protein βkeysβ that allow them to invade host cells.
Understanding these proteins could be critical to developing a vaccine, said Alessandro Sette, head of the center for infectious disease at the La Jolla Institute for Immunology. Previous research has shown that the spike proteins on SARS are what trigger the immune systemβs protective response. In a paper published this month, Sette found the same is true of SARS-CoV-2.
This gives scientists reason for optimism, according to Sette. It affirms researchersβ hunch that the spike protein is a good target for vaccines. If people are inoculated with a version of that protein, it could teach their immune system to recognize the virus and allow them to respond to the invader more quickly.
βIt also says the novel coronavirus is not that novel,β Sette said.
And if SARS-CoV-2 is not so different from its older cousin SARS, then the virus is probably not evolving very fast, giving scientists developing vaccines time to catch up.
In the meantime, Kirkegaard said, the best weapons we have against the coronavirus are public health measures, such as testing and social distancing, and our own immune systems.
Researchers work with samples of the coronavirus at the Center for Vaccine Research at the University of Pittsburgh. (Nate Guidry/Pittsburgh Post-Gazette/AP)
Some virologists believe we have one other thing working in our favor: the virus itself.
For all its evil genius and efficient, lethal design, Kirkegaard said, βthe virus doesnβt really want to kill us. Itβs good for them, good for their population, if youβre walking around being perfectly healthy.β
Evolutionarily speaking, experts believe, the ultimate goal of viruses is to be contagious while also gentle on their hosts β less a destructive burglar and more a considerate house guest.
Thatβs because highly lethal viruses like SARS and Ebola tend to burn themselves out, leaving no one alive to spread them.
But a germ thatβs merely annoying can perpetuate itself indefinitely. One 2014 study found that the virus causing oral herpes has been with the human lineage for 6 million years. βThatβs a very successful virus,β Kirkegaard said.
Seen through this lens, the novel coronavirus that is killing thousands across the world is still early in its life. It replicates destructively, unaware that thereβs a better way to survive.
But bit by bit, over time, its RNA will change. Until one day, not so far in the future, it will be just another one of the handful of common cold coronaviruses that circulate every year, giving us a cough or sniffle and nothing more.
The Untold Story And Everything You Need To Know about Money Ritual (Watch & Learn)
Out of curiosity and dedication to get Nigerians informed, Naijaloded TV team went on a Journey to Osogbo, Osun State capital in a bid to expose all the untold stories of money rituals.
In the compound of Head of all Native Doctors in Osun State, Baale Esu Agbojeniyi Osogbo Land, Kayode Esuleke, the details of money rituals and attendant consequences are revealed.
How many types of money rituals are in existence?
Why do some money rituals require human parts?
What are the things native doctors wonβt tell you when you meet them for money rituals?
Etc.
All the answers to these questions and many more are what you will see in this explosive documentary.
A little piece from the album (Iβm Amazed)!;"God is Able to Do".Pray this song give hope to the people in time like this. Free download, enjoy & be blessed: https://youtu.be/HllTrDP1zXU