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Showing posts with label sex. Show all posts
Showing posts with label sex. Show all posts

Friday, 16 March 2012

No sex? Have some booze.

Sex-starved fruit flies turn to drink


Drosophila SEM
Male fruit flies that have been rejected by females drink significantly more alcohol than those that have mated freely, scientists say.

In an article in Science, researchers suggest that alcohol stimulates the flies' brains as a "reward" in a similar way to sexual conquest.

The work points to a brain chemical called neuropeptide F, which seems to be regulated by the flies' behaviour.

Human brains have a similar chemical, which may react in a similar way. The connection between alcohol and this chemical, which in humans is known as neuropeptide Y, has already been noted in studies involving hard-drinking mice.

The new work explores the link between such reward-seeking and the study of social interactions, said the lead author of the report Galit Shohat-Ophir, now of the Howard Hughes Medical Institute in Virginia, US.

"It is thought that reward systems evolved to reinforce behaviours that are important for the survival of both individuals and species, like food consumption and mating," Dr Shohat-Ophir told BBC News.

"Drugs of abuse kind of hijack the same neural pathways used by natural rewards, so we wanted to use alcohol - which is an extreme example of a compound that can affect the reward system - to get into the mechanism of what makes social interaction rewarding for animals."

'Control system' Working in the laboratory of Ulrike Heberlein at the University of California, San Francisco, Dr Shohat-Ophir and colleagues subjected a number of flies to a wide variety of fates.

In one set of experiments, male flies were put in a box with five virgin females, which were receptive to the males' advances. In another, males were locked up with females that had already mated and which thus roundly rejected the males' attempts at sex.

Offered either their normal food slurry or a version charged with 15% alcohol, the mated males avoided the alcohol, whereas the sexually deprived males went on a comparative bender.

The team then went on a hunt for a chemical that could tie the two parts of this story together, hitting on neuropeptide F (NPF).
Neuropeptide Y 
 In mammals, the "rewarding" brain chemical is called neuropeptide Y
They found that the heavy-drinking rejected males had a lowered level of the chemical, and sated, mated males had an elevated level.

"What we think is that these NPF levels are some kind of 'molecular signature' to the experience," Dr Shohat-Ophir explained.

To show that the NPF is actually responsible for the change rather than just associated with it, the researchers actively manipulated just how much NPF was in the flies' brains.

Those with depressed levels acted like the rejected males, and those with elevated levels behaved like the mated males.

"What this leads us to think is that the fly brain - and presumably also other animals' and human brains - have some kind of a system to control their level of internal reward, that once the internal reward level is down-regulated it will be followed by behaviour that will restore it back," Dr Shohat-Ophir said.
It is tempting, given that humans share a similar brain chemical, to imagine that NPF drives human behaviour as well.

However, in an accompanying article in Science, Troy Zars of the University of Missouri wrote that "anthropomorphising the results from flies is difficult to suppress, but the relevance to human behaviour is obviously not yet established".
Nevertheless, he suggested that the work linked "a rewarding social interaction with a lasting change in behaviour".

"Identifying the NPF system as critical in this linkage offers exciting prospects for determining the molecular and genetic mechanisms of reward and could potentially influence our understanding of the mechanisms of drugs of abuse."

Sunday, 26 February 2012

Unlimited human eggs for fertility treatment

With the ability to produce "unlimited supply" of human eggs from stem cells, looks like I can put aside the regret of not freezing my eyes/ovary when I was younger... :D


Unlimited human eggs 'potential' for fertility treatment

Egg  
Researchers say stem cells in ovaries may one day improve fertility treatment

It may be possible to one day create an "unlimited" supply of human eggs to aid fertility treatment, US doctors say.

Researchers have shown it is possible to find stem cells in adult women which spontaneously produced new eggs in the laboratory.

Further experiments on mice showed such eggs could be fertilised, according to a study in the journal Nature Medicine.

One British expert said the study re-wrote the rule book with "exciting possibilities" for improving fertility.
The long-established theory is that women are born with all the eggs they will ever have. Lead researcher Dr Jonathan Tilly, from Massachusetts General Hospital, said this study, a follow up to one on mice in 2004, disproves that.

His team has reported finding and isolating the stem cells which go on to produce eggs in the ovaries of reproductive age women. It was done by searching for a protein, DDX4, which was unique to the surface of the stem cells. This allowed researchers to fish out the right cells.
When grown in the laboratory, the cells "spontaneously generated" immature eggs - or oocytes, which looked and acted like oocytes in the body.
The cells were "matured" when surrounded by living human ovarian tissue, which had been grafted inside mice.

There are tight legal and ethical restrictions on research on human eggs. The same experiments repeated using stem cells taken from mice showed the eggs could be fertilised with sperm and produced embryos. 

'Unprecedented' Dr Tilly said: "The primary objective of the current study was to prove that oocyte-producing stem cells do in fact exist in the ovaries of women during reproductive life, which we feel this study demonstrates very clearly.
"The discovery of oocyte precursor cells in adult human ovaries, coupled with the fact that these cells share the same characteristic features of their mouse counterparts that produce fully functional eggs, opens the door for development of unprecedented technologies to overcome infertility in women and perhaps even delay the timing of ovarian failure."

He told Nature: "These cells, when maintained outside of the body, are more than happy to make cells on their own and if we can guide that process I think it opens up the chance that sometime in the future we might get to the point of having an unlimited source of human eggs."

Dr Allan Pacey, a fertility expert at the University of Sheffield, said: "This is a nice study which shows quite convincingly that women's ovaries contain stem cells that can divide and make eggs.

"Not only does this re-write the rule book, it opens up a number of exciting possibilities for preserving the fertility of women undergoing treatment for cancer, or just maybe for women who are suffering infertility by extracting these cells and making her new eggs in the lab."

'Potential landmark' Stuart Lavery, a consultant gynaecologist and director of IVF at Hammersmith Hospital, said the findings were "extremely significant" and "a potentially landmark piece of research".

He told the BBC: "If this research is confirmed it may overturn one of the great asymmetries of reproductive biology - that a woman's reproductive pool of gametes may be renewable, just like a man's."

While cautioning that the cells were "some way" from any clinical use, Mr Lavery said they had potential, "particularly in young women facing sterilising treatment such as chemotherapy".

Sunday, 28 August 2011

Are males necessary?

A recent article published on National Geographic talked about an insect species, known as cottony cushion scale, where females have begun to develop sperm-producing clones of their fathers—inside their bodies.
When baby girl cushion scales develop in the mother’s fertilized eggs, excess sperm from the father grows into tissue within her body. This tissue is genetically identical to the father. The “father’s sperms” lives inside the female and fertilize her eggs internally—rendering the female a hermaphrodite and making her father both the grandfather and father of her offspring.
Cottony Cushion Scale

Though this new form of reproduction hasn't replaced cottony cushion scale sex, "this parasitic male has taken off like an epidemic in population," said study leader Andy Gardner, an evolutionary theorist at the University of Oxford.

"Once [this trend] gets started, it's going to sweep through the population so all the females carry it. So there's no point for regular males to exist," Gardner added.
If the females begin passing on the parasitic male to their offspring, there may eventually be no more need for "baby boy" cushion scales that grow up and produce sperm and fertilize females, Gardner said.
This work, published in the August issue of American Naturalist, suggests that the females would benefit from this parasitic infection, negating the need for males.

WOW! That’s pretty interesting. Although I don’t think it will benefit the species in the long term. Sexual reproduction introduces genetic variation in the offsprings. This makes the population better able to keep up with changes in the environment. Asexual reproduction produces a genetically similar population, which may all be easily wiped out by the same disease.  

Furthermore, what’s the fun in reproducing if deprived of the joy of the mating process?:D

Hermaphroditus, the two-sexed son of Aphrodite and Hermes, was portrayed in Greco-Roman art as a female figure with male genitals. Hermaphroditus is a symbol of bisexuality or effeminacy,

Thursday, 21 July 2011

Gentlemen, DEFEND your swimmers

Human sperms are naturally slower swimmers compared to our monkey counterparts.


                                                    http://www.physorg.com/news109934150.html


And if you have a defect in the Defensin gene (DEFB126) , you have to try even harder to get your partner pregnant. The DEFB126 protein is found on the surface of sperms. It protects the sperm and helps it swim through the woman's cervical mucus to fertilise the egg.


Scientists found that:
- About half of all men carry one copy of the defective gene
- About a quarter of all men have two defective copies
- Sperms from men with two defective copies were 84% slower in swimming through the experimental “cervical mucus”. 
- Wives of men with two defective copies are 30% less likely to give birth


Prior to this study, male infertility causes were largely unknown. With knowledge gained from such a study, couples trying to conceive could undergo genetic testing to identify the underlying problem and choose a suitable assisted reproductive method. 

Here's the paper