Tuesday, September 20, 2022
LINDA WITH UNKNOWN BABY SNATCHED FROM PARKED CAR!
Here is a PBS film clip on ovarian cancer risk-assessment. Speaks for itself.
https://www.pbs.org/newshour/show/whos-at-the-greatest-risk-of-ovarian-cancer
Sunday, September 18, 2022
LINDA WITH ELLA (?), AND CAT
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You all know that mutations in the BRCA1 and/or BRCA2 genes render a woman much more at risk from breast and ovarian cancer. Heretofore that information has been quite useful as a warning to women carrying such mutations to form a tight and immediate acquaintanceship with a damned good oncologist. (The problem of course is that few women actually know their BRCA status.) Now, however, thanks to the donation described in this article, scientists will be able to research ways to frustrate the knavish tricks (to quote the British national anthem) of the malfunctioning BRCA gene, thus sparing many women a lifetime of worry.
This makes me wish that I had spent my life accumulating money, instead of entries on a publication list. I would like to be able to gift Fred Hutch with a cool $50 million.
But, nah - I’d have made a piss-poor capitalist.
https://penntoday.upenn.edu/news/55m-gift-creates-new-cancer-interception-institute-penns-basser-center-brca-stop-hereditary
Saturday, September 17, 2022
LINDA AND LAYRA HANSEN
You know how it works, DNA carries the code for what we are; proteins follow that code to do the work. However, there are intermediate steps. Something pries the DNA double helix apart, enabling genes to be “read” and converted into a molecule called mRNA, where the m stands for “messenger”, and the RMA part consists of a single-stranded molecule much like DNA. The purpose of mRNA is to transport the DNA code to a complicated bio-object called a ribosome, where it is “read” and converted into a protein.
But, of course, you knew all that.
Anyway, if your DNA is carrying something undesirable, you can attempt to halt the process by (1) correcting the malfunctioning gene, (2) somehow destroying the protein at birth, or (3) waylaying the pernicious mRNA object on its way to the ribosome. (2) is the usual practice; (1) is the goal of much investigation, while (3) as many of you know is the basis of many of our attempts to disarm the Covid virus.
So, anyway, some smart people in Oregon are working on a way to use mRNA therapy to combat OVCA and a bunch of related diseases. Their mouse-models are encouraging. Read all about it below. It’s relatively easy going.
https://www.sciencedaily.com/releases/2022/09/220913140855.htm
Friday, September 16, 2022
LINDA AND AMANDA
I post this as an example of how basic research concerning ovarian cancer is conducted. We already know that the most lethal type of OVCA originates because of mutations in the fallopian tubes, This study aims at determining what kinds of cells are most vulnerable, and where they are located. This sort of science is difficult to pursue, and expensive, but probably is the only way ever to rid ourselves of this damnable disease!
https://www.cancer.org/research/acs-research-highlights/ovarian-cancer-research-highlights/researchers-study-fallopian-tube-cells-from-cancer-free-women-to-learn-about-origins-of-ovarian-cancer.html
Wednesday, September 14, 2022
LINDA IN ECUADOR
Here is a summary of where we stand in our war against ovarian cancer. Not entirely encouraging.
https://www.cancer.org/research/acs-research-highlights/ovarian-cancer-research-highlights.html
Tuesday, September 13, 2022
Monday, September 12, 2022
GEMM
Ah, bless the little mouse, once again! Do you know what is meant by the letters GEMM? Well, I do now. It stands for “genetically engineered mouse model”. In constructing a GEMM one apparently modifies the normal murine genome in such a way as to cause the poor rodent to contract something like a human disorder, then experiment to find a cure. The research described below is of that nature. The participants have identified a protein that dramatically assists in the growth of ovarian cancer. This protein (USP13) is very scarce in normal ovarian tissue but abundant in cases of disease. More research is underway to determine how USP13 does its dirty work and, of course, how to strangle it at birth.
https://www.cancer.org/research/acs-research-highlights/ovarian-cancer-research-highlights/a-new-gene-is-linked-with-the-deadliest-type-of-ovarian-cancer.html
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