Protein tweak makes CRISPR gene editing 4k times less error-prone
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Re: Protein tweak makes CRISPR gene editing 4k times less error-prone
#2Re: Protein tweak makes CRISPR gene editing 4k times less error-prone
#3Can someone with a more indepth understanding of the subject break down the order of magnitude here? How much of a real world impact does this increase in precision make?
Re: Protein tweak makes CRISPR gene editing 4k times less error-prone
#4Just to clarify, that is a real question, not rhetoric.
Re: Protein tweak makes CRISPR gene editing 4k times less error-prone
#5Re: Protein tweak makes CRISPR gene editing 4k times less error-prone
#6I may be way out of my depth, but until we can edit all the cells of a living organism, isn't CRISPR limited to working with pre-embryos/embryos? If so, other than creating a potential super race, what is it of benefit to the living individuals with "imperfect" genes? Just to clarify, that is a real question, not rhetoric.
Basically an auto transplant with marrow
Re: Protein tweak makes CRISPR gene editing 4k times less error-prone
#7I may be way out of my depth, but until we can edit all the cells of a living organism, isn't CRISPR limited to working with pre-embryos/embryos? If so, other than creating a potential super race, what is it of benefit to the living individuals with "imperfect" genes? Just to clarify, that is a real question, not rhetoric.
There's also more far-out ideas that might be viable involving permanently affecting the bodies biological machinery to improve it, like adding extra insulin producing capability to cells in diabetic patients.
Re: Protein tweak makes CRISPR gene editing 4k times less error-prone
#8I've been rooting for a crash-program in this direction and halting all development of improvements to radiation and chemotherapy treatment to waste unnecessary spending of effort and time.
Re: Protein tweak makes CRISPR gene editing 4k times less error-prone
#9From my reading of the article it sounds like they are using physical attributes to help the interaction, ie poking the single strand dna back into place at the time of editing. I’m sure that’s an over simplification but biology always appears messy to me when compared to other sciences, at least when it is done right…
Re: Protein tweak makes CRISPR gene editing 4k times less error-prone
#10I may be way out of my depth, but until we can edit all the cells of a living organism, isn't CRISPR limited to working with pre-embryos/embryos? If so, other than creating a potential super race, what is it of benefit to the living individuals with "imperfect" genes? Just to clarify, that is a real question, not rhetoric.
It is possible, but still difficult, to edit cells in-place. One example is the liver, a highly vascularized tissue (lots of blood vessels). This means that you can use a blood-based delivery method, e.g. blood infusion of CRISPR components + other compounds that allow these components to enter cells. Over time, more of the liver cells are edited and you can reach a reasonable proportion of the cells using this method using current techniques (40-90%). Note that for many diseases you would not have to reach 100% of the cells in order to have a positive effect on health.
There are a few labs working on better targeted delivery methods. In general the approach is to "wrap" CRISPR components in an envelope that is able to target specific cell-surface proteins for the cell type of interest.