There has been some discussion about the telomerase elongating properties of purslane on the Astragalus thread.
It also extends the lifespan of drosophilia by regulating telomerase length.
I think it deserves it's own thread.
Is anyone trying this, or interested in trying it ?
One source I've found is Kalyx, but they seem to have a bad reputation.
Here's some background info if you're interested.
It seems Astragalus compounds have competition: purslane herb aquenous extracts(PHAS). And for a change, with in vivo evidence for telomerase activation AND increase in telomere lengths in a nice and dose dependent manner.
http://www.ncbi.nlm....pubmed/17764668In order to evaluate mechanisms of natural plant purslane herb aquenous extracts (PHAS) for neuroprotective, we assessed neuroprotective effects of PHAS at doses of 2.5, 5 and 10 mg/(kg day) on SD mice injected daily with D-gal (50 mg/(kg day)) by behavioral tests. PHAS-fed mice showed higher activity upon induction by new environmental stimuli, lower anxiety and higher novelty-seeking behavior in the open field tasks, and significantly improved learning and memory ability in step-through compared with D-gal-treated mice. We further examined the mechanisms involved in neuroprotective effects of PHAS on mouse brain. PHAS significantly increased superoxide dismutase (SOD) activity and decreased the malondialdehyde (MDA) level. Meanwhile, PHAS also could up-regulate telomere lengths and telomerase activity in PHAS-fed groups. Furthermore, we examined the expression of p21(waf1) and p53 mRNA and protein in mouse brain by western blot analysis and real-time RT-PCR. We found that p21(waf1)was down-regulated by PHAS without changing the expression of p53. The results of this study suggested that the PHAS might be a primary target of p21(waf1)and the neuroprotective effect of PHAS might be carried out through a p21(waf1)-dependent and p53-independent pathway.
From the full text version:Purslane herb powder also extends the life span of drosophila by regulating telomere length [6].
TRF length was determined using pulse gel electrophoresis followed by Southern blot hybridization with telomere-specific probes.Average telomere lengths were shown in Fig. 3A. Telomere length assay revealed that PHAS-fed groups were longer than those in the controls and d-gal model groups. PHAS-fed group of different concentrations led to resulted in the significant increment of the mean telomere length (Fig. 3B, P < 0.05). We then again evaluated the effect of PHAS on telomerase activity. Our data suggested that PHAS could up-regulate telomerase activity in PHAS-fed groups. Telomerase activity were shown in Fig. 3C. It revealed that PHAS-fed groups had higher than those in the controls and d-gal model groups. PHAS-fed group of different concentrations led to resulted in the significant increment of the telomerase activity.
The relevant research is available from the members area:
http://www.imminst.o...-paper-request/