@esme.nrcs:

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Thursday 16 July 2026 14:34:55 GMT
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wickedcolorandnails
xx.bewitchedtips.xx :
You slay EVERYTIMEEEEE 🔥✨
2026-07-31 05:12:52
0
estrellaesmeralda591
Star ✨⭐ :
pareces una de las muñecas Bratz hermosa 🤭🤭🤭
2026-07-16 21:25:56
342
la_soffy13
anasofiaacevedoan :
Quiero todo lo que se pone esa mujer ICÓNICA
2026-07-16 16:24:21
69
f_s_so10
FASA S💖 :
que guapa linda y cuerpazo pasa la.receta amiga,me hiciste recordar mi adolescencia cuando vestía así y luego a sean paul pff
2026-07-25 23:30:23
3
fernandareyesmoreno
Fernanda Reyes🍃 :
De mejor a mejor
2026-07-29 17:51:50
1
dreimcarmenate
Didy :
Reina!!!
2026-07-27 03:23:13
1
maykehlani
May Kehlani :
amo tus vibras de los 2000'
2026-07-16 23:43:21
24
angeles.flores.6
🍓🍁 :
wooow me encanta 🥰
2026-07-26 21:21:10
1
say_lujan
Sayu Luján :
estas hermosa. ame tu cinturita
2026-07-17 02:25:08
11
aylizie07
Aylizie07 :
maridison eres tu? my scene ✨️🩷
2026-07-18 05:10:31
27
luzcarlover
Luz Car Lover :
Amo tu estilo. 👑
2026-07-21 23:07:43
1
geise.model
Gege $ Discreta :
mdsssss q estilo maravilhosooo
2026-07-18 15:37:36
1
user6dr8quk0fk
ANGELINA M. :
dónde compras tu ropa😳😳😳
2026-07-17 21:23:35
1
la_vida_misma_y_ya
Yolanda rojas rodriguez :
la cuerpaaaa. 🥰
2026-07-17 01:58:34
5
luza.p15
Luza.p15 :
que hermosa ❤️
2026-07-17 18:48:06
1
angie.guzman
Angie Guzmán :
tengo que volver a nacer? para ser asi de preciosa😳🥰
2026-07-26 08:40:36
1
albanis.mm01
Albanis.mm01 :
Dios mioooo 🥰
2026-07-19 04:03:55
1
karen.quiroz27
Karenxita Quiroz :
que hermosaaaa 🥹🥹🥹
2026-07-17 17:37:25
1
aandre.hernandez
AndresMT15Ctg :
yo la amo, ella es bellaaaaa, una Barbie
2026-07-18 05:35:22
4
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Scientists may have just done something that was considered impossible a few years ago. 🧬 Researchers in Japan used CRISPR gene editing to remove the extra chromosome 21 from cells of a person with Down syndrome. Not correct a gene. Not patch a mutation. Remove an entire extra chromosome. Down syndrome — or Trisomy 21 — occurs when a person is born with three copies of chromosome 21 instead of two. That extra copy affects development, cognition, and a range of biological processes throughout the body. Until now nobody had been able to target and eliminate it without damaging the other two. The technique they developed is called allele specific editing. It identifies tiny DNA differences unique to the extra chromosome and cuts only that one — leaving the other two completely untouched. Once cut the damaged chromosome becomes unstable and disappears naturally during cell division. What happened after was remarkable. Inflammation markers dropped. Metabolism genes shifted toward normal levels. Brain development genes increased. Cell division patterns normalized. Now for the honest part. This happened in lab cultured cells — not in a living patient. Turning this into an actual treatment would require editing nearly every cell in the body at the earliest stages of development with zero margin for error. We are years away from any clinical application and there are significant ethical questions that still need to be worked through. But as a proof of concept? This is one of the most significant breakthroughs in genetic medicine we have ever seen. 🙏 Vid: Unknown ✅Follow @drdavidabbasi for More Daily Medical Content & Health Tips!🌴😷Schedule a consultation in Delray Beach! Visit www.primeorthocenter.com
Scientists may have just done something that was considered impossible a few years ago. 🧬 Researchers in Japan used CRISPR gene editing to remove the extra chromosome 21 from cells of a person with Down syndrome. Not correct a gene. Not patch a mutation. Remove an entire extra chromosome. Down syndrome — or Trisomy 21 — occurs when a person is born with three copies of chromosome 21 instead of two. That extra copy affects development, cognition, and a range of biological processes throughout the body. Until now nobody had been able to target and eliminate it without damaging the other two. The technique they developed is called allele specific editing. It identifies tiny DNA differences unique to the extra chromosome and cuts only that one — leaving the other two completely untouched. Once cut the damaged chromosome becomes unstable and disappears naturally during cell division. What happened after was remarkable. Inflammation markers dropped. Metabolism genes shifted toward normal levels. Brain development genes increased. Cell division patterns normalized. Now for the honest part. This happened in lab cultured cells — not in a living patient. Turning this into an actual treatment would require editing nearly every cell in the body at the earliest stages of development with zero margin for error. We are years away from any clinical application and there are significant ethical questions that still need to be worked through. But as a proof of concept? This is one of the most significant breakthroughs in genetic medicine we have ever seen. 🙏 Vid: Unknown ✅Follow @drdavidabbasi for More Daily Medical Content & Health Tips!🌴😷Schedule a consultation in Delray Beach! Visit www.primeorthocenter.com

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