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RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
RT @natBME: Transdermal microneedles for the programmable burst release of multiple vaccine payloads https://t.co/cSW4S7XXdy https://t.co/…
RT @natBME: Transdermal microneedles for the programmable burst release of multiple vaccine payloads https://t.co/cSW4S7XXdy https://t.co/…
O este otro estudio, con microagujas fabricadas con materiales que les confieren una cinética de liberación diferencial https://t.co/aT6ytlX2rx https://t.co/M9hKryUvsu
RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
@ferrymelchels
Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradability kinetics, enable the preprogrammed burst release of vaccine payloads over a period of a few days to more than a month. https
COVID-19 VACCINATION UPDATE >> *Could it be the answer to a ONE-SHOT VACCINE? #WHO #PublicHealth #HealthPromotion #HealthyAging #AgeingWell #EAPC #DigitalHealth #eHealth #MedTech #HealthTech #healthcare #HarvardHealth #Smartageing #Covid19UK @COVID1
RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradability kinetics, enable the preprogrammed burst release of vaccine payloads over a period of a few days to more than a month. https
RT @JCRnEDITORS: Transdermal microneedles for the programmable burst release of multiple vaccine payloads. | Nature Biomedical Engineering…
Can we take a moment and appreciate how sickly awesome microneedle research have progressed!! 😍 Transdermal microneedles for the programmable burst release of multiple vaccine payloads | Nature Biomedical Engineering https://t.co/pydD10pUkJ
Transdermal microneedles for the programmable burst release of multiple vaccine payloads. | Nature Biomedical Engineering | https://t.co/O0caJqs44D
RT @CofferResearch: So very cool ...
So very cool ...
RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradability kinetics, enable the preprogrammed burst release of vaccine payloads over a period of a few days to more than a month. https
RT @CUNYResearch: Shawn Kilpatrick, @asrc_gc, and @RoxyPiotrowska, @Hunter_College, collaborated on a recently published article about the…
RT @CUNYResearch: Shawn Kilpatrick, @asrc_gc, and @RoxyPiotrowska, @Hunter_College, collaborated on a recently published article about the…
Shawn Kilpatrick, @asrc_gc, and @RoxyPiotrowska, @Hunter_College, collaborated on a recently published article about the development of single-use, self-administered microneedle patches to provide immunization against infectious diseases. Check it out: htt
RT @natBME: Transdermal microneedles for the programmable burst release of multiple vaccine payloads https://t.co/cSW4S7XXdy https://t.co/…
RT @natBME: Transdermal microneedles for the programmable burst release of multiple vaccine payloads https://t.co/cSW4S7XXdy https://t.co/…
Interested Author(s) can submit their manuscripts online at https://t.co/PB12bVEYVi or as an e-mail attachment at [email protected]@pulsus.com">[email protected]>
RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
RT @natBME: Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradabil…
Patches of transdermal core–shell microneedles, fabricated via additive manufacturing of polymer shells with varying degradability kinetics, enable the preprogrammed burst release of vaccine payloads over a period of a few days to more than a month. https
RT @natBME: Transdermal microneedles for the programmable burst release of multiple vaccine payloads https://t.co/cSW4S7XXdy https://t.co/…
RT @natBME: Transdermal microneedles for the programmable burst release of multiple vaccine payloads https://t.co/cSW4S7XXdy https://t.co/…
RT @natBME: Transdermal microneedles for the programmable burst release of multiple vaccine payloads https://t.co/cSW4S7XXdy https://t.co/…
RT @natBME: Transdermal microneedles for the programmable burst release of multiple vaccine payloads https://t.co/cSW4S7XXdy https://t.co/…
RT @natBME: Transdermal microneedles for the programmable burst release of multiple vaccine payloads https://t.co/cSW4S7XXdy https://t.co/…
RT @natBME: Transdermal microneedles for the programmable burst release of multiple vaccine payloads https://t.co/cSW4S7XXdy https://t.co/…
RT @natBME: Transdermal microneedles for the programmable burst release of multiple vaccine payloads https://t.co/cSW4S7XXdy https://t.co/…
RT @natBME: Transdermal microneedles for the programmable burst release of multiple vaccine payloads https://t.co/cSW4S7XXdy https://t.co/…
🤔
Took a while but the paper is finally out! Congratulations Khan Tran and @TylerGavitt on your Nature BME paper! Really beautiful and impactful work! https://t.co/cyF0xnQL6k
Transdermal microneedles for the programmable burst release of multiple vaccine payloads https://t.co/cSW4S7XXdy https://t.co/g34im3rjg9
Excited to share our work in @natBME on a new microneedle vaccine patch with only a single-time skin application to offer an immune-protection, similar to that obtained from multiple injections. Full article is here; https://t.co/yWeh4BwmiL ———- https://t.