VIAF

Virtual International Authority File

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Leader     00000nz a2200037n 45 0
001     WKP|Q89432638  (VIAF cluster)  (Authority/Source Record)
003     WKP
005     20241120235832.0
008     241120nneanz||abbn n and d
035 ‎‡a  (WKP)Q89432638‏
024 ‎‡a  0000-0002-9792-7034‏ ‎‡2  orcid‏
035 ‎‡a  (OCoLC)Q89432638‏
100 0 ‎‡a  Chih-Yu Chao‏ ‎‡c  researcher (ORCID 0000-0002-9792-7034)‏ ‎‡9  en‏
400 0 ‎‡a  Chih-Yu Chao‏ ‎‡c  onderzoeker‏ ‎‡9  nl‏
670 ‎‡a  Author's Application of non-invasive low-intensity pulsed electric field with thermal cycling-hyperthermia for synergistically enhanced anticancer effect of chlorogenic acid on PANC-1 cells‏
670 ‎‡a  Author's Application of non-invasive low strength pulsed electric field to EGCG treatment synergistically enhanced the inhibition effect on PANC-1 cells.‏
670 ‎‡a  Author's Static magnetic field enhances the anticancer efficacy of capsaicin on HepG2 cells via capsaicin receptor TRPV1.‏
670 ‎‡a  Author's Studies on the non-invasive anticancer remedy of the triple combination of epigallocatechin gallate, pulsed electric field, and ultrasound‏
670 ‎‡a  Author's The protective effect of non-invasive low intensity pulsed electric field and fucoidan in preventing oxidative stress-induced motor neuron death via ROCK/Akt pathway‏
670 ‎‡a  Author's Thermal cycling-hyperthermia in combination with polyphenols, epigallocatechin gallate and chlorogenic acid, exerts synergistic anticancer effect against human pancreatic cancer PANC-1 cells‏
670 ‎‡a  Author's Thermal cycling protects SH-SY5Y cells against hydrogen peroxide and β-amyloid-induced cell injury through stress response mechanisms involving Akt pathway‏
670 ‎‡a  Author's Thermal cycling protects SH-SY5Y cells against hydrogen peroxide and β-amyloid-induced cell injury through stress response mechanisms involving Akt pathway‏
909 ‎‡a  (orcid) 0000000297927034‏ ‎‡9  1‏
919 ‎‡a  thermalcyclingprotectsshsy5ycellsagainsthydrogenperoxideandβamyloidinducedcellinjurythroughstressresponsemechanismsinvolvingaktpathway‏ ‎‡A  Thermal cycling protects SH-SY5Y cells against hydrogen peroxide and β-amyloid-induced cell injury through stress response mechanisms involving Akt pathway‏ ‎‡9  1‏
919 ‎‡a  thermalcyclingprotectsshsy5ycellsagainsthydrogenperoxideandi2amyloidinducedcellinjurythroughstressresponsemechanismsinvolvingaktpathway‏ ‎‡A  Thermal cycling protects SH-SY5Y cells against hydrogen peroxide and β-amyloid-induced cell injury through stress response mechanisms involving Akt pathway‏ ‎‡9  1‏
919 ‎‡a  thermalcyclinghyperthermiaincombinationwithpolyphenolsepigallocatechingallateandchlorogenicacidexertssynergisticanticancereffectagainsthumanpancreaticcancerpanc1cells‏ ‎‡A  Thermal cycling-hyperthermia in combination with polyphenols, epigallocatechin gallate and chlorogenic acid, exerts synergistic anticancer effect against human pancreatic cancer PANC-1 cells‏ ‎‡9  1‏
919 ‎‡a  protectiveeffectofnoninvasivelowintensitypulsedelectricfieldandfucoidaninpreventingoxidativestressinducedmotorneurondeathviarockaktpathway‏ ‎‡A  The protective effect of non-invasive low intensity pulsed electric field and fucoidan in preventing oxidative stress-induced motor neuron death via ROCK/Akt pathway‏ ‎‡9  1‏
919 ‎‡a  studiesonthenoninvasiveanticancerremedyofthetriplecombinationofepigallocatechingallatepulsedelectricfieldandultrasound‏ ‎‡A  Studies on the non-invasive anticancer remedy of the triple combination of epigallocatechin gallate, pulsed electric field, and ultrasound‏ ‎‡9  1‏
919 ‎‡a  staticmagneticfieldenhancestheanticancerefficacyofcapsaicinonhepg2cellsviacapsaicinreceptortrpv1‏ ‎‡A  Static magnetic field enhances the anticancer efficacy of capsaicin on HepG2 cells via capsaicin receptor TRPV1.‏ ‎‡9  1‏
919 ‎‡a  applicationofnoninvasivelowstrengthpulsedelectricfieldtoegcgtreatmentsynergisticallyenhancedtheinhibitioneffectonpanc1cells‏ ‎‡A  Application of non-invasive low strength pulsed electric field to EGCG treatment synergistically enhanced the inhibition effect on PANC-1 cells.‏ ‎‡9  1‏
919 ‎‡a  applicationofnoninvasivelowintensitypulsedelectricfieldwiththermalcyclinghyperthermiaforsynergisticallyenhancedanticancereffectofchlorogenicacidonpanc1cells‏ ‎‡A  Application of non-invasive low-intensity pulsed electric field with thermal cycling-hyperthermia for synergistically enhanced anticancer effect of chlorogenic acid on PANC-1 cells‏ ‎‡9  1‏
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997 ‎‡a  0 0 lived 0 0‏ ‎‡9  1‏