Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Sheren, Azhari"'
Autor:
Fatemah Basingab, Abeer Alsaiary, Shahad Almontashri, Aisha Alrofaidi, Mona Alharbi, Sheren Azhari, Khloud Algothmi, Safiah Alhazmi
Publikováno v:
International Journal of Inflammation, Vol 2022 (2022)
Defensin Alpha 4 (DEFA4) is the fourth member of the Alpha Defensins family known as a part of antimicrobial peptides in the innate immune system. DEFA4 has a strong preference to kill Gram-negative bacteria more than Gram-positive bacteria. In addit
Externí odkaz:
https://doaj.org/article/c2756f8cdfb1444080bc530d58eb728d
Autor:
Safiah Alhazmi, Maryam Alzahrani, Reem Farsi, Mona Alharbi, Khloud Algothmi, Najla Alburae, Magdah Ganash, Sheren Azhari, Fatemah Basingab, Asma Almuhammadi, Amany Alqosaibi, Heba Alkhatabi, Aisha Elaimi, Mohammed Jan, Hesham M Aldhalaan, Aziza Alrafiah, Aisha Alrofaidi
Publikováno v:
Pharmacogenomics and Personalized Medicine. 15:705-720
Safiah Alhazmi,1 Maryam Alzahrani,1 Reem Farsi,1 Mona Alharbi,1 Khloud Algothmi,1 Najla Alburae,1 Magdah Ganash,1 Sheren Azhari,1 Fatemah Basingab,1 Asma Almuhammadi,1 Amany Alqosaibi,2 Heba Alkhatabi,3,4 Aisha Elaimi,3,4 Mohammed Jan,5 Hesham M Aldh
Autor:
Khloud Algothmi, Amal Alqurashi, Aisha Alrofaidi, Mona Alharbi, Reem Farsi, Najla Alburae, Magdah Ganash, Sheren Azhari, Fatemah Basingab, Asma Almuhammadi, Amany Alqosaibi, Heba Alkhatabi, Aisha Elaimi, Mohammed Jan, Hesham Aldhalaan, Aziza Alrafiah, Safiah Alhazmi
Publikováno v:
Pharmacogenomics and Personalized Medicine.
Algothmi K, Alqurashi A, Alrofaidi A, et al. Pharmgenomics Pers Med. 2022;15:131–142. The authors have advised affiliation 4 on page 131 is incorrect. The correct affiliation should read “Medical Laboratory Technology Department, Faculty of Appli
Autor:
Aisha Alrofaidi, Reem M. Farsi, Hesham Aldhalaan, Ashraf Dallol, Najla Ali Alburae, Fatemah Basingab, Safiah Alhazmi, Mohammed M. Jan, Mona G. Alharbi, Rawan Saeed Alghamdi, Aisha Elaimi, Amany I. Alqosaibi, Magdah Ganash, Sheren Azhari, Heba Alkhatabi, Manal Shaabad, Khloud M. Algothmi
Publikováno v:
Journal of Pharmaceutical Research International. :20-26
The potential role of DNA methylation pattern in autism has been provided by revealing the differences in methylation level of multiple genes which are significantly associated with their expression and implicated in ASD pathogenesis. RASA3 is a memb
Autor:
Magdah Ganash, Mohammed M. Jan, Amany I. Alqosaibi, Ashraf Dallol, Mona G. Alharbi, Sheren Azhari, Hesham Aldhalaan, Hadeel Kalboneh, Fatemah Basingab, Khloud M. Algothmi, Manal Shaabad, Alawiah M. Alhebshi, Aisha Alrofaidi, Najla Ali Alburae, Safiah Alhazmi, Reem M. Farsi
Publikováno v:
International Journal Of Pharmaceutical And Phytopharmacological Research. 11:120-124
Autor:
Alawiah M. Alhebshi, Mohammed M. Jan, Hesham Aldhalaan, Khloud M. Algothmi, Najla Ali Alburae, Safiah Alhazmi, Reem M. Farsi, Ashraf Dallol, Manal Shaabad, Aisha Alrofaidi, Mona G. Alharbi, Sheren Azhari, Amani Alqosaibi, Raghad Alghamdi, Fatema Basingab, Magdah Ganash
Publikováno v:
International Journal Of Pharmaceutical And Phytopharmacological Research. 11:173-176
Autor:
Khloud Algothmi, Amal Alqurashi, Aisha Alrofaidi, Mona Alharbi, Reem Farsi, Najla Alburae, Magdah Ganash, Sheren Azhari, Fatemah Basingab, Asma Almuhammadi, Amany Alqosaibi, Heba Alkhatabi, Aisha Elaimi, Mohammed Jan, Hesham Aldhalaan, Aziza Alrafiah, Safiah Alhazmi
Publikováno v:
Pharmacogenomics and Personalized Medicine.
Khloud Algothmi,1 Amal Alqurashi,1 Aisha Alrofaidi,1 Mona Alharbi,1 Reem Farsi,1 Najla Alburae,1 Magdah Ganash,1 Sheren Azhari,1 Fatemah Basingab,1 Asma Almuhammadi,1 Amany Alqosaibi,2 Heba Alkhatabi,3,4 Aisha Elaimi,3,4 Mohammed Jan,5 Hesham Aldhala
Autor:
Khloud, Algothmi, Amal, Alqurashi, Aisha, Alrofaidi, Mona, Alharbi, Reem, Farsi, Najla, Alburae, Magdah, Ganash, Sheren, Azhari, Fatemah, Basingab, Asma, Almuhammadi, Amany, Alqosaibi, Heba, Alkhatabi, Aisha, Elaimi, Mohammed, Jan, Hesham, Aldhalaan, Aziza, Alrafiah, Safiah, Alhazmi
Publikováno v:
Pharmacogenomics and personalized medicine. 15
DNA methylation (DNAm) is one of the main epigenetic mechanisms that affects gene expression without changing the underlying DNA sequence. Aberrant DNAm has an implication in different human diseases such as cancer, schizophrenia, and autism spectrum