cik nuraini binti mamat rusli

juruteknologi makmal perubatan

pusat kajian toksikologi & risiko kesihatan (core)

 nurainirusli@ukm.edu.my



   Biografi/ Biography :

  • JURUTEKNOLOGI MAKMAL PERUBATAN

  • noor amalina binti ramle;maimunah binti jais;chan kok meng;mazlin binti aman;syaidatul hadijah binti abu samah;asnida binti arifin;nuraini binti mamat rusli;mohd azrinkhuzaini bin abdul kadir.  (2024).  assessment of anti-inflammatory effects of curcurmin piperidone derivative fldp-5 & fldp-8 using raw 264.7 macrophage cells and 3-dimensional reconstructed human epidermis model.  -

     

    james, jasper e., jacinta santhanam, latiffah zakaria, nuraini mamat rusli, mariahyati abu bakar, satinee suetrong, jariya sakayaroj, mohd fuat abdul razak, erwin lamping, and richard d. cannon..  (2022).  morphology, phenotype, and molecular identification of clinical and environmental fusarium solani species complex isolates from malaysia.  - journal of fungi.  1-21. 

     

    james, jasper e., jacinta santhanam, latiffah zakaria, nuraini mamat rusli, mariahyati abu bakar, satinee suetrong, jariya sakayaroj, mohd fuat abdul razak, erwin lamping, and richard d. cannon..  (2022).  morphology, phenotype, and molecular identification of clinical and environmental fusarium solani species complex isolates from malaysia.  - journal of fungi.  1-21. 

     

    james, jasper e., jacinta santhanam, latiffah zakaria, nuraini mamat rusli, mariahyati abu bakar, satinee suetrong, jariya sakayaroj, mohd fuat abdul razak, erwin lamping, and richard d. cannon..  (2022).  morphology, phenotype, and molecular identification of clinical and environmental fusarium solani species complex isolates from malaysia.  - journal of fungi.  1-21. 

     

    noor amalina binti ramle;maimunah binti jais;chan kok meng;mazlin binti aman;syaidatul hadijah binti abu samah;asnida binti arifin;nuraini binti mamat rusli;mohd azrinkhuzaini bin abdul kadir.  (2024).  assessment of anti-inflammatory effects of curcurmin piperidone derivative fldp-5 & fldp-8 using raw 264.7 macrophage cells and 3-dimensional reconstructed human epidermis model.  -