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  1. Home
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  5. Human exfoliated deciduous teeth stem cells: Features and therapeutic effects on neurogenerative and hepatobiliary-pancreatic diseases
 
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Human exfoliated deciduous teeth stem cells: Features and therapeutic effects on neurogenerative and hepatobiliary-pancreatic diseases

Journal
Current Stem Cell Research and Therapy
ISSN
1574888X
Date Issued
2021-01-01
Author(s)
Wahab N.W.A.
Universiti Malaya
Guad R.M.
Universiti Malaysia Sabah
Subramaniyan V.
MAHSA University
Fareez I.M.
MAHSA University
Bonam S.R.
Université de Paris
Choy K.W.
Universiti Teknologi MARA
Selvaraju C.
MAHSA University
Subash Chandra Bose Gopinath
Universiti Malaysia Perlis
Wu Y.S.
MAHSA University
Sim M.S.
Universiti Malaya
DOI
10.2174/1574888X15999200918105623
Handle (URI)
https://hdl.handle.net/20.500.14170/9249
Abstract
Stem cells can multiply into more cells with similar types in an undifferentiated form and differentiate into other types of cells. The great success and key essence of stem cell technology is the isolation of high-quality Mesenchymal Stem Cells (MSCs) with high potency, either with multipotent or pluripotent property. In this line, Stem cells from Human Exfoliated Deciduous teeth (SHEDs) are highly proliferative stem cells from dental pulp and have multipoint differentiation capacity. These cells play a pivotal role in regenerative medicine, such as cell repair associated with neurodegenerative, hepatobiliary, and pancreatic diseases. In addition, stem cell therapy has been widely used to regulate immune response and repair of tissue lesions. This overview captured the differential biological characteristics, and the potential role of stem cell technology and paid special attention to human welfare SHEDs in eliminating the above-mentioned diseases. This review provides further insights into stem cell technology by expanding the therapeutic potential of SHEDs in tissue engineering and cell organ repairs.
Subjects
  • Diabetes mellitus

  • Human exfoliated deci...

  • Liver diseases

  • Neurodegenerative dis...

  • Organ transplantation...

  • Pluripotent

  • Retinal degeneration

  • SHEDs

  • Totipotency

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