| Literature DB >> 33936109 |
Dane Kim1, Alisa E Lee1, Qilin Xu1, Qunzhou Zhang1, Anh D Le1,2,3.
Abstract
A unique subpopulation of mesenchymal stem cells (MSCs) has been isolated and characterized from human gingival tissues (GMSCs). Similar to MSCs derived from other sources of tissues, e.g. bone marrow, adipose or umbilical cord, GMSCs also possess multipotent differentiation capacities and potent immunomodulatory effects on both innate and adaptive immune cells through the secretion of various types of bioactive factors with immunosuppressive and anti-inflammatory functions. Uniquely, GMSCs are highly proliferative and have the propensity to differentiate into neural cell lineages due to the neural crest-origin. These properties have endowed GMSCs with potent regenerative and therapeutic potentials in various preclinical models of human disorders, particularly, some inflammatory and autoimmune diseases, skin diseases, oral and maxillofacial disorders, and peripheral nerve injuries. All types of cells release extracellular vesicles (EVs), including exosomes, that play critical roles in cell-cell communication through their cargos containing a variety of bioactive molecules, such as proteins, nucleic acids, and lipids. Like EVs released by other sources of MSCs, GMSC-derived EVs have been shown to possess similar biological functions and therapeutic effects on several preclinical diseases models as GMSCs, thus representing a promising cell-free platform for regenerative therapy. Taken together, due to the easily accessibility and less morbidity of harvesting gingival tissues as well as the potent immunomodulatory and anti-inflammatory functions, GMSCs represent a unique source of MSCs of a neural crest-origin for potential application in tissue engineering and regenerative therapy.Entities:
Keywords: anti-inflammation; gingiva-derived mesenchymal stem cells; immunomodulation; neural crest; regenerative therapy
Year: 2021 PMID: 33936109 PMCID: PMC8085523 DOI: 10.3389/fimmu.2021.667221
Source DB: PubMed Journal: Front Immunol ISSN: 1664-3224 Impact factor: 7.561
Isolation and characterization of human GMSCs.
| Isolation method | Cell surface markers | Multipotency | Refs |
|---|---|---|---|
| Enzymatic | CD73, CD90, CD105, SSEA4, STRO-1, CD146 | Osteocytes, adipocytes, neural cells, endothelial cells | Zhang et al. ( |
| Enzymatic | CD29, CD44, CD90, CD73 | Osteocytes, adipocytes, chondrocytes | Tomar et al. ( |
| Explant | CD29, CD44, CD73, CD90, CD105, STRO-1 | Osteocytes, adipocytes, chondrocytes | Fournier et al. ( |
| Explant | CD13, CD44, CD73, CD90, CD105 | Osteocytes, adipocytes, chondrocytes | Mitrano et al. ( |
| Enzymatic | CD29, CD44, CD90, CD105, CD146, STRO-1 | Osteocytes, adipocytes, chondrocytes | Tang et al. ( |
| Enzymatic | CD29, CD90, CD105, STRO-1 | Osteocytes, adipocytes, chondrocytes | Wang et al. ( |
| Enzymatic | CD44, CD73, CD90, CD105, CD166 | Osteocytes, adipocytes, chondrocytes | Ge et al. ( |
| Enzymatic | CD29, CD90, CD105, CD146, STRO-1 | Osteocytes, adipocytes, chondrocytes | Yang et al. ( |
| Enzymatic | CD29, CD90, CD105, CD146, STRO-1 | Osteocytes, adipocytes, odontogenic | Gao et al. ( |
Figure 1Isolation and characterization of mesenchymal stem cells derived from gingival tissues of neural crest origin. A unique subpopulation of mesenchymal stem cells can be isolated from neural crest-derived gingival tissues (GMSC), thus representing a reservoir of neural crest-derived MSCs. CFU-F, colony forming unit-fibroblast. Portions of this figure were made using templates from SMART SERVIER MEDICAL ART (https://smart.servier.com) and Vecteezy (https://www.vecteezy.com).
Figure 2Immunomodulatory effects of GMSCs on both innate and adaptive immune cells. PBMC, peripheral blood mononuclear cells; M2, M2 macrophages; M1, M1 macrophages; DC, dendritic cells; IDO, indoleamine 2,3-dioxygenase; COX2, cyclooxygenase-2; PGE2, prostaglandin 2; FasL, Fas ligand; EVs, extracellular vesicles; IL-10, interleukin-10; IL-6, interleukin-6. “⊕” means blocking or inhibiting. Portions of this figure were made using templates from SMART SERVIER MEDICAL ART (https://smart.servier.com).
Immunomodulation of GMSCs.
| Mechanisms | Disease models | Refs | ||
|---|---|---|---|---|
| M1, M2 MФ, Th17 | M1/M2 MФ | IL-6/G-CSF | Mice, skin wound | Zhang et al. ( |
| M2 | Cutaneous radiation syndrome | Linard et al. ( | ||
| Monocytes/macrophages, M1 | Monocytes, Macrophages, Th1, Th2, Th17 | CD73, IDO | AopE−/− mice, Atherosclerosis | Zhang et al. ( |
| M1/M2 macrophages | M1 | Mice, periodontitis associated with hyperlipidemia. | Hong et al. ( | |
| Mast cells, Dendritic cells | Mast cells, CD8 T cells, Th17 | COX2/PGE2 | Mice, skin contact hypersensitivity (CHS) | Su et al. ( |
| PBMC, Tregs (m) | GvHD | Tang et al. ( | ||
| PBMC | Mitrano et al. ( | |||
| NK1.1+, CD11b+, total CD4 T cells, Tregs | IL-10/IL-10R | Mice, colitis | Lu et al. ( | |
| PBMC | Th1, Th17, Tregs | IDO | Mice, colitis | Zhang et al. ( |
| T cell apoptosis (m) | Th17, Tregs | FasL | Mice, colitis | Xu et al. ( |
| CD4+T cell apoptosis, | Th17, Tregs | H2S-FasL | Mice, colitis | Yang et al. ( |
| T cell apoptosis, Th1, Th17, Tregs(m) | Th1, Th17, Tregs | Acetylsalicylic acid (ASA) -FasL | Mice, Colitis, periodontitis | Yu et al. ( |
| PBMC, apoptosis | FasL | Mice, skin wound | Jiang et al. ( | |
| Th1/Th2, Tregs | PGE2 | Mice, skin contact hypersensitivity (CHS) | Li et al. ( | |
| CD4+T proliferation; | CD4+CD39+FoxP3+ Tregs | CD39/CD73 | Mice, arthritis | Chen et al. ( |
| PBMC, T cell apoptosis (m) | Th1, Th17, Tregs | FasL | Mice, arthritis | Gu et al. ( |
| Th1, Th17 | CD39/CD73 or adenosine | Mice, arthritis | Luo et al. ( | |
| T cell proliferation | B/plasma cells | B7-H1/PD-L1 | Mice, arthritis | Wu et al. ( |
| CD3+T cell proliferation | CD4+ T cells | CD39-CD73-adenosine-IDO axis | Mice, GvHD | Huang et al. ( |
| Tregs, Th1, Th17 (m) | Th1, Th17, Tregs | CD39 | Mice, GvHD | Ni et al. ( |
| T cell proliferation | Th1, Th17, Tregs | CD39/CD73 | Mice, T1DM | Zhang et al. ( |
| CD3+, CD4+, CD8+ T cells, Tregs (h) | PD-L1, IL-10, PGE2 | De la Rosa-Ruiz et al. ( | ||
| CD8+T, Th1, Th17 | Aplastic anemia | Zhao et al. ( | ||
| B cells | B cells, Th2, Th17, Tfh | CD39 (–)CD73(+) | Mice, SLE nephritis | Dang et al. ( |
| Th17, Tregs | CD39 | Mice, osteoporosis | Wu et al. ( |
Figure 3Application of GMSCs and their cell-free products in regenerative therapy. Naïve or primed GMSCs, their derivative conditioned medium or extracellular vesicles (EVs) can be administered alone or in combination with certain scaffold, growth factor or small molecules. Due to the immunomodulatory/anti-inflammatory and pleiotropic effects, GMSCs and their derivative cell-free products exert potent regenerative and therapeutic potentials in a variety of preclinical models of human disorders. Portions of this figure were made using templates from SMART SERVIER MEDICAL ART (https://smart.servier.com).
GMSC-based regenerative therapy of skin disorders.
| Cell products | Other factors | Dose | Route | Model | Refs |
|---|---|---|---|---|---|
| GMSC | 2×106/mice | i.v. | Mice, full-thickness excisional skin wound | Zhang et al. ( | |
| GMSC | Hypoxia-primed | 2×106/mice | i.v. | Mice, skin wound | Jiang et al. ( |
| GMSC | 3D-printed medical-grade polycaprolactone (mPCL) fibrous network dressings | 1.0 × 105cells | Local | Rat, full-thickness | Shafiee et al. ( |
| GMSC | Nanofibrous Guar gum/PVA based scaffold matrix, extracts of medicinal plants of wound healing repute | 5.0 × 104 cells | Local | Rat, full-thickness | Kalachaveedu et al. ( |
| GMSC | IL-1β-primed | 7.5×105/mice | Local | NOD/SCID mice; excisional skin wound | Magne et al. ( |
| GMSC-EV | Chitosan/Silk Hydrogel Sponge | 150 μg/wound | Local | Rat diabetic skin defects | Shi et al. ( |
| GMSC-EV | 40µg/wound | Local | Mice, full-thickness excisional skin wound | Kou et al. ( | |
| GMSC-EV | TNFα-primed | 200µg/wound | Local | Mice, full-thickness excisional skin wound | Nakao et al. ( |
| GMSC | 1 × 106 cells | i.v. | Mice skin allografts | Tang et al. ( | |
| GF | Gingival fibroblasts | Local | Mice, cutaneous radiation syndrome | Linard et al. ( | |
| GMSC | 2.0 × 106/mice | i.v. | Mice, skin contact hypersensitivity (CHS) | Su et al. ( | |
| GMSC | 2.0 × 106/mice | i. v. | Mice, skin contact hypersensitivity (CHS) | Li et al. ( | |
| GMSC | Human case study | 3 × 106/Kg | Plaque psoriasis | Wang et al. ( |
GMSC-based regenerative therapy in autoimmune and inflammatory disorders.
| Cell products | Dose | Refs | ||
|---|---|---|---|---|
| GMSC | 2×106/mice | i.v. | Mice, colitis (DSS) | Zhang et al. ( |
| GMSC | n/a | i.v. | Mice, colitis (DSS) | Lu et al. ( |
| GMSC | 2 × 105/mice | i.v. | Mice, colitis (DSS) | Xu et al. ( |
| GMSC | 2 × 105/mice | i.v. | Mice, colitis (DSS) | Yang et al. ( |
| GMSC | 1 × 106/mice | i.v. | Mice, colitis (DSS) | Yu et al. ( |
| GMSC | 2 × 106/mice | i.v. | Mice, CIA arthritis | Chen et al. ( |
| GMSC | 1 × 106/mice | i.v. | Mice, CIA arthritis | Gu et al. ( |
| GMSC | 2×106/mice | i.v. | Mice, CIA arthritis | Luo et al. ( |
| GMSC | 2 × 106/mice | i.v. | Mice, CIA arthritis | Wu et al. ( |
| GMSC | 5 × 106/mice | i.v. | Mice, GvHD | Huang et al. ( |
| GMSC | 2 × 106/mice | i.v. | Mice, GvHD | Ni et al. ( |
| GMSC | 1 × 106/mice | i. p. | Mice, T1DM | Zhang et al. ( |
| GMSC | 2 × 106/mice | i.v. | Mice, SLE nephritis | Dang et al. ( |
| GMSC | 2 × 106/mice | i.v. | Mice, osteoporosis | Wu et al. ( |
| GMSC | 2 × 106/mice | i.v. | AopE-/- mice, Atherosclerosis | Zhang et al. ( |
| GMSC | 2 × 106/mice | i.v. | Mice, Bone marrow failure/Aplastic anemia | Zhao et al. ( |
GMSC-based regenerative therapy in oral & craniofacial disorders.
| Cell Type | Scaffolds/other factors | Dose | Model | Refs | |
|---|---|---|---|---|---|
| GMSC-CM | Collagen scaffolds (Bio-Gide) | 2 mm × 3 mm | Periodontal defects | Rats | Qiu et al. ( |
| GMSC-Exo | Exosomes, TNFa-preconditioned | 20µg/mice | Periodontitis bone loss | Mice | Nakao et al. ( |
| GMSC | i.v. injection | 1×106/mice | Periodontitis bone loss | (ApoE-/-) mice | Liu et al. ( |
| GMSC | i.v. injection | 1×106/mice | Periodontitis | Mice | Sun et al. ( |
| GMSC | i.v. injection | Class III furcation defects | Dog | Yu et al. ( | |
| GMSC | IL-1Ra-hyaluronic acid synthetic extracellular matrix (HA-sECM) | 250 | Periodontal defects | minipig | Fawzy El-Sayed et al. ( |
| GMSC | β-TCP scaffold and covered by a collagen membrane | 2 × 105 to 8 × 106 cells/cm3 | Periodontal defects | Human | Abdal-Wahab et al. ( |
| GMSC | alginate-based adhesive, photocrosslinkable hydrogel (AdhHG) | 4 × 106/construct | Peri-implantitis model | Rat | Hasani-Sadrabadi et al. ( |
| GMSC | IV injection | 1 × 106/mice | Mandibular bone | Mice | Xu et al. ( |
| GMSC | Type I collagen | Mandibular defect | Rat | Wang et al. ( | |
| GMSCs | Hydrogel scaffold PuraMatrix™ (PM)/BMP2 | 1 × 106/rat | Maxillary alveolar defect | Nude rats | Kandalam et al. ( |
| GMSCs | Bio-Oss®/SB431542 | 2 × 106/pig | Maxillary bone defects | minipigs | Shi et al. ( |
| GMSC-EV | Poly(lactide) (3D-PLA) | 2 × 103/scaffold | Calvarial defect | Rat | Pizzicannella et al. ( |
| GMSC-EV | (3D) engineered scaffolds (PLA) | 2 × 106/scaffold | Calvarial defect | Rat | Diomede et al. ( |
| GMSC-CM | a poly-(lactide) (3D-PLA) scaffold enriched with GMSCs and GMSCs derived CM | 2 × 106/scaffold | Calvarial defect | Rat | Diomede et al. ( |
| GMSC-EVs | 40µg/mice | Palatal wound | Mice | Kou et al. ( | |
| Fetal GMSCs | 2 × 106 cells/rat | gingival defects | Rat | Li et al. ( | |
| GMSCs | 3D spheroids | 1× 106/mice | Chemotherapy-induced oral mucositis | Mice | Zhang et al. ( |
| GMSC | SIS-ECM, 5 × 4 mm | 3.5 × 105 cells/cm2 | Tongue defects | Rat | Xu et al. ( |
| GMSC/EVs | SIS-ECM, 5 × 4 mm | 3.5 × 105 cells/cm2 | Tongue defects | Rat | Zhang et al. ( |
| GMSC | Fibrin glue | 1 × 105 cells/rat | Partially dissected submandibular salivary glands | Rat | Abd El-Latif et al. ( |
| GMSC-NC | AxoGuard nerve conduits | 0.5×106 cells/rat | Facial nerve | Rat | Zhang et al. ( |
| GMSC | 3D spheroid, 3D bioprinting | Facial nerve | Rat | Zhang et al. ( |
GMSC-based regenerative therapy for nerve regeneration.
| Cell Type | Scaffolds/other factors | Dose | Model | Refs | |
|---|---|---|---|---|---|
| GMSC-NC | AxoGuard nerve conduits | 0.5×106 cells/rat | Facial nerve defect | Rat | Zhang et al. ( |
| GMSC | 3D spheroid, 3D bioprinting | Facial nerve defect | Rat | Zhang et al. ( | |
| GMSC-NPC | GelFoam | 2×105 cells/rat | Sciatic nerve crush-injury | Rat | Zhang et al. ( |
| GMSC-EVs | GelFoam | 40µg/mice | Sciatic nerve crush-injury | Mice | Mao et al. ( |
| GMSC-EVs | Chitin conduits | 10 | Sciatic nerve segmental defect, 10 mm gap | Rat | Rao et al. ( |
| GMSC | Liposome enriched with moringin (MOR) treatment | 1×106 cells/mice, i.v. | Spinal cord injury (SCI) | Mice | Mammana et al. ( |
| GMSC | Caffeic acid‐based bioconjugated hydrogel (CBGH) | n/a | SCI (hemitransection model) | Rat | Subbarayan et al. ( |
Potential application of GMSC-EVs and conditioned medium in regenerative therapy.
| Cell Type | Scaffolds/other factors | Dose | Models | Refs | |
|---|---|---|---|---|---|
| GMSC-EV | Chitosan/Silk Hydrogel Sponge | 150 μg/wound | Diabetic skin defects | Rat | Shi et al. ( |
| GMSC-EV | 40µg/wound | Excisional skin wound | Mice | Kou et al. ( | |
| GMSC-Exo | Exosomes, TNFa-preconditioned | 20µg/mice | Excisional skin wound | Mice | Nakao et al. ( |
| GMSC-CM | Collagen scaffolds (Bio-Gide), Ultra-15 10 kD, 100-fold CM | 2 mm × 3 mm | Periodontal defects | Rat | Qiu et al. ( |
| GMSC-EV | Poly(lactide) (3D-PLA), 3D printing | 2 × 103/scaffold | Cavarial defect | Rat | Pizzicannella et al. ( |
| GMSC-EV | (3D) engineered scaffolds (PLA) | 2 × 106/scaffold | Cavarial defect | Rat | Diomede et al. ( |
| GMSC-CM | a poly-(lactide) (3D-PLA) scaffold enriched with GMSCs and GMSCs derived CM | 2 × 106/scaffold | Cavarial defect | Rat | Diomede et al. ( |
| GMSC/EVs | SIS-ECM, 5 × 4 mm | 3.5 × 105 cells/cm2 | Tongue defects | Rat | Zhang et al. ( |
| GMSC-EVs | GelFoam | 40µg/mice | Sciatic nerve crush-injury | Mice | Mao et al. ( |
| GMSC-EVs | Chitin conduits | 10 | Sciatic nerve segmental defect, 10 mm gap | Rat | Rao et al. ( |
| GMSC-EVs | i.v. injection | 100µg/mice x2 | Aged mice | Mice | Shi et al. ( |
Effects of bacteria/inflammation on the property and function of GMSCs.
| Inflammatory Factors | Effects | Refs |
|---|---|---|
| iGMSC vs normal GMSC | Similar phenotypes | Tomasello et al. ( |
| Similar phenotypes | Soancă et al. ( | |
| Similar phenotypes | Al Bahrawy et al. ( | |
| Decreased expression of FasL and impaired immunomodulation on T cells | Yu et al. ( | |
| Reduced CFU & osteogenic potential | Jauregui et al. ( | |
| Reduced osteogenic & adipogenic potentials | Li et al. ( | |
| TNF-α | Reduced viability | Giacomelli et al. ( |
| IL-1/TNF- | Decreased CFU | Zhang et al. ( |
| IL-1β/TNF-α/IFN-γ/Retinol | Enhanced characteristics | Fawzy El-Sayed et al. ( |
| Promoting cell migration and chemokine/cytokine release | Kang et al. ( | |
| Increased proliferation | Zhou et al. ( | |
| Antibiotics/Oral Microbiota/LPS | Inhibition of proliferation, | Su et al. ( |
Approaches for optimizing property and function of GMSCs.
| Approach | Methods | Other factors | Optimized property & function | Refs | |
|---|---|---|---|---|---|
| 3D spheroids | Ultra-low | Mesensphere | Stemness | Oral mucositis | Zhang et al. ( |
| Ultra-low culture dish | Mesensphere | Stemness | Subbarayan et al. ( | ||
| Chitosan membrane | Spheroids | Stemness | Hsu et al. ( | ||
| Chitosan | Spheroids | Stemness | Hsu et al. ( | ||
| Microwell | Spheroids | Osteogenic | Lee et al. ( | ||
| Microwell | Lovastatin | Proliferation | Kim et al. ( | ||
| Microwell | FGF-4 | Osteogenic | Son et al. ( | ||
| Ultra-low | Mesensphere | Stemness | Shanbhag et al. ( | ||
| Floating | Neurosphere | Neural crest | Fournier et al. ( | ||
| Poly-L-ornithine | Defined serum-free medium | Neural crest | Rat facial nerve defect | Zhang et al. ( | |
| Hypoxia | Immunomodulation | Mice skin wound | Jiang et al. ( | ||
| Gene expression associated with neuronal development | Gugliandolo et al. ( | ||||
| Cytokines & growth factors | TNF-α | M2 macrophage | Skin wound healing | Nakao et al. ( | |
| IL-1β | Secretomes | Skin wound healing | Magne et al. ( | ||
| FGF2 | Genetic overexpression | Angiogenic factors | In vivo angiogenesis | Jin et al. ( | |
| Sema3A | Genetic overexpression | Proliferation | Tian et al. ( | ||
| Small molecules | Acetylsalicylic acid | Immunomodulation | Colitis | Yu et al. ( | |
| Trichostatin A (TSA) | Anti-inflammatory | Rat periodontitis | Li et al. ( | ||
| SB431542 | Osteogenic | Jawbone, minipig | Shi et al. ( | ||
| Cocktails | Neurogenic | Heng et al. ( | |||
| Ascorbic acid (AA) | Stemness | Van Pham et al. ( | |||
| Ascorbic acid (AA) | Stemness | Fawzy El-Sayed et al. ( | |||
| Ascorbic acid (AA) | Osteogenic | Diomede et al. ( | |||
| Ascorbic acid (AA) | Osteogenic | Pizzicannella et al. ( | |||