1.Improved Efficacy of a Dendritic Cell-Based Vaccine against a Murine Model of Colon Cancer: The Helper Protein Effect.
Amir Hassan ZARNANI ; Monireh TORABI-RAHVAR ; Mahmood BOZORGMEHR ; Mehri ZAREIE ; Nazanin MOJTABAVI
Cancer Research and Treatment 2015;47(3):518-526
PURPOSE: Targeted immunotherapy using dendritic cells (DCs) has been employed in numerous investigations aiming at combating neoplasms. We previously showed that copulsing of an antigen with a helper protein could considerably enhance antigen presenting capacity of ex vivo-generated DCs. In this study, we attempted to administer an effective treatment in a murine model of colon cancer with DCs pulsed with the mixture of a tumor-specific gp70-derived peptide (AH1) and a helper protein, ovalbumin (OVA). MATERIALS AND METHODS: First, the presence of gp70 in CT26 tumor cells and tumor tissues was verified using immunofluorescence and Western blot analyses. Next, DCs were purified from normal mice, loaded ex vivowith AH1 and OVA (DC-Pep-OVA), and injected into tumor-bearing mice. Tumor volume, in vitro antigen (Ag)-specific proliferation of splenic cells, and survival rate were measured to determine the efficacy of DC-Pep-OVA. As the control groups, tumor-bearing mice were vaccinated with DC-Pep, unpulsed DC, and DCs loaded with a mixture of OVA and an irrelevant peptide (P15), or were not vaccinated at all. RESULTS: DC-Pep-OVA showed superior efficacy over other groups, as indicated by smaller tumor volume, higher Ag-specific proliferation rate of splenic cells, and prolonged survival. CONCLUSION: Overall, in the present study we showed for the first time that DCs copulsed with AH1 (tumor Ag) and OVA (helper molecule) could be considered as potentially robust weapons for use in future antitumor immunotherapies.
Animals
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Blotting, Western
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Colonic Neoplasms*
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Dendritic Cells
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Fluorescent Antibody Technique
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Immunotherapy
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Mice
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Ovalbumin
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Ovum
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Survival Rate
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Tumor Burden
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Vaccination
2.Promotion of excisional wound repair by a menstrual blood-derived stem cell-seeded decellularized human amniotic membrane.
Saeed FARZAMFAR ; Majid SALEHI ; Arian EHTERAMI ; Mahdi NASERI-NOSAR ; Ahmad VAEZ ; Amir Hassan ZARNANI ; Hamed SAHRAPEYMA ; Mohammad Reza SHOKRI ; Mehdi ALEAHMAD
Biomedical Engineering Letters 2018;8(4):393-398
This is the first study demonstrating the efficacy of menstrual blood-derived stem cell (MenSC) transplantation via decellularized human amniotic membrane (DAM), for the promotion of skin excisional wound repair. The DAM was seeded with MenSCs at the density of 3 × 10⁴ cells/cm² and implanted onto a rat's 1.50 × 1.50 cm² full-thickness excisional wound defect. The results of wound closure and histopathological examinations demonstrated that the MenSC-seeded DAM could significantly improve the wound healing compared with DAM-treatment. All in all, our data indicated that the MenSCs can be a potential source for cell-based therapies to regenerate skin injuries.
Amnion*
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Humans*
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Skin
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Stem Cells
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Wound Healing
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Wounds and Injuries*