Khandoker Usran Ferdous
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Also affiliated: University of Maryland, Baltimore (2026); North South University (2018–2020); University of Arkansas Medical Center (2022–2025)
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Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
Khandoker Usran Ferdous investigates the use of oncolytic viruses and repurposed vaccines as cancer immunotherapies. His research focuses on enhancing the effectiveness of these treatments, particularly in challenging contexts like pancreatic cancer and hepatocellular carcinoma. Ferdous explores strategies to overcome cancer's defenses, including targeting the tumor microenvironment and combining oncolytic virotherapy with immune checkpoint blockade. His work also examines resistance mechanisms to oncolytic vesiculoviruses and the multimodal reprogramming of the tumor microenvironment to improve treatment outcomes and patient survival.
Ferdous collaborates with several researchers at the University of Arkansas for Medical Sciences, including Mulu Z. Tesfay, Bolni Marius Nagalo, Martin J. Cannon, and Alexei G. Basnakian, with whom he has co-authored multiple publications. His scholarship metrics include an h-index of 5, with 20 total publications and 79 total citations.
Metrics
- h-index: 5
- Publications: 20
- Citations: 80
Selected Publications
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Abstract 4378: Live attenuated MMR vaccines modulate tumor immune cell infiltration and synergize with standard of care to prolong survival in preclinical HCC models (2026)
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Multimodal reprogramming of the tumor microenvironment by MMR and dual checkpoint blockade in hepatocellular carcinoma models (2025)
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Abstract B022: Reprogramming Apoptotic Resistance in PDAC Through Synthetic Oncolytic Immunotherapy (2025)
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Viral warfare: unleashing engineered oncolytic viruses to outsmart cancer’s defenses (2025)
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Repeat Systemic Delivery of Cross-Neutralization Resistant Synthetic Vesiculoviruses Immunomodulates the Tumor Microenvironment (2025)
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Abstract 950: Engineered oncolytic vesiculovirus downsizes pancreatic tumor and boosts immune response (2025)
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Abstract 2155: Phage display discovery of Trop-2 peptide for targeted liposomal chemo-immunotherapy in lung cancer (2025)
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Abstract 945: Live attenuated MMR vaccines modulate tumor immune cell infiltration and synergize with standard of care to prolong survival in preclinical HCC models (2025)
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Abstract 947: Engineering a synthetic oncolytic virus to overcome apoptotic resistance and induce immunogenic cell death in pancreatic ductal adenocarcinoma (2025)
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Resistance signatures to oncolytic vesiculoviruses in pancreatic ductal adenocarcinoma (2025)
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Enhancing immune response and survival in hepatocellular carcinoma with novel oncolytic Jurona virus and immune checkpoint blockade (2024)
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Enhancing Neoadjuvant Virotherapy’s Effectiveness by Targeting Stroma to Improve Resectability in Pancreatic Cancer (2024)
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Abstract 588: Preclinical evaluation of novel chimeric vesiculovirus mediated expression of proteolytic enzymes targeting two major stromal components of pancreatic ductal adenocarcinoma (2024)
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Abstract 5004: Oncolytic Jurona-driven systemic and intratumoral immunotherapy combined with immune checkpoint blockade boost immune response and survival in hepatocellular carcinoma models (2024)
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Repurposing live attenuated trivalent MMR vaccine as cost-effective cancer immunotherapy (2022)
Collaboration Network
Top Collaborators
- Viral warfare: unleashing engineered oncolytic viruses to outsmart cancer’s defenses
- Repurposing live attenuated trivalent MMR vaccine as cost-effective cancer immunotherapy
- Enhancing Neoadjuvant Virotherapy’s Effectiveness by Targeting Stroma to Improve Resectability in Pancreatic Cancer
- Enhancing immune response and survival in hepatocellular carcinoma with novel oncolytic Jurona virus and immune checkpoint blockade
- Resistance signatures to oncolytic vesiculoviruses in pancreatic ductal adenocarcinoma
Showing 5 of 14 shared publications
- Viral warfare: unleashing engineered oncolytic viruses to outsmart cancer’s defenses
- Enhancing Neoadjuvant Virotherapy’s Effectiveness by Targeting Stroma to Improve Resectability in Pancreatic Cancer
- Enhancing immune response and survival in hepatocellular carcinoma with novel oncolytic Jurona virus and immune checkpoint blockade
- Repeat Systemic Delivery of Cross-Neutralization Resistant Synthetic Vesiculoviruses Immunomodulates the Tumor Microenvironment
- Multimodal reprogramming of the tumor microenvironment by MMR and dual checkpoint blockade in hepatocellular carcinoma models
Showing 5 of 13 shared publications
- Viral warfare: unleashing engineered oncolytic viruses to outsmart cancer’s defenses
- Repurposing live attenuated trivalent MMR vaccine as cost-effective cancer immunotherapy
- Enhancing Neoadjuvant Virotherapy’s Effectiveness by Targeting Stroma to Improve Resectability in Pancreatic Cancer
- Resistance signatures to oncolytic vesiculoviruses in pancreatic ductal adenocarcinoma
- Repeat Systemic Delivery of Cross-Neutralization Resistant Synthetic Vesiculoviruses Immunomodulates the Tumor Microenvironment
Showing 5 of 11 shared publications
- Repurposing live attenuated trivalent MMR vaccine as cost-effective cancer immunotherapy
- Enhancing Neoadjuvant Virotherapy’s Effectiveness by Targeting Stroma to Improve Resectability in Pancreatic Cancer
- Multimodal reprogramming of the tumor microenvironment by MMR and dual checkpoint blockade in hepatocellular carcinoma models
- Abstract 5004: Oncolytic Jurona-driven systemic and intratumoral immunotherapy combined with immune checkpoint blockade boost immune response and survival in hepatocellular carcinoma models
- Abstract 947: Engineering a synthetic oncolytic virus to overcome apoptotic resistance and induce immunogenic cell death in pancreatic ductal adenocarcinoma
Showing 5 of 8 shared publications
- Repurposing live attenuated trivalent MMR vaccine as cost-effective cancer immunotherapy
- Enhancing Neoadjuvant Virotherapy’s Effectiveness by Targeting Stroma to Improve Resectability in Pancreatic Cancer
- Enhancing immune response and survival in hepatocellular carcinoma with novel oncolytic Jurona virus and immune checkpoint blockade
- Multimodal reprogramming of the tumor microenvironment by MMR and dual checkpoint blockade in hepatocellular carcinoma models
- Abstract 5004: Oncolytic Jurona-driven systemic and intratumoral immunotherapy combined with immune checkpoint blockade boost immune response and survival in hepatocellular carcinoma models
Showing 5 of 7 shared publications
- Repurposing live attenuated trivalent MMR vaccine as cost-effective cancer immunotherapy
- Enhancing Neoadjuvant Virotherapy’s Effectiveness by Targeting Stroma to Improve Resectability in Pancreatic Cancer
- Enhancing immune response and survival in hepatocellular carcinoma with novel oncolytic Jurona virus and immune checkpoint blockade
- Multimodal reprogramming of the tumor microenvironment by MMR and dual checkpoint blockade in hepatocellular carcinoma models
- Abstract 5004: Oncolytic Jurona-driven systemic and intratumoral immunotherapy combined with immune checkpoint blockade boost immune response and survival in hepatocellular carcinoma models
Showing 5 of 7 shared publications
- Viral warfare: unleashing engineered oncolytic viruses to outsmart cancer’s defenses
- Repurposing live attenuated trivalent MMR vaccine as cost-effective cancer immunotherapy
- Resistance signatures to oncolytic vesiculoviruses in pancreatic ductal adenocarcinoma
- Repeat Systemic Delivery of Cross-Neutralization Resistant Synthetic Vesiculoviruses Immunomodulates the Tumor Microenvironment
- Multimodal reprogramming of the tumor microenvironment by MMR and dual checkpoint blockade in hepatocellular carcinoma models
Showing 5 of 7 shared publications
- Repurposing live attenuated trivalent MMR vaccine as cost-effective cancer immunotherapy
- Enhancing Neoadjuvant Virotherapy’s Effectiveness by Targeting Stroma to Improve Resectability in Pancreatic Cancer
- Abstract 5004: Oncolytic Jurona-driven systemic and intratumoral immunotherapy combined with immune checkpoint blockade boost immune response and survival in hepatocellular carcinoma models
- Abstract 947: Engineering a synthetic oncolytic virus to overcome apoptotic resistance and induce immunogenic cell death in pancreatic ductal adenocarcinoma
- Abstract 945: Live attenuated MMR vaccines modulate tumor immune cell infiltration and synergize with standard of care to prolong survival in preclinical HCC models
Showing 5 of 7 shared publications
- Enhancing Neoadjuvant Virotherapy’s Effectiveness by Targeting Stroma to Improve Resectability in Pancreatic Cancer
- Enhancing immune response and survival in hepatocellular carcinoma with novel oncolytic Jurona virus and immune checkpoint blockade
- Multimodal reprogramming of the tumor microenvironment by MMR and dual checkpoint blockade in hepatocellular carcinoma models
- Abstract 947: Engineering a synthetic oncolytic virus to overcome apoptotic resistance and induce immunogenic cell death in pancreatic ductal adenocarcinoma
- Abstract 945: Live attenuated MMR vaccines modulate tumor immune cell infiltration and synergize with standard of care to prolong survival in preclinical HCC models
Showing 5 of 7 shared publications
- Enhancing Neoadjuvant Virotherapy’s Effectiveness by Targeting Stroma to Improve Resectability in Pancreatic Cancer
- Enhancing immune response and survival in hepatocellular carcinoma with novel oncolytic Jurona virus and immune checkpoint blockade
- Multimodal reprogramming of the tumor microenvironment by MMR and dual checkpoint blockade in hepatocellular carcinoma models
- Abstract 5004: Oncolytic Jurona-driven systemic and intratumoral immunotherapy combined with immune checkpoint blockade boost immune response and survival in hepatocellular carcinoma models
- Abstract 945: Live attenuated MMR vaccines modulate tumor immune cell infiltration and synergize with standard of care to prolong survival in preclinical HCC models
Showing 5 of 6 shared publications
- Enhancing Neoadjuvant Virotherapy’s Effectiveness by Targeting Stroma to Improve Resectability in Pancreatic Cancer
- Enhancing immune response and survival in hepatocellular carcinoma with novel oncolytic Jurona virus and immune checkpoint blockade
- Resistance signatures to oncolytic vesiculoviruses in pancreatic ductal adenocarcinoma
- Multimodal reprogramming of the tumor microenvironment by MMR and dual checkpoint blockade in hepatocellular carcinoma models
- Abstract 947: Engineering a synthetic oncolytic virus to overcome apoptotic resistance and induce immunogenic cell death in pancreatic ductal adenocarcinoma
Showing 5 of 6 shared publications
- Viral warfare: unleashing engineered oncolytic viruses to outsmart cancer’s defenses
- Repurposing live attenuated trivalent MMR vaccine as cost-effective cancer immunotherapy
- Enhancing Neoadjuvant Virotherapy’s Effectiveness by Targeting Stroma to Improve Resectability in Pancreatic Cancer
- Enhancing immune response and survival in hepatocellular carcinoma with novel oncolytic Jurona virus and immune checkpoint blockade
- Multimodal reprogramming of the tumor microenvironment by MMR and dual checkpoint blockade in hepatocellular carcinoma models
- Repurposing live attenuated trivalent MMR vaccine as cost-effective cancer immunotherapy
- Enhancing Neoadjuvant Virotherapy’s Effectiveness by Targeting Stroma to Improve Resectability in Pancreatic Cancer
- Abstract 5004: Oncolytic Jurona-driven systemic and intratumoral immunotherapy combined with immune checkpoint blockade boost immune response and survival in hepatocellular carcinoma models
- Abstract 947: Engineering a synthetic oncolytic virus to overcome apoptotic resistance and induce immunogenic cell death in pancreatic ductal adenocarcinoma
- Abstract 945: Live attenuated MMR vaccines modulate tumor immune cell infiltration and synergize with standard of care to prolong survival in preclinical HCC models
- Enhancing Neoadjuvant Virotherapy’s Effectiveness by Targeting Stroma to Improve Resectability in Pancreatic Cancer
- Multimodal reprogramming of the tumor microenvironment by MMR and dual checkpoint blockade in hepatocellular carcinoma models
- Abstract 950: Engineered oncolytic vesiculovirus downsizes pancreatic tumor and boosts immune response
- Abstract 4378: Live attenuated MMR vaccines modulate tumor immune cell infiltration and synergize with standard of care to prolong survival in preclinical HCC models
- Repurposing live attenuated trivalent MMR vaccine as cost-effective cancer immunotherapy
- Enhancing immune response and survival in hepatocellular carcinoma with novel oncolytic Jurona virus and immune checkpoint blockade
- Resistance signatures to oncolytic vesiculoviruses in pancreatic ductal adenocarcinoma
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