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Original Research
Hadi Maleki, Alireza Dehnad, Shahram Hanifian, Sajjad Khani*
Bioimpacts. 2013;3(3): 129-134. doi: 10.5681/bi.2013.017
PMCID: PMC3786795     PMID: 24163805     Scopus ID: 84887388569    
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Original Research
Fahsai Kantawong*, Supawatchara Singhatong, Aomjai Aomjai, Kantarose Boonyuen, Niroot Mooti, Phenphichar Wanachantararak, Thasaneeya Kuboki
Bioimpacts. 2017;7(1): 13-23. doi: 10.15171/bi.2017.03
PMCID: PMC5439385     PMID: 28546949     Scopus ID: 85019158241    
Short Communication
Morteza Mahmoudi, Mingming Zhao, Yuka Matsuura, Sophie Laurent, Phillip C. Yang, Daniel Bernstein, Pilar Ruiz-Lozano*, Vahid Serpooshan*
Bioimpacts. 2016;6(2): 111-115. doi: 10.15171/bi.2016.16
PMCID: PMC4981249     PMID: 27525229     Scopus ID: 84983548259    
Short Communication
Inna Garmasheva*, Nadezhda Kovalenko, Sergey Voychuk, Andriy Ostapchuk, Olena Livins’ka, Ljubov Oleschenko
Bioimpacts. 2016;6(4): 219-223. doi: 10.15171/bi.2016.29
PMCID: PMC5326670     PMID: 28265538     Scopus ID: 85013031052    
Original Research
Mojtaba Taran, Maryam Rad, Mehran Alavi*
Bioimpacts. 2018;8(2): 81-89. doi: 10.15171/bi.2018.10
PMCID: PMC6026522     PMID: 29977829     Scopus ID: 85045120368    
Original Research
Ravi Ranjan Kumar*, Vasantba J Jadeja
Bioimpacts. 2018;8(4): 253-261. doi: 10.15171/bi.2018.28
PMCID: PMC6209832     PMID: 30397580     Scopus ID: 85056115526    
Original Research
Zahra Karimzadeh, Siamak Javanbakht, Hassan Namazi*
Bioimpacts. 2019;9(1): 5-13. doi: 10.15171/bi.2019.02
PMCID: PMC6378098     PMID: 30788255     Scopus ID: 85060437287    
Carboxymethylcellulose/MOF-5/Graphene oxide bio-nanocomposite was synthesized through a solvothermal technique, which it could encapsulate tetracycline. The drug release tests showed the stability of drug dosing in the gastrointestinal tract conditions. Antibacterial tests exhibited suitable activity to negatively charge E. coli bacteria.
Original Research
Seyedeh Sogol Pelaseyed ORCID, Hamid Reza Madaah Hosseini* ORCID, Zeinab Nokhbedehghan, Ali Samadikuchaksaraei
BioImpacts. 2021;11(1): 45-52. doi: 10.34172/bi.2021.06
PMCID: PMC7803922     PMID: 33469507     Scopus ID: 85099173455    
Highly porous scaffolds consisting of poly (lactide-co-glycolide) containing TiO2 nanoparticles were fabricated via air-liquid foaming technique, which is a novel method and has more advantages by using no additives for nucleation compared to former ways.


As a peer-reviewed international open-access journal, BioImpacts publishes articles on basic and translational aspects of pharmaceutical and biomedical sciences. 
Acceptance rate: 24% 
Publication fee: Free of charge