M. Sadat-Shojai, Bone regenerative medicine: State of the art and future trends, under preparation.

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1 : 1363/3/30 : : : : (Ph.D.) : : : : : : msadatshojai@gmail.com; ms.shojai@shirazu.ac.ir : 1 : (17/65 : ). : ). : (18/62 (19/85 : 18/32 : ) / / :.( ) (MIT). (HMS) : : : : :.( ) : : (1394 ) ) : ) 3 (1391 ( / ) : (1389 ) : (1387 ) :.(

2 4 (1394) ( ) 2015 Elsevier (1393) (1393) (WEB OF SCIENCE) Highly Cited Paper ISI %1 (1392) 5400 (37 ) 100 (1392) UM ( ) (1392) ( ) Nanotech Insights (Mat Sci Eng C, 33, 2013) (1391) ( ) (1391) (1391) (1390) (1388) 6000 (61 ) 100 (1387) (1387) 18/62 (1386) (1385) 17/65 (1385) (1381) 18/82 5 Total Number of Citations * Average Citations per Item : ( ) M. SadatShojai, Bone regenerative medicine: State of the art and future trends, under preparation. M. SadatShojai, Bioactive nanocomposites for bone tissue engineering, under preparation. M. SadatShojai, Electrospun polyhydroxybutyrate/hydroxyapatite nanohybrids: Microstructure and bone cell response, submitted. M. SadatShojai, M.T. Khorasani, A. Jamshidi, A new strategy for fabrication of bone scaffolds using electrospun nanohap/phb fibers and protein hydrogels, Chemical Engineering Journal, 289 (2016) (JIF : 4.32) Interviewed and featured in Iranian Nanotechnology Initiative Council, national TV, and over 30 news feeds nationwide * Google Scholar ISI WEB OF SCIENCE 2014 Journal Impact Factor 7 2

3 M. SadatShojai, M.T. Khorasani, A. Jamshidi, 3Dimensional cellladen nanohydroxyapatite/protein hydrogels for bone regeneration applications, Materials Science and Engineering C, 49 (2015) (JIF: 3.08) M. SadatShojai, M.T. Khorasani, E. Dinpanah, A. Jamshidi, Synthesis methods for nanosized hydroxyapatite with diverse structures, Acta Biomaterialia, 9 (2013) (JIF: 6.02) Highly Cited Paper (WEB OF SCIENCE) + 1 st Top Hottest Article in 2013 and 2014 full years (ScienceDirect) + Listed as Top 20 Articles (BioMedLib, Domain of Article , Since 2013) M. SadatShojai, M.T. Khorasani, A. Jamshidi, S. Irani, Nanohydroxyapatite reinforced polyhydroxybutyrate composites: A comprehensive study on the structural and in vitro biological properties, Materials Science and Engineering C, 33 (2013) (JIF: 3.08) Featured in Nanotech Insights: July 2013 (Centre for Knowledge Management of Nanoscience and Technology) M. SadatShojai, M.T. Khorasani, A. Jamshidi, Hydrothermal processing of hydroxyapatite nanoparticles a Taguchi experimental design approach, Journal of Crystal Growth, 361 (2012) (JIF: 1.69) 19 th Top Hottest Article in Oct to Dec 2012 (ScienceDirect) M. SadatShojai, G.R. Bakhshandeh, Recycling of PVC wastes, Polymer Degradation and Stability, 96 (2011) (JIF: 3.16) 3 rd Top Hottest Article in 2011 and 2012 full years (ScienceDirect) + 4 th Top Hottest Article in 2013 full year (ScienceDirect) + 7 th Top Hottest Article in 2014 full year (ScienceDirect) M. SadatShojai, M. Atai, A. Nodehi, Design of experiments (DOE) for the optimization of hydrothermal synthesis of hydroxyapatite nanoparticles, Journal of the Brazilian Chemical Society, 22 (2011) (JIF: 1.12) M. SadatShojai, M. Atai, A. Nodehi, L. NasiriKhanlar, Hydroxyapatite nanorods as novel fillers for improving the properties of dental adhesives: Synthesis and application, Dental Materials, 26 (2010) (JIF: 3.76) 13 th Top Hottest Article in Apr to Jun 2010 (ScienceDirect) M. SadatShojai, A. Ershadlangroudi, Polymeric coatings for protection of historic monuments: Opportunities and challenges, Journal of Applied Polymer Science, 112 (2009) (JIF: 1.76) M. SadatShojai, Preparation of hydroxyapatite nanoparticles: Comparison between hydrothermal and solvotreatment processes and colloidal stability of produced nanoparticles in a dilute experimental dental adhesive, Journal of the Iranian Chemical Society, 6 (2009) (JIF: 1.08) Featured in Industry News of SpecialChem (Paris, France: ) A. ErshadLangroudi, M. SadatShojai, Siloxanebased coatings as the potential materials for protection of brickmade monuments, Journal of Color Science and Technology, 3 (2009) (in Persian) A. Ershadlangroudi, M. SadatShojai, Possibility of using polymeric coatings for protection of historic monuments against deterioration, Iran Surface Coatings Magazine, 6 (2008), 5 9. (in Persian) : ( ) M. SadatShojai, Detection of bone nodules inside bioactive hydrogels by means of scanning electron microscopy, National Conference on Microscopic Studies, Shiraz, Iran (2016). M. SadatShojai, Quantitative detection of 3D cell spreading inside ECMlike constructs by means of fluorescence microscopy imaging, National Conference on Microscopic Studies, Shiraz, Iran (2016). 7 3

4 M. SadatShojai, Quantitative detection of 3D cell spreading inside ECMlike constructs by means of fluorescence microscopy imaging, National Conference on Microscopic Studies, Shiraz, Iran (2016). M. SadatShojai, In vitro cell response to a new protein nanocomposite, Proceedings of the National Conference on Protein & Peptide Sciences: From Basic to Medical & Industrial Applications, Shiraz, Iran (2014). M. SadatShojai, Protein/hydroxyapatite constructs for bone tissue engineering applications, Proceedings of the National Conference on Protein & Peptide Sciences: From Basic to Medical & Industrial Applications, Shiraz, Iran (2014). Best Poster Award M. SadatShojai et al., Fabrication of polymer/hydroxyapatite nanocomposites with improved properties for bone tissue engineering application, Proceedings of the 13 th Congress of Nanotechnology Graduates, Tehran, Iran (2013). M. SadatShojai et al., Surface modification of hydroxyapatite nanoparticles using heparin, Proceedings of the 10 th International Seminar on Polymer Science and Technology (ISPST), Tehran, Iran (2012). M. SadatShojai et al., An experimental design approach to determine the effect of process parameters on the properties of hydroxyapatite nanoparticles, Proceedings of the 6 th International Chemical Engineering Congress and Exhibition (IChEC), Kish Island, Iran (2009). M. SadatShojai et al., Synthesis of nanosized hydroxyapatite particles: The morphology control, Proceedings of the 9 th International Seminar on Polymer Science and Technology (ISPST), Tehran, Iran (2009). M. SadatShojai et al., Bond strength of a novel dental adhesive to dentin: The in vitro study, Proceedings of the 9 th International Seminar on Polymer Science and Technology (ISPST), Tehran, Iran (2009). M. SadatShojai et al., Fillerreinforced dental adhesives: The effect of surface charge on the colloidal stability of filler, Proceedings of the 9 th International Seminar on Polymer Science and Technology (ISPST), Tehran, Iran (2009). M. SadatShojai et al., Effect of the hydroxyapatite nanofibers as a novel filler on the mechanical properties of an ethanol based onebottle dental adhesive, Proceedings of the 9 th International Seminar on Polymer Science and Technology (ISPST), Tehran, Iran (2009). M. SadatShojai et al., Synthesis of fibrous hydroxyapatite nanoparticles with optimized properties for improving the mechanical characteristics of dental adhesives, Proceedings of the 5 th Nanotechnology Students Conference, Tehran, Iran (2009). M. SadatShojai et al., Synthesis of hydroxyapatite nanofibers by hydrothermal method, Proceedings of the 1 st Conference on Application of Nanotechnology in Science, Engineering and Medicine, Mashhad, Iran (2008). M. SadatShojai et al., Synthesis of stoichiometric hydroxyapatite nanoparticles at atmospheric pressure, Proceedings of National Congress on New Materials, Tehran, Iran (2008). M. SadatShojai et al., Investigation of the effect of hydrothermal treatment on synthesis of nanosized hydroxyapatite, Proceedings of IranIndia Joint Conference on Nanotechnology, Tehran, Iran (2008). M. SadatShojai et al., Synthesis of hydroxyapatite nanorods at atmospheric pressure using CTAB as surfactant, Proceedings of the Conference of Surfactant & Detergent Technology, Tehran, Iran (2008). 7 4

5 : ( ) M. SadatShojai; Calcium phosphate reinforced polyester nanocomposites for bone regeneration applications. In: D. Depan, editor. Biodegradable Polymeric Nanocomposites: Advances in Biomedical Applications. CRC Press, USA (2015), pp ( ) :.(1389) 6 :( ) ( ) M. SadatShojai, M. Atai, A. Nodehi, Method for production of biocompatible nanoparticles containing dental adhesive, United State Patent: US B2 (2013). : M. SadatShojai, M.T. Khorasani, A. Jamshidi, Method for production of 3D bioactive hydrogels, Patent pending (2016). M. SadatShojai, M. Atai, A. Nodehi, Fabrication of a novel dentin bonding system containing biocompatible nanoparticles, Iranian Patent Office: (2009). M. SadatShojai, M. Atai, A. Nodehi, Optimization of processing variables in hydrothermal synthesis of hydroxyapatite nanoparticles, Iranian Patent Office: (2009). ( ) 7 (American Chemical Society: ACS) (American Nano Society: ANS) ACS Applied Materials & Interfaces (ACS) Applied Physics A (Springer) Applied Surface Science (Elsevier) AsiaPacific Journal of Chemical Engineering (John Wiley) Environmental Technology (Taylor & Francis) express Polymer Letters (Budapest University of Technology and Economics) International Journal of Environmental Science and Technology (Springer) International Journal of Polymer Science (Hindawi) Iranian Journal of Polymer Science and Technology (IPPI) Iranian Journal of Science and Technology (Sciences) (Springer) Journal of the Brazilian Chemical Society (Brazilian Chemical Society) 8 7 5

6 Journal of Applied Polymer Science (John Wiley) Journal of Crystal Growth (Elsevier) Materials Express (American Scientific Publishers) Materials Research (Brazilian Association of Metallurgy and Materials) Materials Science and Engineering C (Elsevier) Measurement (Elsevier) Polymer Engineering & Science (John Wiley) Powder Technology (Elsevier) Recent Patents on Regenerative Medicine (Bentham Science) Resources, Conservation & Recycling (Elsevier) 9 (1394 ) (1 ) (1393 ) (1393 ) (1393 ) (1393 ) (1393 ) (1393 ) (1392 ) (1389 ) (1388 ) Patenting (1387 CAPITAL HPLC) HPLC Training Course (1387 IranIndia Joint Conference on Nanotechnology) Fabrication of a Raman Biochip (1386 ) (1386 ) (1386 ) (1386 ) (1386 ) (1386 ) (1386 ) (1385 ).(1385 ) 10 ( 1392 ) ( 1393 ) (1390 ) (HPLC) 7 6

7 (89 ) (89 88 ) (88 88 ).(85 85 ) 11 : ( ) : ( ) 12 / 1395 : 7 7

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