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19篇 您的检索式:作者名="Piantino"
    题名 作者 年代 出处 被引量
1Stent-assisted coiling of in- tracranial aneurysms: clinical and angiographic results in 216 consecutive aneurysms 显示文摘Piotin M Blanc R Spelle L Mounayer C Piantino R Schmidt P J 2010Stroke2010,41,:1
2Progressive intracranial fusiform aneurysms and T-cell immunodeficiency显示文摘Piantino JA Goldenberg FD Pytel P 2013Pediatr Neurol2013,48,2:1
3Disappearance curves of tumor markers after radical surgery 显示文摘Rapellino M Piantino P Pecchio F 1994Int J Biol Markers1994,9,1:1
4An Injectable, Biodegradable Hydrogel for Trophic Factor Delivery Enhances Axonal Rewiring and Improves Performance after Spinal Cord Injury 显示文摘Piantino J Burdick J A Goldberg D 2006Experimental Neurology2006,201,2:1
5An injectable, biodegradable hydrogel for trophic factor delivery enhances axonal rewiring and improves performance after spinal cord injury显示文摘Piantino J Burdick J A Goldberg D 2006Exp Neurol2006,201,2:1
6Supercritical CO2 extraction of omega-3 rich oil from sacha inchi显示文摘Follegatti-Romero L As Piantino C R Grimaldi R Cabrala F A 2009The Journal of Supercritical Fluids2009,49,32:1
7Characterization by restriction fragment length polymorphism and sequence analysis of field and vaccine strains of infectious laryngotracheitis virus involved in severe outbreaks显示文摘Chacon J L Mizuma M Y Piantino F A 2010Avian Pathol2010,39,6:1
8An Injectable, Bio- degradable Hydrogel for Trophic Factor Delivery Enhances Axonal Rewiring and Improves Performance after Spinal Cord Injury显示文摘Piantino J Burdick J A Goldberg D 2006Exp Neurol2006,201,2:1
9An injectable, biodegra- dable hydrogel for trophic factor delivery enhances axonal rewiring and improves ]oerformance after spinal cord injury 显示文摘Piantino J Burdick JA Goldberg D 2006Exp Neurol2006,201,:1
10Influence of removal time and particle size on the particle substrate adhesion force显示文摘Felicetti Piantino M A Coury F 2008Brazilian Jour- nal of Chemical Engineering2008,25,1:1
11Influence of removal time and particle size on the particle substrate adhesion force 显示文摘Felicetti M A Piantino F Coury J R 2008Brazilian Journol of Chemical Engineering2008,25,1:1
12An injectable,biodegradable hydrogel for trophic factor delivery enhances axonal rewiring and improves performance after spinal cord injury显示文摘Piantino J Burdick J A Goldberg D 0,,02:1
13Progressive intracranial fusiform aneurysms and T-cell immunodeficiency显示文摘Piantino JA Goldenberg FD Pytel P 0,,02:1
14Supercritical CO2 extraction of phenolic compounds from Baccharis dracunculifolia显示文摘PIANTINO C R AQUINO F W B FOLLEGATTI-ROMERO L A 2008The Journal of Supercritical Fluids2008,47,2:1
15An injectable,biodegradable hydrogel for trophic factor delivery enhances axonal rewiring and improves performance after spinal cord injury显示文摘PIANTINO J BURDICK J GOLDBERG D 2006Exp Neurol2006,201,2:1
16Role of hepatitis delta virus infection in hepatocellular carcinoma显示文摘Giorgio Verme MD Maurizia Rossana Brunetto MD Filippo Oliveri MD Maurizio Baldi MD Barbara Forzani MD Paolo Piantino MD Antonio Ponzetto MD Dr. Ferruccio Bonino MD 1991Digestive Diseases and Sciences1991,,8:1
17Prima-i induces apoptosis in gladder cancer cell lines by activating p53 显示文摘Piantino CB Reis ST Viana N 2013Clinics2013,683,:1
18Culture negative sepsis and systemic inflammatory response syndrome in neonates 显示文摘PIANTINO JH SCHREIBER MD ALEXANDER K 2013Neoreviews2013,14,6:1
19Bioprinted Vascularized Mature Adipose Tissue with Collagen Microfibers for Soft Tissue Regeneration显示文摘The development of soft tissue regeneration has recently gained importance due to safety concerns about artificial breast implants.Current autologous fat graft implantations can result in up to 90%of volume loss in long-term outcomes due to their limited revascularization.Adipose tissue has a highly vascularized structure which enables its proper homeostasis as well as its endocrine function.Mature adipocytes surrounded by a dense vascular network are the specific features required for efficient regeneration of the adipose tissue to perform host anastomosis after its implantation.Recently,bioprinting has been introduced as a promising solution to recreate in vitro this architecture in large-scale tissues.However,the in vitro induction of both the angiogenesis and adipogenesis differentiations from stem cells yields limited maturation states for these two pathways.To overcome these issues,we report a novel method for obtaining a fully vascularized adipose tissue reconstruction using supporting bath bioprinting.For the first time,directly isolated mature adipocytes encapsulated in a bioink containing physiological collagen microfibers(CMF)were bioprinted in a gellan gum supporting bath.These multilayered bioprinted tissues retained high viability even after 7 days of culture.Moreover,the functionality was also confirmed by the maintenance of fatty acid uptake from mature adipocytes.Therefore,this method of constructing fully functional adipose tissue regeneration holds promise for future clinical applications.Fiona Louis Marie Piantino Hao Liu Dong-Hee Kang Yoshihiro Sowa Shiro Kitano Michiya Matsusaki 2021Cyborg and Bionic Systems2021,,1:0
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