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M Jokinen

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Articles 36
Citations 355
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Recent Articles
1.
Kangasniemi L, Koskinen M, Jokinen M, Toriseva M, Ala-aho R, Kahari V, et al.
Gene Ther . 2008 Aug; 16(1):103-10. PMID: 18754041
Despite promising preclinical results, the clinical benefits of cancer gene therapy have been modest heretofore. The main obstacle continues to be the level and persistence of gene delivery to sufficiently...
2.
Rossi S, Moritz N, Tirri T, Peltola T, Areva S, Jokinen M, et al.
J Biomed Mater Res A . 2007 Mar; 82(4):965-74. PMID: 17335031
The bioactivity of the surface reactive TiO(2) coatings for medical implants can be locally modified by CO(2) laser processing to match with the properties of surrounding tissues. The TiO(2) coatings...
3.
Vakiparta M, Forsback A, Lassila L, Jokinen M, Yli-Urpo A, Vallittu P
J Mater Sci Mater Med . 2005 Sep; 16(9):873-9. PMID: 16167117
The aim of this study was to investigate the biomimetic mineralization on the surface of a glass fiber reinforced composite with partially resorbable biopolymer matrix. The E-glass fibers were preimpregnated...
4.
Moritz N, Vedel E, Ylanen H, Jokinen M, Hupa M, Yli-Urpo A
J Mater Sci Mater Med . 2004 Sep; 15(7):787-94. PMID: 15387414
Titanium and its alloys are widely used in load-bearing bioinert implants. Bioactive glasses (BAGs) form a chemical bond with bone, but they are not suitable for load-bearing applications. Creating a...
5.
Jaakkola T, Rich J, Tirri T, Narhi T, Jokinen M, Seppala J, et al.
Biomaterials . 2003 Nov; 25(4):575-81. PMID: 14607495
Bioactive properties of composites containing poly(epsilon-caprolactone-co-DL-lactide) with molar ratio 96/4 and bioactive glass (BAG), S53P4, were tested in vitro. The glass content in the tested materials was 40, 60 or...
6.
Moritz N, Jokinen M, Peltola T, Areva S, Yli-Urpo A
J Biomed Mater Res A . 2003 Mar; 65(1):9-16. PMID: 12635148
Sol-gel-derived TiO(2) coatings are known to promote bonelike hydroxyapatite formation on their surfaces in vitro and in vivo. Hydroxyapatite integrates into bone tissue. In some clinical applications, the surface of...
7.
Viitala R, Jokinen M, Peltola T, Gunnelius K, Rosenholm J
Biomaterials . 2002 Jul; 23(15):3073-86. PMID: 12102178
The acid-base properties of several in vitro bioactive (able to form bone mineral-like calcium phosphate on their surfaces) and non-bioactive sol-gel processed oxides are studied. The amount of Lewis acid...
8.
Peltola T, Jokinen M, Veittola S, Simola J, Yli-Urpo A
J Biomed Mater Res . 2001 Jun; 54(4):579-90. PMID: 11426604
The ability of sol-gel-derived silica fibers heat treated at a low temperature to induce formation of bone-like calcium phosphate (HCA) on their surfaces provides alternatives for the design of novel...
9.
Koivunen E, Ranta T, Annila A, Taube S, Uppala A, Jokinen M, et al.
J Cell Biol . 2001 May; 153(5):905-16. PMID: 11381078
Many integrins mediate cell attachment to the extracellular matrix by recognizing short tripeptide sequences such as arginine-glycine-aspartic acid and leucine-aspartate-valine. Using phage display, we have now found that the leukocyte-specific...
10.
Peltola T, Jokinen M, Veittola S, Rahiala H, Yli-Urpo A
Biomaterials . 2001 Feb; 22(6):589-98. PMID: 11219724
The ability of the sol-gel-derived green state silica fibers to induce the formation of bone-like calcium phosphate (HCA) on their surfaces has not been studied earlier. Bioactive silica fibers provide...