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Jaana

Jaana MÄttÖ, Helsinki FI

Patent application numberDescriptionPublished
20110158950USE OF BLOOD GROUP STATUS I - Provided is a probiotic composition which is tailored based on the spectrum of bifidobacteria found in the intestine of at least one individual with non-secretor blood group phenotype. Further provided is a method of tailoring a probiotic composition based on the bifidobacteria found from the intestine of at least one non-secretor individual.06-30-2011
20110158951USE OF BLOOD GROUP STATUS II - Provided is a microbial or probiotic composition which is tailored based on the spectrum of bifidobacteria found in the intestine of at least one individual with secretor blood group phenotype but not commonly found in individuals of non-secretor blood group phenotype. Further provided is a method of tailoring a microbial or probiotic composition based on the bifidobacteria found in the intestine of at least one individual with secretor blood group phenotype but not commonly found in individuals non-secretor blood group phenotype.06-30-2011

Jaana Nopola-Hemmi, Helsinki FI

Patent application numberDescriptionPublished
20080241178NOVEL HUMAN GENE FUNCTIONALLY RELATED TO DYSLEXIA - The present invention describes a novel human gene, DYXC1, which is functionally related to dyslexia. DYXC1 gene encodes a 420-amino acid residue protein. DYXC1 is expressed in several tissues, including the brain, and is localized in the nucleus. In addition, four single nucleotide polymorphisms (SNPs) in DYXC1 mRNA have been characterized in this invention. The invention provides diagnostic methods and materials for analysing allelic variation in DYSC1 gene. This invention also provides polypeptides encoded by DYXC1 gene and antibodies binding to said polypeptides.10-02-2008

Jaana Romppanen, Helsinki FI

Patent application numberDescriptionPublished
20090022639Method for the recovery of valuable metals and arsenic from a solution - The invention relates to a method for the treatment of material containing at least one valuable metal and arsenic to form a valuable metal-depleted scorodite sediment and a pure aqueous solution to be discharged from the process. According to the method, the valuable metals are first removed from the material to be treated and then arsenic precipitation from the solution is performed in two stages. By means of the method, the aim is to obtain as low a valuable metal content as possible in the scorodite sediment that will be formed. Likewise, the arsenic and valuable metal content of the aqueous solution that is formed during arsenic precipitation also remains so low that the water can be released into the environment.01-22-2009