Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Reijo Bäckström is active.

Publication


Featured researches published by Reijo Bäckström.


Journal of Computer-aided Molecular Design | 1992

PLS modelling of structure—activity relationships of catechol O-methyltransferase inhibitors

Timo Lotta; Jyrki Taskinen; Reijo Bäckström; Erkki Nissinen

SummaryQuantitative structure-activity analysis was carried out for in vitro inhibition of rat brain soluble catechol O-methyltransferase by a series (N=99) of 1,5-substituted-3,4-dihydroxybenzenes using computational chemistry and multivariate PLS modelling of data sets. The molecular structural descriptors (N=19) associated with the electronics of the catecholic ring and sizes of substituents were derived theoretically. For the whole set of molecules two separate PLS models have to be used. A PLS model with two significant (crossvalidated) model dimensions describing 82.2% of the variance in inhibition activity data was capable of predicting all molecules except those having the largest R1 substituent or having a large R5 substituent compared to the NO2 group. The other PLS model with three significant (crossvalidated) model dimensions described 83.3% of the variance in inhibition activity data. This model could not handle compounds having a small R5 substituent, compared to the NO2 group, or the largest R1 substituent. The predictive capability of these PLS models was good. The models reveal that inhibition activity is nonlinearly related to the size of the R5 substituent. The analysis of the PLS models also shows that the binding affinity is greatly dependent on the electronic nature of both R1 and R5 substituents. The electron-withdrawing nature of the substituents enhances inhibition activity. In addition, the size of the R1 substituent and its lipophilicity are important in the binding of inhibitors. The size of the R1 substituent has an upper limit. On the other hand, ionized R1 substituents decrease inhibition activity.


Journal of Medicinal Chemistry | 1989

Synthesis of some novel potent and selective catechol O-methyltransferase inhibitors.

Reijo Bäckström; Erkki Juhani Honkanen; Aino Kyllikki Pippuri; Pekka Juhani Kairisalo; Jarmo Pystynen; Kalevi Evert Heinola; Erkki Nissinen; Inge Britt Linden; Pekka T. Männistö


Archive | 1987

Pharmacologically active compounds, methods for the preparation thereof and compositions containing the same

Reijo Bäckström; Kalevi Evert Heinola; Erkki Juhani Honkanen; Seppo Kaakkola; Pekka Juhani Kairisalo; Inge-Britt Linden; Pekka T. Männistö; Erkki Nissinen; Pentti Pohto; Aino Kyllikki Pippuri; Jarmo Pystynen


Archive | 1991

Pharmacologically active catechol derivatives

Reijo Bäckström; Erkki Juhani Honkanen; Inge-Britt Linden; Erkki Nissinen; Aino Kyllikki Pippuri; Pentti Pohto; Tapio Korkolainen


Archive | 1992

(-)-[[4-(1,4,5,6-tetrahydro-4-methyl-6-oxo-3-pyridazinyl)phenyl]-hydrazono]propanedinitrile

Pentti Nore; Erkki Juhani Honkanen; Reijo Bäckström; Tom Wikberg; Heimo Haikala; Jorma Haarala


Archive | 2001

Derivatives of naphthalene with COMT inhibiting activity

Reijo Bäckström; Jarmo Pystynen; Timo Lotta; Martti Ovaska; Jyrki Taskinen


Archive | 1993

Anti-ischemic medicament

Heimo Haikala; Jouko Levijoki; Reijo Bäckström; Pentti Nore; Erkki Juhani Honkanen


Archive | 1990

Method of treating parkinson's disease using pentanedione derivatives

Reijo Bäckström; Kalevi Evert Heinola; Erkki Juhani Honkanen; Seppo Kaakkola; Pekka Juhani Kairisalo; Inge-Britt Linden; Pekka I. Mannisto; Erkki Nissinen; Pentti Pohto; Aino Kyllikki Pippuri; Jarmo Pystynen


Archive | 1999

Substituted β-diketones and their use

Reijo Bäckström; Erkki Juhani Honkanen; Jarmo Pystynen; Anne Maria Luiro; Paivi Annikki Aho; Inge-Britt Linden; Erkki Nissinen; Pentti Pohto


Archive | 2006

New pharmaceutical compounds

Marko Ahlmark; Reijo Bäckström; Anne Maria Luiro; Jarmo Pystynen; Eija Tiainen

Collaboration


Dive into the Reijo Bäckström's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge