In Vitro proton spectroscopy of normal and abnormal prostate
β Scribed by Marshall E. Yacoe; Graham Sommer; Donna Peehl
- Book ID
- 102952353
- Publisher
- John Wiley and Sons
- Year
- 1991
- Tongue
- English
- Weight
- 540 KB
- Volume
- 19
- Category
- Article
- ISSN
- 0740-3194
No coin nor oath required. For personal study only.
β¦ Synopsis
Previous biochemical and 13C NMR spectroscopic data have suggested that the metabolism of citrate, a secretory product of normal prostate, may be interrupted in prostate cancer. In the present study in vitro 1H NMR spectroscopy was used to see if cell strains derived from prostate cancers could be reliably distinguished from those of normal prostate epithelium. High-resolution one-dimensional and two-dimensional J-resolved 1H NMR spectra as well as gas chromatography coupled with mass spectroscopy were used to study extracts of highly defined cell strains from normal peripheral zone, normal central zone, adenocarcinoma, and benign prostatic hyperplasia. Resonances assigned to citric acid and related metabolites were identified. Cell strains derived from prostate cancers tended to have smaller amounts of citrate than those from normal prostate epithelium. However, the differences were small and not statistically significant. The lack of statistically significant differences may reflect the variability present in both normal and abnormal cell strains and thus underscore the well-known difficulty in differentiating normal and cancerous tissues.
π SIMILAR VOLUMES
## Abstract ^1^Hβspectra at 360 MHz from perchloric extracts of 35 human prostate specimens were obtained. First, we sought to define what peaks can be assigned __in vitro__, and thus, potentially seen __in vivo.__ Second, we sought to try to discriminate between adenocarcinoma, normal peripheral z
## Abstract Citrate is a secretory product of the normal prostate, a lack of citrate in prostate tissue is expected to be pathognomonic for adenocarcinoma. In the present study proton ABβsignal characteristics of citrate at low field strength of 1.5 T were investigated by __volume selective spectro