78
Views
30
CrossRef citations to date
0
Altmetric
Original

Effect of stereotactic radiosurgery on lipids and proteins of normal and hypoperfused rat brain homogenates: A Fourier transform infrared spectroscopy study

, &
Pages 911-918 | Received 17 May 2005, Accepted 24 Nov 2005, Published online: 03 Jul 2009

References

  • Arrondo J L, Muga A, Castresana J, Goni F M. Quantitative studies of the structure of proteins in solution by Fourier-Transform Infrared spectroscopy. Progress in Biophysics and Molecular Biology 1993; 59: 23–56
  • Bartosz G, Schon W, Kraft G, Gartner H. Irradiation increases proteolysis in erythrocyte ghosts: A spin label study. Radiation and Environmental Biophysics 1992; 31: 117–121
  • Bederson J B, Wiestler O D, Brustle O, Roth P, Frick R, Yaşargil M G. Intracranial venous hypertension and the effects of venous outflow obstruction in a rat model of arteriovenous fistula. Neurosurgery 1991; 29: 341–350
  • Bortolato M, Besson F, Roux B. An infrared study of the thermal and pH stabilities of the GPI-alkaline phosphatase from bovine intestine. Biochemical and Biophysical Research Communications 2002; 292: 874–879
  • Brown J M, Le Q T. Tumor hypoxia is important in radiotherapy, but how should we measure it?. International Journal of Radiation Oncology Biology Physics 2002; 54: 1299–1301
  • Cadrin M, French S W, Wong P T. Alteration in molecular structure of cytoskeleton proteins in griseofulvin-treated mouse liver: A pressure tuning infrared spectroscopy study. Experimental and Molecular Pathology 1991; 55: 170–179
  • Casarett A P. Radiation biology (American Institute of Biological Sciences and US Atomic Energy Commission). Prentice-Hall, Englewood Cliffs, NJ 1968
  • Chetty K G, Netrawali M S, Pradhan D S, Sreenivasan A. Mechanisms underlying decreased protein and RNA synthesis in the rat spleen following whole-body X-irradiation. Strahlentherapie 1976; 151: 228–235
  • Cakmak G, Togan I, Uguz C, Severcan F. FT-IR Spectroscopic analysis of rainbow trout liver exposed to nonylphenol. Applied Spectroscopy 2003; 57: 835–841
  • Davies K J. Protein damage and degradation by oxygen radicals. I. general aspects. Journal of Biological Chemistry 1987; 262: 9895–9901
  • Denny W A. The role of hypoxia-activated prodrugs in cancer therapy. The Lancet Oncology 2000; 1: 25–29
  • Edwards J C, Chapman D, Cramp W A, Yatvin M B. The effects of ionizing radiation on biomembrane structure and function. Progress in Biophysics and Molecular Biology 1984; 43: 71–93
  • Evans W H, Hardison W G. Phospholipid, cholesterol, polypeptide and glycoprotein composition of hepatic endosome subfractions. Biochemical Journal 1985; 232: 33–36
  • Gebicki J M, Du J, Collins J, Tweeddale H. Peroxidation of proteins and lipids in suspensions of liposomes, in blood serum, and in mouse myeloma cells. Acta Biochimica Polonica 2000; 47: 901–911
  • Haris P I, Severcan F. FTIR spectroscopic characterization of protein structure in aqueous and non-aqueous media. Journal of Molecular Catalysis B: Enzymatic 1999; 7: 207–221
  • Hendler R W, Barnett S M, Dracheva S, Bose S, Levin I W. Purple membrane lipid control of bacteriorhodopsin conformational flexibility and photocycle activity. European Journal of Biochemistry 2003; 270: 1920–1925
  • Hossmann K A. The hypoxic brain. Insights from ischemia research. Advances in Experimental Medicine and Biology 1999; 474: 155–169
  • Hsu H S, Lin S Y, Li M J, Liang R C. Ultrastructural and biophysical studies on protein conformations of epithelium and stroma in benign prostatic hyperplasia before and after transurethral resection of the prostate. Ultrastructural Pathology 2002; 26: 137–141
  • Jackson M, Sowa M G, Mantsch H H. Infrared spectroscopy: A new frontier in medicine. Biophysical Chemistry 1997; 68: 109–125
  • Kochan Z, Karbowska J, Bukato G, Zydowo M M, Bertoli E, Tanfani F, Swierczynski J. A comparison of the secondary structure of human brain mitochondrial and cytosolic ‘malic’ enzyme investigated by Fourier-Transform Infrared Spectroscopy. Biochemical Journal 1995; 309: 607–611
  • Kurita H, Kawamoto S, Sasaki T, Shin M, Tago M, Terahara A, Ueki K, Kirino T. Results of radiosurgery for brain stem arteriovenous malformations. Journal of Neurology, Neurosurgery, and Psychiatry 2000; 68: 563–570
  • Lawton M T, Hamilton M G, Spetzler R F. Multimodality treatment of deep arteriovenous malformations: Thalamus, basal ganglia, and brain stem. Neurosurgery 1995; 37: 29–35
  • LeVine S M, Wetzel D L. In situ chemical analyses from frozen tissue sections by Fourier Transform Infrared microspectroscopy. Examination of white matter exposed to extravasated blood in the rat brain. American Journal of Pathology 1994; 145: 1041–1047
  • Liu K Z, Schultz C P, Johnston J B, Beck F W, Al-katib A M, Mohammad R M, Mantsch H H. Infrared spectroscopic study of bryostatin 1-induced membrane alterations in a B-CLL cell line. Leukemia 1999; 13: 1273–1280
  • Lunsford L D, Kondziolka D, Flickinger J C, Bissonette D J, Jungreis C A, Maitz A H, Horton J A, Coffey R J. Stereotactic radiosurgery for arteriovenous malformations of the brain. Journal of Neurosurgery 1991; 75: 512–524
  • Manoharan R, Baraga J J, Rava R P, Dasari R R, Fitzmaurice M, Feld M S. Biochemical analysis and mapping of atherosclerotic human artery using FT-IR microspectroscopy. Atherosclerosis 1993; 103: 181–193
  • Melin A M, Perromat A, Deleris G. Pharmacologic application of Fourier Transform IR spectroscopy: In vivo toxicity of carbon tetrachloride on rat liver. Bioploymers (Biospectroscopy) 2000; 57: 160–168
  • Melin A M, Perromat A, Deleris G. Sensitivity of Deinococcus radiodurans to γ irradiation: A novel approach by Fourier Transform Infrared spectroscopy. Archieves of Biochemistry and Biophysics 2001; 394: 265–274
  • Mishra O P, Delivoria-Papadopoulos M. Cellular mechanisms of hypoxic injury in the developing brain. Brain Research Bulletin 1999; 48: 233–238
  • Morgan M K, Anderson R E, Sundt T M. The effects of hyperventilation on cerebral blood flow in the rat with an open and closed carotid-jugular fistula. Neurosurgery 1989a; 25: 606–611
  • Morgan M K, Anderson R E, Sundt T M. A model of the pathophysiology of cerebral arteriovenous malformations by a carotid-jugular fistula in the rat. Brain Research 1989b; 496: 241–250
  • Mut M, Oge K, Zorlu F, Undeger U, Erdem S, Ozcan O E. Effects of ionizing radiation on brain tissue surrounding arteriovenous malformations: An experimental study in a rat caroticojugular fistula model. Neurosurgical Review 2004; 27(2)121–127
  • Nornes H, Grip A. Hemodynamic aspects of cerebral arteriovenous malformation. Journal of Neurosurgery 1980; 53: 456–464
  • O'Neill P, Fielden E M. Primary free radical processes in DNA. Advances in Radiation Biology 1993; 17: 53–120
  • Ortner M J, Galvin M J, Chignell C F, McRee D I. A circular dichroism study of human erythrocyte ghost proteins during exposure to 2450 MHz microwaveradiation. Cell Biophysics 1981; 3: 335–347
  • Pellettieri L, Blomquist E. Differences in radiosensitivity between brain, small and large arteriovenous malformations. A tentative explanation of the incongruent results of radiotherapy. Medical Hypotheses 1999; 52: 551–556
  • Rofstad E K, Sundfor K, Lyng H, Trope C G. Hypoxia-induced treatment failure in advanced squamous cell carcinoma of the uterine cervix is primarily due to hypoxia-induced radiation resistance rather than hypoxia-induced metastasis. British Journal of Cancer 2000; 83: 354–359
  • Rubin P, Constine L, Nelson D F. Late effects of cancer treatment. Principles and practice in radiation oncology, C A Perez, L W Brady. J.B. Lippincott Company, Philedelphia 1992; 138–142
  • Sasaki T, Kurita H, Saito I, Kawamoto S, Nemoto S, Terahara A, Kirino T, Takakura K. Arteriovenous malformations in the basal ganglia and thalamus: management and results in 101 cases. Journal of Neurosurgery 1998; 88: 285–292
  • Severcan F, Haris P I. Fourier Transform Infrared spectroscopy suggests unfolding of loop structures precedes complete unfolding of pig citrate synthase. Biopolymers 2003; 69: 440–447
  • Soszynski M, Schuessler H. Effect of X-irradiation on erythrocyte membrane proteins. Primary radicals. International Journal of Radiation Biology 1991; 60: 859–875
  • Spetzler R F, Wilson C B, Weistein P, Mehdorn M, Townsend J, Telles D. Normal perfusion pressure breakthrough theory. Clinical Neurosurgery 1978; 25: 651–672
  • Steiner L, Lindquist C, Adler J R, Torner J C, Alves W, Steiner M. Clinical outcome of radiosurgery for cerebral arteriovenous malformations. Journal of Neurosurgery 1992; 77: 1–8
  • Szalontai B, Nishiyama Y, Gombos Z, Murata N. Membrane dynamics as seen by Fourier Transform Infrared spectroscopy in a cyanobacterium, Synechocystis PCC 6803. The effects of lipid unsaturation and the protein-to-lipid ratio. Biochimica et Biophysica Acta 2000; 1509: 409–419
  • Takahashi H, French S M, Wong P TT. Alteration in hepatic lipids and proteins by chronic ethanol intake: A high pressure Fourier Transform Infrared spectroscopic study on alcoholic liver disease in the rat. Alcoholism: Clinical and Experimental Research 1991; 15: 219–223
  • Toyran N, Severcan F. Competitive effect of vitamin D2 and Ca2 + on phospholipid model membranes: An FTIR study. Chemistry and Physics of Lipids 2003; 123: 165–176
  • Toyran N, Zorlu F, Donmez G, Oge K, Severcan F. Chronic hypoperfusion alters the content and structure of proteins and lipids of rat brain homogenates: A Fourier transform infrared spectroscopy study. European Biophysics Journal 2004; 33: 549–554
  • Wigg D R. Is there a role for fractionated radiotherapy in the treatment of arteriovenous malformations?. Acta Oncologica 1999; 38: 979–986
  • Withers H R. Biological basis of radiation therapy for cancer. Lancet 1992; 339: 156–159
  • Wouters B G, Weppler S A, Koritzinsky M, Landuyt W, Nuyts S, Theys J, Chiu R K, Lambin P. Hypoxia as a target for combined modality treatments. European Journal of Cancer 2002; 38: 240–257
  • Yamamoto Y, Coffey R J, Nichols D A, Shaw E G. Interim report on the radiosurgical treatment of cerebral arteriovenous malformations. The influence of size, dose, time, and technical factors on obliteration rate. Journal of Neurosurgery 1995; 83: 832–837
  • Yatvin M B, Grummer M A. Membrane structure and radiation and hyperthermic damage. Radiation Physics and Chemistry 1987; 30: 351–364

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.