FAST MONITORING OF LONG-RANGE ORDER IN THE ENSEMBLE OF COLLAGEN DOMAINS IN THE ACHILLES TENDONS AND HUMAN KNEES IN VIVO

DOI: https://doi.org/10.29296/24999490-2019-03-10

Dr. Kristina Zubow(1), Prof. Dr. Anatolij Zubow(2), Dr. Viktor Anatolievich Zubow(1) 1-R&D, Zubow Consulting, Zur Fuchseiche 7, Groß Gievitz, 17192, Germany; 2-Dept. Telecommunication Networks Group, TU Berlin, 17-July, 135, Berlin, 10623, Germany E-mail: [email protected]

The dynamics of the collagen domain structure in the Achilles tendons and knees when they are stretched. Research method. A new non-invasive gravitational mass spectroscopy (GMS) method for operational (1...20 s) long-range order (LRO) monitoring in human tendons (achilles tendom and lateral collateral ligament) at the level of their molecular domains in vivo. As probands, members of the same family from 8 to 67 years old were involved. Results. Structural changes were detected in the forms of activated collagen domains in tendons at stretching. The domain masses range from 200 Daltons to 3,5 billion Daltons. Age differences and differences by gender in LRO were found. The domain ensemble itself has been established to be structured and represented by several sub-ensembles, reflecting the dynamics of giant micellar structures, structures in the NC1 range, as well as conformational constructions of domains inside the NC1 hexamer itself in the collagen. Conclusion. The method can be proposed for objective control of the state of wide tendons populations
Keywords: 
collagen, domains, LRO, NC1, non-invasive method, tendons, man

Список литературы: 
  1. Zubow K., Zubow A.V., Zubow V.A. The Way to the ETIs. Applied gravitational mass spectroscopy. Nova Sci. Publ. NY, 2014. https://www.novapublishers.com/catalog/product_info.php?products_id=42668&osCsid=5bd85d42dc273360fd48126de7be9daf
  2. 2. Zubow K., Zubow A., Zubow V.A. Structural Study of Limited Indistant Monitoring of Molecular Domains in the Heart Muscle in vivo: Reexamination of the Domains‘ Mechanicsvariant Sets of Relay Stabilized Systems. In Horizons in World Cardiovascular Research. Ed. Eleanor H. Bennington. NY, NovaPublish. Inc. 2017; 13: 227–40. https://www.novapublishers.com/catalog/product_info.php?products_id=62983
  3. 3. Zubow K., Zubow A., Zubow V.A. New Non-Invasive Determination of the Aortic Elasticity. Black Coffee vs. Milk. Horizons in World Cardiovascular Research. Ed. Eleanor H. Bennington. NY, NovaPublish. Inc. 2018; 15: 157–80. https://www.novapublishers.com/catalog/product_info.php?products_id=65254
  4. 4. Zubow K., Zubow A., Zubow V.A. Angina Pectoris Healing Process Monitoring on the Molecular Domain Level in the Heart Muscle in vivo. Domain Action Modes inside one Family. In Horizons in World Cardiovascular Research. Ed. Eleanor H. Bennington. NY, NovaPublish. Inc. 2017; 14: 167–22. https://www.novapublishers.com/catalog/product_info.php?products_id=63456
  5. 5. Zubow K., Zubow A., Zubow V.A. Phenomenal properties of the domain ensembles in proteins. Biochemistry & Molecular Biology J. USA. 2016; 2 (1): 1–10. http://biochem-molbio.imedpub.com/phenomenal-properties-of-the-domain-ensembles-in-proteins.pdf
  6. 6. Manuel E. Than, Stefan Henrich, Robert Huber, Albert Ries. The 1.9- α crystal structure of the noncollagenous (NC1) domain of human placenta collagen IV shows stabilization via a novel type of covalent Met-Lys cross-link. Proc Natl Acad Sci USA. 2002 May 14; 99 (10): 6607–12. https://doi.org/10.1073/pnas.062183499
  7. 7. Wunderlich B. Macromolecular Physics. Vol. I. Crystal Structure, Morphology, Defects. Academic Press, NY, London 1973.
  8. 8. Zubow A., Zubow K., Zubow V.A. Blazar TXS 0506+056 and the GN background influences on the LRO of Proteins. Horizons in World Physics. Ed. Albert Reimer. NY, NovaPublish. Inc. 2019; 297: 183–200. https://novapublishers.com/shop/horizons-in-world-physics-volume-297/
  9. 9. Patricia Casino, Roberto Gozalbo-Rovira, Jesus Rodriguez-Diaz, at al. Structures of collagen IV globular domains: insight into associated pathologies, folding and network assembly. IUCrJ. Biology/Medicine. 2018; 5: 765–79. https://doi.org/10.1107/S2052252518012459
  10. 10. Stephanie Röper. Strukturuntersuchungen an biologischen Materialien mit Hilfe rasterkraftmikroskopiebasierender Nanotomographie. Dissertation. Chemnitz, den 23. Dezember 2010. http://www.qucosa.de/fileadmin/data/qucosa/documents/6880/Dissertation_Stephanie_Roeper.pdfhemnitz. http://monarch.qucosa.de/fileadmin/data/qucosa/documents/6880/Dissertation_Stephanie_Roeper.pdf