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Nano-medicine and The New Treatment Methods

Year 2021, Volume: 4 Issue: 2, 121 - 131, 25.05.2021

Abstract

References

  • 1. Karateke M, Güngör E, Demir A. (2010). Nanoteknoloji ve Tekstil Sektöründe Uygulamalar. MYO-ÖS 2010-Ulusal Meslek Yüksekokulları Öğrenci Sempozyumu, 21-22 Ekim, Düzce.
  • 2. Wang AZ, Tepper JE. (2014). Nanotechnology in radiation oncology. Journal of Clinical Oncology, 32 (26): 2879-2885.
  • 3. Syed S, Zubair A, Frieri M. (2013). Immune response to na-nomaterials: Implications for medicine and literature review. Curr Allergy Asthm Rep, 13(1): 50-57.
  • 4. Zhang W, Wang Y, Lee BT, Liu C, Wei G, et al. (2014). A novel nanoscale-dispersed eye ointment for the treatment of dry eye disease. Nanotechnology, 25: 125101.
  • 5. Sanguansri P, ve Angustin MA. (2006). Nanoscale materials development-a food industry perspective, Trends in Food Science & Technology, 17;547-556.
  • 6. Zhao C.X, He L, Qiao SZ ve Middelberg APJ. (2010). Nanoparticle synthesis in microreactors, Chemical Engineering Science, 66;1463-1479.
  • 7. Aluya J. (2015). Nanotechnology Implications and Global Leadership Perspectives. Energy Sources, Part B: Economics, Planning, and Policy, 10(1),31-37.
  • 8. Musee N, Brent AC, Ashton PJ. (2010). A South African research agenda to investigate the potential environmental health and safety risks of nanotechnology. S Afr J Sci 106:3-4.
  • 9. Michelson ES, Sandler R, Rejeski D. (2008). Nanotechnology. In: Crowley M ed. From Birth to Death and Bench to Clinic: The Hastings Center Bioethics Briefing Book for Journalists, Policy Makers, and Campaigns. Garrison, NY: The Hastings Center. 111-116.
  • 10. Hanks NA, Caruso JA & Zhang P. (2015). Assessing Pistia Stratiotes for Phytoremediation of Silver Nanoparticles and Ag(I) Contaminated Waters. Journal of Environmental Management. 64:41-45.
  • 11. Koçer H, ve Türkmenler A. (2009). ʺGenetiği değiştirilmiş organizmalar: GDOʺ, Tübitak Bilim ve Teknik Dergisi, 501:34‐37.
  • 12. Li F, Li Y, Feng J, Dong Y, Wang P, Chen L, Chen Z, Liu H, Wei Q. (2017). Ultrasensitive amperometric immunosensor for PSA detection based on Cu2O@ CeO2-Au nanocomposites as integrated triple signal amplification strategy. Biosens Bioelectron, 2017;87:630-637.
  • 13. Abeer S, (2012). “Future Medicine: Nanomedicine”, University of Glasgow, United Kingdom, JIMSA July‐September. 25,3.
  • 14. Karaçay B. (2009). “Bilim ve Teknik”, Tübitak Dergisi, Ağustos 2009; 62‐68.
  • 15. Güran Ş ve Yakıcıer C. (2003). “Moleküler Biyolojide Yeni Ufuklar: Biyoçip Teknolojisi” T Klin Tıp Bilimleri Dergisi, 23,416‐419.
  • 16. Kocaefe Ç, (2017). ʺNanotıp: yaşam bilimlerinde nanoteknoloji uygulamalarıʺ, Hacettepe Tıp Dergisi, 38,33‐38.
  • 17. Atlı-Şekeroğlu Z. (2013). Nanoteknolojiden nanogenotoksikolojiye: Kobalt-krom nanopartiküllerinin genotoksik etkİsİ. Türk Hijyen ve Deneysel Biyoloji Dergisi, 70(1):33-42.
  • 18. Parvanian S, Mostafavi SM, Aghashiri M. (2017). Multifunctional nanoparticle developments in cancer diagnosis and treatment. Sensing and Bio-Sensing Research, 13:81-87.
  • 19. Davide B, Benjamin LD, Nicolas J, Hossein S, Lin-Ping Wu, et al. (2011). Nanotechnologies for Alzheimer‟s disease: diagnosis, therapy and safety issues. Nano medicine: Nanotechnology, Biology and Medicine, 7:521-540.
  • 20. Wong HL, Wu XY, Bendayan R. (2012). Nanotechnological advances for the delivery of CNS therapeutics. Adv Drug Deliv Rev, 64:686-700.
  • 21. Kamel M, El-Sayed A, Castañeda Vazquez HJ. (2019). Foot-and-mouth disease vaccines: recent updates and future perspectives. Arch Virol, 164:1501-1513.
  • 22. Luo M, Wang H, Wang Z, Cai H, Lu Z, Li Y, Du M, Huang G, Wang C, Chen X, Porembka MR, Lea J, Frankel AE, Fu YX, Chen ZJ & Gao J. (2017). A STING-Activating Nanovaccine for Cancer Immunotherapy. Nature Nanotechnology, 12,648-654.
  • 23. Langer R, Weissleder, R. (2015). Nanotechnology. JAMA, 313(2):135-136.
  • 24. Torres-Sangiao E, Holban AM, Gestal MC. (2016). Advanced nanobiomaterials: vaccines, diagnosis and treatment of infectious diseases. Molecules, 21:867.
  • 25. Kozielski KL, Rui Y, Green JJ. (2016). Non-viral nucleic acid containing nanoparticles as cancer therapeutics. Expert opinion on drug delivery, 13:1475-1487.
  • 26. Huang S, Tanioka T, Locsin R, Paker M. & Marsoy O. (2011). Functions of a caring robot in nursing. (Paper presented at the pages). Seventh International Conference on Natural Language Processing and Knowledge Engineering, 425-429.
  • 27. Miller S, Getts D, Martin A, McCarthy D, Terry R, et al. (2012). Micro particles bearing encephalitogenic peptides induce T-cell tolerance and ameliorate experimental autoimmune encephalomyelitis. Nature Biotechnology, 30:1217-1224.
  • 28. Yen C-W, de Puig H, Tam JO, et al. (2015). Multicolored silver nanoparticles for multiplexed disease diagnostics: Distinguishing dengue, yellow fever, and Ebola viruses. Lab on a Chip 15(7):1638-1641.
  • 29. Nikalje AP. (2015). Nanotechnology and its Applications in Medicine. Medicinal Chemistry, 5(2),81-89.
  • 30. Jurj A, Braicu C, Pop L-A, Tomuleasa C, Gherman CD, Berindan Neagoe I. (2017). The new era of nanotechnology, an alternative to change cancer treatment. Drug Design Dev Ther, 11:2871-2890.
  • 31. Meena N, Sahni Y, Thakur D, Singh R. (2018). Applications of nanotechnology in veterinary. Vet World, 3(10):477-480.
  • 32. Yi H, Rehman FU, Zhao C, Liu B, He N. (2016). Recent advances in nano scaffolds for bone repair. Bone Res, 4:16050.
  • 33. Riley MK, Vermerris W. (2017). Recent advances in nanomaterials for gene delivery—a review. Nanomaterials, 7:94.
  • 34. Kamel M, El-Sayed A. (2019). Utilization of herpesviridae as recombinant viral vectors in vaccine development against animal pathogens. Virus Res, 270:197648.
  • 35. Davide B, Benjamin LD, Nicolas J, Hossein S, Lin-Ping Wu, et al. (2011). Nanotechnologies for Alzheimer‟s disease: diagnosis, therapy and safety issues. Nano medicine: Nanotechnology, Biology and Medicine, 7: 521-540.
  • 36. Nahcivan NO, Seçginli S. (2015). Kanserde tarama ve erken tanı. Can, G. (Ed.). Onkoloji Hemşireliği. Nobel Tıp Kitabevleri, İstanbul, 41-58.
  • 37. Lehto T, Ezzat K, Wood MJ, (2016). Andaloussi SE. Peptides for nucleic acid delivery. Adv Drug Deliv Rev, 106:172-182.
  • 38. Jeevanandam J, Barhoum A, Chan YS, Dufresne A, Danquah MK. (2018). Review on nanoparticles and nanostructured materials: history, sources, toxicity and regulations. Beilstein J Nanotechnol, 9:1050-1074.
  • 39. Laiva A. ve ark. (2015). Controlled release of titanocene into the hybrid nanofibrous scaff olds to prevent the proliferaton of breast can-cer cells. International Journal of Pharmaceutics, 483(1):115-123.

Nanotıp ve Yeni Tedavi Yöntemleri

Year 2021, Volume: 4 Issue: 2, 121 - 131, 25.05.2021

Abstract

Nanoteknoloji, nanometre boyutlarında fiziksel, kimyasal ve biyolojik olayları anlamak için maddenin moleküler düzeyde düzenlenmesi ve kontrolüne yönelik çalışmaları içerir. Nanoteknoloji sayesinde insanı ve insanı etkileyen sistemleri moleküler düzeyde izleyerek, onararak ve yapılandırarak, insan sağlığının iyileştirilmesini ve korunmasını ve hasta bakım kalitesinde bir artış sağladığı / sağlayacağı düşünülmektedir. Nanoteknolojinin tıbba uygulanması düşünülerek nanotıp alanı doğmuştur. Buradaki amaç günümüz tıbbının yöntemleriyle çözülemeyen sorunları nanoteknoloji ile çözmektir. Nanoteknoloji çalışmaları günümüzde birçok alanda olduğu gibi sağlık alanında da önemli gelişmeler göstermektedir. Günümüzde bazı hastalıkların erken teşhis ve tedavisi için umut kaynağı olabileceği de tahmin edilmektedir.

Nanoteknolojinin en önemli kullanım alanlarından biri şüphesiz nanotıp olacaktır. Günümüzde nanotıbbın uygulama alanı oldukça geniştir. Genişliğin boyutları ancak hayal gücü ile ölçülebilir. Nanotıp ayrıca nano robotlar adı verilen nano makinelerin tasarımı için ortaya çıkan yeni moleküler nanoteknoloji kavramlarını ve uygulamalarını da içerir. Teşhis ve tedavi için damarlarımızda dolaşan milyarlarca nanobot, bugün hayal olarak görülmemesi gereken bir şey. Çünkü çok yakın gelecekte nanoteknoloji tıp alanında önemli ilerlemeler kaydedecek.
Bu yazıda sağlık alanında olumlu etkileri olabilecek mevcut ve potansiyel nanoteknoloji gelişmeleri ve nanotıp uygulamaları literatür ışığında tartışılacaktır.

References

  • 1. Karateke M, Güngör E, Demir A. (2010). Nanoteknoloji ve Tekstil Sektöründe Uygulamalar. MYO-ÖS 2010-Ulusal Meslek Yüksekokulları Öğrenci Sempozyumu, 21-22 Ekim, Düzce.
  • 2. Wang AZ, Tepper JE. (2014). Nanotechnology in radiation oncology. Journal of Clinical Oncology, 32 (26): 2879-2885.
  • 3. Syed S, Zubair A, Frieri M. (2013). Immune response to na-nomaterials: Implications for medicine and literature review. Curr Allergy Asthm Rep, 13(1): 50-57.
  • 4. Zhang W, Wang Y, Lee BT, Liu C, Wei G, et al. (2014). A novel nanoscale-dispersed eye ointment for the treatment of dry eye disease. Nanotechnology, 25: 125101.
  • 5. Sanguansri P, ve Angustin MA. (2006). Nanoscale materials development-a food industry perspective, Trends in Food Science & Technology, 17;547-556.
  • 6. Zhao C.X, He L, Qiao SZ ve Middelberg APJ. (2010). Nanoparticle synthesis in microreactors, Chemical Engineering Science, 66;1463-1479.
  • 7. Aluya J. (2015). Nanotechnology Implications and Global Leadership Perspectives. Energy Sources, Part B: Economics, Planning, and Policy, 10(1),31-37.
  • 8. Musee N, Brent AC, Ashton PJ. (2010). A South African research agenda to investigate the potential environmental health and safety risks of nanotechnology. S Afr J Sci 106:3-4.
  • 9. Michelson ES, Sandler R, Rejeski D. (2008). Nanotechnology. In: Crowley M ed. From Birth to Death and Bench to Clinic: The Hastings Center Bioethics Briefing Book for Journalists, Policy Makers, and Campaigns. Garrison, NY: The Hastings Center. 111-116.
  • 10. Hanks NA, Caruso JA & Zhang P. (2015). Assessing Pistia Stratiotes for Phytoremediation of Silver Nanoparticles and Ag(I) Contaminated Waters. Journal of Environmental Management. 64:41-45.
  • 11. Koçer H, ve Türkmenler A. (2009). ʺGenetiği değiştirilmiş organizmalar: GDOʺ, Tübitak Bilim ve Teknik Dergisi, 501:34‐37.
  • 12. Li F, Li Y, Feng J, Dong Y, Wang P, Chen L, Chen Z, Liu H, Wei Q. (2017). Ultrasensitive amperometric immunosensor for PSA detection based on Cu2O@ CeO2-Au nanocomposites as integrated triple signal amplification strategy. Biosens Bioelectron, 2017;87:630-637.
  • 13. Abeer S, (2012). “Future Medicine: Nanomedicine”, University of Glasgow, United Kingdom, JIMSA July‐September. 25,3.
  • 14. Karaçay B. (2009). “Bilim ve Teknik”, Tübitak Dergisi, Ağustos 2009; 62‐68.
  • 15. Güran Ş ve Yakıcıer C. (2003). “Moleküler Biyolojide Yeni Ufuklar: Biyoçip Teknolojisi” T Klin Tıp Bilimleri Dergisi, 23,416‐419.
  • 16. Kocaefe Ç, (2017). ʺNanotıp: yaşam bilimlerinde nanoteknoloji uygulamalarıʺ, Hacettepe Tıp Dergisi, 38,33‐38.
  • 17. Atlı-Şekeroğlu Z. (2013). Nanoteknolojiden nanogenotoksikolojiye: Kobalt-krom nanopartiküllerinin genotoksik etkİsİ. Türk Hijyen ve Deneysel Biyoloji Dergisi, 70(1):33-42.
  • 18. Parvanian S, Mostafavi SM, Aghashiri M. (2017). Multifunctional nanoparticle developments in cancer diagnosis and treatment. Sensing and Bio-Sensing Research, 13:81-87.
  • 19. Davide B, Benjamin LD, Nicolas J, Hossein S, Lin-Ping Wu, et al. (2011). Nanotechnologies for Alzheimer‟s disease: diagnosis, therapy and safety issues. Nano medicine: Nanotechnology, Biology and Medicine, 7:521-540.
  • 20. Wong HL, Wu XY, Bendayan R. (2012). Nanotechnological advances for the delivery of CNS therapeutics. Adv Drug Deliv Rev, 64:686-700.
  • 21. Kamel M, El-Sayed A, Castañeda Vazquez HJ. (2019). Foot-and-mouth disease vaccines: recent updates and future perspectives. Arch Virol, 164:1501-1513.
  • 22. Luo M, Wang H, Wang Z, Cai H, Lu Z, Li Y, Du M, Huang G, Wang C, Chen X, Porembka MR, Lea J, Frankel AE, Fu YX, Chen ZJ & Gao J. (2017). A STING-Activating Nanovaccine for Cancer Immunotherapy. Nature Nanotechnology, 12,648-654.
  • 23. Langer R, Weissleder, R. (2015). Nanotechnology. JAMA, 313(2):135-136.
  • 24. Torres-Sangiao E, Holban AM, Gestal MC. (2016). Advanced nanobiomaterials: vaccines, diagnosis and treatment of infectious diseases. Molecules, 21:867.
  • 25. Kozielski KL, Rui Y, Green JJ. (2016). Non-viral nucleic acid containing nanoparticles as cancer therapeutics. Expert opinion on drug delivery, 13:1475-1487.
  • 26. Huang S, Tanioka T, Locsin R, Paker M. & Marsoy O. (2011). Functions of a caring robot in nursing. (Paper presented at the pages). Seventh International Conference on Natural Language Processing and Knowledge Engineering, 425-429.
  • 27. Miller S, Getts D, Martin A, McCarthy D, Terry R, et al. (2012). Micro particles bearing encephalitogenic peptides induce T-cell tolerance and ameliorate experimental autoimmune encephalomyelitis. Nature Biotechnology, 30:1217-1224.
  • 28. Yen C-W, de Puig H, Tam JO, et al. (2015). Multicolored silver nanoparticles for multiplexed disease diagnostics: Distinguishing dengue, yellow fever, and Ebola viruses. Lab on a Chip 15(7):1638-1641.
  • 29. Nikalje AP. (2015). Nanotechnology and its Applications in Medicine. Medicinal Chemistry, 5(2),81-89.
  • 30. Jurj A, Braicu C, Pop L-A, Tomuleasa C, Gherman CD, Berindan Neagoe I. (2017). The new era of nanotechnology, an alternative to change cancer treatment. Drug Design Dev Ther, 11:2871-2890.
  • 31. Meena N, Sahni Y, Thakur D, Singh R. (2018). Applications of nanotechnology in veterinary. Vet World, 3(10):477-480.
  • 32. Yi H, Rehman FU, Zhao C, Liu B, He N. (2016). Recent advances in nano scaffolds for bone repair. Bone Res, 4:16050.
  • 33. Riley MK, Vermerris W. (2017). Recent advances in nanomaterials for gene delivery—a review. Nanomaterials, 7:94.
  • 34. Kamel M, El-Sayed A. (2019). Utilization of herpesviridae as recombinant viral vectors in vaccine development against animal pathogens. Virus Res, 270:197648.
  • 35. Davide B, Benjamin LD, Nicolas J, Hossein S, Lin-Ping Wu, et al. (2011). Nanotechnologies for Alzheimer‟s disease: diagnosis, therapy and safety issues. Nano medicine: Nanotechnology, Biology and Medicine, 7: 521-540.
  • 36. Nahcivan NO, Seçginli S. (2015). Kanserde tarama ve erken tanı. Can, G. (Ed.). Onkoloji Hemşireliği. Nobel Tıp Kitabevleri, İstanbul, 41-58.
  • 37. Lehto T, Ezzat K, Wood MJ, (2016). Andaloussi SE. Peptides for nucleic acid delivery. Adv Drug Deliv Rev, 106:172-182.
  • 38. Jeevanandam J, Barhoum A, Chan YS, Dufresne A, Danquah MK. (2018). Review on nanoparticles and nanostructured materials: history, sources, toxicity and regulations. Beilstein J Nanotechnol, 9:1050-1074.
  • 39. Laiva A. ve ark. (2015). Controlled release of titanocene into the hybrid nanofibrous scaff olds to prevent the proliferaton of breast can-cer cells. International Journal of Pharmaceutics, 483(1):115-123.
There are 39 citations in total.

Details

Primary Language Turkish
Subjects Health Care Administration
Journal Section Articles
Authors

Zülfü Tüylek 0000-0002-9086-1327

Publication Date May 25, 2021
Submission Date January 29, 2021
Published in Issue Year 2021 Volume: 4 Issue: 2

Cite

APA Tüylek, Z. (2021). Nanotıp ve Yeni Tedavi Yöntemleri. Avrasya Sağlık Bilimleri Dergisi, 4(2), 121-131.
AMA Tüylek Z. Nanotıp ve Yeni Tedavi Yöntemleri. EurasianJHS. May 2021;4(2):121-131.
Chicago Tüylek, Zülfü. “Nanotıp Ve Yeni Tedavi Yöntemleri”. Avrasya Sağlık Bilimleri Dergisi 4, no. 2 (May 2021): 121-31.
EndNote Tüylek Z (May 1, 2021) Nanotıp ve Yeni Tedavi Yöntemleri. Avrasya Sağlık Bilimleri Dergisi 4 2 121–131.
IEEE Z. Tüylek, “Nanotıp ve Yeni Tedavi Yöntemleri”, EurasianJHS, vol. 4, no. 2, pp. 121–131, 2021.
ISNAD Tüylek, Zülfü. “Nanotıp Ve Yeni Tedavi Yöntemleri”. Avrasya Sağlık Bilimleri Dergisi 4/2 (May 2021), 121-131.
JAMA Tüylek Z. Nanotıp ve Yeni Tedavi Yöntemleri. EurasianJHS. 2021;4:121–131.
MLA Tüylek, Zülfü. “Nanotıp Ve Yeni Tedavi Yöntemleri”. Avrasya Sağlık Bilimleri Dergisi, vol. 4, no. 2, 2021, pp. 121-3.
Vancouver Tüylek Z. Nanotıp ve Yeni Tedavi Yöntemleri. EurasianJHS. 2021;4(2):121-3.