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ละเอียด นาคกระแสร์

ชื่อ-นามสกุล: ละเอียด นาคกระแสร์ (La-iad Nakkrasae)
ตำแหน่ง: ผู้ช่วยศาสตราจารย์
ห้องทำงาน: Sc3321
E-mail: laiana@kku.ac.th
Website:
การศึกษา: Ph.D. (Biology), Mahidol University

สาขาที่สนใจ: Animal Physiology, Molecular Biology

วิชาที่สอน:
Vertebrate, Animal physiology, Molecular
Biology

งานวิจัยหรืองานที่สนใจ:
Osmoregulation of aquatic organisms

บทความและสิ่งตีพิมพ์:
ผลงานวิจัยตีพิมพ์
(* หมายถึง Corresponding author)

1. Nakkrasae L*, Wisetdee K, Charoenphandhu N. Osmoregulatory adaptations of freshwater air-breathing snakehead fish (Channa striata) after exposure to brackish water. Journal of Comparative Physiology - B 2015 (in press). (Impact Factor 2013 = 2.530; SJR Q1)

2. Nakkrasae L*, Phummisutthigoon S, Charoenphandhu N. Low salinity increases survival, body weight, and development in tadpoles of the Chinese edible frog Hoplobatrachus rugulosus. Aquaculture Research 2015 (in press) (Impact Factor 2013 = 1.32; SJR Q2)

3. Wisetdee K, Petkam R, Nakkrasae L*, Cloning of snakehead prolactin receptor mRNA, expression during hyperosmotic condition. Thai Journal of Genetics 2013;S1:369-373.

4. Charoenphandhu N*, Laohapitakworn S, Kraidith K, Nakkrasae L, Jongwattanapisan P, Tharabenjasin P, Krishnamra N. Electrogenic Na⁺/HCO₃⁻ co-transporter-1 is essential for the parathyroid hormone-stimulated intestinal HCO₃⁻ secretion. Biochem Biophys Res Commun 2011; 17;409(4):775-9. (Impact Factor 2013 = 2.281; SJR Q1)

5. Laohapitakworn S, Thongbunchoo J, Nakkrasae L, Krishnamra N and Charoenphandhu N*. Parathyroid hormone (PTH) rapidly enhances CFTR-mediated HCO3– secretion in intestinal epithelium-like Caco-2 monolayer: a novel ion regulatory action of PTH. American Journal of Physiology Cell Physiology 2011; 301:(1) C137-C149. (Impact Factor 2013 = 3.674; SJR Q1)

6. Nakkrasae L, Thongon N, Thongbunchoo J, Krishnamra N and Charoenphandhu N*. Transepithelial calcium transport in prolactin-exposed intestine-like Caco-2 monolayer after combinatorial knockdown of TRPV5, TRPV6 and Cav1.3. Journal of Physiological Science 2010; 60(1):9-17. (Impact Factor 2013 = 1.248; SJR Q3)

7. Charoenphandhu N*, Nakkrasae L, Kraidith K, Teerapornpuntakit J, Thongchote K, Thongon N and Krishnamra N. Two-step stimulation of intestinal calcium absorption during lactation by long-term prolactin (PRL) exposure and suckling-induced PRL surge. American Journal of Physiology-Endocrinology and Metabolism 2009; 297: E609-E619. (Impact Factor 2013 = 4.088; SJR Q1)

8. Kraidith K, Jantarajit W, Teerapornpuntakit J, Nakkrasae L, Krishnamra N and Charoenphandhu N*. Direct stimulation of the transcellular and paracellular calcium transport in the rat cecum by prolactin. Pflügers Archiv - European Journal of Physiology 2009; 458(5):993-1005. (Impact Factor 2013 = 3.073; SJR Q1)

9. Thongon N, Nakkrasae L, Thongbunchoo J, Krishnamra N and Charoenphandhu N*. Enhancement of calcium transport in Caco-2 monolayer through PKCζ-dependent Cav1.3-mediated transcellular and rectifying paracellular pathways by prolactin. American Journal of Physiology Cell Physiology 2009; 296(6):C1373-C1382. (Impact Factor 2013 = 3.674; SJR Q1)

10. Thongon N, Nakkrasae L, Thongbunchoo J, Krishnamra N and Charoenphandhu N*. Prolactin stimulates transepithelial calcium transport and modulates paracellular permselectivity in Caco-2 monolayer: Mediation by PKC and ROCK pathways. American Journal of Physiology Cell Physiology 2008; 294(5):C1158-C1168. (Impact Factor 2013 = 3.674; SJR Q1)

11. Strasser MJ, Mackenzie NC, Dumstrei K, Nakkrasae L, Stebler J and Raz E*. Control over the morphology and segregation of zebrafish germ cell granules during embryonic development. BMC Developmental Biology 2008; 8:58. (Impact Factor 2013 = 2.75; SJR Q1)

12. Nakkrasae L, Damrongphol P*. A vasa-like gene in the giant freshwater prawn, Macrobrachium rosenbergii. Molecular Reproductive and Development 2007; 74(7):835-42. Impact Factor 2013 = 2.812; SJR Q1)

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