YUMRONQOZIQ VA CHOʼL TOSHBAQALARIDA MODDALAR VA ENERGIYA ALMASHINUVINING FIZIOLOGIK TORMOZLANISH HOLATI

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Ниязметов Б.А. Ниязметов Б.А.
Вaлижон Каримов

Annotatsiya

Bugungi kunga qadar organizmning hayotiy funktsiyalarining koplab mexanizmlari kashf etilgan. Issiqqonli hayvonlarning energetikasiga kelsak, toʼqimalarning issiqlik ishlab chiqarish mexanizmi toʼliq oʼrnatilmagan. Kuchli energiya asosiga ega boʼlgan bu jarayon tanani isitishga qaratilgan boʼlib, u organizm energiyasining 80-90% gacha isteʼmol qiladi, yaʼni organizmdagi metabolizmga juda katta taʼsir koʼrsatadi. Ushbu energiya chiqimlari inson manfaatlari uchun ishlatilishi mumkin. Xususan, uning faoliyatini tartibga solishni oʼrganish kerak, bu biologik jarayonlarning samaradorligini oshiradi. Butun tana samaradorlikni oshirish orqali energiya yordamini olishi mumkin, bu tanadagi ogʼir jismoniy stress yoki toʼqimalarda maʼlum metabolik aloqalarning patologik zaiflashuvi mavjud boʼlganda tiklanish jarayonlarini yaxshilashga imkon beradi. Ijobiy amaliy imkoniyatlarga ega boʼlgan omil sifatida bogʼlanmagan nafas olishdan foydalanish amalga oshirilishini kutayotgan koʼplab istiqbollarga ega. Yuqorida aytilganlarning barchasi ushbu tadqiqot sohasini rivojlantirish va ushbu muammoni aniqlashtirish zarurligini koʼrsatadi. Bu yo‘nalishda ilmiy izlanishlar olib borish uchun yetarli shart-sharoit mavjud, deb hisoblaymiz.

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Bo‘lim
Biologiya
Mualliflar biografiyasi

Ниязметов Б.А. Ниязметов Б.А., Fergana State University

Доктор философии по биологическим наукам (PhD), Lyonel-Feininger-Gymnasium, Германия

Вaлижон Каримов , Fergana State University

Ферганский государственный университет, Кандидат биологических наук, доцент

Foydalaniladigan adabiyotlar

Affourtit Ch.,. Wong H-S., Brand M.D. Measurement of Proton Leak in Isolated Mitochondria. Mitochondrial Bioenergetics (Part of the Methods in Molecular Biology book series (MIMB, v, 1782) 2018, 157-170.

Clarke A., Portner H-O. Temperature, metabolic power and the evolution of endothermy // Biol. Rev. 2010. V.85. P.703-709.

Klingenberg M. UCP- a sophisticated energy valve. Biochimie. 2017, 134: 19

Staples J. f. Metabolic inhibition of mammalian hibernation: the role of mitochondria // J. of Experimental Biology, 2014, V.217 (12), 2032-6.

Акhmerov RN. Qualitative difference in mitochondria of endothermic and ectothermic animals // FEBS Letters 1986, 198 (2): 251-255.

Akhmerov R. N., Niyazmetov B. A., 2016. Coupled and uncoupled respiration in rat cardiocytes and mitochondria // European J. Biomedical and Pharmaceutical Sciences. 3 (12), 8-16.

Akhmerov R.N., Niyazmetov B.A, Abdullaev G.R. 2018 Different Views on the Tissue Thermogenesis of Organisms // Am. J. Biochem.. V.8, Р. .30-39.

Akhmerov R. N., Niyazmetov B. A., Abdullaev G. R. 2018. On Novel Features of the Proton Leak and Possibility of Uncoupling Population of Mitochondria in Brown Adipose Tissue // American Journal of Biochemistry, V/8 (6):Р. 107-113.

Шмидт-Ниельсон К. Физиология животных. Приспособление и среда. М.: Мир, 1982. Т. I. 414 с.

Chazarin, B., Storey, K.B., Ziemianin, A. et al. Metabolic reрrogramming involving glycolysis in the hibernating brown bear skeletal muscle // Front Zool 16, 12 (2019).