Beylerli, Ozal,
Gareev, Ilgiz,
Beilerli, Aferin,
Ilyasova, Tatiana,
Shi, Huaizhang,
Sufianov, Albert (2024) in
neuroprotection, regulation of scarring, facilitation of nerve regeneration, preservation of the blood
Lebedeva, Anna Ivanova,
Gareev, Evgeny Musinovich,
Musina, Lyalya Akhiyarovna,
Prusakov, Alexey Viktorovich,
Yashin, Anatoliy Viktorovich,
Ponamarev, Vladimir Sergeevich (2025) on the organism. Also,
neuroprotective and immunomodulating effects have been recorded. Copyright © 2025
of action of SVF encompass inflammation modulation,
neuroprotection, angiogenesis, and immunomodulation
Rodkin, Stanislav,
Nwosu, Chizaram,
Raevskaya, Margarita,
Khanukaev, Maxim,
Bekova, Khava,
Vasilieva, Inna,
Vishnyak, Diana,
Tolmacheva, Anastasia,
Efremova, Elena,
Gasanov, Mitkhat,
Tyurin, Anton (2023) . To date, there are no clinically effective
neuroprotective drugs. In this study, we examined the role
, exhibits
neuroprotective activity, and enhances cognitive capabilities [12, 13]. The high
biological
and astrocytes, but also enhance their
neuroprotective functions. Moreover, these exosomes have demonstrated a
МОНОСИАЛОГАНГЛИОЗИД GM1: СТРУКТУРА,АНТИАПОПТОТИЧЕСКИЕ СВОЙСТВА И НЕЙРОПРОТЕКЦИЯА. А. Мавлиханова,
A. A. Mavlikhanova,
В.Н. Павлов,
V.N. Pavlov,
Б. . Ян,
B. . Yang,
В. А. Катаев,
V. A. Kataev,
Н. . Ван,
N. . Wang,
Э. Ф. Аглетдинов,
E. F. Agletdinov,
Ч. И. Кан,
C. Y. Kang,
Д. . Ху,
J. . Hu (Медицинский вестник Башкортостана, №5, 2018) MONOSIALOGANGLIOSIDE GM1: STRUCTURE, ANTI-APOPTOTIC PROPERTIES AND
NEUROPROTECTION