: Aryl C-glycosides, in which carbohydrates are directly linked to aryl fragments through a stable C-C bond, are an important class of biologically active molecules widely found in nature. These compounds exhibit resistance to (enzymatic) hydrolysis, a property that has been successfully leveraged in the development of metabolically stable drugs. On the other hand, despite their potential, three-dimensional analogues of aryl C-glycosides remain largely overlooked. Here, we present a three-component radical strategy that grants access to this underexplored chemical space. Specifically, glycosyl bromides serve as a source of glycosyl radicals, which can react with [1.1.1]propellane and a suitable SOMOphile to afford bicyclopentyl C-glycosides. These C(sp3)-rich analogues replace a planar aryl ring with a three-dimensional bicyclopentyl moiety, which is expected to enhance physicochemical properties. The protocol is practical, mild, and amenable to scalable synthesis in continuous flow. Experimental and computational studies support a radical chain mechanism under kinetic control.

A radical strategy to the synthesis of bicyclo[1.1.1]pentyl C-glycosides / Goti, G., Marrese, A., Baldon, S., Gomez Roibas, P., Pelosi, G., Sartorel, A., Dell'Amico, L.. - In: CHEMICAL SCIENCE. - ISSN 2041-6539. - 17:2(2026), pp. 1223-1231. [10.1039/d5sc07328f]

A radical strategy to the synthesis of bicyclo[1.1.1]pentyl C-glycosides

Pelosi G.
Investigation
;
2026-01-01

Abstract

: Aryl C-glycosides, in which carbohydrates are directly linked to aryl fragments through a stable C-C bond, are an important class of biologically active molecules widely found in nature. These compounds exhibit resistance to (enzymatic) hydrolysis, a property that has been successfully leveraged in the development of metabolically stable drugs. On the other hand, despite their potential, three-dimensional analogues of aryl C-glycosides remain largely overlooked. Here, we present a three-component radical strategy that grants access to this underexplored chemical space. Specifically, glycosyl bromides serve as a source of glycosyl radicals, which can react with [1.1.1]propellane and a suitable SOMOphile to afford bicyclopentyl C-glycosides. These C(sp3)-rich analogues replace a planar aryl ring with a three-dimensional bicyclopentyl moiety, which is expected to enhance physicochemical properties. The protocol is practical, mild, and amenable to scalable synthesis in continuous flow. Experimental and computational studies support a radical chain mechanism under kinetic control.
2026
A radical strategy to the synthesis of bicyclo[1.1.1]pentyl C-glycosides / Goti, G., Marrese, A., Baldon, S., Gomez Roibas, P., Pelosi, G., Sartorel, A., Dell'Amico, L.. - In: CHEMICAL SCIENCE. - ISSN 2041-6539. - 17:2(2026), pp. 1223-1231. [10.1039/d5sc07328f]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/3068294
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