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1 posure prophylaxis, and sexual transmission (topical microbicide).
2 could serve as the basis of a broad-spectrum topical microbicide.
3 vent HIV-1 transmission in an antibody-based topical microbicide.
4 n bNAbs) could be novel candidates as potent topical microbicides.
5 12 studies), vaccination (7 studies), use of topical microbicides (10 studies), and prophylactic, cur
6 e unpredictability of antiviral compounds as topical microbicides and suggest that repeated exposures
7 ns can be applied to increase the potency of topical microbicides and vaccine-elicited antibodies.
12 ecreased by preexposure of EB to heat or the topical microbicide C31G, (iii) comparable among common
16 antiviral activities make CLR01 a promising topical microbicide for blocking infection by HIV and ot
18 g the utility of the organ culture to screen topical microbicides for their ability to block sexual t
25 pical of biopsy data for tenofovir and other topical microbicides, results suggest downstream but hig
29 infectious form may aid HIV-1 in evasion of topical microbicides that target its intracellular produ
30 re LC, suggesting that it may be useful as a topical microbicide to block sexual transmission of HIV.
31 l therapies, and possibly as components of a topical microbicide to prevent HIV-1 sexual transmission
33 lar umbrella compounds may function as novel topical microbicides to prevent human immunodeficiency v
34 nate polymer PRO 2000 are being developed as topical microbicides to protect against infection with s